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Jpn. Soc. Sci. Fish, 50, 565, 10.2331\u002Fsuisan.50.565\nAntila, 1984, Steroid conversion by oocytes and early embryos of Salmo gairdneri, Ann. Zool. Fenn, 21, 465\nBrown, 1987, Occurrence of thyroid hormones in early developmental stages of teleost fish, 2, 144\nBrown, 1989, Hormones in early development, with special reference to teleost fishes, 289\nFeist, 1990, Sex steroid profiles of coho salmon (Oncorhynchus kisutch) during early development and sexual differentiation, Gen. Comp. Endocrinol, 80, 299, 10.1016\u002F0016-6480(90)90174-K\nFolmar, 1980, The parrsmolt transformation (smoltification) and seawater adaptation in salmonids: A review of selected literature, Aquaculture, 21, 1, 10.1016\u002F0044-8486(80)90123-4\nGreenblatt, 1989, Changes in thyroid hormone levels in eggs and larvae and in iodide uptake by eggs of coho salmon and chinook salmon Oncorhynchus kisutch and O. tschawytscha, Fish Physiol. Biochem, 6, 261, 10.1007\u002FBF01881680\nHasegawa, 1987, Osmoregulatory ability of chum salmon, Oncorhynchus keta, reared in fresh water for prolonged periods, Fish Physiol. Biochem, 4, 101, 10.1007\u002FBF02044319\nHoar, 1988, The physiology of smolting salmonids, Vol. 11B, 275\nIkuta, 1987, Effects of sex steroids on smoltification of masu salmon, Oncorhynchus masou, Gen. Comp. Endocrinol, 65, 99, 10.1016\u002F0016-6480(87)90228-0\nIwata, 1982, Behavior and plasma sodium regulation of chum salmon fry during transition into seawater, Aquaculture, 28, 133, 10.1016\u002F0044-8486(82)90016-3\nIwata, 1987, Inconsistent effect of thyroid hormone alteration on seawater adaptability of fry of chum salmon, Oncorhynchus keta, Nippon Suisan Gakkaishi, 53, 1969, 10.2331\u002Fsuisan.53.1969\nde Jesus, 1991, Changes in cortisol and thyroid hormone concentrations during early development and metamorphosis in the Japanese flounder, Paralichthys olivaceus, Gen. Comp. Endocrinol, 82, 369, 10.1016\u002F0016-6480(91)90312-T\nKobuke, 1987, Thyroxine content of eggs and larvae of coho salmon, Oncorhynchus kisutch, J. Exp. Zool, 242, 89, 10.1002\u002Fjez.1402420112\nLangdon, 1984, Effects of cortisol and ACTH on gill Na+K+-ATPase, SDH and chloride cells in juvenile Atlantic salmon, Salmo salar L, Comp. Biochem. Physiol. A, 77, 9, 10.1016\u002F0300-9629(84)90004-5\nLanghorne, 1986, The interrelationship of cortisol, gill (Na + K) ATPase, and homeostasis during the parr-smolt transformation of Atlantic salmon (Salmo salar L.), Gen. Comp. Endocrinol, 61, 203, 10.1016\u002F0016-6480(86)90198-X\nLeatherland, 1989, Thyroid hormone content of eggs and early developmental stages of five Oncorhynchus species, Can. J. Fish. Aquat. Sci, 46, 2140, 10.1139\u002Ff89-264\nLeatherland, 1989, Thyroid hormone content in eggs and early developmental stages of three stocks of goitred coho salmon (Oncorhynchus kisutch) from the great lakes of North America, and a comparison with a stock from British Columbia, Can. J. Fish. Aquat. Sci, 46, 2146, 10.1139\u002Ff89-265\nMadsen, 1989, Effect of repetitive cortisol and thyroxine injections on chloride cell number and Na+K+-ATPase activity in gills of freshwater acclimated rainbow trout, Salmo gairdneri, Comp. Biochem. Physiol. A, 95, 171, 10.1016\u002F0300-9629(90)90027-P\nMadsen, 1990, Cortisol treatment improves the development of hypoosmoregulatory mechanisms in the euryhaline rainbow trout, Salmo gairdneri, Fish Physiol. Biochem, 8, 45, 10.1007\u002FBF00004430\nMadsen, 1990, The role of cortisol and growth hormone in seawater adaptation and development of hypoosmoregulatory mechanisms in sea trout parr (Salmo trutta trutta), Gen. Comp. Endocrinol, 79, 1, 10.1016\u002F0016-6480(90)90082-W\nMcCormick, 1989, In vitro stimulation of Na+K+-ATPase activity and ouabain binding by cortisol in coho salmon gill, Am. J. Physiol, 256, R707\nMiwa, 1986, Inhibitory effects of 17-α methyltestosterone and estradiol-17β on smoltification of sterilized amago salmon (Oncorhynchus rhodurus), Aquaculture, 53, 21, 10.1016\u002F0044-8486(86)90296-6\nNichols, 1985, Cortisol dynamics during seawater adaptation of Atlantic salmon, Salmo salar, Am. J. Physiol, 248, R651\nNichols, 1985, Cortisol kinetics and fluid distribution in brook trout (Salvelinus fontinalis), J. Endocrinol, 107, 57, 10.1677\u002Fjoe.0.1070057\nPrunet, 1989, Smoltification and seawater adaptation in Atlantic salmon (Salmo salar): Plasma prolactin, growth hormone, and thyroid hormones, Gen. Comp. Endocrinol, 74, 355, 10.1016\u002FS0016-6480(89)80031-0\nRichman, 1987, Effects of cortisol and growth hormone replacement on osmoregulation in hypophysectomized coho salmon (Oncorhynchus kisutch), Gen. Comp. Endocrinol, 67, 194, 10.1016\u002F0016-6480(87)90148-1\nRichman, 1987, Effects of cortisol and growth hormone on osmoregulation in the pre- and desmoltified coho salmon (Oncorhynchus kisutch), Gen. Comp. Endocrinol, 65, 189, 10.1016\u002F0016-6480(87)90165-1\nRothbard, 1987, Changes in steroid concentrations during sexual ontogenesis in tilapia, Aquaculture, 61, 59, 10.1016\u002F0044-8486(87)90338-3\nSheridan, 1986, Effects of thyroxine, cortisol, growth hormone, and prolactin on lipid metabolism of coho salmon, Oncorhynchus kisutch, during smoltification, Gen. Comp. Endocrinol, 64, 220, 10.1016\u002F0016-6480(86)90007-9\nTagawa, 1987, Presence of thyroxine in eggs and changes in its content during early development of chum salmon, Oncorhynchus keta, Gen. Comp. Endocrinol, 68, 129, 10.1016\u002F0016-6480(87)90068-2\nTagawa, 1989, Changes in tissue and blood concentration of thyroid hormones in developing chum salmon, Gen. Comp. Endocrinol, 76, 437, 10.1016\u002F0016-6480(89)90140-8\nTagawa, 1991, Effects of thyroid hormone deficiency in eggs on early development of the medaka, Oryzias latipes, J. Exp. Zool, 257, 360, 10.1002\u002Fjez.1402570309\nTagawa, 1990, Changes in thyroid hormone concentrations during early development and metamorphosis of the flounder, Paralichthys olivaceus, Zool. Sci, 7, 93\nTagawa, 1990, Thyroid hormones in eggs in selected freshwater, marine and diadromous teleosts and their changes during embryonic development, Fish Physiol. Biochem, 8, 515, 10.1007\u002FBF00003409\nTakahashi, 1985, Effects of N-terminal peptide of salmon proopiocortin on interrenal function of the rainbow trout, Gen. Comp. 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Exp. Obstet. Gynecol., 34, 171\nBird, 2003, Possible mechanisms underlying pregnancy-induced changes in uterine artery endothelial function, Am. J. Physiol. Regul. Integr. Comp. Physiol., 284, R245, 10.1152\u002Fajpregu.00108.2002\nBlat, 2012, The protein level of isoenergetic formulae does not modulate postprandial insulin secretion in piglets and has no consequences on later glucose tolerance, Br. J. Nutr., 108, 102, 10.1017\u002FS0007114511005253\nBudge, 2003, Differential effects of fetal number and maternal nutrition in late gestation on prolactin receptor abundance and adipose tissue development in the neonatal lamb, Pediatr. Res., 53, 302, 10.1203\u002F00006450-200302000-00016\nChristodoulides, 2009, Adipogenesis and WNT signalling, Trends Endocrin. Metabol., 20, 16, 10.1016\u002Fj.tem.2008.09.002\nDeiuliis, 2006, Alternative splicing of delta-like 1 homolog (DLK1) in the pig and human, Comp. Biochem. Physiol. B: Biochem. Mol. Biol., 145, 50, 10.1016\u002Fj.cbpb.2006.06.003\nDing, 1999, Expression of porcine adipocyte transcripts: tissue distribution and differentiation in vitro and in vivo, Comp. Biochem. Physiol. B: Biochem. Mol. Biol., 123, 307, 10.1016\u002FS0305-0491(99)00077-2\nDuffield, 2008, Placental restriction of fetal growth decreases IGF1 and leptin mRNA expression in the perirenal adipose tissue of late gestation fetal sheep, Am. J. Physiol. Regul. Integr. Comp. Physiol., 294, R1413, 10.1152\u002Fajpregu.00787.2007\nFrondas-Chauty, 2012, Air-displacement plethysmography for determining body composition in neonates: validation using live piglets, Pediatr. Res., 72, 26, 10.1038\u002Fpr.2012.35\nGardan, 2008, Decreased expression of the IGF-II gene during porcine adipose cell differentiation, Mol. Cell. Endocrinol., 292, 63, 10.1016\u002Fj.mce.2008.06.015\nGondret, 2011, Differential gene expressions in subcutaneous adipose tissue pointed to a delayed adipocytic differentiation in small pig fetuses compared to their heavier siblings, Differentiation, 81, 253, 10.1016\u002Fj.diff.2011.02.002\nHausman, 1986, The histology of developing porcine adipose tissue, J. Anim. Sci., 63, 642, 10.2527\u002Fjas1986.632642x\nHishida, 2008, Crucial roles of D-type cyclins in the early stage of adipocyte differentiation, Biochem. Biophys. Res. Comm., 370, 289, 10.1016\u002Fj.bbrc.2008.03.091\nJing, 2009, Expression regulation and function of Pref-1 during adipogenesis of human mesenchymal stem cells (MSCs), Biochim. Biophys. Acta, 1791, 816, 10.1016\u002Fj.bbalip.2009.04.010\nKasser, 1983, Lipogenesis and pancreatic insulin release in fetal pigs, J. Anim. Sci., 56, 579, 10.2527\u002Fjas1983.563579x\nKim, 2000, The expression of peroxisome proliferator-activated receptor gamma in pig fetal tissue and primary stromal-vascular cultures, Obesity Res., 8, 83, 10.1038\u002Foby.2000.11\nKleiman, 2013, Elevated IGF2 prevents leptin induction and terminal adipocyte differentiation in hemangioma stem cells, Exp. Mol. Pathol., 94, 126, 10.1016\u002Fj.yexmp.2012.09.023\nLagathu, 2010, Secreted frizzled-related protein 1 regulates adipose tissue expansion and is dysregulated in severe obesity, Int. J. Obes. (Lond.), 34, 1695, 10.1038\u002Fijo.2010.107\nLin, 2012, Metabolomic analysis reveals differences in umbilical vein plasma metabolites between normal and growth-restricted fetal pigs during late gestation, J. Nutr., 142, 990, 10.3945\u002Fjn.111.153411\nLouveau, 1996, Effect of a growth hormone infusion on plasma insulin-like growth factor-I in Meishan and large white pigs, Reprod. Nutr. Dev., 36, 301, 10.1051\u002Frnd:19960307\nLouveau, 2004, Regulation of development and metabolism of adipose tissue by growth hormone and the insulin-like growth factor system, Domest. Anim. Endocrinol., 27, 241, 10.1016\u002Fj.domaniend.2004.06.004\nMcPherson, 2004, Growth and compositional changes of fetal tissues in pigs, J. Anim. Sci., 82, 2534, 10.2527\u002F2004.8292534x\nMorise, 2009, Impact of intrauterine growth retardation and early protein intake on growth, adipose tissue, and the insulin-like growth factor system in piglets, Pediatr. Res., 65, 45, 10.1203\u002FPDR.0b013e318189b0b4\nMostyn, 2004, Hormonal and nutritional regulation of adipose tissue mitochondrial development and function in the newborn, Exp. Clin. Endocrinol. Diabetes, 112, 2, 10.1055\u002Fs-2004-815719\nQuesnel, 2008, Influence of some sow characteristics on within-litter variation of piglet birth weight, Animal, 2, 1842, 10.1017\u002FS175173110800308X\nRamsay, 2010, Adipokine gene transcription level in adipose tissue of runt piglets, Comp. Biochem. Physiol. B: Biochem. Mol. Biol., 155, 97, 10.1016\u002Fj.cbpb.2009.09.006\nRehfeldt, 2006, Consequences of birth weight for postnatal growth performance and carcass quality in pigs as related to myogenesis, J. Anim. Sci., 84, E113, 10.2527\u002F2006.8413_supplE113x\nRehfeldt, 2012, Limited and excess protein intake of pregnant gilts differently affects body composition and cellularity of skeletal muscle and subcutaneous adipose tissue of newborn and weanling piglets, Eur. J. Nutr., 51, 151, 10.1007\u002Fs00394-011-0201-8\nRezvani, 2012, A set of imprinted genes required for normal body growth also promotes growth of rhabdomyosarcoma cells, Pediatr. Res., 71, 32, 10.1038\u002Fpr.2011.6\nRoss, 2000, Inhibition of adipogenesis by Wnt signaling, Science, 289, 950, 10.1126\u002Fscience.289.5481.950\nSamulin, 2008, Differential gene expression of fatty acid binding proteins during porcine adipogenesis, Comp. Biochem. Physiol. B: Biochem. Mol. Biol., 151, 147, 10.1016\u002Fj.cbpb.2008.06.010\nSamulin, 2009, Changes in lipid metabolism associated gene transcripts during porcine adipogenesis, Comp. Biochem. Physiol. B: Biochem. Mol. Biol., 153, 8, 10.1016\u002Fj.cbpb.2008.12.019\nStevens, 1990, Effect of prolonged glucose infusion into fetal sheep on body growth, fat deposition and gestation length, J. Dev. Physiol., 13, 277\nSul, 2000, Function of pref-1 as an inhibitor of adipocyte differentiation, Int. J. Obes. Relat. Metab. Disord., 24, S15, 10.1038\u002Fsj.ijo.0801494\nSymonds, 1998, Prolactin receptor gene expression and foetal adipose tissue, J. Neuroendocrinol., 10, 885, 10.1046\u002Fj.1365-2826.1998.00275.x\nSymonds, 2003, Endocrine and nutritional regulation of fetal adipose tissue development, J. Endocrinol., 179, 293, 10.1677\u002Fjoe.0.1790293\nSymonds, 2012, Adipose tissue development during early life: novel insights into energy balance from small and large mammals, Proc. Nutr. Soc., 71, 363, 10.1017\u002FS0029665112000584\nTrayhurn, 1989, Evidence from immunoblotting studies on uncoupling protein that brown adipose tissue is not present in the domestic pig, Can. J. Physiol. Pharmacol., 67, 1480, 10.1139\u002Fy89-239\nVuguin, 2007, Animal models for small for gestational age and fetal programming of adult disease, Horm. Res., 68, 113, 10.1159\u002F000100545\nWalters, 2011, Animal models got you puzzled?: think pig, Ann. N Y Acad. Sci., 1245, 63, 10.1111\u002Fj.1749-6632.2011.06345.x\nWarshaw, 1990, Nutritional correlates of fetal growth, Dev. Pharmacol. Ther., 15, 153, 10.1159\u002F000457639\nWilliams, 2009, Influence of birth weight on gene regulators of lipid metabolism and utilization in subcutaneous adipose tissue and skeletal muscle of neonatal pigs, Reproduction, 138, 609, 10.1530\u002FREP-08-0445\nWylie, 2000, Novel imprinted DLK1\u002FGTL2 domain on human chromosome 14 contains motifs that mimic those implicated in IGF2\u002FH19 regulation, Genome Res., 10, 1711, 10.1101\u002Fgr.161600\nYu, 1998, Expression of CCAAT\u002Fenhancer binding proteins during porcine preadipocyte differentiation, Exp. 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Physiol., 261, R609, 10.1152\u002Fajpregu.1991.261.3.R609\nHarmon, 1992, Glucose-stimulated lipolysis in rainbow trout, Oncorhynchus mykiss, liver, Fish Physiol. Biochem., 10, 189, 10.1007\u002FBF00004513\nHemre, 2002, Carbohydrates in fish nutrition: effects on growth, glucose metabolism and hepatic enzymes, Aquacult Nutr., 8, 175, 10.1046\u002Fj.1365-2095.2002.00200.x\nJin, 2014, Comparison of glucose and lipid metabolic gene expressions between fat and lean lines of rainbow trout after a glucose load, PLoS ONE, 9, e105548, 10.1371\u002Fjournal.pone.0105548\nJin, 2017, Different regulation of insulin on glucose and lipid metabolism in 2 strains of gibel carp, Gen. Comp. Endocrinol., 246, 363, 10.1016\u002Fj.ygcen.2017.01.012\nKamalam, 2012, Regulation of metabolism by dietary carbohydrates in two lines of rainbow trout divergently selected for muscle fat content, J. Exp. Biol., 215, 2567, 10.1242\u002Fjeb.070581\nKirchner, 2005, Effects of low protein intake on extra-hepatic gluconeogenic enzyme expression and peripheral glucose phosphorylation in rainbow trout (Oncorhynchus mykiss), Comp. Biochem. Physiol., 140B, 333, 10.1016\u002Fj.cbpc.2004.10.019\nLegate, 2001, Glucose tolerance and peripheral glucose utilization in rainbow trout (Oncorhynchus mykiss), American eel (Anguilla rostrata), and black bullhead catfish (Ameiurus melas), Gen. Comp. Endocrinol., 122, 48, 10.1006\u002Fgcen.2001.7620\nLi, 2016, Carbohydrate utilization by herbivorous and omnivorous freshwater fish species: a comparative study on gibel carp (Carassius auratus gibelio. var CAS III) and grass carp (Ctenopharyngodon idellus), Aquac. Res., 47, 128, 10.1111\u002Fare.12476\nMazur, 1992, Utilization of dietary starch and glucose tolerance in juvenile Chinook salmon (Oncorhynchus tshawytscha) of different strains in seawater, Fish Physiol. Biochem., 10, 303, 10.1007\u002FBF00004479\nMinghetti, 2011, Transcriptional control mechanisms of genes of lipid and fatty acid metabolism in the Atlantic salmon (Salmo salar L.) established cell line, SHK-1, BBA-Mol. Cell Biol. L., 1811, 194\nMommsen, 1991, Insulin in fishes and agnathans – history, structure, and metabolic regulation, Rev. Aquat. Sci., 4, 225\nMoon, 2001, Glucose intolerance in teleost fish: face or fiction?, Comp. Biochem. Physiol., 129B, 243, 10.1016\u002FS1096-4959(01)00316-5\nPalomba, 2009, Evidence based and potential benefits of metformin in the polycystic ovary syndrome: a comprehensive review, Endocr. Rev., 30, 1, 10.1210\u002Fer.2008-0030\nPanserat, 2001, Glucokinase is highly induced and glucose-6-phosphatase poorly repressed in liver of rainbow trout (Oncorhynchus mykiss) by a single meal with glucose, Comp. Biochem. Physiol., 128B, 275, 10.1016\u002FS1096-4959(00)00322-5\nPanserat, 2000, Hepatic glucokinase is induced by dietary carbohydrates in rainbow trout, gilthead seabream, and common carp, Am. J. Physiol. Regul. Intergr. Comp. Physiol., 278, R1164, 10.1152\u002Fajpregu.2000.278.5.R1164\nPanserat, 2001, Nutritional regulation and tissue specificity of gene expression for proteins involved in hepatic glucose metabolism in rainbow trout (Oncorhynchus mykiss), J. Exp. Biol., 204, 2351, 10.1242\u002Fjeb.204.13.2351\nPanserat, 2002, Gluconeogenic enzyme gene expression is decreased by dietary carbohydrates in common carp (Cyprinus carpio) and gilthead seabream (Sparus aurata), BBA-Gene Struct. Expr., 1579, 35, 10.1016\u002FS0167-4781(02)00501-8\nPanserat, 2014, Nutritional regulation of glucokinase: a cross-species story, Nutr. Res. Rev., 27, 21, 10.1017\u002FS0954422414000018\nPanserat, 2009, Metformin improves postprandial glucose homeostasis in rainbow trout fed dietary carbohydrates: a link with the induction of hepatic lipogenic capacities?, Am. J. Physiol. Regul. Intergr. Comp. Physiol., 297, R707, 10.1152\u002Fajpregu.00120.2009\nPeres, 1999, Glucose tolerance in gilthead seabream (Sparus aurata) and European seabass (Dicentrarchus labrax), Aquaculture, 179, 415, 10.1016\u002FS0044-8486(99)00175-1\nPfaffl, 2001, A new mathematical model for relative quantification in real-time RT-PCR, Nucleic. Acids Res., 29, e45, 10.1093\u002Fnar\u002F29.9.e45\nPilkis, 1992, Molecular physiology of the regulation of hepatic gluconeogenesis and glycolysis, Annu. Rev. Physiol., 54, 885, 10.1146\u002Fannurev.ph.54.030192.004321\nPlagnes-Juan, 2008, Insulin regulateds the expression of several metaolism-related genes in the liver and primary hepatocytes of rainbow trout (Oncorhynchus mykiss), J. Exp. 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2005, Nutritional and hormonal control of lipolysis in isolated gilthead seabream (Sparus aurata) adipocytes, Am. J. Physiol. Regul. Integr. Comp. Physiol., 289, R259, 10.1152\u002Fajpregu.00574.2004","https:\u002F\u002Fwww.physiology.org\u002Fdoi\u002F10.1152\u002Fajpregu.00574.2004",{"doi":892},"10.1152\u002Fajpregu.00574.2004",{"id":894,"text":895,"url":896,"identifiers":897},"bd2e8e7c-6b1b-4f1b-849a-7ba61fed4204","Ando, 1993, Characteristics of lipid accumulation types in five species of fish, Nippon Suisan Gakk., 59, 1559, 10.2331\u002Fsuisan.59.1559","http:\u002F\u002Fwww.jstage.jst.go.jp\u002Farticle\u002Fsuisan1932\u002F59\u002F9\u002F59_9_1559\u002F_article",{"doi":898},"10.2331\u002Fsuisan.59.1559",{"id":900,"text":901,"url":902,"identifiers":903},"f711b50a-45ae-4491-82a4-bdafc7b0266a","Aydelotte, 1988, Differences between sub-populations of cultured bovine articular chondrocytes. II. Proteoglycan metabolism, Connect. Tissue Res., 18, 223, 10.3109\u002F03008208809016809","http:\u002F\u002Fwww.tandfonline.com\u002Fdoi\u002Ffull\u002F10.3109\u002F03008208809016809",{"doi":904},"10.3109\u002F03008208809016809",{"id":906,"text":907,"url":908,"identifiers":909},"8c2f93c3-3a78-4add-a31a-ac3a9cc6c843","Baker, 2000, Long-term peripheral treatment of immature coho salmon (Oncorhynchus kisutch) with human leptin has no clear physiologic effect, Gen. Comp. Endocrinol., 118, 134, 10.1006\u002Fgcen.1999.7450","https:\u002F\u002Flinkinghub.elsevier.com\u002Fretrieve\u002Fpii\u002FS0016648099974506",{"doi":910},"10.1006\u002Fgcen.1999.7450",{"id":912,"text":913,"url":914,"identifiers":915},"4638c887-76b4-4f8d-a306-275abff536bf","Bergan, 2013, PKC and ERK mediate GH-stimulated lipolysis, J. Mol. Endocrinol., 51, 213, 10.1530\u002FJME-13-0039","https:\u002F\u002Fjme.bioscientifica.com\u002Fview\u002Fjournals\u002Fjme\u002F51\u002F2\u002F213.xml",{"doi":916},"10.1530\u002Fjme-13-0039",{"id":918,"text":919,"url":920,"identifiers":921},"a21f9399-2bd2-48d4-a355-4ad3733addc5","Bergan, 2015, Nutritional state modulates growth hormone-stimulated lipolysis, Gen. Comp. Endocrinol., 217–218, 1, 10.1016\u002Fj.ygcen.2015.04.017","https:\u002F\u002Flinkinghub.elsevier.com\u002Fretrieve\u002Fpii\u002FS0016648015001264",{"doi":922},"10.1016\u002Fj.ygcen.2015.04.017",{"id":924,"text":925,"url":926,"identifiers":927},"4d367ced-0ec5-4ccb-887b-afbf0f47fff3","Bligh, 1959, A rapid method of total lipid extraction and purification, Can. J. Biochem. Physiol., 37, 911, 10.1139\u002Fy59-099","http:\u002F\u002Fwww.nrcresearchpress.com\u002Fdoi\u002F10.1139\u002Fy59-099",{"doi":928},"10.1139\u002Fy59-099",{"id":18,"text":930,"url":18,"identifiers":931},"Calduch-Giner, 2003, Molecular cloning and characterization of gilthead sea bream (Sparus aurata) growth hormone receptor (GHR). Assessment of alternative splicing, Comp. Biochem. Physiol. B Biochem. Mol. Biol., 136, 1, 10.1016\u002FS1096-4959(03)00150-7",{"doi":932},"10.1016\u002FS1096-4959(03)00150-7",{"id":934,"text":935,"url":936,"identifiers":937},"9adffedd-2bfe-48b7-bbe0-314f004f9ae9","Chaves, 2013, The metabolic effects of growth hormone in adipose tissue, Endocrine, 44, 293, 10.1007\u002Fs12020-013-9904-3","http:\u002F\u002Flink.springer.com\u002F10.1007\u002Fs12020-013-9904-3",{"doi":938},"10.1007\u002Fs12020-013-9904-3",{"id":940,"text":941,"url":942,"identifiers":943},"76e3c4d0-057d-4868-b5d8-2df0f2b3e44a","Chen, 2014, Hormone-sensitive lipase in yellow catfish Pelteobagrus fulvidraco: molecular characterization, mRNA tissue expression and transcriptional regulation by leptin in vivo and in vitro, Gen. Comp. Endocrinol., 206, 130, 10.1016\u002Fj.ygcen.2014.06.031","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0016648014002640",{"doi":944},"10.1016\u002Fj.ygcen.2014.06.031",{"id":946,"text":947,"url":948,"identifiers":949},"2a01bb6b-57e9-45db-872e-091e6cd73c6d","Chung, 2001, Infertility and testicular defects in hormone-sensitive lipase-deficient mice, Endocrinology, 142, 4272, 10.1210\u002Fendo.142.10.8424","https:\u002F\u002Facademic.oup.com\u002Fendo\u002Farticle-lookup\u002Fdoi\u002F10.1210\u002Fendo.142.10.8424",{"doi":950},"10.1210\u002Fendo.142.10.8424",{"id":952,"text":953,"url":954,"identifiers":955},"00935a0e-4910-455c-9361-8da628ab143d","Cruz-Garcia, 2009, Targets for TNFα-induced lipolysis in gilthead sea bream (Sparus aurata L.) adipocytes isolated from lean and fat juvenile fish, J. Exp. Biol., 212, 2254, 10.1242\u002Fjeb.029025","https:\u002F\u002Fjournals.biologists.com\u002Fjeb\u002Farticle\u002F212\u002F14\u002F2254\u002F18305\u002FTargets-for-TNF-induced-lipolysis-in-gilthead-sea",{"doi":956},"10.1242\u002Fjeb.029025",{"id":958,"text":959,"url":960,"identifiers":961},"adcfac1c-896a-429a-89d7-4cd1ebc02f50","Cruz-Garcia, 2015, Regulation of lipid metabolism and peroxisome proliferator-activated receptors in rainbow trout adipose tissue by lipolytic and antilipolytic endocrine factors, Domest. Anim. Endocrinol., 51, 86, 10.1016\u002Fj.domaniend.2014.11.002","https:\u002F\u002Flinkinghub.elsevier.com\u002Fretrieve\u002Fpii\u002FS0739724014000927",{"doi":962},"10.1016\u002Fj.domaniend.2014.11.002",{"id":964,"text":965,"url":966,"identifiers":967},"7cbf0e9e-b991-4d79-8420-01a3ed59a082","Danpure, 1995, How can the products of a single gene be localized to more than one intracellular compartment?, Trends Cell Biol., 5, 230, 10.1016\u002FS0962-8924(00)89016-9","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0962892400890169",{"doi":968},"10.1016\u002FS0962-8924(00)89016-9",{"id":970,"text":971,"url":972,"identifiers":973},"774a18e9-d7a3-47f9-97d1-524105fa946c","de Pedro, 2006, Acute and chronic leptin reduces food intake and body weight in goldfish (Carassius auratus), J. Endocrinol., 188, 513, 10.1677\u002Fjoe.1.06349","https:\u002F\u002Fjoe.bioscientifica.com\u002Fview\u002Fjournals\u002Fjoe\u002F188\u002F3\u002F1880513.xml",{"doi":974},"10.1677\u002Fjoe.1.06349",{"id":976,"text":977,"url":978,"identifiers":979},"d7877f2e-0bab-4656-9f5d-8bedbccb7292","Duncan, 2007, Regulation of lipolysis in adipocytes, Annu. Rev. Nutr., 27, 79, 10.1146\u002Fannurev.nutr.27.061406.093734","https:\u002F\u002Fwww.annualreviews.org\u002Fdoi\u002F10.1146\u002Fannurev.nutr.27.061406.093734",{"doi":980},"10.1146\u002Fannurev.nutr.27.061406.093734",{"id":982,"text":983,"url":984,"identifiers":985},"e6e5bf94-c42e-438c-a306-f40ba3838a83","Farbridge, 1992, Temporal changes in plasma thyroid hormone, growth hormone and free fatty acid concentrations, and hepatic 5′-monodeiodinase activity, lipid and protein content during chronic fasting and re-feeding in rainbow trout (Oncorhynchus mykiss), Fish Physiol. Biochem., 10, 245, 10.1007\u002FBF00004518","http:\u002F\u002Flink.springer.com\u002F10.1007\u002FBF00004518",{"doi":986},"10.1007\u002Fbf00004518",{"id":988,"text":989,"url":990,"identifiers":991},"8fabc547-41ee-4a26-a1e3-b401dd95fb06","Foo, 2011, Development of a method for the purification and culture of rodent astrocytes, Neuron, 71, 799, 10.1016\u002Fj.neuron.2011.07.022","https:\u002F\u002Flinkinghub.elsevier.com\u002Fretrieve\u002Fpii\u002FS0896627311006490",{"doi":992},"10.1016\u002Fj.neuron.2011.07.022",{"id":994,"text":995,"url":996,"identifiers":997},"0999c1a1-1ca5-468e-aa12-a7da222425f1","Fukada, 2000, Changes of serum growth hormone and vitellogenin levels during vitellogenesis in female masu salmon Oncorhynchus masou, Fish. Sci., 66, 789, 10.1046\u002Fj.1444-2906.2000.00112.x","http:\u002F\u002Fwww.jstage.jst.go.jp\u002Farticle\u002Ffishsci1994\u002F66\u002F4\u002F66_4_789\u002F_article",{"doi":998},"10.1046\u002Fj.1444-2906.2000.00112.x",{"id":1000,"text":1001,"url":1002,"identifiers":1003},"3aac8528-91fb-48cc-bc8a-a9a3996ea670","Han, 2013, Distribution of adipocyte-related cells in skeletal muscle of rainbow trout Oncorhynchus mykiss, Fish. Sci., 79, 143, 10.1007\u002Fs12562-012-0579-0","http:\u002F\u002Flink.springer.com\u002F10.1007\u002Fs12562-012-0579-0",{"doi":1004},"10.1007\u002Fs12562-012-0579-0",{"id":1006,"text":1007,"url":1008,"identifiers":1009},"aa854973-9958-42e9-a402-a2f05fd63961","Hirano, 2011, cDNA cloning of two types of growth hormone receptor in torafugu Takifugu rubripes: tissue distribution is possibly correlated to lipid accumulation patterns, Fish. Sci., 77, 855, 10.1007\u002Fs12562-011-0377-0","http:\u002F\u002Flink.springer.com\u002F10.1007\u002Fs12562-011-0377-0",{"doi":1010},"10.1007\u002Fs12562-011-0377-0",{"id":1012,"text":1013,"url":1014,"identifiers":1015},"8bdb671b-86d6-47d9-89d4-c2b8ca5ace26","Holm, 1989, Human adipose tissue hormone-sensitive lipase: identification and comparison with other species, Biochim. Biophys. Acta, 1006, 193, 10.1016\u002F0005-2760(89)90195-1","https:\u002F\u002Flinkinghub.elsevier.com\u002Fretrieve\u002Fpii\u002F0005276089901951",{"doi":1016},"10.1016\u002F0005-2760(89)90195-1",{"id":1018,"text":1019,"url":1020,"identifiers":1021},"ad720619-b600-43bf-aa39-32ed5cdf6a5e","Hoseini, 2014, Effect of short-term (0–72h) fasting on serum biochemical characteristics in rainbow trout Oncorhynchus mykiss, J. Appl. Ichthyol., 30, 569, 10.1111\u002Fjai.12221","https:\u002F\u002Fonlinelibrary.wiley.com\u002Fdoi\u002F10.1111\u002Fjai.12221",{"doi":1022},"10.1111\u002Fjai.12221",{"id":1024,"text":1025,"url":1026,"identifiers":1027},"20b5711e-e285-47a9-8217-d5909bd486c0","Jiao, 2006, The co-existence of two growth hormone receptors in teleost fish and their differential signal transduction, tissue distribution and hormonal regulation of expression in seabream, J. Mol. Endocrinol., 36, 23, 10.1677\u002Fjme.1.01945","https:\u002F\u002Fjme.bioscientifica.com\u002Fview\u002Fjournals\u002Fjme\u002F36\u002F1\u002F0360023.xml",{"doi":1028},"10.1677\u002Fjme.1.01945",{"id":1030,"text":1031,"url":1032,"identifiers":1033},"f6cd42f2-60ec-4b78-a6d0-3381ef88f0a7","Kaneko, 2013, Differences in lipid distribution and expression of peroxisome proliferator-activated receptor gamma and lipoprotein lipase genes in torafugu and red seabream, Gen. Comp. Endocrinol., 184, 51, 10.1016\u002Fj.ygcen.2013.01.003","https:\u002F\u002Flinkinghub.elsevier.com\u002Fretrieve\u002Fpii\u002FS0016648013000348",{"doi":1034},"10.1016\u002Fj.ygcen.2013.01.003",{"id":1036,"text":1037,"url":1038,"identifiers":1039},"d5a6894b-bb5f-433a-8e2a-3a5b2eaf3612","Kaneko, 2016, Short-term fasting increases skeletal muscle lipid content in association with enhanced mRNA levels of lipoprotein lipase 1 in lean juvenile red seabream (Pagrus major), Aquaculture, 452, 160, 10.1016\u002Fj.aquaculture.2015.10.030","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0044848615302209",{"doi":1040},"10.1016\u002Fj.aquaculture.2015.10.030",{"id":1042,"text":1043,"url":1044,"identifiers":1045},"a308c9d8-cdee-4300-b9e4-fd6893814ba8","Karve, 2011, Small changes huge impact: the role of protein posttranslational modifications in cellular homeostasis and disease, J. Amino Acids, 2011, 207691, 10.4061\u002F2011\u002F207691","https:\u002F\u002Fwww.hindawi.com\u002Fjournals\u002Fjaa\u002F2011\u002F207691\u002F",{"doi":1046},"10.4061\u002F2011\u002F207691",{"id":1048,"text":1049,"url":1050,"identifiers":1051},"2744178e-a0f6-422f-9d0f-6332df7152f7","Kause, 2007, Genetic potential for simultaneous selection of growth and body composition in rainbow trout (Oncorhynchus mykiss) depends on the dietary protein and lipid content: phenotypic and genetic correlations on two diets, Aquaculture, 271, 162, 10.1016\u002Fj.aquaculture.2007.06.005","https:\u002F\u002Flinkinghub.elsevier.com\u002Fretrieve\u002Fpii\u002FS0044848607004802",{"doi":1052},"10.1016\u002Fj.aquaculture.2007.06.005",{"id":1054,"text":1055,"url":1056,"identifiers":1057},"c2e267d6-928b-4f4f-a227-f7e4b970e47a","Khieokhajonkhet, 2014, Hormone-sensitive lipase in Japanese flounder Paralichthys olivaceus: the potential function of the inclinator muscle of fin as a lipid storage site, Fish. Sci., 80, 341, 10.1007\u002Fs12562-013-0695-5","http:\u002F\u002Flink.springer.com\u002F10.1007\u002Fs12562-013-0695-5",{"doi":1058},"10.1007\u002Fs12562-013-0695-5",{"id":1060,"text":1061,"url":1062,"identifiers":1063},"dedfb568-f2cc-4856-8ae5-71e99a6c7071","Kittilson, 2011, Rainbow trout (Oncorhynchus mykiss) possess two hormone-sensitive lipase-encoding mRNAs that are differentially expressed and independently regulated by nutritional state, Comp. Biochem. Physiol. A Mol. Integr. Physiol., 158, 52, 10.1016\u002Fj.cbpa.2010.09.010","https:\u002F\u002Flinkinghub.elsevier.com\u002Fretrieve\u002Fpii\u002FS1095643310004812",{"doi":1064},"10.1016\u002Fj.cbpa.2010.09.010",{"id":1066,"text":1067,"url":1068,"identifiers":1069},"fec14e3d-5d89-4fe2-9318-5d07ae3cc26b","Langin, 2006, Importance of TNFα and neutral lipases in human adipose tissue lipolysis, Trends Endocrinol. Metab., 17, 314, 10.1016\u002Fj.tem.2006.08.003","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS1043276006001536",{"doi":1070},"10.1016\u002Fj.tem.2006.08.003",{"id":1072,"text":1073,"url":1074,"identifiers":1075},"e88da658-9c12-4626-bf9c-27e67a793a32","Laurell, 1997, Species-specific alternative splicing generates a catalytically inactive form of human hormone-sensitive lipase, Biochem. J., 328, 137, 10.1042\u002Fbj3280137","https:\u002F\u002Fportlandpress.com\u002Fbiochemj\u002Farticle\u002F328\u002F1\u002F137\u002F92333\u002FSpecies-specific-alternative-splicing-generates-a",{"doi":1076},"10.1042\u002Fbj3280137",{"id":1078,"text":1079,"url":1080,"identifiers":1081},"4c68646b-0035-4279-8000-0006b275d4fa","Lincová, 2002, Effect of nitric oxide donors on isoprenaline-induced lipolysis in rat epididymal adipose tissue: studies in isolated adipose tissues and immobilized perfused adipocytes, Physiol. Res., 51, 387","https:\u002F\u002Flink.springer.com\u002F10.1007\u002Fs10440-022-00541-7",{"doi":1082},"10.1007\u002Fs10440-022-00541-7",{"id":1084,"text":1085,"url":1086,"identifiers":1087},"2fbe95d4-fab4-4d54-adb6-af20ebcd647c","Lu, 2013, Effect of dietary high amount of calcium and phosphorous on reducing the prevalence of morphological deformities in GH-transgenic Nile tilapia, Fish. Sci., 79, 647, 10.1007\u002Fs12562-013-0626-5","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs12562-013-0626-5",{"doi":1088},"10.1007\u002Fs12562-013-0626-5",{"id":1090,"text":1091,"url":1092,"identifiers":1093},"967f1acf-945e-4c71-97b3-a519f56d8559","Matsumoto, 2007, Involvement of carrier-mediated transport system in uptake of tetrodotoxin into liver tissue slices of puffer fish Takifugu rubripes, Toxicon, 50, 173, 10.1016\u002Fj.toxicon.2007.03.004","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0041010107000979",{"doi":1094},"10.1016\u002Fj.toxicon.2007.03.004",{"id":1096,"text":1097,"url":1098,"identifiers":1099},"e9270c3b-667d-4160-ae8b-cf51fc49cca4","Nam, 2008, Structural and functional analysis of a novel hormone-sensitive lipase from a metagenome library, Proteins, 74, 1036, 10.1002\u002Fprot.22313","https:\u002F\u002Fonlinelibrary.wiley.com\u002Fdoi\u002F10.1002\u002Fprot.22313",{"doi":1100},"10.1002\u002Fprot.22313",{"id":1102,"text":1103,"url":1104,"identifiers":1105},"3c638f3e-a9f3-4982-b376-bc34c74547c4","O’Connor, 1993, Growth hormone stimulates hepatic lipid mobilization in rainbow trout, Oncorhynchus mykiss, J. Comp. Physiol. B, 163, 427","http:\u002F\u002Flink.springer.com\u002F10.1007\u002FBF00265649",{"doi":1106},"10.1007\u002FBF00265649",{"id":1108,"text":1109,"url":1110,"identifiers":1111},"3a724d48-f566-48f3-8abc-6ebf7bdbeaca","Osuga, 2000, Targeted disruption of hormone-sensitive lipase results in male sterility and adipocyte hypertrophy, but not in obesity, Proc. Natl. Acad. Sci. U.S.A., 97, 787, 10.1073\u002Fpnas.97.2.787","https:\u002F\u002Fpnas.org\u002Fdoi\u002Ffull\u002F10.1073\u002Fpnas.97.2.787",{"doi":1112},"10.1073\u002Fpnas.97.2.787",{"id":1114,"text":1115,"url":1116,"identifiers":1117},"c95ded35-0984-42a4-96d0-e29f75e31e98","Pierce, 2007, Prolactin receptor, growth hormone receptor, and putative somatolactin receptor in Mozambique tilapia: tissue specific expression and differential regulation by salinity and fasting, Gen. Comp. Endocrinol., 154, 31, 10.1016\u002Fj.ygcen.2007.06.023","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS001664800700250X",{"doi":1118},"10.1016\u002Fj.ygcen.2007.06.023",{"id":1120,"text":1121,"url":1122,"identifiers":1123},"37d66aaf-2cc5-46ff-b332-f112121bfe14","Pierce, 2005, Metabolic hormones modulate the effect of growth hormone (GH) on insulin-like growth factor-I (IGF-I) mRNA level in primary culture of salmon hepatocytes, J. Endocrinol., 184, 341, 10.1677\u002Fjoe.1.05892","https:\u002F\u002Fjoe.bioscientifica.com\u002Fview\u002Fjournals\u002Fjoe\u002F184\u002F2\u002F1840341.xml",{"doi":1124},"10.1677\u002Fjoe.1.05892",{"id":1126,"text":1127,"url":1128,"identifiers":1129},"e21a2ac6-defa-4195-a7f0-618f6f5182f0","Pierce, 2012, Regulation of growth hormone (GH) receptor (GHR1 and GHR2) mRNA level by GH and metabolic hormones in primary cultured tilapia hepatocytes, Gen. Comp. Endocrinol., 179, 22, 10.1016\u002Fj.ygcen.2012.07.010","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0016648012002845",{"doi":1130},"10.1016\u002Fj.ygcen.2012.07.010",{"id":1132,"text":1133,"url":1134,"identifiers":1135},"75da464b-6853-4633-836a-cc59bf81ab06","Regost, 2001, Fat deposition and flesh quality in seawater reared, triploid brown trout (Salmo trutta) as affected by dietary fat levels and starvation, Aquaculture, 193, 325, 10.1016\u002FS0044-8486(00)00498-1","https:\u002F\u002Flinkinghub.elsevier.com\u002Fretrieve\u002Fpii\u002FS0044848600004981",{"doi":1136},"10.1016\u002Fs0044-8486(00)00498-1",{"id":1138,"text":1139,"url":1140,"identifiers":1141},"4fa00226-074c-4149-8d4d-e4220e0eb004","Salmerón, 2015, Effects of nutritional status on plasma leptin levels and in vitro regulation of adipocyte leptin expression and secretion in rainbow trout, Gen. Comp. Endocrinol., 210, 114, 10.1016\u002Fj.ygcen.2014.10.016","https:\u002F\u002Flinkinghub.elsevier.com\u002Fretrieve\u002Fpii\u002FS0016648014004171",{"doi":1142},"10.1016\u002Fj.ygcen.2014.10.016",{"id":1144,"text":1145,"url":1146,"identifiers":1147},"8a2ba0c0-3b9a-4e60-afef-60ed68489b29","Sänger, 1993, Limits to the acclimation of fish muscle, Rev. Fish Biol. Fish., 3, 1, 10.1007\u002FBF00043295","http:\u002F\u002Flink.springer.com\u002F10.1007\u002FBF00043295",{"doi":1148},"10.1007\u002Fbf00043295",{"id":1150,"text":1151,"url":1152,"identifiers":1153},"1470c578-6190-436f-aec0-d2191fc3c116","Shen, 2000, Hormone-sensitive lipase functions as an oligomer, Biochemistry, 39, 2392, 10.1021\u002Fbi992283h","https:\u002F\u002Fpubs.acs.org\u002Fdoi\u002F10.1021\u002Fbi992283h",{"doi":1154},"10.1021\u002Fbi992283h",{"id":1156,"text":1157,"url":1158,"identifiers":1159},"68ec94b6-2f62-4834-87ac-a38660db3fe2","Sheridan, 1986, Effects of thyroxin, cortisol, growth hormone, and prolactin on lipid metabolism of coho salmon, Oncorhynchus kisutch, during smoltification, Gen. Comp. Endocrinol., 64, 220, 10.1016\u002F0016-6480(86)90007-9","https:\u002F\u002Flinkinghub.elsevier.com\u002Fretrieve\u002Fpii\u002F0016648086900079",{"doi":1160},"10.1016\u002F0016-6480(86)90007-9",{"id":1162,"text":1163,"url":1164,"identifiers":1165},"8ba1dda0-e394-4878-b37c-991560c33ada","Sheridan, 1991, Effects of nutritional state on in vivo lipid and carbohydrate metabolism of coho salmon, Oncorhynchus kisutch, Gen. Comp. Endocrinol., 81, 473, 10.1016\u002F0016-6480(91)90175-6","https:\u002F\u002Flinkinghub.elsevier.com\u002Fretrieve\u002Fpii\u002F0016648091901756",{"doi":1166},"10.1016\u002F0016-6480(91)90175-6",{"id":1078,"text":1168,"url":1080,"identifiers":1169},"Silverstein, 2000, The effects of NPY and insulin on food intake regulation in fish, Am. Zool., 40, 296",{"doi":1082},{"id":18,"text":1171,"url":1172,"identifiers":1173},"Small, 2002, Effect of fasting on pituitary growth hormone expression and circulating growth hormone levels in striped bass, N. Am. J. Aquacult., 64, 278, 10.1577\u002F1548-8454(2002)064\u003C0278:EOFOPG>2.0.CO;2","https:\u002F\u002Fdoi.org\u002F10.1577\u002F1548-8454(2002)064\u003C0278:eofopg>2.0.co;2",{"mag":1174,"openalex":1175,"doi":1176},"2020092575","W2020092575","10.1577\u002F1548-8454(2002)064",{"id":18,"text":1178,"url":1179,"identifiers":1180},"Su, 2003, Mutational analysis of the hormone-sensitive lipase translocation reaction in adipocytes, J. Biol. Chem., 278, 43615, 10.1074\u002Fjbc.M301809200","https:\u002F\u002Fdoi.org\u002F10.1074\u002Fjbc.m301809200",{"mag":1181,"openalex":1182,"pm":1183,"doi":1184},"1974560613","W1974560613","12832420","10.1074\u002Fjbc.m301809200",{"id":1186,"text":1187,"url":1188,"identifiers":1189},"939b0993-13c3-491f-9e3e-9d09d98293a4","Sumpter, 1991, The effect of starvation on growth and plasma growth hormone concentrations of rainbow trout, Oncorhynchus mykiss, Gen. Comp. Endocrinol., 83, 94, 10.1016\u002F0016-6480(91)90109-J","https:\u002F\u002Flinkinghub.elsevier.com\u002Fretrieve\u002Fpii\u002F001664809190109J",{"doi":1190},"10.1016\u002F0016-6480(91)90109-j",{"id":1192,"text":1193,"url":1194,"identifiers":1195},"12645d6f-3d22-4b89-bfb1-96c635c45c0c","Takahashi, 1991, Effects of stress and fasting on plasma growth hormone levels in the immature rainbow trout, Nippon Suisan Gakkaishi, 57, 231, 10.2331\u002Fsuisan.57.231","http:\u002F\u002Fwww.jstage.jst.go.jp\u002Farticle\u002Fsuisan1932\u002F57\u002F2\u002F57_2_231\u002F_article",{"doi":1196},"10.2331\u002Fsuisan.57.231",{"id":1198,"text":1199,"url":1200,"identifiers":1201},"c4db8d85-3aac-451c-a3fb-0234a327b85d","Tansey, 2004, The central role of perilipin A in lipid metabolism and adipocyte lipolysis, IUBMB Life, 56, 379, 10.1080\u002F15216540400009968","https:\u002F\u002Fiubmb.onlinelibrary.wiley.com\u002Fdoi\u002F10.1080\u002F15216540400009968",{"doi":1202},"10.1080\u002F15216540400009968",{"id":1204,"text":1205,"url":1206,"identifiers":1207},"76076770-6799-4d95-ba9f-7da458067873","Varnavsky, 1995, Effects of premature seawater transfer and fasting on plasma growth hormone levels of yearling coho salmon (Oncorhynchus kisutch) parr, Aquaculture, 135, 141, 10.1016\u002F0044-8486(95)01001-7","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002F0044848695010017",{"doi":1208},"10.1016\u002F0044-8486(95)01001-7",{"id":1210,"text":1211,"url":1212,"identifiers":1213},"55851f9b-68d7-4cd2-97fd-dfb59a0dd076","Walock, 2014, Characterization of a novel growth hormone receptor-encoding cDNA in rainbow trout and regulation of its expression by nutritional state, Gene, 533, 286, 10.1016\u002Fj.gene.2013.09.046","https:\u002F\u002Flinkinghub.elsevier.com\u002Fretrieve\u002Fpii\u002FS0378111913012511",{"doi":1214},"10.1016\u002Fj.gene.2013.09.046",{"id":1216,"text":1217,"url":1218,"identifiers":1219},"db5975c8-08e4-4dcf-b7c6-0a17dc3a9826","Won, 2012, Cloning and characterization of leptin in a Perciform fish, the striped bass (Morone saxatilis): control of feeding and regulation by nutritional state, Gen. Comp. Endocrinol., 178, 98, 10.1016\u002Fj.ygcen.2012.04.019","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0016648012001797",{"doi":1220},"10.1016\u002Fj.ygcen.2012.04.019",{"id":1222,"text":1223,"url":1224,"identifiers":1225},"f9508dce-4113-45eb-93db-d7d8900eeec2","Yeaman, 2004, Hormone-sensitive lipase – new roles for an old enzyme, Biochem. J., 379, 11, 10.1042\u002Fbj20031811","https:\u002F\u002Fportlandpress.com\u002Fbiochemj\u002Farticle\u002F379\u002F1\u002F11\u002F43206\u002FHormone-sensitive-lipase-new-roles-for-an-old",{"doi":1226},"10.1042\u002Fbj20031811",{"id":1228,"createTime":1229,"updateTime":1230,"relativeEntities":1231,"slug":1232,"properties":1233,"entityType":102,"verifyStatus":103,"verifyTime":1242,"verifyNote":105,"languages":18,"translateLanguages":18,"viewCount":19,"primaryUrl":1243,"fullTextUrl":18,"authors":1244,"publicationType":140,"publisherRelationship":1286,"citationCount":18,"citationInfo":18,"publishDate":1332,"publishYear":1333,"citationAnalyzeStatus":1334,"lastCitationAnalyze":1335,"indexDatabases":1336,"openAccess":18,"references":18,"isForceReanalyzing":190},"b5fe2a54-9597-44e3-8171-cb5875f6d49e","2024-01-18T13:46:01.134+00:00","2026-08-15T15:45:18.995+00:00",[],"Corticosterone-and-corticosteroid-binding-globulin-in-birds-Relation-to-urbanization-in-a-desert-city",{"title":1234,"gsPaper":1236,"references":1238,"doi":1240},{"EN":1235},"Corticosterone and corticosteroid binding globulin in birds: Relation to urbanization in a desert city",{"VOID":1237},"[]",{"VOID":1239},"Amstislavsky, 2006, Renal and endocrine changes in rats with inherited stress-induced arterial hypertension (ISIAH), Histochem. Cell Biol., 125, 651, 10.1007\u002Fs00418-005-0118-5\nAnderies, 2007, Living in the city: resource availability, predation, and bird population dynamics in urban areas, J. Theor. Biol., 247, 36, 10.1016\u002Fj.jtbi.2007.01.030\nAntonov, 2003, Small-scale differences in the breeding ecology of urban and rural magpies Pica pica, Ornis Fenn., 80, 21\nArmario, 2004, Long-term effects of a single exposure to immobilization on the hypothalamic–pituitary–adrenal axis: neurobiologic mechanisms, Ann. NY. Acad. Sci., 1018, 162, 10.1196\u002Fannals.1296.019\nArmario, 2004, A single exposure to severe stressors causes long-term desensitisation of the physiological response to the homotypic stressor, Stress, 7, 157, 10.1080\u002F10253890400010721\nBaker, 2005, Impact of predation by domestic cats Felis catus in an urban area, Mamm. Rev., 35, 302, 10.1111\u002Fj.1365-2907.2005.00071.x\nBarsano, 1989, Simple algebraic and graphic methods for the apportionment of hormone (and receptor) into bound and free fractions in binding equilibria—or how to calculate bound and free hormone, Endocrinology, 124, 1101, 10.1210\u002Fendo-124-3-1101\nBautista, 2004, Effect of weekend road traffic on the use of space by raptors, Conserv. Biol., 18, 726, 10.1111\u002Fj.1523-1739.2004.00499.x\nBeck, 2006, Group composition and reproductive success of cooperatively breeding White-winged Choughs (Corcoraxmelanorhamphos) in urban and non-urban habitat, Aust. Ecol., 31, 588, 10.1111\u002Fj.1442-9993.2006.01589.x\nBelden, 2005, Corticosterone and growth in pacific treefrog (Hyla regilla) tadpoles, Copeia, 424, 10.1643\u002FCP-04-139R\nBerger, 2007, Behavioral and physiological adjustments to new predators in an endemic island species, the Galapagos marine iguana, Horm. Behav., 52, 653, 10.1016\u002Fj.yhbeh.2007.08.004\nBhatnagar, 1998, Neuroanatomical basis for facilitation of hypothalamic–pituitary–adrenal responses to a novel stressor after chronic stress, Neuroscience, 84, 1025, 10.1016\u002FS0306-4522(97)00577-0\nBlumstein, 2006, Developing an evolutionary ecology of fear: how life history and natural history traits affect disturbance tolerance in birds, Anim. Behav., 71, 389, 10.1016\u002Fj.anbehav.2005.05.010\nBonier, 2007, Sex-specific consequences of life in the city, Behav. Ecol., 18, 121, 10.1093\u002Fbeheco\u002Farl050\nBoonstra, 2004, Coping with changing northern environments: the role of the stress axis in birds and mammals, Integ. Comp. Biol., 44, 95, 10.1093\u002Ficb\u002F44.2.95\nBoonstra, 2000, Contrasting stress response of male arctic ground squirrels and red squirrels, J. Exp. Zool., 286, 390, 10.1002\u002F(SICI)1097-010X(20000301)286:4\u003C390::AID-JEZ7>3.0.CO;2-O\nBoonstra, 2001, Reproduction at all costs: the adaptive stress response of male arctic ground squirrels, Ecology, 82, 1930, 10.1890\u002F0012-9658(2001)082[1930:RAACTA]2.0.CO;2\nBreuner, 2001, Seasonal regulation of membrane and intracellular corticosteroid receptors in the House Sparrow brain, J. Neuroendocrinol., 13, 412, 10.1046\u002Fj.1365-2826.2001.00646.x\nBreuner, 2002, Plasma binding proteins as mediators of corticosteroid action in vertebrates, J. Endocrinol., 175, 99, 10.1677\u002Fjoe.0.1750099\nBreuner, 1999, Diel rhythms of basal and stress-induced corticosterone in a wild, seasonal vertebrate, Gambel’s white-crowned sparrow, J. Exp. Zool., 284, 334, 10.1002\u002F(SICI)1097-010X(19990801)284:3\u003C334::AID-JEZ11>3.0.CO;2-#\nCampbell, 2006, Urban parks as shared spaces? The utility of alert distances as indicators of avian tolerance of humans in Stirling, Scotland, Area, 38, 301, 10.1111\u002Fj.1475-4762.2006.00695.x\nChace, 2006, Urban effects on native avifauna: a review, Landscape Urban Plann., 74, 46, 10.1016\u002Fj.landurbplan.2004.08.007\nCheng, 1973, Relationship between inhibition constant (K1) and concentration of inhibitor which causes 50 per cent inhibition (I50) of an enzymatic-reaction, Biochem. Pharmacol., 22, 3099, 10.1016\u002F0006-2952(73)90196-2\nCyr, 2007, The effect of chronic psychological stress on corticosterone, plasma metabolites, and immune responsiveness in European Starlings, Gen. Comp. Endocrinol., 154, 59, 10.1016\u002Fj.ygcen.2007.06.016\nCyr, 2007, Chronic stress in free-living European Starlings reduces corticosterone concentrations and reproductive success, Gen. Comp. Endocrinol., 151, 82, 10.1016\u002Fj.ygcen.2006.12.003\nDallman, 2006, Glucocorticoids, chronic stress, and obesity, Hypothalamic Integ. Energ. Metab., 153, 75\nDerrickson, 1992, Northern Mockingbird\nDesrochers, 2006, Effects of corticosterone on feather quality, J. Exp. Zool., 305A, 121\nDeviche, 2001, Testosterone, corticosterone, and photoperiod interact to regulate free steroid hormone levels in dark-eyed juncos, Junco hyemalis, Gen. Comp. Endocr., 122, 67, 10.1006\u002Fgcen.2001.7613\nDeviche, 2006, Control of luteinizing hormone and testosterone secretion in a flexibly breeding male passerine, the Rufous-winged Sparrow, Aimophila carpalis, Gen. Comp. Endocrinol., 149, 226, 10.1016\u002Fj.ygcen.2006.06.004\nDjordjevic, 2007, Effect of various stressors on the blood ACTH and corticosterone concentration in normotensive Wistar and spontaneously hypertensive Wistar–Kyoto rats, Gen. Comp. Endocrinol., 153, 217, 10.1016\u002Fj.ygcen.2007.02.004\nEens, 1999, Great and blue tits as indicators of heavy metal contamination in terrestrial ecosystems, Ecotoxicol. Environ. Saf., 44, 81, 10.1006\u002Feesa.1999.1828\nFelsenstein, 1985, Phylogenies and the comparative method, Am. Nat., 125, 1, 10.1086\u002F284325\nFernandez-Juricic, 2001, Density dependent habitat selection of corridors in a fragmented landscape, Ibis, 143, 278, 10.1111\u002Fj.1474-919X.2001.tb04484.x\nFokidis, 2008, Interspecific variation in avian blood parasites and hematology associated with the urban–rural gradient of a desert city, J. Avian Biol., 39, 300, 10.1111\u002Fj.0908-8857.2008.04248.x\nFrench, 2008, Variation in stress and innate immunity in the tree lizard Urosaurus ornatus across an urban-rural gradient, Comp. Biochem. Physiol. B., 178, 997\nFrench, 2006, The effects of stress on wound healing in male tree lizards (Urosaurusornatus), Gen. Comp. Endocrinol., 145, 128, 10.1016\u002Fj.ygcen.2005.08.005\nFrench, 2007, Corticosterone modulation of reproductive and immune systems trade-offs in female tree lizards: long-term corticosterone manipulations via injectable gelling material, J. Exp. Biol., 210, 2859, 10.1242\u002Fjeb.005348\nFuller, 2008, Garden bird feeding predicts the structure of urban avian assemblages, Divers. Distrib., 14, 131, 10.1111\u002Fj.1472-4642.2007.00439.x\nGreen, 2003, Urbanization impacts on habitat and bird communities in a Sonoran Desert ecosystem, Landscape Urban Plann., 63, 225, 10.1016\u002FS0169-2046(02)00195-0\nHattori, 2004, Comparison of total and free steroid hormones in dominant and subordinate male green anole lizards, Integ. Comp. Biol., 44, 565\nHazard, 2008, Intensity and duration of corticosterone response to stressful situations in Japanese quail divergently selected for tonic immobility, Gen. Comp. Endocrinol., 155, 288, 10.1016\u002Fj.ygcen.2007.05.009\nHeil, 2007, Avian responses to tourism in the biogeographically isolated high Cordoba Mountains, Argent. Biodivers. Conserv., 16, 1009, 10.1007\u002Fs10531-006-9040-y\nHerbert, 2006, Do corticosteroids damage the brain?, J. Neuroendocrinol., 18, 393, 10.1111\u002Fj.1365-2826.2006.01429.x\nHolberton, 2003, Modulating the corticosterone stress response: a mechanism for balancing individual risk and reproductive success in arctic-breeding sparrows?, Auk, 120, 1140, 10.1642\u002F0004-8038(2003)120[1140:MTCSRA]2.0.CO;2\nHope, 2003, Socioeconomics drive urban plant diversity, Proci. Natl. Acad. Sci. USA., 100, 8788, 10.1073\u002Fpnas.1537557100\nHull, 2007, Effects of corticosterone treatment on growth, development, and the corticosterone response to handling in young Japanese quail, Comp. Biochem. Physiol. A, 148, 531, 10.1016\u002Fj.cbpa.2007.06.423\nJohnson, 1996, Canyon Towhee\nKark, 2007, Living in the city: can anyone become an ‘urban exploiter’?, J. Biogeogr., 34, 638, 10.1111\u002Fj.1365-2699.2006.01638.x\nLandys, 2006, Actions of glucocorticoids at a seasonal baseline as compared to stress-related levels in the regulation of periodic life processes, Gen. Comp. Endocrinol., 148, 132, 10.1016\u002Fj.ygcen.2006.02.013\nLendvai, 2007, Reproduction and modulation of the stress response: An experimental test in the House Sparrow, Proc. R. Soc. B, 274, 391, 10.1098\u002Frspb.2006.3735\nLongcore, 2004, Ecological light pollution, Front. Ecol. Env., 2, 191, 10.1890\u002F1540-9295(2004)002[0191:ELP]2.0.CO;2\nLove, 2004, Mediation of a corticosterone-induced reproductive conflict, Horm. Behav., 46, 59, 10.1016\u002Fj.yhbeh.2004.02.001\nLowther, 1992, House Sparrow\nLynn, 2003, Short-term fasting affects locomotor activity, corticosterone, and corticosterone binding globulin in a migratory songbird, Horm. Behav., 43, 150, 10.1016\u002FS0018-506X(02)00023-5\nMarkel, 2007, Neuroendocrine profiling in inherited stress-induced arterial hypertension rat strain with stress-sensitive arterial hypertension, J. Endocrinol., 195, 439, 10.1677\u002FJOE-07-0254\nMartin, 2005, Corticosterone suppresses cutaneous immune function in temperate but not tropical House Sparrows, Passer domesticus, Gen. Comp. Endocrinol., 140, 126, 10.1016\u002Fj.ygcen.2004.10.010\nMcEwen, 1998, Stress, adaptation, and disease—allostasis and allostatic load, Neuroimmunomodulation, 840, 33\nMcEwen, 2001, Plasticity of the hippocampus: Adaptation to chronic stress and allostatic load, Role Neural Plast. Chem. Intolerance, 933, 265\nMcEwen, 1997, The role of adrenocorticoids as modulators of immune function in health and disease: neural, endocrine and immune interactions, Brain Res. Rev., 23, 79, 10.1016\u002FS0165-0173(96)00012-4\nMcLean, 2005, If you can’t stand the heat, stay out of the city: Thermal reaction norms of chitinolytic fungi in an urban heat island, J. Therm. Biol., 30, 384, 10.1016\u002Fj.jtherbio.2005.03.002\nMeddle, 2003, Modulation of the hypothalamic–pituitary–adrenal axis of an arctic-breeding polygynandrous songbird, the Smith’s Longspur, Calcarius pictus, Proc. R. Soc. B, 270, 1849, 10.1098\u002Frspb.2003.2455\nMennechez, 2006, Effect of urbanisation on habitat generalists: starlings not so flexible?, Oecologica, 30, 182, 10.1016\u002Fj.actao.2006.03.002\nMoore, 2003, Stress, reproduction, and adrenocortical modulation in amphibians and reptiles, Horm. Behav., 43, 39, 10.1016\u002FS0018-506X(02)00038-7\nMurphy, 1992, Energy and nutrient use during moult by white-crowned sparrows Zonotrichia leucophrys gambelii, Ornis Scand., 23, 304, 10.2307\u002F3676654\nOrchinik, 2000, Distinct specificity for corticosteroid binding sites in amphibian cytosol, neuronal membranes, and plasma, Gen. Comp. Endocrinol., 118, 284, 10.1006\u002Fgcen.2000.7462\nOrlando, 2001, A re-examination of variation associated with environmentally stressed organisms, Human Reprod. Update, 7, 265, 10.1093\u002Fhumupd\u002F7.3.265\nOwen-Ashley, 2004, Examining the indirect pathways of testosterone-induced immunosuppression in male songbirds. I. Effects of corticosterone and estradiol on acquired immune function, Integ. Comp. Biol., 44, 616\nPartecke, 2007, Increased sedentariness in European Blackbirds following urbanization: a consequence of local adaptation?, Ecology, 88, 882, 10.1890\u002F06-1105\nPartecke, 2006, Stress and the city: urbanization and its effects on the stress physiology in European Blackbirds, Ecology, 87, 1945, 10.1890\u002F0012-9658(2006)87[1945:SATCUA]2.0.CO;2\nPartecke, 2004, Differences in the timing of reproduction between urban and forest European Blackbirds (Turdus merula): result of phenotypic flexibility or genetic differences?, Proc. R. Soc. B, 271, 1995, 10.1098\u002Frspb.2004.2821\nPartecke, 2005, Underlying physiological control of reproduction in urban and forest-dwelling European Blackbirds Turdus merula, J. Avian Biol., 36, 295, 10.1111\u002Fj.0908-8857.2005.03344.x\nPetersen, 2006, Hyporesponsiveness to glucocorticoids in mice genetically deficient for the corticosteroid binding globulin, Mol. Cell. Biol., 26, 7236, 10.1128\u002FMCB.00400-06\nPyle, 1997\nRich, 2005, Exposure to chronic stress downregulates corticosterone responses to acute stressors, Am. J. Physiol., 288, 1628\nRodl, 2007, Tameness and stress physiology in a predator-naive island species confronted with novel predation threat, Proc. R. Soc. B, 274, 577, 10.1098\u002Frspb.2006.3755\nRomero, 2002, Seasonal changes in plasma glucocorticoid concentrations in free-living vertebrates, Gen. Comp. Endocrinol., 128, 1, 10.1016\u002FS0016-6480(02)00064-3\nRomero, 2005, Collecting baseline corticosterone samples in the field: is under three minutes good enough? Comp, Biochem. phys A., 140, 73, 10.1016\u002Fj.cbpb.2004.11.004\nRomero, 2008, Repeatability of baseline corticosterone concentrations. Gen, Comp. Endocrinol., 156, 27, 10.1016\u002Fj.ygcen.2007.10.001\nRomero, 2006, Corticosterone responses change seasonally in free-living House Sparrows (Passerdomesticus), Gen. Comp. Endocrinol., 149, 58, 10.1016\u002Fj.ygcen.2006.05.004\nRomero, 2008, Seasonal glucocorticoid responses to capture in wild free-living mammals, Am. J. Physiol., 294, 614\nRomero, 1997, Season and migration alters the corticosterone response to capture and handling in an arctic migrant, the White-crowned Sparrow (Zonotrichialeucophrysgambelii), Comp. Biochem. Physiol. C, 116, 171\nRomero, 2006, Corticosterone negatively impacts feather quality during molt, J. Ornith., 147, 58\nRomero, 2005, Corticosterone inhibits feather growth: potential mechanism explaining seasonal down regulation of corticosterone during molt, Comp. Biochem. Physiol. A, 142, 65, 10.1016\u002Fj.cbpa.2005.07.014\nRose, 2006, Spatio-temporal use of the urban habitat by feral pigeons (Columba livia), Behav. Ecol. Sociobiol., 60, 242, 10.1007\u002Fs00265-006-0162-8\nRosner, 2006, Sex steroids and the free hormone hypothesis, Cell, 124, 455, 10.1016\u002Fj.cell.2006.01.026\nRosner, 1991, Sex hormone binding globulin—anatomy and physiology of a new regulatory system, J. Steroid Biochem. Mol. Biol., 40, 813, 10.1016\u002F0960-0760(91)90307-Q\nSapolsky, 2000, How do glucocorticoids influence stress responses? Integrating permissive, suppressive, stimulatory, and preparative actions, Endocr. Rev., 21, 55, 10.1210\u002Fer.21.1.55\nSchoech, 2003, Does differential access to protein influence differences in timing of breeding of Florida Scrub-Jays (Aphelocomacoerulescens) in suburban and wildland habitats?, Auk, 120, 1114, 10.1642\u002F0004-8038(2003)120[1114:DDATPI]2.0.CO;2\nSchoech, 2007, Baseline and acute levels of corticosterone in Florida Scrub-Jays (Aphelocomacoerulescens): effects of food supplementation, suburban habitat, and year, Gen. Comp. Endocrinol., 154, 150, 10.1016\u002Fj.ygcen.2007.05.027\nSchoech, 2004, Corticosterone, nutrition, and timing of reproduction in Florida Scrub-Jays, Horm. Behav., 46, 121\nSeabury, 2005, Timing of fledging, body condition, and corticosteroid binding globulin in Laysan Albatross, Integ. Comp. Biol., 45, 1070\nShochat, 2004, Credit or debit? Resource input changes population dynamics of city-slicker birds, Oikos, 106, 622, 10.1111\u002Fj.0030-1299.2004.13159.x\nShultz, 2008, Spatial and temporal dynamics of corticosterone and corticosterone binding globulin are driven by environmental heterogeneity, Gen. Comp. Endocrinol., 155, 717, 10.1016\u002Fj.ygcen.2007.11.002\nSilverin, 1986, Corticosterone-binding proteins and behavioral-effects of high plasma-levels of corticosterone during the breeding period in the Pied Flycatcher, Gen. Comp. Endocrinol., 64, 67, 10.1016\u002F0016-6480(86)90029-8\nSlabbekoorn, 2003, Ecology: Birds sing at a higher pitch in urban noise—great tits hit the high notes to ensure that their mating calls are heard above the city’s din, Nature, 424, 267, 10.1038\u002F424267a\nSmall, 2007, Environmental regulation of the reproductive system in a flexibly breeding Sonoran Desert bird, the Rufous-winged Sparrow, Aimophila carpalis, Horm. Behav., 51, 483, 10.1016\u002Fj.yhbeh.2007.01.004\nSokal, 1995\nStrochlic, 2008, The effects of chronic psychological and physical stress on feather replacement in European Starlings (Sturnus vulgaris), Comp. Biochem. Physiol. A, 149, 68, 10.1016\u002Fj.cbpa.2007.10.011\nTarlow, 2007, Evaluating methods to quantify anthropogenic stressors on wild animals, Appl. Anim. Behav. Sci., 102, 429, 10.1016\u002Fj.applanim.2006.05.040\nTweit, 1996, Curve-billed Thrasher\nTweit, 1994, Abert’s Towhee\nVleck, 1993, Hormones, reproduction, and behavior in birds of the Sonoran Desert, 73\nVleck, 1984, Reproductive season and water-stress in a Sonoran Desert bird—the Curve-billed Thrasher, Am. Zool., 24, A5\nWada, 2006, Stress responses in tropical sparrows: Comparing tropical and temperate Zonotrichia, Physiol. Biochem. Zool., 79, 784, 10.1086\u002F505509\nWard, 2007, Characterization and quantification of corticosteroid-binding globulin in a southern toad, Bufoterrestris, exposed to coal-combustion-waste, Gen. Comp. Endocrinol., 152, 82, 10.1016\u002Fj.ygcen.2007.02.031\nWebb, 1978, Primary productivity and water use in native forest, grassland, and desert ecosystem, Ecology, 59, 1239, 10.2307\u002F1938237\nWhite, 2005, Non-uniform bird assemblages in urban environments: the influence of streetscape vegetation, Landscape Urban Plann., 71, 123, 10.1016\u002Fj.landurbplan.2004.02.006\nWingfield, 2005, The concept of allostasis: coping with a capricious environment, J. Mamm., 86, 248, 10.1644\u002FBHE-004.1\nWingfield, 2006, Control of physiological and behavioral responses to capricious environments, J. Exp. Zool., 305, 192\nWingfield, 1994, Seasonal changes of the adrenocortical responses to stress in redpolls, Acanthisflammea, in Alaska, J. Exp. Zool., 270, 372, 10.1002\u002Fjez.1402700406\nWingfield, 1998, Ecological bases of hormone-behavior interactions: the “emergency life history stage”, Am. 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Sci., 28, 764, 10.2108\u002Fzsj.28.764\nMita, 2011, Hormonal action of relaxin-like gonad-stimulating substance (GSS) on starfish ovaries in growing and fully grown states, Gen. Comp. Endocrinol., 153, 85, 10.1016\u002Fj.ygcen.2011.01.014\nMita, 2013, Contribution of de novo synthesis of Gαs-proteins to 1-methyladenine production in starfish ovarian follicle cells stimulated by relaxin-like gonad-stimulating substance, Biochem. Biophys. Res. Commun., 440, 798, 10.1016\u002Fj.bbrc.2013.10.038\nMita, 2007, Preliminary study on the receptor of gonad-stimulating substance (GSS) as a gonadotropin of starfish, Gen. Comp. Endocrinol., 153, 299, 10.1016\u002Fj.ygcen.2007.01.038\nMita, 2012, Participation of Gs-proteins in the action of relaxin-like gonad-stimulating substance (GSS) for 1-methyladenine production in starfish ovarial follicle cells, Gen. Comp. Endocrinol., 176, 432, 10.1016\u002Fj.ygcen.2011.11.010\nMita, 2009, A relaxin-like peptide purified from radial nerves induces oocyte maturation and ovulation in the starfish, Asterina pectinifera, Proc. Natl. Acad. Sci. U.S.A., 106, 9507, 10.1073\u002Fpnas.0900243106\nNagahama, 1995, Regulation of oocyte growth and maturation in fish, Curr. Top. Dev. Biol., 30, 103, 10.1016\u002FS0070-2153(08)60565-7\nPronin, 1992, Interaction between G-protein β and γ subunit types is selective, Proc. Natl. Acad. Sci. U.S.A., 89, 6220, 10.1073\u002Fpnas.89.13.6220\nSaitou, 1987, The neighbor-joining method: a new method for reconstructing phylogenetic trees, Mol. Biol. Evol., 4, 406\nScatchard, 1949, The attraction of proteins for small molecules and irons. Ann. N.Y, Acad. 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Comp. Endocrinol., 222, 10.1006\u002Fgcen.1994.1119\nAkazome, 1996, Molecular characteristics of the N-terminal region of the quail follitropin receptor, In Vivo, 10, 345\nAscoli, 1989, On the structure of the luteinizing hormone\u002Fchorionic gonadotropin receptor, Endocr. Rev., 10, 27, 10.1210\u002Fedrv-10-1-27\nCalvo, 1981, LH-stimulable adenylyl cyclase activity during the ovulatory cycle in granulosa cells of the three largest follicles and the postovulatory follicle of the domestic hen (Gallus domesticus, Biol. Reprod., 25, 805, 10.1095\u002Fbiolreprod25.4.805\nCalvo, 1983, Adenylyl cyclase system of the small preovulatory follicles of the domestic hen: Responsiveness to follicle-stimulating hormone and luteinizing hormone, Biol. Reprod., 29, 542, 10.1095\u002Fbiolreprod29.3.542\nChomczynski, 1993, A reagent for the single-step simultaneous isolation of RNA, DNA and proteins from cell and tissue samples, Biotechnology, 15, 532\nDufau, 1995, Structure and regulation of the luteinizing hormone receptor gene, J. Steroid Biochem. Mol. Biol., 53, 283, 10.1016\u002F0960-0760(95)00115-G\nDuncan, 1955, Multiple range and multiple F tests, Biometrics, 11, 1, 10.2307\u002F3001478\nEtches, 1981, Changes in the plasma concentrations of luteinizing hormone, progesterone, oestradiol and testosterone and in the binding of follicle-stimulating hormone to the theca of follicles during the ovulation cycle of the hen (Gallus domesticus, J. Endocrinol., 91, 11, 10.1677\u002Fjoe.0.0910011\nGilbert, 1977, A method for separating the granulosa cells, the basal lamina and the theca of the preovulatory ovarian follicle of the domestic fowl (Gallus domesticus, J. Reprod. Fertil., 50, 179, 10.1530\u002Fjrf.0.0500179\nGriswold, 1995, The molecular biology of the FSH receptor, J. Steroid Biochem. Mol. Biol., 53, 215, 10.1016\u002F0960-0760(95)00049-6\nHoffman, 1991, Evidence that human chorionic gonadotropin\u002Fluteinizing hormone receptor down-regulation involves decreased levels of receptor messenger ribonucleic acid, Endocrinology, 128, 388, 10.1210\u002Fendo-128-1-388\nHuang, 1979, Synthesis of sex steroids in cellular components of chicken follicles, Biol. Reprod., 23, 454, 10.1095\u002Fbiolreprod20.3.454\nJohnson, 1993, Regulation of follicle differentiation by gonadotropins and growth factors, Poult. Sci., 72, 867, 10.3382\u002Fps.0720867\nJohnson, 1989, The G-protein family and their interaction with receptors, Endocr. Rev., 10, 317, 10.1210\u002Fedrv-10-3-317\nKato, 1995, Expression of P45017α-hydroxylasearomatase, Biol. Reprod., 52, 405, 10.1095\u002Fbiolreprod52.2.405\nKikuchi, 1992, Changes in luteinizing hormone receptors in the granulosa and theca layers of the ovarian follicle during follicular maturation in the Japanese quail, Gen. Comp. Endocrinol., 85, 124, 10.1016\u002F0016-6480(92)90180-R\nKost, 1983, The nucleotide sequence of the chick cytoplasmic β-actin gene, Nucleic Acids Res., 11, 8287, 10.1093\u002Fnar\u002F11.23.8287\nKowalski, 1991, Cytochrome P450 side-chain cleavage (P450scc) in the hen ovary. I. Regulation of P450scc messenger RNA levels and steroidogenesis in theca cells of developing follicles, Biol. Reprod., 45, 955, 10.1095\u002Fbiolreprod45.6.955\nLaPolt, 1990, Gonadotropin-induced up- and down-regulation of rat ovarian LH receptor message levels during follicular growth, ovulation and luteinization, Endocrinology, 126, 3277, 10.1210\u002Fendo-126-6-3277\nLaPolt, 1991, Ligand-induced down-regulation of testicular and ovarian luteinizing hormone (LH) receptors is proceded by tissue-specific inhibition of alternatively processed LH receptor transcripts, Mol. Endocrinol., 5, 397, 10.1210\u002Fmend-5-3-397\nLaPolt, 1992, Gonadotropin-induced up- and down-regulation of ovarian follicle-stimulating hormone (FSH) receptor gene expression in immature rats: Effects of pregnant mare's serum gonadotropin, human chorionic gonadotropin, and recombinant FSH, Endocrinology, 130, 1289\nMarrone, 1985, Decreased androstenedione production with increased follicular maturation in theca cells from the domestic hen (Gallus domesticus, J. Reprod. Fertil., 74, 543, 10.1530\u002Fjrf.0.0740543\nMcFarland, 1989, Lutropin-choriogonadotropin receptor: An unusual member of the G-protein-coupled receptor family, Science, 245, 494, 10.1126\u002Fscience.2502842\nRannikki, 1995, Ontogeny of follicle-stimulating hormone receptor gene expression in the rat testis and ovary, Mol. Cell. Endocrinol., 107, 199, 10.1016\u002F0303-7207(94)03444-X\nRichards, 1980, Maturation of ovarian follicles: Actions and interactions of pituitary and ovarian hormones on follicular cell differentiation, Physiol. Rev., 60, 51, 10.1152\u002Fphysrev.1980.60.1.51\nRitzhaupt, 1985, A decrease in FSH receptors of granulosa cells during follicular maturation in the domestic hen, J. Endocrinol., 115, 303, 10.1677\u002Fjoe.0.1150303\nSanger, 1977, DNA sequencing with chain-terminating inhibitors, Proc. Natl. Acad. Sci. USA, 74, 5463, 10.1073\u002Fpnas.74.12.5463\nSegaloff, 1990, Structure of the lutropin\u002Fchoriogonadotropin receptor, Rec. Prog. Horm. Res., 46, 261\nSokka, 1992, Functional LH receptor appears in the neonatal rat ovary after changes in the alternative splicing pattern of the LH receptor mRNA, Endocrinology, 130, 1738\nTilly, 1991, Cytochrome P450 side-chain cleavage (P450scc) in the hen ovary. II. P450scc messenger RNA, immunoreactive protein, and enzyme activity in developing granulosa cells, Biol. Reprod., 45, 967, 10.1095\u002Fbiolreprod45.6.967\nTilly, 1991, Stage of ovarian follicular development associated with the initiation of steroidogenic competence in avian granulosa cells, Biol. Reprod., 44, 305, 10.1095\u002Fbiolreprod44.2.305\nVihko, 1992, Expression of testicular messenger ribonucleic acid for luteinizing hormone receptor in the rat: Developmental regulation of multiple transcripts during postnatal life, Biol. Reprod., 46, 1016, 10.1095\u002Fbiolreprod46.6.1016\nWang, 1991, Multiple luteinizing hormone\u002Fchorionic gonadotropin receptor messenger ribonucleic acid transcripts, Endocrinology, 129, 133, 10.1210\u002Fendo-129-1-133\nZadworny, 1989, Gonadotropin-stimulated estradiol production in small ovarian follicles of the hen is suppressed by physiological concentrations of prolactin in vitro, Gen. Comp. 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Rev., 26, 541, 10.1152\u002Fphysrev.1946.26.4.541",{"doi":1750},"10.1152\u002Fphysrev.1946.26.4.541",{"id":18,"text":1752,"url":1753,"identifiers":1754},"Cantalupo, 2008, Expression of preprotachykinin-A mRNA isoforms and substance P production in T lymphocytes of human healthy subjects, Neurosci. 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Pept., 125, 201, 10.1016\u002Fj.regpep.2004.09.003","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0167011504003520",{"doi":1855},"10.1016\u002Fj.regpep.2004.09.003",{"id":18,"text":1857,"url":1858,"identifiers":1859},"Sahu, 1988, Neuropeptide K suppresses feeding in the rat, Regul. Pept., 23, 135, 10.1016\u002F0167-0115(88)90021-3","https:\u002F\u002Fdoi.org\u002F10.1016\u002F0167-0115(88)90021-3",{"mag":1860,"openalex":1861,"pm":1862,"doi":1863},"2032418424","W2032418424","3231743","10.1016\u002F0167-0115(88)90021-3",{"id":18,"text":1865,"url":1866,"identifiers":1867},"Tachibana, 2007, The anorexic effect of alpha-melanocyte-stimulating hormone is mediated by corticotrophin-releasing factor in chicks, Comp. Biochem. Physiol. A Mol. Integr. 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Pept., 22, 184, 10.1016\u002F0167-0115(88)90404-1","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002F016701159390085M",{"doi":1885},"10.1016\u002F0167-0115(93)90085-m",{"id":1887,"text":1888,"url":1889,"identifiers":1890},"395d60a3-3e50-4577-8971-25f285d1f3f9","Valassi, 2008, Neuroendocrine control of food intake, Nutr. Metab. Cardiovasc. 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