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Selected chemical analysis of follicular fluid at different developmental stages, Biol. Reprod., 15, 321, 10.1095\u002Fbiolreprod15.3.321\nCheng, 1985, In vitro fertilization of farm animal oocytes\nCheng, 1986, In vitro fertilization of pig and sheep oocytes, Theriogenology, 25, 146, 10.1016\u002F0093-691X(86)90200-1\nChomczynski, 1987, Single-step method of RNA isolation by acid guanidinium thiocyanate-phenol-chloroform extraction, Anal. Biochem., 162, 156, 10.1016\u002F0003-2697(87)90021-2\nEavenson, 1967, Transport systems for neutral amino acids in the pigeon erythrocyte, J. Biol. Chem., 242, 5386, 10.1016\u002FS0021-9258(18)99439-1\nEllington, 1990, Bovine 1-2-cell embryo development using a simple medium in three oviduct epithelial cell coculture systems, Biol. Reprod., 43, 97, 10.1095\u002Fbiolreprod43.1.97\nEyestone, 1989, Co-culture of early cattle embryos to the blastocyst stage with oviductal tissue or in conditioned medium, J. Reprod. Fertil., 85, 715, 10.1530\u002Fjrf.0.0850715\nFry, 1970, Patterns and rates of protein synthesis in sea urchin embryos. I. Uptake and incorporation of amino acids during the first cleavage cycle, Dev. Biol., 21, 105, 10.1016\u002F0012-1606(70)90064-3\nGandolfi, 1989, Effect of oviductal environment on embryonic development, J. Reprod. Fertil., Suppl., 38, 107\nGardner, 1993, Amino acids and ammonium regulate mouse embryo development in culture, Biol. Reprod., 48, 377, 10.1095\u002Fbiolreprod48.2.377\nHiraga, 1980, The mitochondrial glycine cleavage system, J. Biol. Chem., 255, 11664, 10.1016\u002FS0021-9258(19)70183-5\nIritani, 1974, Secretion rates and chemical composition of oviduct and uterine fluids in sows, J. Anim. Sci., 39, 582, 10.2527\u002Fjas1974.393582x\nJaszczak, 1972, Concentration gradients of amino acids between the uterine and blastocoelic fluid in the rabbit, Fertil. 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Reprod., 48, 833, 10.1095\u002Fbiolreprod48.4.833\nNagai, 1990, Effect of oviduct cells on the incidence of polyspermy in pig eggs fertilized in vitro, Mol. Reprod. Dev., 26, 377, 10.1002\u002Fmrd.1080260413\nNagai, 1988, In-vitro fertilization of pig oocytes by frozen boar spermatozoa, J. Reprod. Fertil., 84, 585, 10.1530\u002Fjrf.0.0840585\nOkamura-Ikeda, 1991, Isolation and sequence determination of cDNA encoding T-protein of the glycine cleavage system, J. Biol. Chem., 266, 4917, 10.1016\u002FS0021-9258(19)67736-7\nPinyopummintr, 1991, In vitro-matured\u002Fin vitro-fertilized bovine oocytes can develop into morulae\u002Fblastocysts in chemically defined, protein-free culture media, Biol. Reprod., 45, 736, 10.1095\u002Fbiolreprod45.5.736\nPursel, 1985, Cleavage of pig embryos after labelling with fluorescent dyes, Theriogenology, 24, 693, 10.1016\u002F0093-691X(85)90168-2\nRexroad, 1989, Coculture of domestic animal embryos, Theriogenology, 31, 105, 10.1016\u002F0093-691X(89)90568-2\nSambrook, 1989, 7.19\nSambrook, 1989, 7.23\nSambrook, 1989, 8.60\nSambrook, 1989, 14.18\nSchultz, 1981, Endogenous amino acid pool sizes in mouse eggs and preimplantation embryos, J. Reprod. Fertil., 61, 387, 10.1530\u002Fjrf.0.0610387\nSomero, 1986, Protons, osmolytes, and fitness of internal milieu for protein function, Am. J. Physiol., 251, R197\nThibodeaux, 1992, Evaluating an in vitro culture system of bovine uterine and oviduct epithelial cells for subsequent embryo co-culture, Reprod. Fertil. Dev., 4, 573, 10.1071\u002FRD9920573\nVan Winkle, 1990, Glycine protects preimplantation mouse conceptuses from a detrimental effect on development of the inorganic ions in oviductal fluid, J. 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Genet., 116, 507, 10.1007\u002Fs00439-005-1271-6\nWu, 2014, Determination of the novel genetic variants of goat STAT5A gene and their effects on body measurement traits in two Chinese native breeds, Small Rumin. Res., 121, 232, 10.1016\u002Fj.smallrumres.2014.09.002\nYang, 2016, Application of mathematical expectation (ME) strategy for detecting low frequency mutations: an example for evaluating 14-bp insertion\u002Fdeletion (indel) within the bovine PRNP gene, Prion, 10, 409, 10.1080\u002F19336896.2016.1211593\nYin, 2015, Coexpression of gene Oct4 and Nanog initiates stem cell characteristics in hepatocellular carcinoma and promotes epithelial-mesenchymal transition through activation of Stat3\u002FSnail signaling, J. Hematol. Oncol., 8, 23, 10.1186\u002Fs13045-015-0119-3\nZang, 2016, Identification of a 13bp indel polymorphism in the 3'-UTR of DGAT2 gene associated with backfat thickness and lean percentage in pigs, Gene, 576, 729, 10.1016\u002Fj.gene.2015.09.047\nZhang, 2014, Identification and genetic effect of a variable duplication in the promoter region of the cattle ADIPOQ gene, Anim. 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Uterine cytology, 246\nCausey, 2006, Making sense of equine uterine infections: the many faces of physical clearance, Vet. J., 172, 405, 10.1016\u002Fj.tvjl.2005.08.005\nCouto, 1984, Technique and interpretation of cervical and endometrial cytology in the mare, Equine Vet. Sci., 4, 265, 10.1016\u002FS0737-0806(84)80064-7\nCouto, 1985, Intrauterine inoculation of a bacteria-free filtrate of streptococcus zooepidemicus in clinically normal and infected mares, Equine Vet. Sci., 5, 81, 10.1016\u002FS0737-0806(85)80053-8\nCrickman, 1986, Equine endometrial cytology: a review of techniques and interpretations, Vet. Med., 650\nDascanio, 2003, Endometrial cytology, 226\nDascanio, 1997, How to perform and interpret uterine cytology, Proc. Am. Assoc. Equine Pract., 182\nDixon, 1993, vols. 1 and 2\nHinrichs, 1988, Clinical significance of aerobic bacterial flora of the uterus, vagina, vestibule, and clitorial fossa of clinically normal mares, J. Am. Med. Assoc., 193, 72\nHughes, 1980, The estrous cycle and selected functional and pathologic ovarian abnormalities in the mare, Vet. Clin. North Am. Large Anim. Pract., 2, 295\nKasimanickam, 1999, A comparison of the cytobrush and uterine lavage technique to evaluate endometrial cytology in postpartum dairy cows, 6\nKatila, 1988, Evaluation of the post-partum mare in relation to foal heat breeding. II. Uterine swabbing and biopsies, Zentralbl. Veterinarmed. A, 35, 331, 10.1111\u002Fj.1439-0442.1988.tb00043.x\nKenney, 1978, Cyclic and pathologic changes of the mare endometrium as detected by biopsy, with a note on early embryonic death, J. Am. Vet. Med. Assoc., 172, 241\nKlein, 2009, Analysis of the barrier function of vulvovaginal fold and cervix to ascending bacterial contamination of the mare's reproductive tract, Tierarztl. Prax., 2, 113, 10.1055\u002Fs-0038-1624055\nKnudsen, 1964, Endometrial cytology as a diagnostic aid in mares, Cornell Vet., 54, 415\nKnudsen, 1982, A combined cytologic and bacteriologic endometrial examination in the mare, Proc. Am. Assoc. Equine Pract., 431\nLa Cour, 1985, Relationship of endometrial cytology and fertility in the broodmare, Equine Pract., 7, 28\nLangoni, 1997, Aerobic, microaerobic and anaerobic bacteria in equine endometritis, Pferdeheilk, 13, 548\nLauer, 1977\nLeBlanc, 2007, Use of a low-volume uterine flush for diagnosing endometritis in chronically infertile mares, Theriogenology, 68, 403, 10.1016\u002Fj.theriogenology.2007.04.038\nLeBlanc, 2009, Clinical and subclinical endometritis in the mare: both threats to fertility, Reprod. Domest. Anim., 44, 10, 10.1111\u002Fj.1439-0531.2009.01485.x\nMattos, 1984, Bakteriologische und zytologische Untersuchungen von Uterusabstrichen beim Pferd, Prakt. Tierarzt., 10, 809\nMerkt, 1970, Die Entnahme von Proben für die bakteriologische Untersuchung des Genitalsekretes der Stute, ihre Beurteilung sowie Behandlungshinweise, Dtsch. Tierärztl. Wschr., 77, 489\nMoller Nielsen, 2005, Endometritis in the mare: a diagonstic study comparing cultures from swab and biopsy, Theriogenology, 64, 510, 10.1016\u002Fj.theriogenology.2005.05.034\nOverbeck, 2011, Comparison of three diagnostic methods to identify subclinical endometritis in mares, Theriogenology, 75, 1311, 10.1016\u002Fj.theriogenology.2010.12.002\nPohl, 1977, Die zytologische Untersuchung von Cervix-Tupferproben als diagnostisches Hilfsmittel bei der gynäkologischen Untersuchung und der zuchthygienischen Beurteilung von Stuten, Tierärztl. Umsch., 12, 634\nPurswell, 1989, Aerobic and anaerobic bacterial flora in the postpartum mare, Equine Vet. Sci., 9, 141, 10.1016\u002FS0737-0806(89)80020-6\nRicketts, 1981, Bacteriological examinations of the mare's cervix: techniques and interpretation of results, Vet. Rec., 108, 46, 10.1136\u002Fvr.108.3.46\nRicketts, 1987, Role of anaerobic bacteria in equine endometritis, J. Reprod. Fertil. Suppl., 35, 343\nRiddle, 2007, Relationship between uterine culture, cytology and pregnancy rates in a thoroughbred practice, Theriogenology, 68, 395, 10.1016\u002Fj.theriogenology.2007.05.050\nRoszel, 1988, Equine endometrial cytology, Vet. Clin. North Am. Equine Pract., 4, 247, 10.1016\u002FS0749-0739(17)30640-5\nSaltiel, 1987, Cervico-endometrial cytology and physiological aspects of the post-partum mare, J. Reprod. Fertil. Suppl., 35, 305\nShin, 1979, The bacteriological culture of equine uterine contents: in vitro sensitivity of organisms isolated and interpretation, J. Reprod. Fertil. Suppl., 27, 307\nTillmann, 1980, Die zytodiagnostische Interpretation der lokalen Abwehrreaktionen bei Genitalinfektionen der Stute, Tierärztl. Prax., 8, 211\nTroedsson, 1997, Diseases of the uterus, 517\nWaelchli, 1988, Comparison of histological, cytological and bacteriological findings in the endometrium of the mare, J. Vet. Med. A, 35, 442, 10.1111\u002Fj.1439-0442.1988.tb00056.x\nWaelchli, 1993, The relationship between cycle stage and results of uterine culture in the mare, J. Vet. Med. A, 40, 569, 10.1111\u002Fj.1439-0442.1993.tb00668.x\nWalter, 2011, Comparison of eosin-thiazin and Papanicolaou–Shorr staining for endometrial cytologies of broodmares. Technical note, Tierarztl. Prax. Ausg. G Grosstiere Nutztiere, 39, 358, 10.1055\u002Fs-0038-1623083\nWalter, 2007, Exfoliative endometrial cytology as a diagnostic aid in the gynaecological examination of broodmares, Pferdeheilk, 23, 481, 10.21836\u002FPEM20070502\nWalter, 2009, Exfoliative Endometriumszytologie bei der Zuchtsute – Probenentnahme und Befundinterpretation, Tierarztl. Prax. Ausg. G Grosstiere Nutztiere, 37, 409, 10.1055\u002Fs-0038-1623830\nWatson, 2000, Post-breeding endometritis in the mare, Anim. Reprod. Sci., 60–61, 221, 10.1016\u002FS0378-4320(00)00110-X\nWehrend, 2004, Investigations on the suitability of intracervical and intrauterine sampling for bacteriological investigations and cytological assessment in mares, Wien. Tierärztl. Monatsschr., 91, 72\nWingfield Digby, 1978, The technique and clinical application of endometrial cytology in mares, Equine Vet. 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Chim. Acta, 7, 199, 10.1016\u002F0009-8981(62)90010-4\nBergmeyer, 1986, Approved recommendation (1985) on IFCC methods for the measurement of catalytic concentration of enzymes. Part 2. IFCC method for aspartate aminotransferase (l-aspartate: 2-oxoglutarate aminotransferase, EC 2.6.1.1), J. Clin. Chem. Clin. Biochem., 24, 497\nBradford, 1975, A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding, Anal. Biochem., 72, 248, 10.1016\u002F0003-2697(76)90527-3\nBrown, 1971, Some factors affecting loss of intracellular enzymes from spermatozoa, Cryobiology, 8, 220, 10.1016\u002F0011-2240(71)90030-7\nCiereszko, 1994, Relationship between biochemical constituents of fish semen and fertility: the effect of short-term storage, Fish Physiol. Biochem., 12, 357, 10.1007\u002FBF00004300\nCiereszko, 1989, Isolation and characteristics of aspartate aminotransferase from boar spermatozoa, Int. J. 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