Characterization of the salt stress vulnerability of three invasive freshwater plant species using a metabolic profiling approach
Tài liệu tham khảo
Aiken, 1981, A conspectus of Myriophyllum (haloragaceae) in North America, Brittonia, 33, 57, 10.2307/2806578
Allakhverdiev, 2000, Ionic and osmotic effects of NaCl-induced inactivation of photosystems I and II in Synechococcus sp, Plant Physiol, 123, 1047, 10.1104/pp.123.3.1047
Anderson, 1966, The mineral content of Myriophyllum spicatum L. in relation to its aquatic environment, Ecology, 47, 844, 10.2307/1934270
Benaroya, 2004, l-Myo-inositol 1-phosphate synthase in the aquatic fern Azolla filiculoides, Plant Physiol Biochem, 42, 97, 10.1016/j.plaphy.2003.11.008
Bouche, 2004, GABA in plants: just a metabolite?, Trends Plant Sci, 9, 110, 10.1016/j.tplants.2004.01.006
Cha-um, 2009, Effect of salt stress on proline accumulation, photosynthetic ability and growth characters in two maize cultivars, Pak J Bot, 41, 87
Cheeseman, 1988, Mechanisms of salinity tolerance in plants, Plant Physiol, 87, 547, 10.1104/pp.87.3.547
Cook, 1985, A revision of the genus Elodea (hydrocharitaceae), Aquat Bot, 21, 111, 10.1016/0304-3770(85)90084-1
Dandelot, 2008, Allelopathic potential of two invasive alien Ludwigia spp, Aquat Bot, 88, 311, 10.1016/j.aquabot.2007.12.004
Di Martino, 1999, Photorespiration rate in Spinach leaves under moderate NaCl stress, Photosynthetica, 36, 233, 10.1023/A:1007099627285
Dittami, 2011, Integrative analysis of metabolite and transcript abundance during the short-term response to saline and oxidative stress in the brown alga Ectocarpus siliculosus, Plant Cell Environ, 34, 629, 10.1111/j.1365-3040.2010.02268.x
Dutartre, 2007, 128
Everard, 1994, Gas exchange and carbon partitioning in the leaves of celery (Apium graveolens L.) at various levels of root zone salinity, Plant Physiol, 106, 281, 10.1104/pp.106.1.281
Galvan-Ampudia, 2011, Salt stress signals shape the plant root, Curr Opin Plant Biol, 14, 296, 10.1016/j.pbi.2011.03.019
Gilbert, 1998, Amino acid accumulation in sink and source tissues of Coleus blumei Benth. during salinity stress, J Exp Bot, 49, 107, 10.1093/jxb/49.318.107
Greenway, 1980, Mechanisms of salt tolerance in non halophytes, Annu Rev Plant Physiol, 31, 149, 10.1146/annurev.pp.31.060180.001053
Grillas, 2004, Bilan des actions de gestions de Ludwigia grandiflora et L. peploides (jussies) dans les espaces protégées du languedoc-Roussillon, vol. 62, 148
Haller, 1974, Effects of salinity on growth of several aquatic macrophytes, Ecology, 55, 891, 10.2307/1934427
Hare, 1988, Dissecting the roles of osmolyte accumulation during stress, Plant Cell Environ, 21, 535, 10.1046/j.1365-3040.1998.00309.x
Hart, 1991, A review of the salt sensitivity of the Australian fresh-water biota, Hydrobiologia, 210, 105, 10.1007/BF00014327
Hoagland, 1950, The water-culture method for growing plants without soil, Calif Agric Exp Station—Circ, 347, 1
Hunt, 1990
Hussner, 2009, Growth and photosynthesis of four invasive aquatic plant species in Europe, Weed Res, 49, 506, 10.1111/j.1365-3180.2009.00721.x
Hussner, 2010, Growth response and root system development of the invasive Ludwigia grandiflora and Ludwigia peploides to nutrient availability and water level, Arch Hydrobiol, 177, 189, 10.1127/1863-9135/2010/0177-0189
Intergovernmental Panel on Climate Change (IPCC), 2001
Ishitani, 1996, Coordinate transcriptional induction of myo-inositol metabolism during environmental stress, Plant J, 9, 537, 10.1046/j.1365-313X.1996.09040537.x
Iwamoto, 2005, Salt-regulated mannitol metabolism in algae, Marine Biotechnology, 7, 407, 10.1007/s10126-005-0029-4
Jampeetong, 2009, Effect of NaCl salinity on growth, morphology, photosynthesis and proline accumulation of Salvinia natans, Aquat Bot, 91, 181, 10.1016/j.aquabot.2009.05.003
Janauer, 1977, Amino acids in aquatic macrophytes, Z Pflanzenphysiol, 82, 45, 10.1016/S0044-328X(77)80131-1
Joshi, 2013, Arabidopsis plants constitutively overexpressing a myo-inositol 1-phosphate synthase gene (SaINO1) from the halophyte smooth cordgrass exhibits enhanced level of tolerance to salt stress, Plant Physiol Biochem, 65, 61, 10.1016/j.plaphy.2013.01.009
Kähkönen, 1997, Analysing heavy metal concentrations in the different parts of Elodea canadensis and surface sediment with PCA in two different boreal lake in southern Finland, Chemosphere, 35, 2645, 10.1016/S0045-6535(97)00337-8
Klages, 1999, Accumulation of myo-inositol in Actinidia seedlings subjected to salt stress, Ann Bot, 84, 521, 10.1006/anbo.1999.0946
Larher, 1993, Effectors for the osmoinduced proline response in higher plants, Plant Physiol Biochem, 31, 911
Les, 1999, Introduction of nonindigenous aquatic vascular plants in southern New England: a historical perspective, Biol Invasions, 1, 281, 10.1023/A:1010086232220
Lichtenthaler, 1987, Chlorophylls and carotenoids: pigments of photosynthetic biomembranes, Methods Enzymol, 148, 350, 10.1016/0076-6879(87)48036-1
Lokhande, 2010, Biochemical, physiological and growth changes in response to salinity in callus cultures of Sesuvium portulacastrum L, Plant Cell Tissue Organ Cult, 102, 17, 10.1007/s11240-010-9699-3
Maaroufi-Dguimi, 2011, An Arabidopsis mutant disrupted in ASN2 encoding asparagine synthetase 2 exhibits low salt stress tolerance, Plant Physiol Biochem, 49, 623, 10.1016/j.plaphy.2011.03.010
May, 1998, Glutathione homeostasis in plants: implications for environmental sensing and plant development, J Exp Bot, 49, 649
McGregor, 2007, Monensin is not toxic to aquatic macrophytes at environmentally relevant concentrations, Arch Environ Contam Toxicol, 53, 541, 10.1007/s00244-007-0002-5
Mesleard, 1996, La végétation aquatique émergente, vol. 6, 1
Mišić, 2012, Sugars and acids invertase mediate the physiological response of Schenkia spicata root cultures to salt stress, J Plant Physiol, 169, 1281, 10.1016/j.jplph.2012.04.018
Munns, 2008, Mechanisms of salinity tolerance, Ann Rev Plant Biol, 59, 651, 10.1146/annurev.arplant.59.032607.092911
Nakamura, 2001, An isozyme of betaine aldehyde dehydrogenase in barley, Plant Cell Physiol, 42, 1088, 10.1093/pcp/pce136
Osmond, 1997, Too many photos: photorespiration, photoinhibition and photooxidation, Trends Plant Sci, 2, 119, 10.1016/S1360-1385(97)80981-8
Parida, 2005, Salt tolerance and salinity effects on plants: a review, Ecotoxicol Environ Saf, 60, 324, 10.1016/j.ecoenv.2004.06.010
Rengasamy, 2006, World salinization with emphasis on Australia, J Exp Bot, 57, 1017, 10.1093/jxb/erj108
Roessner, 2000, Simultaneous analysis of metabolites in potato tuber by gas chromatography–mass spectrometry, Plant J, 23, 131, 10.1046/j.1365-313x.2000.00774.x
Rout, 1998, Salinity tolerance in aquatic macrophytes: probable role of proline, the enzymes involved in its synthesis and C4 type of metabolism, Plant Sci, 136, 121, 10.1016/S0168-9452(98)00098-3
Rout, 1998, Effect of salinity on chlorophyll and proline contents in three aquatic macrophytes, Biol Plant, 40, 453, 10.1023/A:1001186502386
Samecka-Cymerman, 2003, Biomonitoring of water pollution with Elodea canadensis. A case study of three small Polish rivers with different levels of pollution, Water, Air Soil Pollut, 145, 139, 10.1023/A:1023632229312
Sanchez, 2011, Comparative functional genomics of salt stress in related model and cultivated plants identifies and overcomes limitations to translational genomics, PLoS One, 6, e17094, 10.1371/journal.pone.0017094
Sand-Jensen, 2000, An introduced vascular plant—the Canadian waterweed (Elodea canadensis), vol. 13, 96
Sculthorpe, 1967, 610
Sheppard, 2006, Top 20 environmental weeds for classical biological control in Europe: a review of opportunities, regulations and other barriers to adoption, Weed Res, 46, 93, 10.1111/j.1365-3180.2006.00497.x
Sickler, 2007, Response of mannitol producing Arabidopsis thaliana to abiotic stress, Funct Plant Biol, 34, 382, 10.1071/FP06274
Smith, 2009, Assessing changes in macrophytes assemblages with salinity in non-riverline wetlands: a Bayesian approach, Aquat Bot, 90, 137, 10.1016/j.aquabot.2008.08.004
Souza, 2013, Restoration of polluted waters by phytoremediation using Myriophyllum aquaticum (Vell.) Verdc Haloragaceae, J Environ Manage, 120, 5, 10.1016/j.jenvman.2013.01.029
Strizhov, 1997, Differential expression of two P5CS genes controlling proline accumulation during saltstress requires ABA and is regulated by ABA1, ABI1 and AXR2 in Arabidopsis, Plant J, 12, 557, 10.1046/j.1365-313X.1997.00557.x
Szabados, 2011, Plant in extreme environments: importance of protective compounds in stress tolerance, Adv Bot Res, 57, 105, 10.1016/B978-0-12-387692-8.00004-7
Szabados, 2010, Proline: a multifunctional amino acid, Trends Plant Sci, 15, 89, 10.1016/j.tplants.2009.11.009
Thiébaut, 2010, Accumulation of metals in Elodea canadensis and Elodea nuttallii: implications for plant-macroinvertebrate interactions, Sci Total Environ, 408, 5499, 10.1016/j.scitotenv.2010.07.026
Thouvenot, 2012, Responses of two invasive macrophyte species to salt, Hydrobiologia, 686, 213, 10.1007/s10750-012-1013-4
Tripathi, 2007, Salinity induced changes in proline and betaine contents and synthesis in two aquatic macrophytes differing in salt tolerance, Biol Plant, 51, 110, 10.1007/s10535-007-0022-z
Upadhyay, 2005, Salt tolerance of two aquatic macrophytes Pistia stratiotes and Salvinia molesta, Biol Plant, 49, 157, 10.1007/s10535-005-7159-4
Van Kempen, 2013, Responses of the Azolla filiculoides Stras.–Anabaena azollae Lam. association to elevated sodium chloride concentrations: amino acids as indicators for salt stress and tipping point, Aquat Bot, 106, 20, 10.1016/j.aquabot.2012.12.006
West, 2004, Cell cycle modulation in the response of the primary root of Arabidopsis to salt stress, Plant Physiol, 135, 1050, 10.1104/pp.104.040022
Zhifang, 2003, Expression of a celery mannose 6-phosphate reductase in Arabidopsis thaliana enhances salt tolerance and induces biosynthesis of both mannitol and a glucosyl–mannitol dimmer, Plant Cell Environ, 26, 275, 10.1046/j.1365-3040.2003.00958.x
Zhu, 2005, Relationship between photorespiration and senescence of S. polyrhiza, Plant Sci, 168, 1625, 10.1016/j.plantsci.2005.02.015
Zhu, 2004, High level of endogenous l-serine initiates senescence in Spirodela polyrhiza, Plant Sci, 166, 1159, 10.1016/j.plantsci.2003.12.021