[1] Guy C. The influence of temperature extremes on gene expression, genomic structure, and the evolution of induced tolerance in plants[A]. In: Lerner H R. Plant Responses to Environmental Stresses[C]. New York,NY,USA:Marcel Dekker,1999:497-548
[2] Bray E A, Bailey-Serres J, Weretilnyk E. Responses to abiotic stresses[A]. In: Buchanan B, Gruissem W, Jones R. Biochemistry and Molecular Biology of Plants[C]. USA:ASPB Rockville,2000:1158-1203
[3] Maestri E, Klueva N, Perrotta C, et al. Molecular genetics of heat tolerance and heat shock proteins in cereals[J]. Journal of Plant Molecular Biology,2002,48(5):667-681
[4] Weis E, Berry J A. Plants and high temperature stress[J]. Symposia of the Society for Experimental Biology,1988,42(6):329-346
[5] Hoffman A A, Parsons P A. Evolutionary genetics and environmental stress[J]. Journal of Evolutionary Biology,1991,7(5):634-635
[6] Gong M, Li Y J, Chen S Z. Abscisic acid-induced thermotolerance in maize seedlings is mediated by calcium and associated with antioxidant systems[J]. Plant Physiology,1998,153(4):488-496
[7] Jameson P E, Murray B G. Abscisic Acid: Physiology and Biochemistry[J]. New Zealand Journal of Botany,1992,30(2):369-371
[8] Talanova V V, Titov A F. Endogenous abscisic acid content in cucumber leaves under the influence of unfavorable temperatures and salinity[J]. Journal of Experimental Botany,1994,45(7):1031-1033
[9] Eze J M O, Dumbroff E B, Thompson J E. Effects of temperature and moisture stress on the accumulation of abseisie acid in bean[J]. Physiologia Plantarum,1983,58(2):179-183
[10] Musatenko L I, Vedenicheva N P, Vasyuk V A, et al. Phytohormones in seedlings of maize hybrids differing in their tolerance to high temperature[J]. Russian Journal of Plant Physiology,2003,50(4):499-504
[11] Shakirova F M, Bezrukova M V, Shayakhmetov F. Effect of temperature shock on the dynamics of abscisic acid and wheat germ agglutinin accumulation in wheat cell culture[J]. Plant Growth Regulation,1996,19(1):85-87
[12] Vettakkorumakankav N N, Falk D, Saxena P, et al. A crucial role for gibberellins in stress protection of plants[J]. Plant Cell Physiology,1999,40(5):542-548
[13] Xu Y, Huang B R. Heat-induced leaf senescence and hormonal changes for thermal bentgrass and turf-type bentgrass species differing in heat tolerance[J]. Journal of the American Society for Horticultural Science,2007,132(2):185-192
[14] 毕玉芬,车伟光,顾垒. 德钦地区野生紫花苜蓿群落多样性特征及其来源分析[J]. 草地学报,2007,15(4):306-311
[15] 赵雁,毕玉芬,车伟光,等. 高温胁迫下紫花苜蓿品种胞质蛋白质变化的比较[J]. 中国草地学报,2013,35(4):13-18
[16] Veselov A P, Lobov V P, Olyunina L N. Phytohormones during heat shock and recovery[J]. Russian Journal of Plant Physiology,1998,45(9):611-616
[17] Robertson A J, Ishikawa M, Gusta L V, et al. Abscisic acid induced heat tolerance in Bromus inermis Leyss cell suspension cultures (heat stable, abscisic acid responsive polypeptides in comb ination with sucrose confer enhanced thermo-stability)[J]. Plant Physiology,1994,105(1):181-190
[18] Wang L J, Huang W D, Liu Y P, et al. Changes in salicylic and abscisic acid contents during heat treatment and their effect on thermotolerance of grape plants[J]. Russian Journal of Plant Physiology,2005,52(4):516-520
[19] Larkindale J, Knight M R. Protection against heat stress induced oxidative damage in Arabidopsis involves calcium, abscisic acid, ethylene, and salicylic acid[J]. Plant Physiology,2002,128(2):682-695
[20] Xiong L, Lee H, Ishitani M, et al. Regulation of osmotic stress-responsive gene expression by LOS6/ABA1 locus in Arabidopsis[J]. Journal of Biology Chemistry,2002,277(10):8588-8596
[21] Xu Y, Tian J, Gianfagna T, et al. Effects of SAG12-ipt expression on cytokinin production, growth and senescence of creeping bentgrass (Agrostis stolonifera L.) under heat stress[J]. Plant Growth Regulation,2009,57(3):281-291
[22] Zhang X Z, Ervin E H, Evanylo G K, et al. Impact of biosolids on hormone metabolism in drought-stressed tall fescue[J]. Crop Science,2009,49(5):1893-1901
[23] Pustovoitova T N, Zhdanova N E, Zholkevich V N. Changes in the levels of IAA and ABA in cucumber leaves under progressive soil drought[J]. Russian Journal of Plant Physiology,2004,51(4):513-517
[24] Lu Z X. Effect of heat stress on indole-3-acetic acid and abscisic acid contents in soybean of various developmental stages[J]. Developmental and Reproductive Biology,1999,18(1):83-93
[25] 路子显,曲建波,傅鸿仪,等. 大豆热激蛋白与内源激素变化的研究[J]. 大豆科学,1998,17(4):318-325
[26] Ofir M, Gross Y, Bangerth F, et al. High temperature effects on pod and seed production as related to hormone levels and abscission of reproductive structures in common bean (Phaseolus vulgaris L.)[J]. Scientia Horticulturae,1993,55(3):201-211
[27] 卢欣石,王铁梅. 中国苜蓿92个地方品种资源秋眠性评定[A]. 见:第二届中国苜蓿发展大会[C]. 北京:中国草业学会,2003
[28] Teale W D, Ditengou F A, Dovzhenko A D, et al. Auxin as a model for the integration of hormonal signal processing and transduction[J]. Molecular Plant,2008,2(1):229-237 |