LU Min,LU Gui-qing.Research Progress on Abscisic Acid and Plant Abiotic Stress Tolerance[J].Northern Horticulture,2014,38(08):184-188.
脱落酸与植物非生物逆境抗性研究进展
- Title:
- Research Progress on Abscisic Acid and Plant Abiotic Stress Tolerance
- 文章编号:
- 1001-0009(2014)08-0184-05
- Keywords:
- abiotic stress; abscisic acid; biosynthesis; catabolism; plant tolerance; signaling transduction pathway
- 分类号:
- Q 945.78
- 文献标志码:
- A
- 摘要:
- 作为一种非常重要的植物激素,脱落酸(ABA)在应对环境胁迫和调控植物对非生物胁迫耐受性方面发挥了重要的作用。该文综述了ABA的生物合成和代谢途径、信号传导途径以及ABA在调控植物应对干旱胁迫、非干旱胁迫、盐胁迫等非生物胁迫中的作用;并对ABA分子合成机制和ABA在调控植物产生应对非生物胁迫抗性的分子机制等方面进行了展望。
- Abstract:
- As an important plant hormone,abscisic acid (ABA) plays a crucial role in abiotic stress response and tolerance of plants.In this paper,the biosynthesis and catabolism of ABA,the major ABA signaling pathway and its role in regulating plant tolerance to abiotic stress were described;and also ABA synthesis and molecular mechanisms and response to abiotic stress ABA generate resistance and other aspects of the molecular mechanisms in the regulation of the plant were discussed.
参考文献/References:
[1]Ma Y,Szostkiewicz I,Korte A,et al.Regulators of PP2C phosphatase activity function as abscisic acid sensors [J].Science,2009,324:1064-1068. [2]杨洪强,接玉玲.高等植物脱落酸的生物合成及其调控[J].植物生理学通讯,2001,37(5):457-462. [3]Kasahara H,Takei K,Ueda N,et al.Distinct isoprenoid origins of cis-and trans-zeatin biosyntheses in Arabidopsis[J].Journal of Biological Chemistry,2004,279:14049-14054. [4]陶均,李玲.高等植物脱落酸生物合成的酶调控[J].植物学通报,2002,19(6):675-683. [5]Nakashima?K,Yamaguchi-Shinozaki K.ABA signaling in stress-response?and seed development [J].Plant Cell Reports,2013,32:959-970. [6]Cutler A J,Krochko J E.Formation and breakdown of ABA[J].Trends in Plant Science,1999(4):472-478. [7]Krochko J E,Abrams G D,Loewen M K,et al.(+)-abscisic acid 8′-hydroxylase is a cytochrome P450 monooxygenase [J].Plant Physiology,1998,118:849-860. [8]Gillard D F,Walton D C.Abscisic acid metabolism by a cell-free preparation from Echinocystic lobata?liquid endosperm [J].Plant Physiology,1976,58:790-795. [9]Walton D C,Li Y.Abscisic acid biosynthesis and metabolism [G]//.PJ Davis.Plant Hormones.Dordrecht:Kluwer Acad,1995:140-157. [10]Kushiro T,Okamoto M,Nakabayashi K,et al.The Arabidopsis?cytochrome?P450 CYP707A encodes ABA 8-hydroxylases:key enzymes in ABA catabolism[J].The EMBO Journal,2004,23:1647-1656. [11]Saito S,Hirai N,Matsumoto C,et al.Arabidopsis?CYP707As encode (+)-abscisic acid 8-hydroxylase,a key enzyme in the oxidative catabolism of abscisic acid [J].Plant Physiology,2004,134:1439-1449. [12]Boyer G L,Zeevaart J A D.Isolation and quantitation of β-D-glucopyranosyl abscisate from leaves of Xanthium and spinach[J].Plant Physiology,1982,70:227-231. [13]Bray?E A,Zeevaart J A D.The compartmentation of abscisic acid and β-Dglucopyranosyl?abscisate in mesophyll cells [J].Plant Physiology,1985,79:719-722. [14]Hartung W,Sauter A,Hose E.Abscisic acid in the xylem:Where does it come from,where does it go to [J].Journal of Experimental Botany,2002,53:27-32. [15]Sauter A,Hartung W.Radial transport of abscisic acid conjugates in maize roots:its implication for long distance stress signals[J].Journal of Experimental?Botany,2000,51:929-935. [16]Fujita Y,Fujita M,Satoh R,et al.AREB1 is a transcription activator of novel ABRE dependent ABA signaling that enhances drought stress tolerance in Arabidopsis [J].Plant Cell,2005,17:3470-3488 [17]Yoshida T,Fujita Y,Sayama H,et al.AREB1,AREB2,and ABF3 are master transcription factors that cooperatively regulate ABRE-dependent ABA signaling involved in drought stress tolerance and require ABA for full activation [J].Plant Journal,2010,61:672-685. [18]Uno Y,Furihata T,Abe H,et al.Arabidopsis basic leucine zipper transcription factors involved in an abscisic acid-dependent signal transduction pathway under drought and high-salinity conditions[J].Proceedings of the National Academy of Sciences of the United State,2000,97:11632-11637. [19]Fujita Y,Nakashima K,Yoshida T,et al.Three SnRK2 protein kinases are the main positive regulators of abscisic acid signaling in response to water stress in Arabidopsis[J].Plant and Cell Physiology,2009,50:2123-2132. [20]Fujii?H,Verslues P E,Zhu J K.Identification of two protein kinases required?for abscisic acid regulation of seed germination,root growth,and gene expression in Arabidopsis [J].Plant Cell,2007,19:485-494. [21]Hirayama T,Shinozaki K.Perception and transduction of abscisic acid signals:keys to the function of the versatile plant hormone ABA [J].Trends in Plant Science,2007,12:343-351. [22]Chan Z.Expression profiling of ABA pathway transcripts indicates crosstalk between abiotic and biotic stress responses in Arabidopsis?[J].Genomics,2012,100:110-115. [23]Cutler S R,Rodriguez P L,Finkelstein R R,et al.Abscisic acid:emergence of a core signaling network [J].Annual Review of Plant Biology,2010,61:651-679. [24]Fujita?Y,Fujita M,Shinozaki K,et al.ABA-mediated transcriptional regulation in response to osmotic stress in plants [J].Journal of Plant Research,2011,124:509-525. [25]Nakashima K,Fujita Y,Katsura K,et al.Transcriptional regulation of ABI3-and ABA-responsive genes including RD29B and RD29A in seeds,germinating?embryos,and seedlings of?Arabidopsis [J].Plant Molecular Biology,2006,60:51-68. [26]Lynch?T,Erickson B J,Finkelstein R R.Direct interactions of ABA-insensitive(ABI)-clade protein phosphatase(PP)2Cs with calcium-dependent protein kinases and ABA response elementbinding bZIPs may contribute to turning off ABA response [J].Plant Molecular Biology,2012,80:647-658. [27]Bucholc M,Ciesielski A,Goch G,et al.SNF1-related protein kinases 2 are negatively regulated by a plant-specific calcium sensor[J].Journal of Biological?Chemistry,2011,286:3429-3441. [28]Yamaguchi-Shinozaki?K,Shinozaki K.Transcriptional regulatory networks?in cellular responses and tolerance to dehydration and cold stresses [J].Annual Review of Plant Biology, 2006,57:781-803. [29]Chakrabortee?S,Boschetti C,Walton L J,et al.Hydrophilic protein associated?with desiccation tolerance exhibits broad protein stabilization function[J].Proceedings of the National Academy of Sciences of the United State,2007,104:18073-18078. [30]贾瑞丰,杨曾奖,徐大平,等.干旱胁迫对降香黄檀幼苗生长及内源激素含量的影响[J].生态环境学报,2013,22(7):1136-1140. [31]陈博雯,刘海龙,蔡玲,等.干旱胁迫对油茶组培苗与实生苗内源激素含量的影响[J].经济林研究,2013,31(2):60-64. [32]孙志勇,季孔庶.干旱胁迫对杂交鹅掌楸无性系叶片内源激素含量的影响[J].安徽农业科学,2010,38(31):17362-17364. [33]周芳,刘恩世,孙海彦,等.前期干旱锻炼对木薯根系内源激素及可溶性糖含量的影响[J].热带作物学报,2013,34(3):486-494. [34]阮英慧,董守坤,刘丽君,等.干旱胁迫下外源脱落酸对大豆花期生理特性的影响[J].大豆科学,2012,31(3):385-389. [35]Thomashow M F.Plant cold acclimation:freezing tolerance genes and regulatory mechanisms [J].Annual Review of Plant Physiology and Plant Molecular Biology,1999,50:571-599. [36]Nayyar H,Bains T,Kumar S.Low temperature induced floral abortion in chickpea:relationship to abscisic acid and cryoprotectants in reproductive organs[J].Environmental and Experimental Botany,2004,52:219-231. [37]Xing W,Rajashekar C B.Glycine betaine involvement in freezing tolerance and water stress in Arabidopsis thaliana [J].Environmental and Experimental Botany,2001,46:21-28. [38]Toldi O,Tuba Z,Scott P.Vegetative desiccation tolerance:Is it a goldmine for bioengineering crops [J].Plant Science,2009,176:187-199. [39]王兴,于晶,杨阳,等.低温条件下不同抗寒性冬小麦内源激素的变化[J].麦类作物学报,2009,29(5):827-831. [40]黄杏,陈明辉,杨丽涛,等.低温胁迫下外源ABA 对甘蔗幼苗抗寒性及内源激素的影响[J].华中农业大学学报,2013,32(4):6-11. [41]师晨娟,刘勇,荆涛.植物激素抗逆性研究进展[J].世界林业研究,2006,5(19):21-26. [42]刘丽杰,苍晶,李怀伟,等.外源ABA对冬小麦越冬期呼吸代谢关键酶与糖代谢的影响[J].麦类作物学报,2013,33(1):65-72. [43]田丹青,葛亚英,刘晓静,等.外源ABA 对低温胁迫下蝴蝶兰叶片生理指标的影响[J].浙江农业学报,2013,25(1):68-72. [44]Munns[1]Ma Y,Szostkiewicz I,Korte A,et al.Regulators of PP2C phosphatase activity function as abscisic acid sensors [J].Science,2009,324:1064-1068. [45]闫艳华,姜国斌,侯和胜,等.杨树内源激素对NaCl胁迫的响应[J].西北农业学报,2011,20(9):160-164. [46]张敏,蔡瑞国,李慧芝,等.盐胁迫环境下不同抗盐性小麦品种幼苗长势和内源激素的变化[J].生态学报,2008,28(1):310-320. [47]白丽萍,周宝利,霍尚峰,等.盐胁迫下嫁接茄幼苗渗透调节能力和内源ABA含量的变化[J].北方园艺,2009(4):1-3. [48]汤日圣,童红玉,唐现洪,等.脱落酸提高水稻秧苗耐盐性的效果[J].江苏农业学报,2012,28(4):910-911. [49]赵许朋,杨立,杨双燕,等.ABA对盐胁迫下番茄幼苗生理特性的影响[J].安徽农业科学,2010,38(27):14833-14835. [50]杨跃霞,刘大林,韩建国,等.外源ABA对NaCl胁迫下紫花苜蓿矿质元素和脯氨酸含量的影响[J].草业科学,2010,27(5):57-61.
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备注/Memo
第一作者简介:陆敏(1985-),男,浙江湖州人,硕士研究生,现主要从事植物逆境生理和植物激素等研究工作。E-mail:lm2068100@126.com.