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核农学报  2012 

水稻WRKY基因家族功能研究进展

, PP. 750-755

Keywords: 水稻,WRKY基因,转录因子,胁迫应答,信号传导

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Abstract:

WRKY蛋白是一类重要的转录因子家族,因含有高度保守的WRKY结构域而得名,主要存在于植物中。WRKY域长约60氨基酸,其靠近N-端有WRKYGQ(K/E)K基序,后面跟有1个C2H2或C2HC锌指型结构。依据WRKY结构域基本结构特征的差异,水稻WRKY家族可以分成3大类,它们通过调控生长调节物质介导的信号途径,广泛地参与调节水稻生长发育和生物与非生物胁迫应答。

References

[1]  Guilfoyle T J. The structure of plant gene promoters [J]. Genet Engin,1997, 19: 15-47
[2]  Wu K L, Guo Z J, Wang H H, Li J. The WRKY family of transcription factors in rice and Arabidopsis and their origins [J]. DNA Res, 2005, 12(1): 9-26
[3]  Eulgem T, Rushton P J, Robatzek S, Somssich I E. The WRKY superfamily of plant transcription factors [J]. Trends Plant Sci, 2000, 5(5): 199-206
[4]  Sun C, Palmqvist S, Olsson H, Borén M, Ahlandsberg S, Jansson C. A novel WRKY transcription factor, SUSIBA2, participates in sugar signaling in barley by binding to the sugar-responsive elements of the iso1 promoter [J]. Plant Cell, 2003, 15(9): 2076-2092
[5]  Qiu Y P, Jing S J, Fu J, Li L, Yu D Q. Cloning and analysis of expression profile of 13 WRKY genes in rice [J]. Chin Sci Bull, 2004, 49(20): 2159-2168
[6]  Song Y, Ai C R, Jing S J, Yu D Q. Research progress on functional analysis of rice WRKY gene [J]. Rice Sci, 2010, 17(1): 60-72
[7]  yu H S, Han M, Lee S K, Cho J I, Ryoo N, Heu S, Lee Y H, Bhoo S H, Wang G L, Hahn T R, Jeon J S. A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response [J]. Plant Cell Rep, 2006, 25(8): 836-847
[8]  Liu X Q, Bai X Q, Wang X J, Chu C C. OsWRKY71, a rice transcription factor, is involved in rice defense response [J]. J Plant Physiol, 2007, 164(8): 969-979
[9]  Liu X Q, Bai X Q, Qian Q, Wang X J, Chen M S, Chu C C. OsWRKY03, a rice transcriptional activator that functions in defense signaling pathway upstream of OsNPR1 [J]. Cell Res, 2005, 15(8): 593-603
[10]  Wang H H, Xie K, Wu K L, Guo Z J. Isolation of a rice WRKY gene OsWRKY52, whose expression is induced by Magnaporthe grisea [J]. Prog Biochem Biophys, 2005, 32(10): 937-946
[11]  Shimono M, Sugano S, Nakayama A, Jiang C J, Ono K, Toki S, Takatsuji H. Rice WRKY45 plays a crucial role in benzothiadiazole-inducible blast resistance [J]. Plant Cell, 2007, 19(6): 2064-2076
[12]  Shimono M, Koga H, Akagi A, Hayashi N, Goto S, Sawada M, Kurihara T, Matsushita A, Sugano S, Jiang C J, Kaku H, Inoue H, Takatsuji H. Rice WRKY45 plays important roles in fungal and bacterial disease resistance [J]. Mol Plant Pathol, 2012, 13(1): 83-94
[13]  Qiu Y P, Yu D Q. Over-expression of the stress-induced OsWRKY45 enhances disease resistance and drought tolerance in Arabidopsis [J]. Environ Exp Bot, 2009, 65(1): 35-47
[14]  Peng Y, Bartley L E, Canlas P, Ronald P C. OsWRKY IIa transcription factors modulate rice innate immunity [J]. Rice, 2010, 3(1): 36-42
[15]  Chujo T, Takai R, Akimoto-Tomiyama C, Ando S, Minami E, Nagamura Y, Kaku H, Shibuya N, Yasuda M, Nakashita H, Umemura K, Okada A, Okada K, Nojiri H, Yamane H. Involvement of the elicitor-induced gene OsWRKY53 in the expression of defense-related genes in rice [J]. Biochim Biophys Acta, 2007, 1769(7-8): 497-505
[16]  Chujo T, Sugioka N, Masuda Y, Shibuya N, Takemura T, Okada K, Nojiri H, Yamane H. Promoter analysis of the elicitor-induced WRKY gene OsWRKY53, which is involved in defense responses in rice [J]. Biosci Biotechnol Biochem, 2009, 73(8):1901-1904
[17]  Jing S J, Zhou X, Song Y, Yu D Q. Heterologous expression of OsWRKY23 gene enhances pathogen defense and dark-induced leaf senescence in Arabidopsis [J]. Plant Growth Regul, 2009, 58(2): 181-190
[18]  Hwang S H, Won Yie S, Hwang D J. Heterologous expression of OsWRKY6 gene in Arabidopsis activates the expression of defense related genes and enhances resistance to pathogens [J]. Plant Sci, 2011, 181(3): 316-323
[19]  Berri S, Abbruscato P, Faivre-Rampant O, Brasileiro A C, Fumasoni I, Satoh K, Kikuchi S, Mizzi L, Morandini P, Pè M E, Piffanelli P. Characterization of WRKY co-regulatory networks in rice and Arabidopsis [J]. BMC Plant Biol, 2009, 9:120
[20]  Tao Z, Kou Y J, Liu H B, Li X H, Xiao J H, Wang S P. OsWRKY45 alleles play different roles in abscisic acid signalling and salt stress tolerance but similar roles in drought and cold tolerance in rice [J]. J Exp Bot, 2011, 62(14): 4863-4874
[21]  李南羿, 郭泽建. 转录因子OPBP1和OsiWRKY基因的超表达提高水稻的耐盐及抗病能力[J]. 中国水稻科学, 2006, 20(1): 13-18
[22]  Song Y, Jing S J, Yu D Q. Overexpression of the stress-induced OsWRKY08 improves osmotic stress tolerance in Arabidopsis [J]. Chinese Sci Bull, 2009, 54(24): 4671-4678
[23]  Ricachenevsky F K, Sperotto R A, Menguer P K, Fett J P. Identification of Fe-excess-induced genes in rice shoots reveals a WRKY transcription factor responsive to Fe, drought and senescence [J]. Mol Biol Rep, 2010, 37(8): 3735-3745
[24]  Peng X X, Tang X K, Zhou P L, Hu Y J, Deng X B, He Y, Wang H H. Isolation and expression patterns of rice WRKY82 transcription factor gene responsive to both biotic and abiotic stresses [J]. Agricultural Sciences in China, 2011, 10(6): 893-901
[25]  汪得凯, 张红心, 胡国成, 付亚萍, 斯华敏, 孙宗修. 一个水稻大叶角度突变体 lla 的遗传分析及基因克隆[J]. 科学通报, 2005, 50(4): 399-401
[26]  Xie Z, Zhang Z L, Zou X L, Yang G X, Komatsu S, Shen Q J. Interactions of two abscisic-acid induced WRKY genes in repressing gibberellin signaling in aleurone cells [J]. Plant J, 2006, 46(2): 231-242
[27]  Zhang Z L, Shin M, Zou X L, Huang J Z, David Ho T H, Shen Q J. A negative regulator encoded by a rice WRKY gene represses both abscisic acid and gibberellins signaling in aleurone cells [J]. Plant Mol Biol, 2009, 70(1-2): 139-151
[28]  Cai M, Qiu D Y, Yuan T, Ding X H, Li H J, Duan L, Xu C G, Li X H, Wang S P. Identification of novel pathogen-responsive cis -elements and their binding proteins in the promoter of OsWRKY13, a gene regulating rice disease resistance [J]. Plant Cell Environ, 2008, 31(1): 86-96
[29]  Qiu D Y, Xiao J, Xie W B, Cheng H T, Li X H, Wang S P. Exploring transcriptional signalling mediated by OsWRKY13, a potential regulator of multiple physiological processes in rice [J]. BMC Plant Biol, 2009, 9(1): 74
[30]  Lu J, Ju H P, Zhou G X, Zhu C S, Erb M, Wang X P, Wang P, Lou Y G. An EAR-motif-containing ERF transcription factor affects herbivore-induced signaling, defense and resistance in rice [J]. Plant J, 2011, 68(4): 583-596
[31]  Zhang Y J, Wang L J. The WRKY transcription factor superfamily: its origin in eukaryotes and expansion in plants [J]. BMC Evol Biol, 2005, 5: 1
[32]  Ross C A, Liu Y, Shen Q J. The WRKY gene family in rice ( Oryza sativa ) [J]. J Integr Plant Biol, 2007, 49(6): 827-842
[33]  Zhang Z L, Xie Z, Zou X L, Casaretto J, David Ho T H, Shen Q J. A rice WRKY gene encodes a transcriptional repressor of the gibberellin signaling pathway in aleurone cells [J]. Plant Physiol, 2004, 134(4): 1500-1513
[34]  Xie Z, Zhang Z L, Zou X L, Huang J, Ruas P, Thompson D, Shen Q J. Annotations and functional analyses of the rice WRKY gene superfamily reveal positive and negative regulators of abscisic acid signaling in aleurone cells [J]. Plant Physiol, 2005, 137(1): 176-189
[35]  Ramamoorthy R, Jiang S Y, Kumar N, Venkatesh P N, Ramachandran S. A comprehensive transcriptional profiling of the WRKY Gene family in rice under various abiotic and phytohormone treatments [J]. Plant Cell Physiol, 2008, 49(6): 865-879
[36]  He Z H. Signal network of plant disease resistance [J]. Acta Phytophysiologica Sinica, 2001, 27(4): 281-290
[37]  Shimizu T, Satoh K, Kikuchi S, Omura T. The repression of cell wall- and plastid-related genes and the induction of defense-related genes in rice plants infected with rice dwarf virus [J]. Mol Plant Microbe Interact, 2007, 20(3): 247-254
[38]  Chujo T, Kato T, Yamada K, Takai R, Akimoto-Tomiyama C, Minami E, Nagamura Y, Shibuya N, Yasuda M, Nakashita H, Umemura K, Okada A, Okada K, Nojiri H, Yamane H. Characterization of an elicitor-induced rice WRKY gene, OsWRKY71 [J]. Biosci Biotechnol Biochem, 2008, 72(1): 240-245
[39]  Tao Z, Liu H B, Qiu D Y, Zhou Y, Li X H, Xu C G, Wang S P. A pair of allelic WRKY genes play opposite roles in rice-bacteria interactions [J]. Plant Physiol, 2009, 151(2): 936-948
[40]  Park C J, Han S W, Chen X, Ronald P C. Elucidation of XA21-mediated innate immunity [J]. Cell Microbiol, 2010, 12(8):1017-1025
[41]  Peng Y, Bartley L E, Chen X, Dardick C, Chern M, Ruan R, Canlas P E, Ronald P C. OsWRKY62 is a negative regulator of basal and Xa21 -mediated defense against Xanthomonas oryzae pv. oryzae in rice [J]. Mol Plant, 2008, 1(3): 446-458
[42]  邬亚文, 谢 科, 李 靖, 于永红, 胡国成, 傅亚萍, 斯华敏, 窦彩虹. 利用dsRNA干涉方法研究水稻WRKY转录因子的抗病性[J]. 中国水稻科学, 2005, 19(6): 489-494
[43]  Delteil A, Blein M L, Faivre-Rampant O, Guellim A, Estevan J, Hirsch J, Bevitori R, Michel C, Morel J B. Building a mutant resource for the study of disease resistance in rice reveals the pivotal role of several genes involved in defence [J]. Mol Plant Pathol, 2011, 13(1): 72-82
[44]  Qiu D Y, Xiao J, Ding X H, Xiong M, Cai M, Cao Y L, Li X H, Xu C G, Wang S P. OsWRKY13 mediates rice disease resistance by regulating defense-related genes in salicylate- and jasmonate-dependent signaling [J]. Mol Plant Microbe Interact, 2007, 20(5): 492-499
[45]  郝中娜, 王海华, 郭泽建. 水稻 OsWRKY89 基因启动子的表达特性[J]. 中国水稻科学, 2006, 20(2): 125-130
[46]  Wang H H, Hao J J, Chen X J, Hao Z N, Wang X, Lou Y G, Peng Y L, Guo Z J. Overexpression of rice WRKY89 enhances ultraviolet B tolerance and disease resistance in rice plants [J]. Plant Mol Biol, 2007, 65(6): 799-815
[47]  Wu X L, Shiroto Y, Kishitani S, Ito Y, Toriyama K. Enhanced heat and drought tolerance in transgenic rice seedlings overexpressing OsWRKY11 under the control of HSP101 promoter [J]. Plant Cell Rep, 2009, 28(1): 21-30
[48]  Qiu D Y, Xiao J, Xie W B, Liu H B, Li X H, Xiong L Z, Wang S P. Rice gene network inferred from expression profiling of plants overexpressing OsWRKY13, a positive regulator of disease resistance [J]. Mol Plant, 2008, 1(3): 538-551
[49]  Zhang J, Peng Y L, Guo Z J. Constitutive expression of pathogen-inducible OsWRKY31 enhances disease resistance and affects root growth and auxin response in transgenic rice plants [J]. Cell Res, 2008, 18(4): 508-521
[50]  宋 钰, 刘冬梅, 余迪求. 高表达水稻 WRKY72 基因影响拟南芥生长素信号传导[J]. 云南植物研究, 2008, 30(6): 699-705
[51]  Song Y, Chen L G, Zhang L P, Yu D Q. Overexpression of OsWRKY72 gene interferes in the abscisic acid signal and auxin transport pathway of Arabidopsis [J]. J Biosciences, 2010, 35(3): 459-471
[52]  Zhang C Q, Xu Y, Lu Y, Yu H X, Gu M H, Liu Q Q. The WRKY transcription factor OsWRKY78 regulates stem elongation and seed development in rice [J]. Planta, 2011, 234(3): 541-554
[53]  Sperotto R A, Boff T, Duarte G L, Fett J P. Increased senescence-associated gene expression and lipid peroxidation induced by iron deficiency in rice roots [J]. Plant Cell Rep, 2008, 27(1):183-195
[54]  Liu L, Zhou Y, Zhou G, Ye R J, Zhao L N, Li X H, Lin Y J. Identification of early senescence-associated genes in rice flag leaves [J]. Plant Mol Biol, 2008, 67(1-2): 37-55
[55]  Kang K, Park S, Natsagdorj U, Kim Y S, Back K. Methanol is an endogenous elicitor molecule for the synthesis of tryptophan and tryptophan-derived secondary metabolites upon senescence of detached rice leaves [J]. Plant J, 2011, 66(2): 247-257
[56]  Yang X, Yang Y N, Xue L J, Zou M J, Liu J Y, Chen F, Xue H W. Rice ABI5-Like1 regulates abscisic acid and auxin responses by affecting the expression of ABRE-containing genes [J]. Plant Physiol, 2011, 156(3):1397-1409
[57]  Koo S C, Moon B C, Kim J K, Kim C Y, Sung S J, Kim M C, Cho M J, Cheong Y H. OsBWMK1 mediates SA-dependent defense responses by activating the transcription factor OsWRKY33 [J]. Biochem Biophys Res Commun, 2009, 387(2): 365-370
[58]  李立芹. 烟草 WRKY12 基因的分离、表达与多克隆抗体的制备 [J]. 核农学报, 2011, 25(3): 461-468
[59]  赵天田, 王贵禧, 梁丽松, 马庆华, 陈 新. 平榛ChWRKY1转录因子的克隆及表达模式分析 [J]. 核农学报, 2012, (2): 238-244

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