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本文引用的文献

1
Nomenclature report on rice WRKY's - Conflict regarding gene names and its solution.关于水稻 WRKY 的命名报告 - 基因名称冲突及其解决方案。
Rice (N Y). 2012 Feb 27;5(1):3. doi: 10.1186/1939-8433-5-3. eCollection 2012.
2
OsWRKY IIa Transcription Factors Modulate Rice Innate Immunity.OsWRKY IIa转录因子调控水稻的天然免疫。
Rice (N Y). 2010 Mar;3(1):36-42. doi: 10.1007/s12284-010-9039-6. Epub 2010 Feb 20.
3
Heterologous expression of OsWRKY6 gene in Arabidopsis activates the expression of defense related genes and enhances resistance to pathogens.在拟南芥中异源表达 OsWRKY6 基因激活防御相关基因的表达并增强对病原体的抗性。
Plant Sci. 2011 Sep;181(3):316-23. doi: 10.1016/j.plantsci.2011.06.007. Epub 2011 Jun 14.
4
Phosphorylation of a WRKY transcription factor by two pathogen-responsive MAPKs drives phytoalexin biosynthesis in Arabidopsis.两个病原体响应的 MAPK 通过磷酸化 WRKY 转录因子驱动拟南芥的植保素生物合成。
Plant Cell. 2011 Apr;23(4):1639-53. doi: 10.1105/tpc.111.084996. Epub 2011 Apr 15.
5
Chromatin immunoprecipitation to identify global targets of WRKY transcription factor family members involved in plant immunity.染色质免疫沉淀法用于鉴定参与植物免疫的WRKY转录因子家族成员的全局靶标。
Methods Mol Biol. 2011;712:45-58. doi: 10.1007/978-1-61737-998-7_5.
6
Arabidopsis CYP82C4 expression is dependent on Fe availability and circadian rhythm, and correlates with genes involved in the early Fe deficiency response.拟南芥 CYP82C4 的表达依赖于铁的可用性和昼夜节律,并与早期缺铁反应相关的基因相关。
J Plant Physiol. 2011 Jun 15;168(9):894-902. doi: 10.1016/j.jplph.2010.11.020. Epub 2011 Feb 18.
7
Nonhost resistance of barley to different fungal pathogens is associated with largely distinct, quantitative transcriptional responses.大麦对不同真菌病原体的非寄主抗性与大不相同的、定量的转录反应有关。
Plant Physiol. 2010 Apr;152(4):2053-66. doi: 10.1104/pp.109.151829. Epub 2010 Feb 19.
8
OsWRKY62 is a negative regulator of basal and Xa21-mediated defense against Xanthomonas oryzae pv. oryzae in rice.OsWRKY62 是水稻中对黄单胞菌 pv. 稻生致病变种的基础防御和 Xa21 介导的防御的负调控因子。
Mol Plant. 2008 May;1(3):446-58. doi: 10.1093/mp/ssn024.
9
Characterization of WRKY co-regulatory networks in rice and Arabidopsis.水稻和拟南芥中WRKY共调控网络的特征分析
BMC Plant Biol. 2009 Sep 22;9:120. doi: 10.1186/1471-2229-9-120.
10
A pair of allelic WRKY genes play opposite roles in rice-bacteria interactions.一对等位WRKY基因在水稻与细菌的相互作用中发挥相反作用。
Plant Physiol. 2009 Oct;151(2):936-48. doi: 10.1104/pp.109.145623. Epub 2009 Aug 21.

OsWRKY22,单子叶植物 WRKY 基因,在对稻瘟病的抗性反应中发挥作用。

OsWRKY22, a monocot WRKY gene, plays a role in the resistance response to blast.

机构信息

Rice Genomics Unit, Parco Tecnologico Padano, via Einstein, 26900 Lodi, Italy.

出版信息

Mol Plant Pathol. 2012 Oct;13(8):828-41. doi: 10.1111/j.1364-3703.2012.00795.x. Epub 2012 Mar 23.

DOI:10.1111/j.1364-3703.2012.00795.x
PMID:22443363
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6638809/
Abstract

With the aim of identifying novel regulators of host and nonhost resistance to fungi in rice, we carried out a systematic mutant screen of mutagenized lines. Two mutant wrky22 knockout lines revealed clear-cut enhanced susceptibility to both virulent and avirulent Magnaporthe oryzae strains and altered cellular responses to nonhost Magnaporthe grisea and Blumeria graminis fungi. In addition, the analysis of the pathogen responses of 24 overexpressor OsWRKY22 lines revealed enhanced resistance phenotypes on infection with virulent M. oryzae strain, confirming that OsWRKY22 is involved in rice resistance to blast. Bioinformatic analyses determined that the OsWRKY22 gene belongs to a well-defined cluster of monocot-specific WRKYs. The co-regulatory analysis revealed no significant co-regulation of OsWRKY22 with a representative panel of OsWRKYs, supporting its unique role in a series of transcriptional responses. In contrast, inquiring a subset of biotic stress-related Affymetrix data, a large number of resistance and defence-related genes were found to be putatively co-expressed with OsWRKY22. Taken together, all gathered experimental evidence places the monocot-specific OsWRKY22 gene at the convergence point of signal transduction circuits in response to both host and nonhost fungi encountering rice plants.

摘要

为了鉴定水稻中宿主和非宿主对真菌抗性的新调控因子,我们对诱变系进行了系统的突变体筛选。两个突变 wrky22 敲除系对强毒和无毒稻瘟病菌株表现出明显的易感性增加,并改变了对非宿主稻瘟病菌和禾谷布氏白粉病菌的细胞反应。此外,对 24 个过表达 OsWRKY22 系的病原体反应分析显示,在感染强毒 M. oryzae 菌株时表现出增强的抗性表型,证实 OsWRKY22 参与了水稻对稻瘟病的抗性。生物信息学分析确定 OsWRKY22 基因属于单子叶植物特异性 WRKYs 的一个明确聚类。共调控分析显示,OsWRKY22 与一组代表性的 OsWRKYs 没有显著的共调控,支持其在一系列转录反应中的独特作用。相比之下,在询问一组生物胁迫相关的 Affymetrix 数据时,发现大量与抗性和防御相关的基因与 OsWRKY22 被假定为共表达。总之,所有收集的实验证据表明,单子叶植物特异性 OsWRKY22 基因位于水稻对宿主和非宿主真菌反应的信号转导电路的交汇点。