Suppr超能文献

病毒抗性基因RCY1的高水平表达赋予拟南芥对黄瓜花叶病毒的极端抗性。

High level expression of a virus resistance gene, RCY1, confers extreme resistance to Cucumber mosaic virus in Arabidopsis thaliana.

作者信息

Sekine Ken-Taro, Kawakami Sayaka, Hase Shu, Kubota Mayumi, Ichinose Yuki, Shah Jyoti, Kang Hong-Gu, Klessig Daniel F, Takahashi Hideki

机构信息

Department of Life Science, Graduate School of Agricultural Science, Tohoku University, Sendai 981-8555, Japan.

出版信息

Mol Plant Microbe Interact. 2008 Nov;21(11):1398-407. doi: 10.1094/MPMI-21-11-1398.

Abstract

A coiled coil-nucleotide binding site-leucine rich repeat-type resistance gene, RCY1, confers resistance to a yellow strain of Cucumber mosaic virus, CMV(Y), in Arabidopsis thaliana ecotype C24. Resistance to CMV(Y) in C24 is accompanied by a hypersensitive response (HR) that is characterized by the development of necrotic local lesions at the primary infection sites. To further study the HR and resistance to CMV(Y) in ecotype Col-0, which is susceptible to CMV(Y), Col-0 were transformed with RCY1. Systemic spread of CMV(Y) was completely suppressed in RCY1-transformed Col-0 (Col::pRCY1 lines 2 to 6), whereas virulent strain CMV(B2) spread and multiplied systemically in these transgenic lines similar to that in wild-type Col-0. Interestingly, the resistant phenotype of Col::pRCY1 varied among the lines. In lines 3 and 6, in which levels of RCY1 transcript were similar to that in wild-type C24, the HR and resistance to CMV(Y) was induced. Line 4, which expresses moderately elevated levels of RCY1 transcript, exhibited moderately enhanced resistance compared with that in C24 or line 3. In contrast, lines 2 and 5, which highly overexpress the RCY1 gene, did not exhibit either visible lesions or a micro-HR on the inoculated leaves. Moreover, virus coat protein was not detected in either inoculated or noninoculated upper leaves of these two lines, suggesting that extreme resistance (ER) to CMV(Y) was induced by high levels of expression of RCY1. Furthermore, in transgenic lines expressing hemagglutinin (HA) epitope-tagged RCY1 (Col::pRCY1-HA), high levels of accumulation of RCY1-HA protein were also correlated with the ER phenotype. Global gene expression analysis in line 2, which highly overexpresses RCY1, indicated that expression of several defense-related genes were constitutively elevated compared with wild-type Col-0. Despite this, line 2 did not have enhanced resistance to other avirulent and virulent pathogens. Take together, constitutive accumulation of high levels of RCY1 protein appears to regulate the strength of RCY1-conferred resistance in a gene-for-gene manner and implies that ER and HR-associated resistance differ only in the strength of resistance.

摘要

一种卷曲螺旋-核苷酸结合位点-富含亮氨酸重复序列型抗性基因RCY1,赋予拟南芥生态型C24对黄瓜花叶病毒黄色株系CMV(Y)的抗性。C24对CMV(Y)的抗性伴随着超敏反应(HR),其特征是在初次感染部位出现坏死局部病斑。为了进一步研究生态型Col-0(对CMV(Y)敏感)中的HR和对CMV(Y)的抗性,将RCY1导入Col-0。在转RCY1的Col-0(Col::pRCY1株系2至6)中,CMV(Y)的系统传播被完全抑制,而强毒株CMV(B2)在这些转基因株系中系统传播并增殖,与野生型Col-0中的情况相似。有趣的是,Col::pRCY1的抗性表型在不同株系间有所不同。在RCY1转录本水平与野生型C24相似的株系3和6中,诱导出了HR和对CMV(Y)的抗性。株系4中RCY1转录本表达水平适度升高,与C24或株系3相比,其抗性有适度增强。相比之下,高度过表达RCY1基因的株系2和5在接种叶片上既没有出现可见病斑,也没有出现微HR。此外,在这两个株系的接种叶和未接种的上部叶片中均未检测到病毒外壳蛋白,这表明高水平表达RCY1诱导了对CMV(Y)的极端抗性(ER)。此外,在表达血凝素(HA)表位标签的RCY1的转基因株系(Col::pRCY1-HA)中,RCY1-HA蛋白的高水平积累也与ER表型相关。在高度过表达RCY1的株系2中的全基因组表达分析表明,与野生型Col-0相比,几个防御相关基因的表达持续升高。尽管如此,株系2对其他无毒和有毒病原体并没有增强的抗性。综上所述,高水平RCY1蛋白的组成性积累似乎以基因对基因的方式调节RCY1介导的抗性强度,这意味着ER抗性和HR相关抗性仅在抗性强度上有所不同。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验