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内含子介导的增强作用对一种赋予拟南芥对黄瓜花叶病毒抗性的NB-LRR类R蛋白积累的作用。

Role of intron-mediated enhancement on accumulation of an Arabidopsis NB-LRR class R-protein that confers resistance to Cucumber mosaic virus.

作者信息

Sato Yukiyo, Ando Sugihiro, Takahashi Hideki

机构信息

Department of Applied Plant Science, Graduate School of Agricultural Science, Tohoku University, Sendai, Miyagi, Japan.

出版信息

PLoS One. 2014 Jun 10;9(6):e99041. doi: 10.1371/journal.pone.0099041. eCollection 2014.

Abstract

The accumulation of RCY1 protein, which is encoded by RESISTANCE TO CMV(Y) (RCY1), a CC-NB-LRR class R-gene, is tightly correlated with the strength of the resistance to a yellow strain of Cucumber mosaic virus [CMV(Y)] in Arabidopsis thaliana. In order to enhance resistance to CMV by overexpression of RCY1, A. thaliana was transformed with intron-less RCY1 cDNA construct under the control of strong CaMV35S promoter. Remarkably, a relative amount of RCY1 protein accumulation in the transformants was much lower than that in plants expressing genomic RCY1 under the control of its native promoter. To identify a regulatory element of RCY1 that could cause such differential levels of RCY1 accumulation, a series of RCY1 cDNA and genomic RCY1 constructs were transiently expressed in Nicotiana benthamiana leaves by the Agrobacterium-mediated infiltration method. Comparative analysis of the level of RCY1 accumulation in the leaf tissues transiently expressing each construct indicated that the intron located in the RCY1-coding region of genomic RCY1, but not the native RCY1 genomic promoter or the 5'-and 3'-untranslated regions of RCY1, was indispensable for high level RCY1 accumulation. The increased levels of RCY1 accelerated plant disease defense reactions. Interestingly, such intron-mediated enhancement of RCY1 accumulation depended neither on the abundance of the RCY1 transcript nor on the RCY1 specific-intron sequence. Taken together, intron-mediated RCY1 expression seems to play a key role in the expression of complete resistance to CMV(Y) by maintaining RCY1 accumulation at high levels.

摘要

由CC-NB-LRR类R基因抗黄瓜花叶病毒(Y)(RCY1)编码的RCY1蛋白的积累,与拟南芥对黄瓜花叶病毒黄色株系[CMV(Y)]的抗性强度密切相关。为了通过过量表达RCY1增强对CMV的抗性,在强CaMV35S启动子的控制下,用无内含子的RCY1 cDNA构建体转化拟南芥。值得注意的是,转化体中RCY蛋白积累的相对量远低于在其天然启动子控制下表达基因组RCY1的植物中的积累量。为了鉴定可能导致RCY1积累水平差异的RCY1调控元件,通过农杆菌介导的浸润法在本氏烟草叶片中瞬时表达了一系列RCY1 cDNA和基因组RCY1构建体。对瞬时表达每种构建体的叶片组织中RCY1积累水平的比较分析表明,位于基因组RCY1的RCY1编码区的内含子,而不是天然RCY1基因组启动子或RCY1的5'和3'非翻译区,对于高水平的RCY1积累是必不可少的。RCY1水平的增加加速了植物的病害防御反应。有趣的是,这种内含子介导的RCY1积累增强既不依赖于RCY1转录本的丰度,也不依赖于RCY1特异性内含子序列。综上所述,内含子介导的RCY1表达似乎通过将RCY1积累维持在高水平,在对CMV(Y)的完全抗性表达中起关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6563/4051679/6f50a6fe8229/pone.0099041.g001.jpg

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