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沉默的 PiAvr3a 效应子编码基因从 Phytophthora infestans 通过转录融合到一个短的散布元件。

Silencing of the PiAvr3a effector-encoding gene from Phytophthora infestans by transcriptional fusion to a short interspersed element.

机构信息

Department of Plant Biology and Forest Genetics, Uppsala BioCenter, SLU, 750 07 Uppsala, Sweden.

出版信息

Fungal Biol. 2011 Dec;115(12):1225-33. doi: 10.1016/j.funbio.2011.08.007. Epub 2011 Sep 23.

Abstract

Phytophthora infestans is the notorious oomycete causing late blight of potato and tomato. A large proportion of the P. infestans genome is composed of transposable elements, the activity of which may be controlled by RNA silencing. Accumulation of small RNAs is one of the hallmarks of RNA silencing. Here we demonstrate the presence of small RNAs corresponding to the sequence of a short interspersed retrotransposable element (SINE) suggesting that small RNAs might be involved in silencing of SINEs in P. infestans. This notion was exploited to develop novel tools for gene silencing in P. infestans by engineering transcriptional fusions of the PiAvr3a gene, encoding an RXLR avirulence effector, to the infSINEm retroelement. Transgenic P. infestans lines expressing either 5'-infSINEm::PiAvr3a-3' or 5'-PiAvr3a::SINEm-3' chimeric transcripts initially exhibited partial silencing of PiAvr3a. Over time, PiAvr3a either recovered wild type transcript levels in some lines, or became fully silenced in others. Introduction of an inverted repeat construct was also successful in yielding P. infestans transgenic lines silenced for PiAvr3a. In contrast, constructs expressing antisense or aberrant RNA transcripts failed to initiate silencing of PiAvr3a. Lines exhibiting the most effective silencing of PiAvr3a were either weakly or non-pathogenic on susceptible potato cv. Bintje. This study expands the repertoire of reverse genetics tools available for P. infestans research, and provides insights into a possible mode of variation in effector expression through spread of silencing from adjacent retroelements.

摘要

疫霉是引起马铃薯和番茄晚疫病的恶名昭著的卵菌。疫霉基因组的很大一部分由转座元件组成,其活性可能受 RNA 沉默的控制。小 RNA 的积累是 RNA 沉默的标志之一。在这里,我们证明了与短散布反转录转座元件(SINE)序列相对应的小 RNA 的存在,表明小 RNA 可能参与疫霉中 SINE 的沉默。利用这一概念,我们通过将编码 RXLR 无毒效应子的 PiAvr3a 基因与 infSINEm 反转座元件进行转录融合,设计了用于疫霉基因沉默的新型工具。表达 5'-infSINEm::PiAvr3a-3'或 5'-PiAvr3a::SINEm-3'嵌合转录本的转基因疫霉菌系最初表现出 PiAvr3a 的部分沉默。随着时间的推移,PiAvr3a 在一些系中恢复为野生型转录本水平,而在其他系中则完全沉默。引入反向重复构建体也成功地产生了 PiAvr3a 沉默的疫霉菌转基因系。相比之下,表达反义或异常 RNA 转录本的构建体未能启动 PiAvr3a 的沉默。表现出对 PiAvr3a 最有效沉默的系在易感马铃薯 cv. Bintje 上要么是弱致病性的,要么是非致病性的。这项研究扩展了可用于疫霉研究的反向遗传学工具库,并提供了一种可能的效应子表达变异模式的见解,即通过相邻反转座元件的沉默传播。

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