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Introns of the tobacco resistance gene N play important roles in elicitor-responsive upregulation and efficient induction of defense responses

机译:烟草抗性基因N的内含子在Elicitor响应上调和有效诱导防御反应中起重要作用

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摘要

The tobacco resistance gene N is known to be upregulated transcriptionally upon infection with Tobacco mosaic virus or the transient expression of the virus elicitor (termed p50), which is the helicase domain of the virus replicase, leading to cell death-associated defense responses. To investigate the roles of the encoded protein and introns of the N gene in its elicitor-triggered upregulation, we developed an Agrobacterium-mediated transient gene transfer system to express the N transgene controlled by the upstream region of the N gene itself in N-lacking tobacco. The transcript level of the N transgene with the introns was enhanced sharply when the p50 transgene was coexpressed. Introduction of a frameshift mutation in the intron-containing N transgene abolished its response to the elicitor, but an additional expression of the functional N protein supplied in trans complemented the upregulation of the mutant transgene. In contrast, an intron-less N transgene failed to be upregulated by the p50 coexpression, resulting in delayed and attenuated cell death and slow induction of defense-related gene expression. In addition, introduction of a frameshift mutation in the intron-less N transgene resulted in no response to the elicitor even with coexpression of the functional N protein. Our data provide the first evidence for important roles of introns of a resistance gene in elicitor-responsive gene regulation and efficient defense induction.
机译:已知烟草抗性基因n在用烟草叶片病毒感染或病毒引发器(称为P50)的瞬时表达时转录上调,这是病毒复制酶的螺旋酶结构域,导致细胞死亡相关的防御反应。为了研究编码蛋白质和N基因内含子在其Elicitor触发的上调中的作用,我们开发了一种农杆菌介导的瞬态基因转移系统,以表达由N缺乏的N基因本身上游区域控制的N转基因烟草。当共用P50转基因时,急剧增加了N转基因的转基因的转录物水平。引入内含子的N转基因中的帧突变突变废除了对引导者的响应,而是在反式中提供的功能N蛋白的另外表达补充了突变转基因的上调。相反,通过P50共表达未降低内含子的N转基因,导致延迟和减毒的细胞死亡和防御相关基因表达的慢诱导。此外,即使具有功能性N蛋白的共表达,也导致内含子内的N转基因中的帧间突变导致突变导致引导者响应。我们的数据提供了抗性基因内含子在Elicitor响应基因调控中的重要作用的第一种证据。

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