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Identification of Target Genes and Transcription Factors Implicated in Translation-Dependent Retrograde Signaling in Arabidopsis

机译:拟南芥翻译依赖逆行信号牵连的目标基因和转录因子的鉴定。

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摘要

Changes in organellar gene expression (OGE) trigger retrograde signaling. The molecular dissection of OGE-dependent retrograde signaling based on analyses of mutants with altered OGE is complicated by compensatory responses that mask the primary signaling defect and by secondary effects that influence other retrograde signaling pathways. Therefore, to identify the earliest effects of altered OGE on nuclear transcript accumulation, we have induced OGE defects in adult plants by ethanol-dependent repression of PRORS1, which encodes a prolyl-tRNA synthetase located in chloroplasts and mitochondria. After 32 h of PRORS1 repression, the translational capacity of chloroplasts was reduced, and this effect subsequently intensified, while basic photosynthetic parameters were still unchanged at 51 h. Analysis of changes in whole-genome transcriptomes during exposure to ethanol revealed that induced PRORS1 silencing affects the expression of 1020 genes in all. Some of these encode photosynthesis-related proteins, including several down-regulated light-harvesting chlorophyll a/b binding (LHC) proteins. Interestingly, genes for presumptive endoplasmic reticulum proteins are transiently up-regulated. Furthermore, several NAC-domain-containing proteins are among the transcription factors regulated. Candidate cis-acting elements which may coordinate the transcriptional co-regulation of genes sets include both G-box variants and sequence motifs with no similarity to known plant cis-elements.
机译:细胞器基因表达(OGE)的变化会触发逆行信号。基于对具有改变的OGE的突变体的分析,OGE依赖性逆行信号的分子解剖由于掩盖主要信号缺陷的补偿反应和影响其他逆行信号途径的次要作用而变得复杂。因此,为了确定OGE改变对核转录本积累的最早影响,我们通过乙醇依赖性阻抑PRORS1诱导了成年植物的OGE缺陷,PRORS1编码位于叶绿体和线粒体中的脯氨酰-tRNA合成酶。在PRORS1抑制32小时后,叶绿体的翻译能力降低,并且这种作用随后增强,而基本的光合作用参数在51小时仍未改变。暴露于乙醇期间全基因组转录组的变化分析表明,诱导的PRORS1沉默会影响全部1020个基因的表达。其中一些编码与光合作用相关的蛋白,包括几种下调的光捕获叶绿素a / b结合(LHC)蛋白。有趣的是,假定内质网蛋白的基因被瞬时上调。此外,几种含有NAC结构域的蛋白质都属于受调控的转录因子。可以协调基因组转录共调控的候选顺式作用元件包括G-box变体和序列基序,与已知的植物顺式元件没有相似性。

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