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Global translational reprogramming is a fundamental layer of immune regulation in plants

机译:全局翻译重编程是植物免疫调节的基础层

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摘要

In the absence of specialized immune cells, the need for plants to reprogram transcription to transition from growth-related activities to defence is well understood, . However, little is known about translational changes that occur during immune induction. Using ribosome footprinting (RF), we performed global translatome profiling on Arabidopsis exposed to the microbe-associated molecular pattern (MAMP) elf18. We found that during this pattern-triggered immunity (PTI), translation was tightly regulated and poorly correlated with transcription. Identification of genes with altered translational efficiency (TE) led to the discovery of novel regulators of this immune response. Further investigation of these genes showed that mRNA sequence features are major determinants of the observed TE changes. In the 5′ leader sequences of transcripts with increased TE, we found a highly enriched mRNA consensus sequence, R-motif, consisting of mostly purines. We showed that R-motif regulates translation in response to PTI induction through interaction with poly(A)-binding proteins. Therefore, this study provides not only strong evidence, but also a molecular mechanism for global translational reprogramming during PTI in plants.
机译:,在没有专门的免疫细胞的情况下,植物需要重新编程转录以使其从与生长相关的活性过渡到防御。但是,对于免疫诱导过程中发生的翻译变化知之甚少。使用核糖体足迹(RF),我们对暴露于微生物相关分子模式(MAMP)elf18的拟南芥进行了全局翻译组分析。我们发现在这种模式触发的免疫(PTI)期间,翻译受到严格调节,并且与转录的相关性很差。鉴定具有改变的翻译效率(TE)的基因导致发现了这种免疫应答的新型调节剂。对这些基因的进一步研究表明,mRNA序列特征是观察到的TE变化的主要决定因素。在TE升高的转录本的5'前导序列中,我们发现了高度富集的mRNA共有序列R-motif,主要由嘌呤组成。我们表明,R-基序通过与聚(A)结合蛋白的相互作用来调节响应PTI诱导的翻译。因此,这项研究不仅提供了有力的证据,而且为植物在PTI过程中进行整体翻译重编程提供了分子机制。

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