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应激颗粒相关的 TaMBF1c 通过调节小麦(Triticum aestivum)中特定 mRNA 的翻译赋予其耐热性。

Stress granule-associated TaMBF1c confers thermotolerance through regulating specific mRNA translation in wheat (Triticum aestivum).

机构信息

State Key Laboratory for Agrobiotechnology, Key Laboratory of Crop Heterosis Utilization (MOE), Beijing Key Laboratory of Crop Genetic Improvement, China Agricultural University, Beijing, 100193, China.

Hebei Academy of Agriculture and Forest Sciences, Shijiazhuang, 050035, China.

出版信息

New Phytol. 2022 Feb;233(4):1719-1731. doi: 10.1111/nph.17865. Epub 2021 Dec 11.

Abstract

Heat stress is a major limiting factor for global wheat production and causes dramatic yield loss worldwide. The TaMBF1c gene is upregulated in response to heat stress in wheat. Understanding the molecular mechanisms associated with heat stress responses will pave the way to improve wheat thermotolerance. Through CRISPR/Cas9-based gene editing, polysome profiling coupled with RNA-sequencing analysis, and protein-protein interactions, we show that TaMBF1c conferred heat response via regulating a specific gene translation in wheat. The results showed that TaMBF1c is evolutionarily conserved in diploid, tetraploid and hexaploid wheat species, and its knockdown and knockout lines show increased heat sensitivity. TaMBF1c is colocalized with the stress granule complex and interacts with TaG3BP. TaMBF1c affects the translation efficiency of a subset of heat responsive genes, which are significantly enriched in the 'sequence-specific DNA binding' term. Moreover, gene expression network analysis demonstrated that TaMBF1c is closely associated with the translation of heat shock proteins. Our findings reveal a contribution of TaMBF1c in regulating the heat stress response via the translation process, and provide a new target for improving heat tolerance in wheat breeding programs.

摘要

热应激是全球小麦生产的主要限制因素,导致全球范围内产量大幅下降。TaMBF1c 基因在小麦中受到热应激的上调。了解与热应激反应相关的分子机制将为提高小麦耐热性铺平道路。通过基于 CRISPR/Cas9 的基因编辑、多核糖体分析与 RNA 测序分析以及蛋白质-蛋白质相互作用,我们表明 TaMBF1c 通过调节小麦中特定基因的翻译来赋予其对热的响应能力。结果表明,TaMBF1c 在二倍体、四倍体和六倍体小麦物种中具有进化保守性,其敲低和敲除系表现出对热的敏感性增加。TaMBF1c 与应激颗粒复合物共定位,并与 TaG3BP 相互作用。TaMBF1c 影响一组热响应基因的翻译效率,这些基因在“序列特异性 DNA 结合”术语中显著富集。此外,基因表达网络分析表明,TaMBF1c 与热休克蛋白的翻译密切相关。我们的研究结果揭示了 TaMBF1c 通过翻译过程在调节热应激反应中的作用,并为在小麦育种计划中提高耐热性提供了新的目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15d7/9300156/3a2318e7d182/NPH-233-1719-g003.jpg

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