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Emerging Roles of LSM Complexes in Posttranscriptional Regulation of Plant Response to Abiotic Stress

机译:LSM复合物在植物反应对非生物胁迫下术后调控的新兴作用

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It has long been assumed that the wide reprogramming of gene expression that modulates plant response to unfavorable environmental conditions is mainly controlled at the transcriptional level. A growing body of evidence, however, indicates that posttranscriptional regulatory mechanisms also play a relevant role in this control. Thus, the LSMs, a family of proteins involved in mRNA metabolism highly conserved in eukaryotes, have emerged as prominent regulators of plant tolerance to abiotic stress. Arabidopsis contains two main LSM ring-shaped heteroheptameric complexes, LSM1-7 and LSM2-8, with different subcellular localization and function. The LSM1-7 ring is part of the cytoplasmic decapping complex that regulates mRNA stability. On the other hand, the LSM2-8 complex accumulates in the nucleus to ensure appropriate levels of U6 snRNA and, therefore, correct pre-mRNA splicing. Recent studies reported unexpected results that led to a fundamental change in the assumed consideration that LSM complexes are mere components of the mRNA decapping and splicing cellular machineries. Indeed, these data have demonstrated that LSM1-7 and LSM2-8 rings operate in Arabidopsis by selecting specific RNA targets, depending on the environmental conditions. This specificity allows them to actively imposing particular gene expression patterns that fine-tune plant responses to abiotic stresses. In this review, we will summarize current and past knowledge on the role of LSM rings in modulating plant physiology, with special focus on their function in abiotic stress responses.
机译:已经假定已经假设基因表达的广泛重新编程,以调节植物对不利环境条件的反应的影响主要是在转录水平上控制。然而,日益增长的证据表明,术语监管机制也在该控制中发挥相关作用。因此,LSMS是一种涉及MRNA代谢的蛋白质家族,其在真核生物中高度保守,已成为植物耐受性应激的突出调节因素。拟南芥含有两个主要的LSM环形异己聚合物,LSM1-7和LSM2-8,具有不同的亚细胞定位和功能。 LSM1-7环是细胞质卷积复合复合物的一部分,调节mRNA稳定性。另一方面,LSM2-8复合物在核中积聚,以确保适当水平的U6 SNRNA,因此,正确的前静脉剪接。最近的研究报告了意外结果导致假定考虑的根本变化,即LSM复合物仅仅是mRNA拆分和剪接细胞机械的组分。实际上,这些数据已经证明,根据环境条件,通过选择特定的RNA靶标,LSM1-7和LSM2-8环在拟南芥中操作。这种特异性使它们能够积极地强加特定的基因表达模式,即微调植物对非生物应激的反应。在本综述中,我们将总结当前和过去关于LSM环在调节植物生理学中的作用的知识,特别关注其在非生物应激反应中的功能。

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