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植物温度响应调控回路中的可变剪接。

Alternative Splicing in the Regulatory Circuit of Plant Temperature Response.

机构信息

State Key Laboratory of Crop Stress Biology for Arid Areas, College of Agronomy, Northwest A&F University, Xi'an 712100, China.

State Key Laboratory of Crop Stress Biology for Arid Areas, Institute of Future Agriculture, Northwest A&F University, Xi'an 712100, China.

出版信息

Int J Mol Sci. 2023 Feb 15;24(4):3878. doi: 10.3390/ijms24043878.

Abstract

As sessile organisms, plants have evolved complex mechanisms to rapidly respond to ever-changing ambient temperatures. Temperature response in plants is modulated by a multilayer regulatory network, including transcriptional and post-transcriptional regulations. Alternative splicing (AS) is an essential post-transcriptional regulatory mechanism. Extensive studies have confirmed its key role in plant temperature response, from adjustment to diurnal and seasonal temperature changes to response to extreme temperatures, which has been well documented by previous reviews. As a key node in the temperature response regulatory network, AS can be modulated by various upstream regulations, such as chromatin modification, transcription rate, RNA binding proteins, RNA structure and RNA modifications. Meanwhile, a number of downstream mechanisms are affected by AS, such as nonsense-mediated mRNA decay (NMD) pathway, translation efficiency and production of different protein variants. In this review, we focus on the links between splicing regulation and other mechanisms in plant temperature response. Recent advances regarding how AS is regulated and the following consequences in gene functional modulation in plant temperature response will be discussed. Substantial evidence suggests that a multilayer regulatory network integrating AS in plant temperature response has been unveiled.

摘要

作为固着生物,植物已经进化出复杂的机制来快速应对不断变化的环境温度。植物的温度响应受到多层次调控网络的调节,包括转录和转录后调控。可变剪接(AS)是一种重要的转录后调控机制。大量研究证实了它在植物温度响应中的关键作用,从适应昼夜和季节性温度变化到应对极端温度,这在前人的综述中已有详细记载。作为温度响应调控网络中的关键节点,AS 可以受到各种上游调控的调节,如染色质修饰、转录率、RNA 结合蛋白、RNA 结构和 RNA 修饰。同时,AS 还会影响许多下游机制,如无义介导的 mRNA 降解(NMD)途径、翻译效率和不同蛋白变体的产生。在这篇综述中,我们重点关注剪接调控与植物温度响应中其他机制之间的联系。本文将讨论 AS 如何受到调控以及在植物温度响应中基因功能调节方面的后续影响。大量证据表明,一个整合了 AS 的植物温度响应多层次调控网络已经被揭示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c232/9962249/b99fe37e6946/ijms-24-03878-g001.jpg

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