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解析非生物胁迫信号传导中涉及的大分子相互作用:生物信息学分析综述

Deciphering Macromolecular Interactions Involved in Abiotic Stress Signaling: A Review of Bioinformatics Analysis.

作者信息

Gouesbet Gwenola

机构信息

University of Rennes, CNRS, ECOBIO [(Ecosystèmes, Biodiversité, Evolution)] - UMR 6553, Rennes, France.

出版信息

Methods Mol Biol. 2023;2642:257-294. doi: 10.1007/978-1-0716-3044-0_15.

Abstract

Plant functioning and responses to abiotic stresses largely involve regulations at the transcriptomic level via complex interactions of signal molecules, signaling cascades, and regulators. Nevertheless, all the signaling networks involved in responses to abiotic stresses have not yet been fully established. The in-depth analysis of transcriptomes in stressed plants has become a relevant state-of-the-art methodology to study these regulations and signaling pathways that allow plants to cope with or attempt to survive abiotic stresses. The plant science and molecular biology community has developed databases about genes, proteins, protein-protein interactions, protein-DNA interactions and ontologies, which are valuable sources of knowledge for deciphering such regulatory and signaling networks. The use of these data and the development of bioinformatics tools help to make sense of transcriptomic data in specific contexts, such as that of abiotic stress signaling, using functional biological approaches. The aim of this chapter is to present and assess some of the essential online tools and resources that will allow novices in bioinformatics to decipher transcriptomic data in order to characterize the cellular processes and functions involved in abiotic stress responses and signaling. The analysis of case studies further describes how these tools can be used to conceive signaling networks on the basis of transcriptomic data. In these case studies, particular attention was paid to the characterization of abiotic stress responses and signaling related to chemical and xenobiotic stressors.

摘要

植物的功能及其对非生物胁迫的响应在很大程度上涉及通过信号分子、信号级联和调节因子的复杂相互作用在转录组水平上的调控。然而,所有参与非生物胁迫响应的信号网络尚未完全建立。对受胁迫植物转录组的深入分析已成为一种相关的前沿方法,用于研究这些使植物应对或试图在非生物胁迫下存活的调控和信号通路。植物科学和分子生物学界已经开发了关于基因、蛋白质、蛋白质-蛋白质相互作用、蛋白质-DNA相互作用和本体论的数据库,这些都是破译此类调控和信号网络的宝贵知识来源。利用这些数据以及生物信息学工具的开发,有助于使用功能生物学方法在特定背景下(如非生物胁迫信号传导背景)理解转录组数据。本章的目的是介绍和评估一些重要的在线工具和资源,这些工具和资源将使生物信息学新手能够破译转录组数据,以表征参与非生物胁迫响应和信号传导的细胞过程和功能。案例研究的分析进一步描述了如何使用这些工具根据转录组数据构建信号网络。在这些案例研究中,特别关注了与化学和异源生物应激源相关的非生物胁迫响应和信号传导的表征。

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