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茶树(Camellia sinensis)中响应生物和非生物胁迫的 WRKY 转录因子的全基因组鉴定和表达模式分析。

Genome-wide identification and expression pattern analysis of WRKY transcription factors in response to biotic and abiotic stresses in tea plants (Camellia sinensis).

机构信息

College of Horticulture, Laboratory of Quality & Safety Risk Assessment for Fruit (Qingdao), Ministry of Agriculture and Rural Affairs, Qingdao Agricultural University, Qingdao, Shandong, 266109, China.

School of Life Science, Anhui Agricultural University, Hefei, Anhui, 230036, China.

出版信息

Plant Physiol Biochem. 2024 Jun;211:108670. doi: 10.1016/j.plaphy.2024.108670. Epub 2024 Apr 28.

Abstract

Plants would encounter various biotic and abiotic stresses during the growth and development. WRKY transcription factors (TFs) as plant-specific TFs, play an important role in responding to various adverse circumstances. Despite some advances were achieved in functional studies of WRKY TFs in tea plants, systematic analysis of the involvement of CsWRKY TFs when facing cold, salt, drought stresses and pathogen and insect attack was lacked. In present study, a total of 78 CsWRKY TFs were identified following the genomic and transcript databases. The expression patterns of CsWRKYs in various organs of tea plants and the expression profiles in response to biotic and abiotic stresses were investigated by examining representative RNA-seq data. Moreover, the effects of hormone treatments (SA and MeJA) on the transcription levels of WRKY TFs were also investigated. The phylogenetic tree of CsWRKY TFs from different species indicated the functional diversity of WRKY TFs was not closely related to their protein classification. Concurrently, CsWRKY70-2 TF was identified as a positive regulator in response to drought stress. This study provided solid and valuable information, helping us better understand the functional diversity of CsWRKY TFs, and laid the foundation for further research on the function of key WRKY genes in tea plants.

摘要

在生长和发育过程中,植物会遇到各种生物和非生物胁迫。WRKY 转录因子(TFs)作为植物特异性 TFs,在应对各种不利环境方面发挥着重要作用。尽管在茶树中 WRKY TFs 的功能研究方面取得了一些进展,但对于 CsWRKY TFs 在面对寒冷、盐、干旱胁迫以及病原体和昆虫攻击时的参与,缺乏系统的分析。在本研究中,根据基因组和转录数据库共鉴定出 78 个 CsWRKY TFs。通过检查代表性的 RNA-seq 数据,研究了 CsWRKYs 在茶树不同器官中的表达模式以及对生物和非生物胁迫的表达谱。此外,还研究了激素处理(SA 和 MeJA)对 WRKY TFs 转录水平的影响。来自不同物种的 CsWRKY TFs 的系统发育树表明,WRKY TFs 的功能多样性与其蛋白分类没有密切关系。同时,鉴定出 CsWRKY70-2 TF 是响应干旱胁迫的正调控因子。本研究提供了可靠且有价值的信息,有助于我们更好地理解 CsWRKY TFs 的功能多样性,并为进一步研究茶树中关键 WRKY 基因的功能奠定了基础。

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