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双钩藤 WRKY 转录因子的系统发育和转录分析。

Phylogenetic and Transcription Analysis of Sieb. et Zucc. WRKY Transcription Factors.

机构信息

Jiangsu Provincial Platform for Conservation and Utilization of Agricultural Germplasm, Institute of Botany, Jiangsu Province and Chinese Academy of Sciences, Nanjing, China.

Jiangsu Key Laboratory for the Research and Utilization of Plant Resources, Institute of Botany, Jiangsu Province and Chinese Academy of Sciences, Nanjing, China.

出版信息

DNA Cell Biol. 2020 Jul;39(7):1141-1154. doi: 10.1089/dna.2019.5254. Epub 2020 May 12.

Abstract

WRKY transcription factors are known to play important roles in the regulation of various aspects of plant growth and development, including germination, stress resistance, and senescence. Nevertheless, there is little information about the genes in Sieb. et Zucc., an important semimangrove plant. In this study, genes in were identificated based on Illumina RNA-sequencing and isoform sequencing from salt-treated roots. Then phylogenetic analysis and conserved motif analysis of the WRKY family in and were used to classify genes. Sixteen genes were selected from different groups to detect their expression patterns using real-time quantitative PCR in different organ (root, old leaf, tender leaf, receptacle, petal, or stamen) from 10-year-old plants grown in their natural environment and in seedlings with 8 to 10 true leaves challenged by phytohormone (salicylic acid, methyl jasmonate, or abscisic acid) and abiotic stress (drought, salt, or high temperature). As a result, the identified 78 genes were divided into two major groups and several subgroups based on their structural and phylogenetic features. Most transcripts of the selected 16 genes were more abundant in old than in tender leaves of . genes were regulated in reaction to abiotic stresses and phytohormone treatments and may participate in signaling networks to improve plant stress resistance. Some of genes behaved as would be predicted based on their homology with genes, but others showed divergent behavior. This systematic analysis lays the foundation for further identification of gene functions, with the aim of improving woody plants.

摘要

WRKY 转录因子在植物生长发育的各个方面(包括萌发、抗逆性和衰老)的调控中起着重要作用。然而,有关盐生半红树植物海桑属中的基因的信息却很少。本研究基于 Illumina RNA 测序和盐处理根的异构体测序,鉴定了海桑属中的基因。然后,对 WRKY 家族在海桑属和中进行了系统发育分析和保守基序分析,对基因进行了分类。从不同组中选择了 16 个基因,并用实时定量 PCR 在自然环境中生长的 10 年生海桑植株和具有 8-10 片真叶的幼苗中不同器官(根、老叶、嫩叶、花序、花瓣或雄蕊)中检测其表达模式,幼苗受到植物激素(水杨酸、茉莉酸甲酯或脱落酸)和非生物胁迫(干旱、盐或高温)的挑战。结果,根据结构和系统发育特征,鉴定出的 78 个基因被分为两大组和几个亚组。所选 16 个基因的大多数转录本在老叶中比嫩叶中更为丰富。基因对非生物胁迫和植物激素处理有调控作用,可能参与信号网络以提高植物的抗逆性。一些基因的行为与根据与基因的同源性预测的行为一致,但其他基因的行为则不同。该系统分析为进一步鉴定基因功能奠定了基础,目的是改善木本植物。

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