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Identification of WRKY Gene Family from Dimocarpus longan and Its Expression Analysis during Flower Induction and Abiotic Stress Responses

机译:龙眼WRKY基因家族的鉴定及其在花诱导和非生物胁迫反应中的表达分析。

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摘要

Longan is an important fruit tree in the subtropical region of Southeast Asia and Australia. However, its blooming and its yield are susceptible to stresses such as droughts, high salinity, and high and low temperature. To date, the molecular mechanisms of abiotic stress tolerance and flower induction in longan have not been elucidated. WRKY transcription factors (TFs), which have been studied in various plant species, play important regulatory roles in plant growth, development, and responses to stresses. However, there is no report about WRKYs in longan. In this study, we identified 55 WRKY genes with the conserved WRKY domain and zinc finger motif in the longan genome. Based on the structural features of WRKY proteins and topology of the phylogenetic tree, the longan WRKY (DlWRKY) family was classified into three major groups (I–III) and five subgroups (IIa–IIe) in group II. Tissue expression analysis showed that 25 DlWRKYs were highly expressed in almost all organs, suggesting that these genes may be important for plant growth and organ development in longan. Comparative RNA-seq and qRT-PCR-based gene expression analysis revealed that 18 DlWRKY genes showed a specific expression during three stages of flower induction in “Sijimi” (“SJ”), which exhibited the “perpetual flowering” (PF) habit, indicating that these 18 DlWRKY genes may be involved in the flower induction and the genetic control of the perpetual flowering trait in longan. Furthermore, the RT-qPCR analysis illustrated the significant variation of 27, 18, 15, 17, 27, and 23 DlWRKY genes under SA (Salicylic acid), MeJA (Methyl Jasmonate), heat, cold, drought, or high salinity treatment, respectively, implicating that they might be stress- or hormone-responsive genes. In summary, we systematically and comprehensively analyzed the structure, evolution, and expression pattern of the DlWRKY genes. The results presented here increase our understanding of the WRKY family in fruit trees and provide a basis for the further elucidation of the biological function of DlWRKY genes in longan.
机译:龙眼是东南亚和澳大利亚亚热带地区的重要果树。但是,它的开花及其产量易受干旱,高盐度以及高低温等压力的影响。迄今为止,龙眼中非生物胁迫耐受性和花诱导的分子机制尚未阐明。 WRKY转录因子(TFs),已经在各种植物物种中进行了研究,在植物生长,发育和对胁迫的反应中起着重要的调节作用。但是,目前尚无有关龙眼WRKY的报道。在这项研究中,我们确定了55个WRKY基因,这些基因在龙眼基因组中具有保守的WRKY域和锌指基序。根据WRKY蛋白的结构特征和系统发育树的拓扑结构,第二组中的龙眼WRKY(DlWRKY)家族分为三个主要组(I–III)和五个亚组(IIa–IIe)。组织表达分析表明,在几乎所有器官中高表达25个DlWRKY,这表明这些基因可能对龙眼的植物生长和器官发育很重要。比较的基于RNA-seq和基于qRT-PCR的基因表达分析表明,18个DlWRKY基因在“ Sijimi”(“ SJ”)的花诱导的三个阶段显示出特异性表达,表现出“永生开花”(PF)的习性,表明这18个DlWRKY基因可能参与了龙眼的花诱导和永生花性状的遗传调控。此外,RT-qPCR分析显示在SA(水杨酸),MeJA(茉莉酸甲酯),高温,低温,干旱或高盐度处理下,27、18、15、17、27和23个DlWRKY基因有显着变化,分别暗示它们可能是应激或激素反应基因。总而言之,我们系统地和全面地分析了DlWRKY基因的结构,进化和表达模式。本文介绍的结果加深​​了我们对果树中WRKY家族的了解,并为进一步阐明龙眼DlWRKY基因的生物学功能提供了基础。

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