Genome-Wide Identification and Characterization of the WRKY Gene Family and Their Associated Regulatory Elements in Fortunella hindsii.

IF 1.7 4区 生物学 Q4 EVOLUTIONARY BIOLOGY
Evolutionary Bioinformatics Pub Date : 2025-03-23 eCollection Date: 2025-01-01 DOI:10.1177/11769343241312740
Hadia Hussain, Aleena Alam, Iqra Mehar, Maryam Noor, Othman Al-Dossary, Bader Alsubaie, Muneera Q Al-Mssallem, Jameel Mohammed Al-Khayri
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引用次数: 0

Abstract

Background: The WRKY gene family is identified as one of the most prominent transcription factor families in plants and is involved in various biological processes such as metabolism, growth and development, and response to biotic and abiotic stresses. In many plant species, the WRKY gene family was widely studied and analyzed but little to no information for Fortunella hindsii. However, the completion of the whole genome sequencing of Fortunella hindsii allowed us to investigate the genome-wide analysis of WRKY proteins.

Objective: The main objective of this study was to analyze and identify the WRKY gene family in Fortunella hindsii genome.

Methodology: Various bioinformatics approaches have been used to conduct this study.

Results: We constituted 46 members of the Fortunella hindsii WRKY gene family, which were unevenly distributed on all nine chromosomes. The phylogenetic relationship of predicted WRKY proteins of Fortunella hindsii with the WRKY proteins of Arabidopsis showed that 46 FhWRKY genes were divided into three main groups (G1, G2, G3) with five subgroups (2A, 2B, 2C, 2D, and 2E) of G2 group. Domain, conserved motif identification, and gene structure were conducted and the results found that these FhWRKY proteins have conserved identical characteristics within groups and maintain differences between groups. In silico subcellular localization, results showed that FhWRKY genes are located in the nucleus. The cis-regulatory element analysis identified several key CREs that are significantly associated with light, hormone responses, and stress. The gene ontology analysis of these predicted FhWRKY genes showed that these genes are significantly enriched in sequence-specific DNA binding, transcriptional activity, cellular biosynthesis, and metabolic processes.

Conclusion: Therefore, overall, our results provided an excellent foundation for further functional characterization of WRKY genes with an aim of Fortunella hindsii citrus crop improvement.

背景:WRKY 基因家族被认为是植物中最重要的转录因子家族之一,参与新陈代谢、生长发育以及对生物和非生物胁迫的响应等多种生物过程。在许多植物物种中,WRKY 基因家族都得到了广泛的研究和分析,但几乎没有关于后稷的信息。然而,福寿螺全基因组测序的完成使我们能够对 WRKY 蛋白进行全基因组分析:本研究的主要目的是分析和鉴定 Fortunella hindsii 基因组中的 WRKY 基因家族:研究采用了多种生物信息学方法:结果:我们组成了46个Fortunella hindsii WRKY基因家族成员,它们不均匀地分布在全部9条染色体上。拟南芥WRKY蛋白的系统发育关系表明,46个FhWRKY基因被分为三大类(G1、G2、G3),其中G2类有5个亚类(2A、2B、2C、2D和2E)。结果发现,这些 FhWRKY 蛋白在组内具有相同的保守特征,而在组间则保持差异。结果显示,FhWRKY基因位于细胞核内。顺式调控元件分析发现了几个与光照、激素反应和胁迫显著相关的关键 CREs。对这些预测的 FhWRKY 基因进行的基因本体分析表明,这些基因在序列特异性 DNA 结合、转录活性、细胞生物合成和代谢过程中都有显著的富集:因此,总的来说,我们的研究结果为进一步确定 WRKY 基因的功能特性奠定了良好的基础,其目的是改良福星柑橘作物。
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来源期刊
Evolutionary Bioinformatics
Evolutionary Bioinformatics 生物-进化生物学
CiteScore
4.20
自引率
0.00%
发文量
25
审稿时长
12 months
期刊介绍: Evolutionary Bioinformatics is an open access, peer reviewed international journal focusing on evolutionary bioinformatics. The journal aims to support understanding of organismal form and function through use of molecular, genetic, genomic and proteomic data by giving due consideration to its evolutionary context.
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