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全基因组探索杜伦小麦(硬粒小麦亚种)中的 C2H2 锌指家族:揭示其在生物过程特别是应激反应中的作用。

Genome-wide exploration of C2H2 zinc finger family in durum wheat (Triticum turgidum ssp. Durum): insights into the roles in biological processes especially stress response.

机构信息

Department of Plant Breeding, Faculty of Crop Science, Sari Agricultural Sciences and Natural Resources University (SANRU), Sari, Iran.

Department of Entrepreneurship Technology, Faculty of Management, Payame Noor University (PNU), Babol, Iran.

出版信息

Biometals. 2018 Dec;31(6):1019-1042. doi: 10.1007/s10534-018-0146-y. Epub 2018 Oct 4.

DOI:10.1007/s10534-018-0146-y
PMID:30288657
Abstract

C2H2 type of zinc finger transcription factors (C2H2-ZFP TFs) play crucial roles in plant developments and stress response. Regarding its importance, genome-wide study of C2H2-ZFs were performed in multiple important plant species, but any such investigation was not fulfilled in Triticum turgidum ssp. Durum (durum wheat) as an important nutritional crop. The present study identified 122 C2H2-ZFs in durum wheat and physically mapped them onto the genome. The phylogenetic analysis classified these TFs into six major groups. Genes structure and conserved motifs assay showed TtC2H2-ZF involvement in the important cellular functions. Comparative phylogeny between durum wheat TtC2H2-ZF genes and the orthologs in rice revealed the evolutionary relationships of C2H2-ZF proteins. The gene ontology and promoter cis-element analysis indicated that most of TtC2H2-ZF genes are involved in multiple molecular functions including metal ion-binding and various stimuli responses. Further, the miRNAs targeting TtC2H2-ZF transcripts, homology modeling and proteins interaction network were also demonstrated, suggesting the vital cellular functions of TtC2H2-ZFs during various circumstances. The expression heatmap demonstrated differential and tissue-specific expression patterns of these genes. Expression profiling of this gene family members in response to dehydration and heat stresses showed differential expression pattern of these genes at multiple time points of stresses. This study can prepare a comprehensive overview of the durum wheat C2H2-ZF gene family and may provide a new perspective on the evolution of them, which will form the basis for further investigation of the roles of this family members and future genetic engineering studies in crops.

摘要

C2H2 型锌指转录因子(C2H2-ZFP TFs)在植物发育和应激反应中发挥着关键作用。鉴于其重要性,对多种重要植物物种进行了全基因组范围内的 C2H2-ZF 研究,但作为重要营养作物的 Triticum turgidum ssp. Durum(硬质小麦)尚未进行任何此类研究。本研究在硬质小麦中鉴定了 122 个 C2H2-ZF,并将其物理映射到基因组上。系统发育分析将这些 TF 分为六个主要组。基因结构和保守基序分析表明 TtC2H2-ZF 参与了重要的细胞功能。硬质小麦 TtC2H2-ZF 基因与水稻同源基因的比较系统发育揭示了 C2H2-ZF 蛋白的进化关系。基因本体论和启动子顺式元件分析表明,大多数 TtC2H2-ZF 基因参与多种分子功能,包括金属离子结合和各种刺激反应。此外,还证明了 TtC2H2-ZF 转录物的靶 miRNA、同源建模和蛋白质相互作用网络,表明 TtC2H2-ZFs 在各种情况下具有重要的细胞功能。表达热图显示了这些基因的差异和组织特异性表达模式。这些基因家族成员对脱水和热应激的表达谱分析表明,这些基因在应激的多个时间点表现出不同的表达模式。本研究可以全面概述硬质小麦 C2H2-ZF 基因家族,并为它们的进化提供新的视角,这将为进一步研究该家族成员的作用以及未来在作物中的遗传工程研究奠定基础。

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