非生物胁迫下藜麦 R2R3-MYB 基因家族的全基因组鉴定、系统发育和表达分析

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-02-01 DOI:10.1071/FP23261
Pengcheng Ding, Peng Tang, Xiaofen Li, Adeela Haroon, Saima Nasreen, Hafeez Noor, Kotb A Attia, Asmaa M Abushady, Rongzhen Wang, Kaiyuan Cui, Xiangyun Wu, Min Sun, Zhiqiang Gao
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引用次数: 0

摘要

MYB 转录因子(TF)是植物中最大的基因家族之一,负责多个生物过程。R2R3-MYB 基因家族是调节植物初级和次级代谢、生长和发育以及对激素和胁迫反应的重要角色。通过系统进化分析、基因结构分析和基因主题确定,R2R3-MYB 基因家族被分为 27 个亚群。通过同源染色体分析得出的证据表明,CqR2R3-MYBs基因家族具有串联和节段重复事件。以 RNA-Seq 数据为基础,研究了盐处理下不同组织的表达模式,结果发现 CqR2R3-MYB 基因在藜麦植株根部和茎部均有高表达。一半以上的 CqR2R3-MYB 基因在盐胁迫下有表达。基于这一结果,CqR2R3-MYB可能调控藜麦植物的生长发育和对非生物胁迫的抗性。这些发现全面揭示了CqR2R3-MYBs基因家族成员在藜麦中的作用,候选的MYB基因家族成员可进一步研究其在作物耐受非生物胁迫中的作用。
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Genome-wide identification, phylogeny and expression analysis of the R2R3-MYB gene family in quinoa (Chenopodium quinoa) under abiotic stress.

The MYB transcription factor (TF) are among the largest gene families of plants being responsible for several biological processes. The R2R3-MYB gene family are integral player regulating plant primary and secondary metabolism, growth and development, and responses to hormones and stresses. The phylogenetic analysis combined with gene structure analysis and motif determination resulted in division of R2R3-MYB gene family into 27 subgroups. Evidence generated from synteny analyses indicated that CqR2R3-MYBs gene family is featured by tandem and segmental duplication events. On the basis of RNA-Seq data, the expression patterns of different tissues under salt treatment were investigated resulting CqR2R3-MYB genes high expression both in roots and stem of quinoa (Chenopodium quinoa ) plants. More than half of CqR2R3-MYB genes showed expression under salt stress. Based on this result, CqR2R3-MYB s may regulate quinoa plant growth development and resistance to abiotic stresses. These findings provided comprehensive insights on role of CqR2R3-MYBs gene family members in quinoa and candidate MYB gene family members can be further studies on their role for abiotic stress tolerance in crop plants.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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