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在冷驯化过程中,小麦 REMORIN(REM)家族的全基因组鉴定和特征分析。

Genome-Wide Identification and Characterization of the Wheat Remorin (REM) Family during Cold Acclimation.

出版信息

Plant Genome. 2019 Jun;12(2). doi: 10.3835/plantgenome2018.06.0040.

DOI:10.3835/plantgenome2018.06.0040
PMID:31290927
Abstract

Remorins (REMs) are plant-specific proteins that play an essential role in plant-microbe interactions. However, their roles in vernalization and abiotic stress responses remain speculative. Most remorins have a variable proline-rich -half and a more conserved -half that is predicted to form coils. A search of the wheat ( L.) database revealed the existence of 20 different genes, which we classified into six groups on the basis of whether they shared a common phylogenetic and structural origin. Analysis of the physical genomic distributions demonstrated that genes are dispersed in the wheat genome and have one to seven introns. Promoter analysis of genes revealed the presence of putative -elements related to diverse functions like development, hormonal regulation, and biotic and abiotic stress responsiveness. Expression levels of genes were measured in plants grown under field and controlled conditions and in response to hormone treatment. Our analyses revealed that 12 members of the REM family are regulated during cold acclimation in wheat in four different tissues (roots, crowns, stems, and leaves), with the highest expression in roots. Differential gene expression was found between wheat cultivars with contrasting degrees of cold tolerance, suggesting the implication of genes in cold response and tolerance. Additionally, eight genes were induced in response to abscisic acid and methyl jasmonate treatment. This genome-wide analysis of genes provides valuable resources for functional analysis aimed at understanding their role in stress adaptation.

摘要

Remorins (REMs) 是植物特异性蛋白,在植物-微生物相互作用中发挥着重要作用。然而,它们在春化和非生物胁迫响应中的作用仍在推测之中。大多数 remorins 具有可变的脯氨酸丰富的 - 一半和更保守的 - 一半,预计形成线圈。对小麦 ( L.) 数据库的搜索揭示了 20 个不同基因的存在,我们根据它们是否共享共同的系统发育和结构起源将它们分为六组。对物理基因组分布的分析表明,基因在小麦基因组中分散存在,具有一个到七个内含子。基因启动子分析显示存在与多种功能相关的假定 - 元件,如发育、激素调节以及生物和非生物胁迫响应。在田间和控制条件下以及对激素处理的植物中测量了基因的表达水平。我们的分析表明,在四个不同组织(根、冠、茎和叶)中,12 个 REM 家族成员在小麦的冷驯化过程中受到调控,在根中表达最高。在具有不同耐寒性的小麦品种之间发现了差异基因表达,表明基因参与了冷响应和耐受性。此外,有 8 个基因对脱落酸和茉莉酸甲酯处理有诱导作用。该基因的全基因组分析为功能分析提供了有价值的资源,旨在了解它们在适应胁迫中的作用。

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