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大麦全基因组膨胀素基因家族的鉴定及基于 RNA-seq 的干旱相关膨胀素鉴定。

Genome-wide identification of expansin gene family in barley and drought-related expansins identification based on RNA-seq.

机构信息

Department of Agronomy, College of Agriculture and Biotechnology, Zijingang Campus, Zhejiang University, 310058, Hangzhou, People's Republic of China.

Institute of Horticulture, Zhejiang Academy of Agricultural Sciences, Hangzhou, 310021, People's Republic of China.

出版信息

Genetica. 2021 Dec;149(5-6):283-297. doi: 10.1007/s10709-021-00136-4. Epub 2021 Oct 13.

Abstract

Expansins are cell wall loosening proteins and involved in various developmental processes and abiotic stress. No systematic research, however, has been conducted on expansin genes family in barley. A total of 46 expansins were identified and could be classified into three subfamilies in Hordeum vulgare: HvEXPA, HvEXPB, and HvEXLA. All expansin proteins contained two conserved domains: DPBB_1 and Pollen_allerg_1. Expansins, in the same subfamily, share similar motifs composition and exon-intron organization; but greater differences were found among different subfamilies. Expansins are distributed unevenly on 7 barley chromosomes; tandem duplicates, including the collinear tandem array, contribute to the forming of the expansin genes family in barley with few whole-genome duplication events. Most HvEXPAs mainly expressed in embryonic and root tissues. HvEXPBs and HvEXLAs showed different expression patterns in 16 tissues during different developmental stages. In response to water deficit, expansins in wild barley were more sensitive than that in cultivated barley; the expressions of HvEXPB5 and HvEXPB6 were significantly induced in wild barley under drought stress. Our study provides a comprehensive and systematic analysis of the barley expansin genes in genome-wide level. This information will lay a solid foundation for further functional exploration of expansin genes in plant development and drought stress tolerance.

摘要

扩展蛋白是细胞壁松弛蛋白,参与多种发育过程和非生物胁迫。然而,目前尚未对大麦扩展蛋白基因家族进行系统研究。本研究共鉴定出 46 个大麦扩展蛋白,可分为HvEXPA、HvEXPB 和 HvEXLA 三个亚家族。所有扩展蛋白均含有两个保守结构域:DPBB_1 和 Pollen_allerg_1。同一亚家族的扩展蛋白具有相似的基序组成和外显子-内含子组织;但不同亚家族之间存在较大差异。扩展蛋白在大麦的 7 条染色体上不均匀分布;串联重复,包括共线性串联排列,有助于大麦扩展蛋白基因家族的形成,而全基因组复制事件较少。大多数 HvEXPAs 主要在胚胎和根组织中表达。HvEXPBs 和 HvEXLAs 在不同发育阶段的 16 种组织中表现出不同的表达模式。在应对水分亏缺时,野生大麦中的扩展蛋白比栽培大麦中的更为敏感;在干旱胁迫下,野生大麦中的 HvEXPB5 和 HvEXPB6 表达显著诱导。本研究在全基因组水平上对大麦扩展蛋白基因进行了全面系统的分析。这些信息将为进一步研究扩展蛋白基因在植物发育和抗旱性中的功能奠定基础。

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