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基因组范围内研究和表达分析谷子(Setaria italica)HD-Zip 转录因子

Genome-Wide Investigation and Expression Profiling of HD-Zip Transcription Factors in Foxtail Millet ( L.).

机构信息

National Engineering Laboratory of Crop Stress Resistance Breeding, Anhui Agricultural University, Hefei 230036, China.

出版信息

Biomed Res Int. 2018 May 15;2018:8457614. doi: 10.1155/2018/8457614. eCollection 2018.

Abstract

HD-Zip proteins represent the major transcription factors in higher plants, playing essential roles in plant development and stress responses. Foxtail millet is a crop to investigate the systems biology of millet and biofuel grasses and the HD-Zip gene family has not been studied in foxtail millet. For further investigation of the expression profile of the HD-Zip gene family in foxtail millet, a comprehensive genome-wide expression analysis was conducted in this study. We found 47 protein-encoding genes in foxtail millet using BLAST search tools; the putative proteins were classified into four subfamilies, namely, subfamilies I, II, III, and IV. Gene structure and motif analysis indicate that the genes in one subfamily were conserved. Promotor analysis showed that HD-Zip gene was involved in abiotic stress. Duplication analysis revealed that 8 (~17%) hdz genes were tandemly duplicated and 28 (58%) were segmentally duplicated; purifying duplication plays important roles in gene expansion. Microsynteny analysis revealed the maximum relationship in foxtail millet-sorghum and foxtail millet-rice. Expression profiling upon the abiotic stresses of drought and high salinity and the biotic stress of ABA revealed that some genes regulated responses to drought and salinity stresses via an ABA-dependent process, especially and Our study provides new insight into evolutionary and functional analyses of HD-Zip genes involved in environmental stress responses in foxtail millet.

摘要

HD-Zip 蛋白是高等植物中主要的转录因子,在植物发育和应激反应中发挥着重要作用。谷子是研究谷子和生物燃料草系统生物学的作物,而 HD-Zip 基因家族尚未在谷子中研究过。为了进一步研究谷子中 HD-Zip 基因家族的表达谱,本研究进行了全面的全基因组表达分析。我们使用 BLAST 搜索工具在谷子中发现了 47 个编码蛋白的基因;推测的蛋白质被分为四个亚家族,即亚家族 I、II、III 和 IV。基因结构和基序分析表明,一个亚家族中的基因是保守的。启动子分析表明,HD-Zip 基因参与非生物胁迫。复制分析显示,8 个(约 17%)hdz 基因串联复制,28 个(58%)基因片段复制;纯化复制在基因扩展中起着重要作用。微同线性分析显示,谷子-高粱和谷子-水稻的关系最大。非生物胁迫干旱和高盐以及生物胁迫 ABA 的表达谱分析表明,一些基因通过 ABA 依赖的过程调节对干旱和盐胁迫的反应,特别是 和 。我们的研究为谷子中参与环境胁迫反应的 HD-Zip 基因的进化和功能分析提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e269/5976958/9924a4959827/BMRI2018-8457614.001.jpg

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