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X1同源基因家族作为玉米(Zea mays L.)生物和非生物胁迫响应的核心组分。

X1-homologous genes family as central components in biotic and abiotic stresses response in maize (Zea mays L.).

作者信息

Zhang Zhongbao, Chen Yajuan, Zhao Dan, Li Ruifen, Wang Hongzhi, Zhang Jiewei, Wei Jianhua

机构信息

Beijing Agro-Biotechnology Research Center, Beijing Academy of Agriculture and Forestry Sciences, Beijing, 100097, China.

出版信息

Funct Integr Genomics. 2014 Mar;14(1):101-10. doi: 10.1007/s10142-013-0343-2. Epub 2013 Oct 26.

Abstract

X1-homologous genes (XHS) encode plant specific proteins containing three basic domains (XH, XS, zf-XS). In spite of their physiological importance, systematic analyses of ZmXHS genes have not yet been explored. In this study, we isolated and characterized ten ZmXHS genes in a whole-of-genome analysis of the maize genome. A total of ten members of this family were identified in maize genome. The ten ZmXHS genes were distributed on seven maize chromosomes. Multiple alignment and motif display results revealed that most ZmXHS proteins share all the three conserved domains. Putative cis-elements involved in abiotic stress responsive, phytohormone, pollen-specific and quantitative, seed development and germination, light and circadian rhythms regulation, Ca(2+)-responsive, root hair cell-specific, and CO(2)-responsive transcriptional activation were observed in the promoters of ZmXHS genes. Yeast hybrid assay revealed that the XH domain of ZmXHS5 was necessary for interaction with itself and ZmXHS2. Microarray data showed that the ZmXHS genes had tissue-specific expression patterns in the maize developmental steps and biotic stresses response. Quantitative real-time PCR analysis results indicated that, except ZmXHS9, the other nine ZmXHS genes were induced in the seedling leaves by at least one of the four abiotic stresses applied.

摘要

X1同源基因(XHS)编码含有三个基本结构域(XH、XS、zf-XS)的植物特异性蛋白。尽管它们具有重要的生理意义,但尚未对ZmXHS基因进行系统分析。在本研究中,我们在玉米基因组的全基因组分析中分离并鉴定了10个ZmXHS基因。在玉米基因组中总共鉴定出该家族的10个成员。这10个ZmXHS基因分布在7条玉米染色体上。多序列比对和基序展示结果表明,大多数ZmXHS蛋白都具有所有三个保守结构域。在ZmXHS基因的启动子中观察到了参与非生物胁迫响应、植物激素、花粉特异性和定量、种子发育和萌发、光和昼夜节律调节、Ca(2+)响应、根毛细胞特异性以及CO(2)响应转录激活的推定顺式元件。酵母杂交试验表明,ZmXHS5的XH结构域对于其自身与ZmXHS2的相互作用是必需的。微阵列数据表明,ZmXHS基因在玉米发育阶段和生物胁迫响应中具有组织特异性表达模式。定量实时PCR分析结果表明,除ZmXHS9外,其他9个ZmXHS基因在幼苗叶片中至少受到四种非生物胁迫之一的诱导。

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