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全基因组调查和表达分析表明,谷氧还蛋白基因家族成员在水稻发育和对各种刺激的反应中具有多种作用。

Genome-wide survey and expression analysis suggest diverse roles of glutaredoxin gene family members during development and response to various stimuli in rice.

机构信息

National Institute of Plant Genome Research (NIPGR), Aruna Asaf Ali Marg, New Delhi 110 067, India.

出版信息

DNA Res. 2010 Dec;17(6):353-67. doi: 10.1093/dnares/dsq023. Epub 2010 Nov 2.

Abstract

Glutaredoxins (GRXs) are glutathione-dependent oxidoreductase enzymes involved in a variety of cellular processes. In this study, our analysis revealed the presence of 48 genes encoding GRX proteins in the rice genome. GRX proteins could be classified into four classes, namely CC-, CGFS-, CPYC- and GRL-type, based on phylogenetic analysis. The classification was supported with organization of predicted conserved putative motifs in GRX proteins. We found that expansion of this gene family has occurred largely via whole genome duplication events in a species-specific manner. We explored rice oligonucleotide array data to gain insights into the function of GRX gene family members during various stages of development and in response to environmental stimuli. The comprehensive expression analysis suggested diverse roles of GRX genes during growth and development in rice. Some of the GRX genes were expressed in specific organs/developmental stages only. The expression of many of rice GRX genes was influenced by various phytohormones, abiotic and biotic stress conditions, suggesting an important role of GRX proteins in response to these stimuli. The identification of GRX genes showing differential expression in specific tissues or in response to environmental stimuli provide a new avenue for in-depth characterization of selected genes of importance.

摘要

谷胱甘肽还原酶(GRXs)是一类依赖谷胱甘肽的氧化还原酶,参与多种细胞过程。在本研究中,我们的分析表明在水稻基因组中存在 48 个编码 GRX 蛋白的基因。根据系统发生分析,GRX 蛋白可分为 CC-、CGFS-、CPYC-和 GRL 型四类。该分类得到了预测的 GRX 蛋白中保守假定基序的组织的支持。我们发现,该基因家族的扩张主要是以物种特异性的全基因组复制事件发生的。我们探索了水稻寡核苷酸阵列数据,以深入了解 GRX 基因家族成员在不同发育阶段和应对环境刺激时的功能。全面的表达分析表明,GRX 基因在水稻的生长和发育过程中具有多种功能。一些 GRX 基因仅在特定器官/发育阶段表达。许多水稻 GRX 基因的表达受到各种植物激素、非生物和生物胁迫条件的影响,表明 GRX 蛋白在应对这些刺激时起着重要作用。鉴定在特定组织中差异表达或对环境刺激有反应的 GRX 基因,为深入研究选定的重要基因提供了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9a9/2993539/f8f192d7ad4c/dsq02301.jpg

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