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水稻品种间抗病和防御反应基因的全基因组分布、组织及功能特征分析

Genome-Wide Distribution, Organisation and Functional Characterization of Disease Resistance and Defence Response Genes across Rice Species.

作者信息

Singh Sangeeta, Chand Suresh, Singh N K, Sharma Tilak Raj

机构信息

National Research Center on Plant Biotechnology, Pusa Campus, New Delhi, 110012, India; School of Life Sciences, Devi Ahilya University, Khandwa Road, Indore, 452017, India.

School of Life Sciences, Devi Ahilya University, Khandwa Road, Indore, 452017, India.

出版信息

PLoS One. 2015 Apr 22;10(4):e0125964. doi: 10.1371/journal.pone.0125964. eCollection 2015.

Abstract

The resistance (R) genes and defense response (DR) genes have become very important resources for the development of disease resistant cultivars. In the present investigation, genome-wide identification, expression, phylogenetic and synteny analysis was done for R and DR-genes across three species of rice viz: Oryza sativa ssp indica cv 93-11, Oryza sativa ssp japonica and wild rice species, Oryza brachyantha. We used the in silico approach to identify and map 786 R -genes and 167 DR-genes, 672 R-genes and 142 DR-genes, 251 R-genes and 86 DR-genes in the japonica, indica and O. brachyanth a genomes, respectively. Our analysis showed that 60.5% and 55.6% of the R-genes are tandemly repeated within clusters and distributed over all the rice chromosomes in indica and japonica genomes, respectively. The phylogenetic analysis along with motif distribution shows high degree of conservation of R- and DR-genes in clusters. In silico expression analysis of R-genes and DR-genes showed more than 85% were expressed genes showing corresponding EST matches in the databases. This study gave special emphasis on mechanisms of gene evolution and duplication for R and DR genes across species. Analysis of paralogs across rice species indicated 17% and 4.38% R-genes, 29% and 11.63% DR-genes duplication in indica and Oryza brachyantha, as compared to 20% and 26% duplication of R-genes and DR-genes in japonica respectively. We found that during the course of duplication only 9.5% of R- and DR-genes changed their function and rest of the genes have maintained their identity. Syntenic relationship across three genomes inferred that more orthology is shared between indica and japonica genomes as compared to brachyantha genome. Genome wide identification of R-genes and DR-genes in the rice genome will help in allele mining and functional validation of these genes, and to understand molecular mechanism of disease resistance and their evolution in rice and related species.

摘要

抗性(R)基因和防御反应(DR)基因已成为培育抗病品种的重要资源。在本研究中,对三种水稻品种,即籼稻品种93 - 11、粳稻和野生稻短药野生稻中的R基因和DR基因进行了全基因组鉴定、表达、系统发育和共线性分析。我们采用电子克隆方法分别在粳稻、籼稻和短药野生稻基因组中鉴定并定位了786个R基因和167个DR基因、672个R基因和142个DR基因、251个R基因和86个DR基因。我们的分析表明,籼稻和粳稻基因组中分别有60.5%和55.6%的R基因在基因簇内串联重复,并分布于所有水稻染色体上。系统发育分析以及基序分布表明基因簇中的R基因和DR基因具有高度保守性。R基因和DR基因的电子表达分析表明,超过85%的基因是表达基因,在数据库中有相应的EST匹配。本研究特别强调了跨物种R基因和DR基因的进化和复制机制。对水稻品种间旁系同源基因的分析表明,籼稻和短药野生稻中R基因的重复率分别为17%和4.38%,DR基因的重复率分别为29%和11.63%,而粳稻中R基因和DR基因的重复率分别为20%和26%。我们发现,在复制过程中,只有9.5%的R基因和DR基因改变了功能,其余基因保持了其原有特性。三个基因组间的共线性关系推断,与短药野生稻基因组相比,籼稻和粳稻基因组之间共享的直系同源性更多。水稻基因组中R基因和DR基因的全基因组鉴定将有助于这些基因的等位基因挖掘和功能验证,并有助于了解水稻及相关物种的抗病分子机制及其进化。

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