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Identification and Functional Characterization of Genes Underlying Major QTL for Water use Efficiency in Rice using in silico approach

机译:利用计算机方法对水稻水分利用效率主要QTL基因的鉴定和功能表征

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摘要

The understanding of plant responses to water limitation at the genomic level provides a foundation for gene discovery and genetic engineering of rice for improving water use efficiency (WUE). Identification of quantitative trait loci (QTLs) controlling WUE related traits will help in precise introgression of desired genomic regions (QTLs) through marker assisted selection and genetic engineering. In the present investigation the major QTL region on chromosome 4 (11.7-29.2 cM) controlling traits related to WUE was selected through literature survey and database search and attempts were made through in silico approach to characterize genes underlying it. A total 147 genes were found to be located within this region as reported from publicly availablemicroarray database. Spatial and temporal expression using qTELLER software revealed that five genes were likely candidates for water use efficiency. The genes underlying the QTLs have been classified according to their function based on the gene ontology and significant GO terms.
机译:在基因组水平上对植物对水分限制的响应的理解为水稻的基因发现和基因工程改善水利用效率(WUE)提供了基础。识别控制WUE相关性状的数量性状基因座(QTL),将有助于通过标记辅助选择和基因工程精确地渗入所需基因组区域(QTL)。在本研究中,通过文献调查和数据库搜索选择了与WUE相关的4号染色体上主要的QTL控制性状(11.7-29.2 cM),并通过计算机方法试图表征其潜在基因。根据可公开获得的微阵列数据库的报告,发现该区域内共有147个基因。使用qTELLER软件进行的时空表达表明,五个基因可能是提高水利用效率的候选基因。基于基因本体论和重要的GO术语,根据QTL的功能对其基因进行了分类。

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