首页> 美国卫生研究院文献>Journal of Zhejiang University. Science. B >Identification of candidate genes for drought stress tolerance in rice by the integration of a genetic (QTL) map with the rice genome physical map
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Identification of candidate genes for drought stress tolerance in rice by the integration of a genetic (QTL) map with the rice genome physical map

机译:通过遗传(QTL)图谱与水稻基因组物理图谱的整合鉴定水稻耐旱候选基因

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摘要

Genetic improvement for drought stress tolerance in rice involves the quantitative nature of the trait, which reflects the additive effects of several genetic loci throughout the genome. Yield components and related traits under stressed and well-water conditions were assayed in mapping populations derived from crosses of Azucena×IR64 and Azucena×Bala. To find the candidate rice genes underlying Quantitative Trait Loci (QTL) in these populations, we conducted in silico analysis of a candidate region flanked by the genetic markers RM212 and RM319 on chromosome 1, proximal to the semi-dwarf (sd1) locus. A total of 175 annotated genes were identified from this region. These included 48 genes annotated by functional homology to known genes, 23 pseudogenes, 24 ab initio predicted genes supported by an alignment match to an EST (Expressed sequence tag) of unknown function, and 80 hypothetical genes predicted solely by ab initio means. Among these, 16 candidate genes could potentially be involved in drought stress response.
机译:水稻对干旱胁迫耐受性的遗传改良涉及该性状的定量性质,这反映了整个基因组中几个遗传基因座的累加效应。在绘制来自Azucena×IR64和Azucena×Bala杂交的种群的图谱中,分析了在胁迫和富水条件下的产量构成及相关性状。为了在这些群体中找到潜在的定量性状基因位点(QTL)的候选水稻基因,我们进行了计算机分析,对一个候选区域进行侧翼分析,该候选区侧翼位于1号染色体上靠近半矮位点(sd1)的遗传标记RM212和RM319。从该区域总共鉴定了175个带注释的基因。这些包括48个通过与已知基因的功能同源性注释的基因,23个假基因,24个从头开始预测的基因(与未知功能的EST(表达序列标签)比对支持)和80个仅通过从头开始的方式预测的假想基因。其中,有16个候选基因可能与干旱胁迫反应有关。

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