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Identification of a drought tolerant introgression line derived from Dongxiang common wild rice (O. rufipogon Griff.).

机译:鉴定自东乡普通野生稻(O. rufipogon Griff。)的耐旱渗入系。

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摘要

Construction of introgression lines using cultivated rice as recipient and wild rice is a novel approach to explore primitive and broad genetic resources in rice breeding. We recently generated a set of 159 introgression lines via a backcrossing program using an elite Indica cultivar rice Guichao 2 (O. sativa L. ssp. indica) as recipient and a common wild rice Dongxiang accession (O. rufipogon Griff.) as donor. In this study, we have evaluated the previously constructed 159 introgression lines for drought-tolerance. A total of 12 quantitative trait loci (QTLs) related to drought tolerance were mapped. Furthermore, a drought tolerant introgression line, IL23, was identified and characterized. Genotype analysis of IL23 demonstrated that IL23 contained two QTLs associated with drought tolerance, qSDT2-1 and qSDT12-2, which were located on chromosome 2 and 12 within the two introgressed segments derived from the common wild rice, respectively. Physiological characterization, including measurement of water loss, osmotic potential, electrolytical leakage, MDA content, soluble sugars content and the leaf temperature, revealed that IL23 showed the characteristics associated with drought tolerance. Identification and characterization of IL23 would provide a useful basis for isolation of novel genes associated with drought tolerance and for molecular breeding of drought tolerant rice. Furthermore, the results in this study indicated that construction of introgression lines from common wild rice should be an appropriate approach to obtain favorable genetic materials..
机译:以栽培稻为受体和野生稻构建基因渗入系是探索水稻育种原始和广泛遗传资源的新途径。我们最近通过回交计划产生了159个基因渗入系,使用的是优质印度d稻Guichao 2(O. sativa L. ssp。indica)作为接受者,以及普通野生稻东乡种(O. rufipogon Griff。)作为供体。在这项研究中,我们评估了先前构建的159个渗水系的耐旱性。总共绘制了12个与耐旱性相关的数量性状基因座(QTL)。此外,鉴定并鉴定了耐旱渗入系IL23。 IL23的基因型分析表明,IL23包含两个与耐旱性相关的QTL,即qSDT2-1和qSDT12-2,它们分别位于源自普通野生稻的两个渐渗片段中的2号染色体和12号染色体上。生理特性(包括水分损失,渗透势,电解泄漏,MDA含量,可溶性糖含量和叶片温度的测量)表明,IL23具有耐旱性。 IL23的鉴定和表征将为分离与耐旱性相关的新基因和耐旱水稻的分子育种提供有用的基础。此外,这项研究的结果表明,从普通野生稻构建渐渗系应该是获得有利遗传材料的适当方法。

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