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Identification and Functional Analysis of a Locus for Improvement of Lodging Resistance in Rice1[w]

机译:一种提高水稻抗倒伏能力的基因座的鉴定和功能分析[w]

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摘要

We identified a new locus responsible for increased pushing resistance of the lower part of rice (Oryza sativa) and analyzed its physiological function to understand how to improve lodging resistance in rice. Quantitative trait loci (QTLs) controlling pushing resistance of the lower part were analyzed in a population of backcross inbred lines of japonica Nipponbare × indica Kasalath plants cut out at 40 cm to exclude the effect of the weight of the upper parts. Five QTLs for pushing resistance were detected; only one QTL from Kasalath on chromosome 5 (prl5) had a positive effect. The likelihood odds ratio curve of prl5 echoed that for lodging resistance by typhoon. We selected three near-isogenic lines (NILs) in which the chromosomal region of prl5 was substituted with that of Kasalath in the Nipponbare background. The dry weights and densities and the contents of accumulated carbohydrate in stems below 40 cm (lower stems) in each NIL were significantly higher than those of Nipponbare. There was no difference between Nipponbare and the NILs in yield, root characteristics, or the weights of the upper parts. Pushing resistance of the lower part and lodging resistance in the NILs were up to twice as high as in Nipponbare. These results suggest that prl5 might affect the characteristics of the lower stems of the NILs, thus increasing lodging resistance.
机译:我们确定了一个新的基因位点,其负责提高水稻下部的抗推性,并分析了其生理功能,以了解如何提高水稻的抗倒伏性。分析了在40 cm处切下的日本粳稻×Ka蒲的回交自交系群体中控制下部的抗性的数量性状基因座(QTL),以排除上部重量的影响。检测到五个推阻QTL。仅来自Kasalath的5号染色体(prl5)上的QTL具有积极作用。 prl5的似然比曲线与台风的抗倒伏性相呼应。我们选择了三个近等基因系(NIL),其中在Nipponbare背景中prl5的染色体区域被Kasalath的染色体区域取代。每个NIL中40 cm以下的茎(下部茎)的干重,密度和积累的碳水化合物含量均显着高于Nipponbare。 Nipponbare和NIL之间在产量,根系特征或上部重量方面没有差异。 NIL中下部的推入阻力和下陷阻力是日本晴的两倍。这些结果表明,prl5可能影响NIL下茎的特性,从而增加抗倒伏性。

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