首页> 外文期刊>Plant Production Science >Identification and validation of QTLs for cold tolerance at the booting stage and other agronomic traits in a rice cross of a Japanese tolerant variety, Hananomai, and a NERICA parent, WAB56-104
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Identification and validation of QTLs for cold tolerance at the booting stage and other agronomic traits in a rice cross of a Japanese tolerant variety, Hananomai, and a NERICA parent, WAB56-104

机译:在日本耐受品种,Hananomai和Nerica父母,WAB56-104中的米稻米越野和其他农艺性状的QTL对耐寒性耐寒性QTL的识别与验证

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In Africa, cold temperatures occur in the highlands of East and Southern Africa and in some areas of the Sahel region of West Africa leading to substantial rice yield losses. Cold tolerance (CT) at booting stage on basis of spikelet fertility after cold water irrigation was evaluated using F_(2) population derived from a cross between temperate japonica , Hananomai, and tropical japonica , WAB56-104. Two Quantitative trait loci (QTLs) for CT were detected on chromosome 8 and 10 with enhanced effects on the trait coming from Hananomai and WAB56-104 allele, respectively. The QTLs explained 30% and 33% of phenotypic variation in spikelet fertility, respectively. CT was negatively correlated with panicle number (r ?=??0.35, p ?
机译:在非洲,寒冷的温度发生在东部和南部非洲的高地和西非萨赫勒地区的一些地区,导致大米产量损失。使用来自温带之间的杂交(2)培养基之间的杂交灌溉后的小穗生育能力,在温带之间的杂交灌溉基础上进行耐寒耐性(CT)。粳稻,汉纳诺,和热带粳稻,WAB56-104。在染色体8和10上检测到CT的两种定量性状基因座(QTLS),分别对来自Hananomai和WAB56-104等位基因的特征的增强效果。 QTL分别分别解释了穗尖峰生育率的30%和33%的表型变异。 CT与穗数(r≥1= 0.35,p≤0.01)呈负相关,并与穗重量呈正相关(r≥1.0.61,p≤≤ 0.001)。选择的BC_(1)F_(4)和BC_(1)F_(5)具有CT QTL的纯合等位基因的基因型在冷应力下表现出更高的小穗生育能力。通过标记辅助选择,所识别的QTL在高海拔地区生产的耐冷耐寒品种。

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