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Quantitative trait loci for yield and morphological traits in maize under drought stress

机译:干旱胁迫下玉米产量和形态性状的数量性状基因座

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Drought is one of the most important factors contributing to crop yield loss. In order to develop maize varieties with drought tolerance, it is necessary to explore the genetic basis. Mapping quantitative trait loci (QTL) that control the yield and associate agronomic traits is one way of understanding drought genetics. QTLs associated with grain yield (GY), leaf width (LW3, LW4) plant height (PH), ear height (EH), leaf number (NL), tassel branch number (TBN) and tassel length (TL) were studied with composite interval mapping. A total of 43 QTLs were detected, distributed on all chromosomes, except chromosome 9. Phenotypic variability determined for the identified QTLs for all the traits was in the range from 20.99 to 87.24%. Mapping analysis identified genomic regions associated with two traits in a manner that was consistent with phenotypic correlation among traits, supporting either pleiotropy or tight linkage among QTLs.
机译:干旱是造成农作物减产的最重要因素之一。为了开发具有抗旱性的玉米品种,有必要探索其遗传基础。绘制控制产量和相关农艺性状的数量性状基因座(QTL)的图谱是了解干旱遗传学的一种方法。用复合材料研究了与籽粒产量(GY),叶宽(LW3,LW4),株高(PH),穗高(EH),叶数(NL),流苏分支数(TBN)和流苏长度(TL)相关的QTL。间隔映射。总共检测到43个QTL,分布在除9号染色体外的所有染色体上。确定的所有性状QTL的表型变异性在20.99%至87.24%之间。映射分析以与性状之间的表型相关性一致的方式鉴定了与两个性状相关的基因组区域,从而支持多效性或QTL之间的紧密连锁。

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