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精细定位大麦(Hordeum vulgare L.)主要粒长位点 qGL5H。

Fine mapping of qGL5H, a major grain length locus in barley (Hordeum vulgare L.).

机构信息

Western Barley Genetic Alliance, Murdoch University, Perth, WA, Australia.

Western Australian State Agricultural Biotechnology Centre, Murdoch University, Perth, WA, Australia.

出版信息

Theor Appl Genet. 2019 Apr;132(4):883-893. doi: 10.1007/s00122-018-3243-y. Epub 2018 Nov 21.

Abstract

A major grain length QTL on chromosome 5H was fine mapped from 180.5 to 1.7 Mb. Quantitative trait loci (QTLs) mapping has been used extensively in barley to detect QTLs that underlie complex traits such as grain size. In the present study, we utilised 312 double haploid lines derived from a cross between two Australian malting varieties, Vlamingh and Buloke, to dissect the genetic control of a number of grain size characteristics. Digital image analysis was used to measure grain size characteristics including length, width, thickness and plumpness which are important traits influencing barley yield and grain physical quality. Using data from four independent environments and molecular marker genotype data, we identified 23 significant QTLs for these four traits, ten of which were consensus QTLs and identified in two or more environments. A QTL region on chromosome 5H designated qGL5H that was associated with grain size was fine mapped to a 1.7 Mb interval. qGL5H was able to explain 21.6% of phenotypic variation for grain length within the population. This major QTL is an appropriate candidate for further genetic dissection.

摘要

在 5H 染色体上,一个主要的粒长数量性状位点(QTL)被精细定位在 180.5-1.7 Mb 之间。数量性状位点(QTL)作图已广泛应用于大麦中,以检测控制复杂性状(如粒大小)的 QTL。在本研究中,我们利用了 312 个来自澳大利亚两个麦芽品种 Vlamingh 和 Buloke 杂交的双单倍体系,来剖析多个粒大小特征的遗传控制。数字图像分析用于测量粒大小特征,包括长度、宽度、厚度和饱满度,这些都是影响大麦产量和粒物理质量的重要性状。利用来自四个独立环境的数据和分子标记基因型数据,我们鉴定了这四个性状的 23 个显著 QTL,其中 10 个是共识 QTL,在两个或更多环境中被鉴定出来。一个位于 5H 染色体上的 QTL 区域 qGL5H 与粒大小相关,被精细定位在 1.7 Mb 的区间内。qGL5H 能够解释群体内粒长表型变异的 21.6%。这个主要的 QTL 是进一步遗传剖析的合适候选者。

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