首页> 外文期刊>BMC Plant Biology >Mining the stable quantitative trait loci for agronomic traits in wheat ( Triticum aestivum L.) based on an introgression line population
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Mining the stable quantitative trait loci for agronomic traits in wheat ( Triticum aestivum L.) based on an introgression line population

机译:基于引入线群体的小麦(Triticum Aestivum L.)中的农艺性状稳定定量特质基因座

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Human demand for wheat will continue to increase together with the continuous global population growth. Agronomic traits in wheat are susceptible to environmental conditions. Therefore, in breeding practice, priority is given to QTLs of agronomic traits that can be stably detected across multiple environments and over many years. In this study, QTL analysis was conducted for eight agronomic traits using an introgression line population across eight environments (drought stressed and well-watered) for 5 years. In total, 44 additive QTLs for the above agronomic traits were detected on 15 chromosomes. Among these, qPH-6A, qHD-1A, qSL-2A, qHD-2D and qSL-6A were detected across seven, six, five, five and four environments, respectively. The means in the phenotypic variation explained by these five QTLs were 12.26, 9.51, 7.77, 7.23, and 8.49%, respectively. We identified five stable QTLs, which includes qPH-6A, qHD-1A, qSL-2A, qHD-2D and qSL-6A. They play a critical role in wheat agronomic traits. One of the dwarf genes Rht14, Rht16, Rht18 and Rht25 on chromosome 6A might be the candidate gene for qPH-6A. The qHD-1A and qHD-2D were novel stable QTLs for heading date and they differed from known vernalization genes, photoperiod genes and earliness per se genes.
机译:对小麦的人类需求将继续随着持续的全球人口增长而增加。小麦的农艺性状易受环境条件的影响。因此,在育种实践中,优先考虑可以在多年内稳定地检测到的农艺性状的QTL。在这项研究中,使用八个环境(干旱强调和浇水)的血液分析进行了八个农艺性状的QTL分析。总共,在15条染色体上检测到上述农艺性状的44个添加剂QTL。其中,在七个,六个,五个,五个和四个环境中检测到QPH-6a,QHD-1A,QSL-2A,QHD-2D和QSL-6A。这五个QTL解释的表型变异中的手段分别为12.26,9.51,7.77,7.23和8.49%。我们确定了五个稳定的QTL,其包括Qph-6a,qhd-1a,qsl-2a,qhd-2d和qsl-6a。他们在小麦农艺性状中发挥着关键作用。染色体6a上的矮化基因rHT14,rHT16,rHT18和rHT25中的一种可以是QPH-6a的候选基因。 QHD-1A和QHD-2D是新型稳定QTL,用于标题日期,它们与已知的冬季化基因,光周期基因和以较早的基因不同。

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