研究热带和温带种质玉米多亲本群体中与花期有关的候选基因

Plants Pub Date : 2024-04-01 DOI:10.3390/plants13071032
Fengyun Ran, Yizhu Wang, F. Jiang, Xingfu Yin, Yaqi Bi, R. Shaw, Xingming Fan
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引用次数: 0

摘要

对玉米开花性状进行全面研究,重点是花期调控和阐明控制开花基因的分子机制,有可能极大地增进我们对相关调控基因网络的了解。本研究以三个热带玉米近交系 CML384、CML171 和 CML444 以及一个温带玉米品种 Shen137 作为亲本与 Ye107 杂交。所产生的 F1s 通过单种后裔(SSD)方法进行连续七代自花授粉,形成多亲本群体。为了研究玉米开花时间相关性状的调控,并确定基因位点和候选基因,进行了全基因组关联研究(GWAS)。GWAS 分析确定了 556 个 SNP 和 12 个候选基因与花期相关性状显著相关。此外,还分析了亚群的估计育种值对花期的影响,以进一步验证本研究的结果。总之,本研究提供了对新型候选基因的宝贵见解,有助于加深对玉米开花时间相关性状的了解。这些信息对未来旨在开发高产杂交种的玉米育种计划具有实际意义。
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Studies on Candidate Genes Related to Flowering Time in a Multiparent Population of Maize Derived from Tropical and Temperate Germplasm
A comprehensive study on maize flowering traits, focusing on the regulation of flowering time and the elucidation of molecular mechanisms underlying the genes controlling flowering, holds the potential to significantly enhance our understanding of the associated regulatory gene network. In this study, three tropical maize inbreds, CML384, CML171, and CML444, were used, along with a temperate maize variety, Shen137, as parental lines to cross with Ye107. The resulting F1s underwent seven consecutive generations of self-pollination through the single-seed descent (SSD) method to develop a multiparent population. To investigate the regulation of maize flowering time-related traits and to identify loci and candidate genes, a genome-wide association study (GWAS) was conducted. GWAS analysis identified 556 SNPs and 12 candidate genes that were significantly associated with flowering time-related traits. Additionally, an analysis of the effect of the estimated breeding values of the subpopulations on flowering time was conducted to further validate the findings of the present study. Collectively, this study offers valuable insights into novel candidate genes, contributing to an improved understanding of maize flowering time-related traits. This information holds practical significance for future maize breeding programs aimed at developing high-yielding hybrids.
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