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亚种间痕量矿物质积累和稻米元素相关性的遗传结构。

Genetic architecture of subspecies divergence in trace mineral accumulation and elemental correlations in the rice grain.

机构信息

Key Laboratory of Agro-Ecological Processes in Subtropical Region, Institute of Subtropical Agriculture, Innovation Academy for Seed Design, Chinese Academy of Sciences, Changsha, 410125, Hunan, China.

University of Chinese Academy of Science, Beijing, 100049, China.

出版信息

Theor Appl Genet. 2020 Feb;133(2):529-545. doi: 10.1007/s00122-019-03485-z. Epub 2019 Nov 16.

DOI:10.1007/s00122-019-03485-z
PMID:31734869
Abstract

Genome differentiation has shaped the divergence in element concentration between rice subspecies and contributed to the correlation among trace minerals in the rice grain. The balance between trace minerals in rice, a staple food for more than half of the world's population, is crucial for human health. However, the genetic basis underlying the correlation between trace minerals has not been fully elucidated. To address this issue, we first quantified the concentrations of 11 trace minerals in the grains of a diversity panel of 575 rice cultivars. We found that eight elements were accumulated at significantly different levels between the indica and japonica subspecies, and we also observed significant correlation patterns among a number of elements. Further, using a genome-wide association study, we identified a total of 96 significant association loci (SALs). The differentiation of the major-effect SALs along with the different number of high-concentration alleles present in the two subspecies shaped the different element performance in indica and japonica varieties. Only a few SALs located in clusters and the majority of SALs showed subspecies/subgroup differentiation, indicating that the correlations between elements in the diversity panel were mainly caused by genome differentiation instead of shared genetic basis. The genetic architecture unveiled in this study will facilitate improvement in breeding for trace mineral content.

摘要

基因组分化塑造了水稻亚种间元素浓度的差异,并促成了稻米中痕量矿物质之间的相关性。作为全球一半以上人口的主食,稻米中痕量矿物质的平衡对人类健康至关重要。然而,痕量矿物质相关性的遗传基础尚未完全阐明。为了解决这个问题,我们首先对 575 个水稻品种的多样性群体的谷粒中的 11 种痕量矿物质的浓度进行了定量分析。我们发现,在籼稻和粳稻亚种之间,有 8 种元素的积累水平存在显著差异,并且我们还观察到一些元素之间存在显著的相关模式。此外,通过全基因组关联研究,我们总共鉴定出了 96 个显著关联位点(SALs)。主要效应 SALs 的分化以及在两个亚种中存在的高浓度等位基因的不同数量,塑造了籼稻和粳稻品种中不同的元素表现。只有少数位于簇中的 SALs 和大多数 SALs 表现出亚种/亚群分化,表明多样性群体中元素之间的相关性主要是由基因组分化引起的,而不是由共同的遗传基础引起的。本研究揭示的遗传结构将有助于改善痕量矿物质含量的育种。

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