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小麦籽粒生育酚及其相关基因位点的研究

Survey of tocopherol and the associated genetic loci in wheat grain.

作者信息

Li Xiaohua, Hao Yuqiong, Li Xia, Xie Xinyi, Zhao Jiajia, Wu Bangbang, Zheng Xingwei, Zheng Jun

机构信息

Institute of Wheat Research, Key Laboratory of Sustainable Dryland Agriculture of Shanxi Province, Shanxi Agricultural University, Linfen, China.

出版信息

Theor Appl Genet. 2025 May 20;138(6):121. doi: 10.1007/s00122-025-04893-0.

Abstract

Survey of tocopherol and identification of genetic loci in wheat grain: toward a better understanding for breeding tocopherol cultivars. Tocopherol is essential in maintaining human sex hormone as well as antioxidation and immune functions. In this study, the contents of α-, γ- and δ-tocopherol in a Chinese wheat mini-core collection were measured with high-performance liquid chromatography. The effects of various factors such as accession types, winter/spring types and grain colors on tocopherol content were analyzed, and the genetic loci for tocopherol were identified with genome-wide association analysis and linkage analysis. There was no significant difference in total tocopherol in grain of wheat grown in three environments. Seven high-tocopherol (≥ 110 μg/g) germplasms were selected. The genotypic and environmental effects on total tocopherol and its three components ranked G > G × E > E and the tocopherol content were not correlated with accession types, spring/winter variety, red/white grain and release years. Among the eleven agronomic and four grain traits, α-tocopherol was positively correlated with grain thickness, γ-tocopherol was positively correlated with heading date, maturity date and flag leaf length, and γ-, δ- and total tocopherol were negatively correlated with the number of kernels in the middle of the spike. The total tocopherol showed positive correlation with lycopene and lutein. A total of twenty-seven QTL associated with tocopherol were identified with genome-wide association analysis, with obvious additive effects. The fine mapping of Qδ.toc.6 A narrowed functional region down to a 5.26-Mb region via analyzing the tocopherol content among genotypes in secondary mapping population. We proposed five candidate genes with known pathways for tocopherol synthesis in wheat, potentially useful in breeding high-tocopherol wheat varieties.

摘要

小麦籽粒生育三烯酚的调查及基因位点鉴定

旨在更好地理解生育三烯酚品种的选育。生育三烯酚对于维持人类性激素以及抗氧化和免疫功能至关重要。本研究采用高效液相色谱法测定了中国小麦微核心种质中α-、γ-和δ-生育三烯酚的含量。分析了种质类型、冬/春性类型和籽粒颜色等各种因素对生育三烯酚含量的影响,并通过全基因组关联分析和连锁分析鉴定了生育三烯酚的基因位点。在三种环境下种植的小麦籽粒中总生育三烯酚没有显著差异。筛选出了7个高生育三烯酚(≥110μg/g)种质。总生育三烯酚及其三个组分的基因型和环境效应排序为G>G×E>E,且生育三烯酚含量与种质类型、春/冬品种、红/白粒和育成年份无关。在11个农艺性状和4个籽粒性状中,α-生育三烯酚与籽粒厚度呈正相关,γ-生育三烯酚与抽穗期、成熟期和旗叶长度呈正相关,γ-、δ-和总生育三烯酚与穗中部籽粒数呈负相关。总生育三烯酚与番茄红素和叶黄素呈正相关。通过全基因组关联分析共鉴定出27个与生育三烯酚相关的QTL,具有明显的加性效应。通过分析次级作图群体中各基因型的生育三烯酚含量,将Qδ.toc.6A的精细定位功能区域缩小到5.26Mb区域。我们提出了5个已知小麦生育三烯酚合成途径的候选基因,可能对培育高生育三烯酚小麦品种有用。

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