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180个欧亚大豆品种种子油分和蛋白质含量的推算基因型全基因组关联研究

Genome-Wide Association Study on Imputed Genotypes of 180 Eurasian Soybean Varieties for Oil and Protein Contents in Seeds.

作者信息

Potapova Nadezhda A, Zorkoltseva Irina V, Zlobin Alexander S, Shcherban Andrey B, Fedyaeva Anna V, Salina Elena A, Svishcheva Gulnara R, Aksenovich Tatiana I, Tsepilov Yakov A

机构信息

Kurchatov Genomics Center, Institute of Cytology and Genetics SB RAS, Lavrentiev Av. 10, 630090 Novosibirsk, Russia.

The Federal Research Center, Institute of Cytology and Genetics SB RAS, Lavrentiev Av. 10, 630090 Novosibirsk, Russia.

出版信息

Plants (Basel). 2025 Jan 17;14(2):255. doi: 10.3390/plants14020255.

Abstract

Soybean () is a leguminous plant with a broad range of applications, particularly in agriculture and food production, where its seed composition-especially oil and protein content-is highly valued. Improving these traits is a primary focus of soybean breeding programs. In this study, we conducted a genome-wide association study (GWAS) to identify genetic loci linked to oil and protein content in seeds, using imputed genotype data for 180 Eurasian soybean varieties and the novel "genotypic twins" approach. This dataset encompassed 87 Russian and European cultivars and 93 breeding lines from Western Siberia. We identified 11 novel loci significantly associated with oil and protein content in seeds (-value < 1.5 × 10), including one locus on chromosome 11 linked to protein content and 10 loci associated with oil content (chromosomes 1, 5, 11, 16, 17, and 18). The protein-associated locus is located near a gene encoding a CBL-interacting protein kinase, which is involved in key biological processes, including stress response mechanisms such as drought and osmotic stress. The oil-associated loci were linked to genes with diverse functions, including lipid transport, nutrient reservoir activity, and stress responses, such as Sec14p-like phosphatidylinositol transfer proteins and Germin-like proteins. These findings suggest that the loci identified not only influence oil and protein content but may also contribute to plant resilience under environmental stress conditions. The data obtained from this study provide valuable genetic markers that can be used in breeding programs to optimize oil and protein content, particularly in varieties adapted to Russian climates, and contribute to the development of high-yielding, nutritionally enhanced soybean cultivars.

摘要

大豆()是一种豆科植物,具有广泛的应用,特别是在农业和食品生产中,其种子成分——尤其是油和蛋白质含量——备受重视。改善这些性状是大豆育种计划的主要重点。在本研究中,我们进行了全基因组关联研究(GWAS),以使用180个欧亚大豆品种的推算基因型数据和新颖的“基因型双胞胎”方法来鉴定与种子油和蛋白质含量相关的基因座。该数据集包括87个俄罗斯和欧洲品种以及93个来自西西伯利亚的育种系。我们鉴定出11个与种子油和蛋白质含量显著相关的新基因座(-值<1.5×10),包括11号染色体上一个与蛋白质含量相关的基因座和10个与油含量相关的基因座(1、5、11、16、17和18号染色体)。与蛋白质相关的基因座位于一个编码CBL相互作用蛋白激酶的基因附近,该激酶参与关键的生物学过程,包括干旱和渗透胁迫等应激反应机制。与油相关的基因座与具有多种功能的基因相连,包括脂质转运、营养储存活性以及应激反应,如Sec14p样磷脂酰肌醇转移蛋白和类萌发素蛋白。这些发现表明,所鉴定的基因座不仅影响油和蛋白质含量,还可能有助于植物在环境胁迫条件下的恢复力。本研究获得的数据提供了有价值的遗传标记,可用于育种计划中优化油和蛋白质含量,特别是在适应俄罗斯气候的品种中,并有助于培育高产、营养增强的大豆品种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb7a/11768550/eeab3472871c/plants-14-00255-g001.jpg

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