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绿豆籽粒蛋白质与苏氨酸含量全基因组关联分析及KASP分子标记开发

陈圣琦 吴然然 陈新 程金平 袁星星 刘金洋 黄佳丽 刘肖岑 赵硕谦 林云 薛晨晨 闫强 陈景斌

中国农业科学2026,Vol.59Issue(13):2789-2801,13.
中国农业科学2026,Vol.59Issue(13):2789-2801,13.DOI:10.3864/j.issn.0578-1752.2026.13.003

绿豆籽粒蛋白质与苏氨酸含量全基因组关联分析及KASP分子标记开发

Whole Genome Association Study of Protein and Threonine Content in Mung Bean Seeds and Development of KASP Molecular Marker

陈圣琦 1吴然然 2陈新 3程金平 1袁星星 3刘金洋 2黄佳丽 4刘肖岑 4赵硕谦 5林云 2薛晨晨 2闫强 2陈景斌2

作者信息

  • 1. 南京农业大学农学院,南京 210095
  • 2. 江苏农业科学院经济作物研究所/江苏省园艺作物遗传改良与高效利用重点实验室,南京 210014
  • 3. 江苏农业科学院经济作物研究所/江苏省园艺作物遗传改良与高效利用重点实验室,南京 210014||南京农业大学生命科学学院,南京 210095
  • 4. 南京农业大学生命科学学院,南京 210095
  • 5. 南京农业大学植物保护学院,南京 210095
  • 折叠

摘要

Abstract

[Objective]Protein and threonine are the core nutrients of mung bean seeds,which have a critical impact on the nutritional quality of mung beans.Among them,mung bean protein is a high-quality protein source for vegetarians due to its easy digestion,absorption,and rich biological activity,which is of great value to human health.This study aims to explore genetic loci and candidate genes significantly associated with the protein content and relative content of threonine in mung bean seeds,providing a theoretical basis for genetic improvement of protein and threonine content in mung bean seeds.[Method]This study used Kjeldahl nitrogen determination method and liquid chromatography-mass spectrometry to determine the protein content and relative content of threonine in 279 mung bean varieties planted in 2022.The general linear model of Tassel5 software was used for genome-wide association study to explore genetic loci related to protein content and relative content of threonine in mung bean seeds.By combining linkage disequilibrium analysis,transcriptome comparative analysis,and comparative genomics,key candidate genes related to nitrogen metabolism were identified.[Result]Six key loci located on chromosome 3 were identified,which are related to the protein content and relative content of threonine in mung bean seeds,and can explain 6.06%to 12.20%of phenotypic variation.These 6 loci are closely linked and can be mainly divided into two haplotypes,with Hap2 being the dominant haplotype.Then,KASP molecular marker was designed for the key candidate locus SLG03_966208(A/G),which can successfully classify 80 mung bean varieties into three genotypes:AA,GG,and AG,with a detection accuracy rate of 87.5%.The key candidate gene EVM0000757 was identified within the locus linkage region,and the homologous gene AT5G65750 in Arabidopsis was significantly associated with nitrogen metabolism.Its gene expression was significantly different between high and low protein varieties(P=1.84E-03,|log2FC|=1.39),making it a reliable candidate gene.[Conclusion]279 mung bean varieties were identified for their grain protein content and relative content of threonine.Six SNP loci were detected within the 939 296-1 039 749 bp region of chromosome 3.A KASP molecular marker for the SLG03_966208(A/G)locus was developed,which can distinguish the high and low levels of protein and threonine content in mung bean grains.A key candidate gene related to nitrogen metabolism,EVM0000757,was identified.

关键词

绿豆/籽粒蛋白质含量/籽粒苏氨酸相对含量/全基因组关联分析/KASP标记

Key words

mung bean/grain protein content/relative content of grain threonine content/genome-wide association study/KASP marker

引用本文复制引用

陈圣琦,吴然然,陈新,程金平,袁星星,刘金洋,黄佳丽,刘肖岑,赵硕谦,林云,薛晨晨,闫强,陈景斌..绿豆籽粒蛋白质与苏氨酸含量全基因组关联分析及KASP分子标记开发[J].中国农业科学,2026,59(13):2789-2801,13.

基金项目

国家自然科学基金(32200499)、国家重点研发计划(2023YFD1202702-3)、国家食用豆产业技术体系生物防治与综合防控岗位科学家(CARS-08-G15)、江苏省种业揭榜挂帅项目(JBGS[2021]004) (32200499)

中国农业科学

0578-1752

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