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利用单核苷酸多态性(SNP)标记对绿豆[(L.)R. Wilczek]的籽粒微量营养素和抗营养性状进行全基因组关联分析。

Genome wide association analysis for grain micronutrients and anti-nutritional traits in mungbean [ (L.) R. Wilczek] using SNP markers.

作者信息

Sinha Mayank Kumar, Aski Muraleedhar S, Mishra Gyan Prakash, Kumar M B Arun, Yadav Prachi S, Tokas Jayanti P, Gupta Sanjeev, Pratap Aditya, Kumar Shiv, Nair Ramakrishnan M, Schafleitner Roland, Dikshit Harsh Kumar

机构信息

Division of Genetics, ICAR - Indian Council of Agricultural Research- Indian Agricultural Research Institute, New Delhi, India.

Division of Seed Science and Technology, ICAR - Indian Agricultural Research Institute, New Delhi, India.

出版信息

Front Nutr. 2023 Feb 7;10:1099004. doi: 10.3389/fnut.2023.1099004. eCollection 2023.

Abstract

Mungbean is an important food grain legume for human nutrition and nutritional food due to its nutrient-dense seed, liked palatability, and high digestibility. However, anti-nutritional factors pose a significant risk to improving nutritional quality for bio-fortification. In the present study, genetic architecture of grain micronutrients (grain iron and zinc concentration) and anti-nutritional factors (grain phytic acid and tannin content) in association mapping panel of 145 diverse mungbean were evaluated. Based on all four parameters genotypes PUSA 1333 and IPM 02-19 were observed as desired genotypes as they had high grain iron and zinc concentration but low grain phytic acid and tannin content. The next generation sequencing (NGS)-based genotyping by sequencing (GBS) identified 14,447 genome-wide SNPs in a diverse selected panel of 127 mungbean genotypes. Population admixture analysis revealed the presence of four different ancestries among the genotypes and LD decay of ∼57.6 kb kb physical distance was noted in mungbean chromosomes. Association mapping analysis revealed that a total of 20 significant SNPs were shared by both GLM and Blink models associated with grain micronutrient and anti-nutritional factor traits, with Blink model identifying 35 putative SNPs. Further, this study identified the 185 putative candidate genes. Including potential candidate genes , , and were found to be associated with grain iron concentration, with grain zinc concentration, and with grain phytic acid content and and with grain tannin content. Moreover, two genes and showed significant variation in protein structure between native and mutated versions. The identified SNPs and candidate genes are potential powerful tools to provide the essential information for genetic studies and marker-assisted breeding program for nutritional improvement in mungbean.

摘要

绿豆因其营养丰富的种子、宜人的适口性和高消化率,是人类营养和营养食品的重要粮食豆类。然而,抗营养因子对通过生物强化提高营养品质构成了重大风险。在本研究中,对145个不同绿豆关联作图群体中籽粒微量营养素(籽粒铁和锌浓度)和抗营养因子(籽粒植酸和单宁含量)的遗传结构进行了评估。基于所有四个参数,基因型PUSA 1333和IPM 02-19被视为理想基因型,因为它们具有高籽粒铁和锌浓度,但低籽粒植酸和单宁含量。基于下一代测序(NGS)的简化基因组测序(GBS)在127个不同绿豆基因型的选定群体中鉴定出14447个全基因组单核苷酸多态性(SNP)。群体混合分析揭示了基因型中存在四种不同的祖先,并且在绿豆染色体中观察到约57.6 kb物理距离的连锁不平衡(LD)衰减。关联作图分析表明,广义线性模型(GLM)和最佳线性无偏预测(Blink)模型共鉴定出20个与籽粒微量营养素和抗营养因子性状相关的显著SNP,其中Blink模型鉴定出35个推定SNP。此外,本研究鉴定出185个推定候选基因。包括潜在候选基因,发现 、 和 与籽粒铁浓度相关, 与籽粒锌浓度相关, 和 与籽粒植酸含量相关, 和 与籽粒单宁含量相关。此外,两个基因 和 在天然和突变版本之间的蛋白质结构显示出显著差异。所鉴定的SNP和候选基因是潜在的有力工具,可为绿豆营养改良的遗传研究和标记辅助育种计划提供重要信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/115f/9941709/5f4e0e4ac381/fnut-10-1099004-g001.jpg

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