Kumawat Giriraj, Yadav Arti, Satpute Gyanesh K, Gireesh C, Patel Rakesh, Shivakumar M, Gupta Sanjay, Chand Suresh, Bhatia Virender Singh
ICAR-Indian Institute of Soybean Research, Indore, Madhya Pradesh 452001 India.
2School of Life Sciences, Devi Ahilya Vishwavidyalaya, Indore, Madhya Pradesh 452001 India.
Physiol Mol Biol Plants. 2019 Mar;25(2):387-398. doi: 10.1007/s12298-018-0615-3. Epub 2019 Jan 1.
A set of 90 Indian soybean landraces were analysed for polymorphism at 43 SSRs and five allele specific markers of four major genes involved in regulating flowering and photoperiod response. A total of 42 polymorphic SSRs had amplified 126 alleles which served as raw data for estimation of genetic relationship and population structure among 90 accessions. Rare alleles of four and three SSRs were detected in accessions IC18768 and IC15089, respectively. Gene diversity in the population ranges from 0.065 to 0.717 with a mean value of 0.411. The polymorphism information content of 42 SSRs varied from 0.063 to 0.668. Hierarchical clustering based on neighbour-joining method identified three major clusters among 90 soybean accessions. Model based population structure analysis divided the 90 soybean accessions into four populations (= 4). Mean value of for different populations ranged between 0.4143 and 0.7239. Genotyping of 90 accessions with allele specific markers had identified accession IC15089 as triple recessive mutant of flowering genes , and photoperiod sensitivity gene The triple mutant IC15089 (, , ) had been characterized phenotypically and identified as early maturing (88 days) and photoperiod insensitive genotype under extended photoperiod. The present study characterized genetic relationship among 90 Indian soybean landraces and had identified a few diverse and unique genotypes for utilization in soybean breeding programmes targeting development of short duration and photoperiod insensitive varieties through marker assisted selection.
对90份印度大豆地方品种进行分析,检测了43个简单序列重复(SSR)以及参与调控开花和光周期反应的4个主要基因的5个等位基因特异性标记的多态性。总共42个多态性SSR扩增出126个等位基因,这些等位基因作为估算90份种质间遗传关系和群体结构的原始数据。分别在种质IC18768和IC15089中检测到4个和3个SSR的稀有等位基因。群体中的基因多样性范围为0.065至0.717,平均值为0.411。42个SSR的多态性信息含量在0.063至0.668之间。基于邻接法的层次聚类在90份大豆种质中鉴定出3个主要类群。基于模型的群体结构分析将90份大豆种质分为4个群体(=4)。不同群体的平均值在0.4143至0.7239之间。用等位基因特异性标记对90份种质进行基因分型,已鉴定出种质IC15089为开花基因、和光周期敏感基因的三重隐性突变体。三重突变体IC15089(,,)已进行表型鉴定,被确定为早熟(88天)且在延长光周期下为光周期不敏感基因型。本研究对90份印度大豆地方品种间的遗传关系进行了表征,并鉴定出一些不同且独特的基因型,用于大豆育种计划,通过标记辅助选择培育短生育期和光周期不敏感的品种。