Parida Swarup K, Verma Mohit, Yadav Santosh K, Ambawat Supriya, Das Shouvik, Garg Rohini, Jain Mukesh
Functional and Applied Genomics Laboratory, National Institute of Plant Genome Research New Delhi, India.
Front Plant Sci. 2015 Aug 21;6:645. doi: 10.3389/fpls.2015.00645. eCollection 2015.
Development of informative polymorphic simple sequence repeat (SSR) markers at a genome-wide scale is essential for efficient large-scale genotyping applications. We identified genome-wide 1835 SSRs showing polymorphism between desi and kabuli chickpea. A total of 1470 polymorphic SSR markers from diverse coding and non-coding regions of the chickpea genome were developed. These physically mapped SSR markers exhibited robust amplification efficiency (73.9%) and high intra- and inter-specific polymorphic potential (63.5%), thereby suggesting their immense use in various genomics-assisted breeding applications. The SSR markers particularly derived from intergenic and intronic sequences revealed high polymorphic potential. Using the mapped SSR markers, a wider functional molecular diversity (16-94%, mean: 68%), and parentage- and cultivar-specific admixed domestication pattern and phylogenetic relationships in a structured population of desi and kabuli chickpea genotypes was evident. The intra-specific polymorphism (47.6%) and functional molecular diversity (65%) potential of polymorphic SSR markers developed in our study is much higher than that of previous documentations. Finally, we have developed a user-friendly web resource, Chickpea Microsatellite Database (CMsDB; http://www.nipgr.res.in/CMsDB.html), which provides public access to the data and results reported in this study. The developed informative SSR markers can serve as a resource for various genotyping applications, including genetic enhancement studies in chickpea.
在全基因组范围内开发信息丰富的多态性简单序列重复(SSR)标记对于高效的大规模基因分型应用至关重要。我们在全基因组范围内鉴定出1835个在鹰嘴豆和卡布利鹰嘴豆之间表现出多态性的SSR。总共开发了1470个来自鹰嘴豆基因组不同编码和非编码区域的多态性SSR标记。这些物理定位的SSR标记表现出强大的扩增效率(73.9%)和高种内及种间多态性潜力(63.5%),从而表明它们在各种基因组辅助育种应用中具有巨大用途。特别是源自基因间和内含子序列的SSR标记显示出高多态性潜力。使用定位的SSR标记,在一个结构化的鹰嘴豆和卡布利鹰嘴豆基因型群体中,明显存在更广泛的功能分子多样性(16 - 94%,平均:68%),以及亲本和品种特异性的混合驯化模式和系统发育关系。我们研究中开发的多态性SSR标记的种内多态性(47.6%)和功能分子多样性(65%)潜力远高于先前的文献报道。最后,我们开发了一个用户友好的网络资源,鹰嘴豆微卫星数据库(CMsDB;http://www.nipgr.res.in/CMsDB.html),该数据库提供对本研究中报告的数据和结果的公共访问。所开发的信息丰富的SSR标记可作为各种基因分型应用的资源,包括鹰嘴豆的遗传改良研究。