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Genome-wide generation and genotyping of informative SNPs to scan molecular signatures for seed yield in chickpea

机译:全基因组生成和信息型SNP基因分型以扫描鹰嘴豆种子产量的分子标记

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摘要

We discovered 2150 desi and 2199 kabuli accessions-derived SNPs by cultivar-wise individual assembling of sequence-reads generated through genotyping-by-sequencing of 92 chickpea accessions. Subsequent large-scale validation and genotyping of these SNPs discovered 619 desi accessions-derived (DAD) SNPs, 531 kabuli accessions-derived (KAD) SNPs, 884 multiple accessions-derived (MAD) SNPs and 1083 two accessions (desi ICC 4958 and kabuli CDC Frontier)-derived (TAD) SNPs that were mapped on eight chromosomes. These informative SNPs were annotated in codingon-coding regulatory sequence components of genes. The MAD-SNPs were efficient to detect high intra-specific polymorphic potential and wide natural allelic diversity level including high-resolution admixed-population genetic structure and precise phylogenetic relationship among 291 desi and kabuli accessions. This signifies their effectiveness in introgression breeding and varietal improvement studies targeting useful agronomic traits of chickpea. Six trait-associated genes with SNPs including quantitative trait nucleotides (QTNs) in combination explained 27.5% phenotypic variation for seed yield per plant (SYP). A pentatricopeptide repeat (PPR) gene with a synonymous-coding SNP/QTN significantly associated with SYP trait was found most-promising in chickpea. The essential information delineated can be of immense utility in genomics-assisted breeding applications to develop high-yielding chickpea cultivars.
机译:我们通过对92个鹰嘴豆种质进行基因分型并通过基因组分型产生的序列读数,按栽培品种进行个体组装,发现了2150个desi和2199个来自kabuli种质的SNP。随后对这些SNP进行大规模验证和基因分型,结果发现了619个德西(DAD)遗传SNP,531个卡布利(KAD)遗传SNP,884个多MAD(MAD)遗传SNP和1083个两个SNP(desi ICC 4958和kabuli CDC Frontier)衍生的(TAD)SNP,位于8条染色体上。这些信息丰富的SNP标注在基因的编码/非编码调节序列成分中。 MAD-SNP可有效检测高种内多态性潜力和广泛的自然等位基因多样性水平,包括高分辨率的混合种群遗传结构和291德西和喀布尔种质之间的精确系统发育关系。这表明它们在针对鹰嘴豆有用的农艺性状的渗入育种和品种改良研究中的有效性。六个具有SNP的性状相关基因包括定量性状核苷酸(QTN)的组合解释了每株种子产量(SYP)的27.5%表型变异。在鹰嘴豆中发现具有与SYP性状显着相关的同义编码SNP / QTN的五肽重复序列(PPR)基因。所描述的基本信息可以在基因组学辅助育种应用中开发巨大的鹰嘴豆栽培品种。

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