首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Development of chickpea EST-SSR markers and analysis of allelic variation across related species
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Development of chickpea EST-SSR markers and analysis of allelic variation across related species

机译:鹰嘴豆EST-SSR标记的开发和相关物种间等位基因变异的分析

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Despite chickpea being the third important grain legume, there is a limited availability of genomic resources, especially of the expressed sequence tag (EST)-based markers. In this study, we generated 822 chickpea ESTs from immature seeds as well as exploited 1,309 ESTs from the chickpea database, thus utilizing a total of 2,131 EST sequences for development of functional EST-SSR markers. Two hundred and forty-six simple sequence repeat (SSR) motifs were identified from which 183 primer pairs were designed and 60 validated as functional markers. Genetic diversity analysis across 30 chickpea accessions revealed ten markers to be polymorphic producing a total of 29 alleles and an observed heterozygosity average of 0.16 thereby exhibiting low levels of intra-specific polymorphism. However, the markers exhibited high cross-species transferability ranging from 68.3 to 96.6% across the six annual Cicer species and from 29.4 to 61.7% across the seven legume genera. Sequence analysis of size variant amplicons from various species revealed that size polymorphism was due to multiple events such as copy number variation, point mutations and insertions/deletions in the microsatellite repeat as well as in the flanking regions. Interestingly, a wide prevalence of crossability-group-specific sequence variations were observed among Cicer species that were phylogenetically informative. The neighbor joining dendrogram clearly separated the chickpea cultivars from the wild Cicer and validated the proximity of C. judaicum with C. pinnatifidum. Hence, this study for the first time provides an insight into the distribution of SSRs in the chickpea transcribed regions and also demonstrates the development and utilization of genic-SSRs. In addition to proving their suitability for genetic diversity analysis, their high rates of transferability also proved their potential for comparative genomic studies and for following gene introgressions and evolution in wild species, which constitute the valuable secondary genepool in chickpea.
机译:尽管鹰嘴豆是第三重要的谷物豆类,但是基因组资源的可用性有限,尤其是基于表达的序列标签(EST)的标记。在这项研究中,我们从未成熟的种子中产生了822个鹰嘴豆EST,并从鹰嘴豆数据库中利用了1,309个EST,从而利用总共2131个EST序列来开发功能性EST-SSR标记。鉴定了246个简单序列重复(SSR)基序,从中设计了183对引物,并验证了60对作为功能标记。 30个鹰嘴豆种质的遗传多样性分析显示,十个标记是多态性的,总共产生29个等位基因,观察到的杂合平均为0.16,从而表现出低水平的种内多态性。但是,这些标记物表现出较高的跨物种转移能力,在六个年度Cicer物种中为68.3至96.6%,在七个豆科属中为29.4至61.7%。来自各种物种的大小变异扩增子的序列分析表明,大小多态性是由于多种事件造成的,例如拷贝数变异,点突变以及微卫星重复序列以及侧翼区域中的插入/缺失。有趣的是,在系统发育信息丰富的Cicer物种中观察到了广泛的可交联组特异性序列变异。相邻的树状图清楚地将鹰嘴豆栽培种与野生的Cicer分开,并验证了C. judaicum与Pinnatifidum的接近性。因此,这项研究首次为鹰嘴豆转录区中SSR的分布提供了见识,并证明了基因SSR的开发和利用。除了证明其适用于遗传多样性分析外,它们的高迁移率还证明了其在比较基因组研究中以及在野生种中进行基因渗入和进化的潜力,而野生种构成了鹰嘴豆中有价值的次级基因库。

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