首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Integration of novel SSR and gene-based SNP marker loci in the chickpea genetic map and establishment of new anchor points with Medicago truncatula genome
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Integration of novel SSR and gene-based SNP marker loci in the chickpea genetic map and establishment of new anchor points with Medicago truncatula genome

机译:在鹰嘴豆遗传图中整合新的SSR和基于基因的SNP标记基因座,并用苜蓿苜蓿基因组建立新的锚点

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This study presents the development and mapping of simple sequence repeat (SSR) and single nucleotide polymorphism (SNP) markers in chickpea. The mapping population is based on an inter-specific cross between domesticated and non-domesticated genotypes of chickpea (Cicer arietinum ICC 4958 c C. reticulatum PI 489777). This same population has been the focus of previous studies, permitting integration of new and legacy genetic markers into a single genetic map. We report a set of 311 novel SSR markers (designated ICCMICRISAT chickpea microsatellite), obtained from an SSR-enriched genomic library of ICC 4958. Screening of these SSR markers on a diverse panel of 48 chickpea accessions provided 147 polymorphic markers with 2-21 alleles and polymorphic information content value 0.04-0.92. Fifty-two of these markers were polymorphic between parental genotypes of the inter-specific population. We also analyzed 233 previously published (H-series) SSR markers that provided another set of 52 polymorphic markers. An additional 71 gene-based SNP markers were developed from transcript sequences that are highly conserved between chickpea and its near relative Medicago truncatula. By using these three approaches, 175 new marker loci along with 407 previously reported marker loci were integrated to yield an improved genetic map of chickpea. The integrated map contains 521 loci organized into eight linkage groups that span 2,602 cM, with an average inter-marker distance of 4.99 cM. Gene-based markers provide anchor points for comparing the genomes of Medicago and chickpea, and reveal extended synteny between these two species. The combined set of genetic markers and their integration into an improved genetic map should facilitate chickpea genetics and breeding, as well as translational studies between chickpea and Medicago.
机译:这项研究提出了鹰嘴豆中的简单序列重复(SSR)和单核苷酸多态性(SNP)标记的发展和作图。测绘种群基于鹰嘴豆的驯化和非驯化基因型之间的种间杂交(Cicer arietinum ICC 4958 c。c。reticulatum PI 489777)。以前的研究一直关注同一人群,从而允许将新的和遗留的遗传标记整合到单个遗传图中。我们报告了一组311个新颖的SSR标记(称为ICCMICRISAT鹰嘴豆微卫星),这些标记是从ICC 4958富含SSR的基因组库中获得的。在48个鹰嘴豆种质的不同面板上筛选这些SSR标记提供了147个多态性标记和2-21个等位基因多态信息含量值为0.04-0.92。这些标记中的五十二个是种间种群亲本基因型之间的多态性。我们还分析了233个先前发布的(H系列)SSR标记,这些标记提供了另一组52个多态性标记。从鹰嘴豆与其近缘的苜蓿苜蓿之间的高度保守的转录本序列中开发了另外71种基于基因的SNP标记。通过使用这三种方法,将175个新的标记基因座以及407个先前报告的标记基因座整合在一起,从而产生了改进的鹰嘴豆遗传图谱。整合图谱包含521个基因座,这些基因座被组织为8个链接组,跨越2,602 cM,平均标记间距离为4.99 cM。基于基因的标记为比较紫花苜蓿和鹰嘴豆的基因组提供了锚点,并揭示了这两个物种之间的延伸同构。遗传标记的组合集合以及将其整合到改进的遗传图中应有助于鹰嘴豆的遗传学和育种,以及鹰嘴豆和紫花苜蓿之间的转化研究。

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