首页> 外文期刊>Genetic Resources and Crop Evolution >Genetic diversity and population structure in Beninese pigeon pea [Cajanus cajan (L.) Huth] landraces collection revealed by SSR and genome wide SNP markers
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Genetic diversity and population structure in Beninese pigeon pea [Cajanus cajan (L.) Huth] landraces collection revealed by SSR and genome wide SNP markers

机译:上脑鸽豌豆的遗传多样性和人口结构[CAJANUS CAJAN(L.)HUTH] SSR和基因组宽SNP标记揭示的LATERACES集合

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摘要

Pigeon pea [Cajanus cajan (L.) Huth] is a valuable multipurpose crop locally used for household food security as well in traditional medicine in Benin. However, due to the neglected status of the crop, its genetic resources are not well evaluated and its agronomic potential remains undetermined. For breeding purpose, a total of 77 landraces from Benin and three breeding lines were simultaneously genotyped with 30 preselected SSRs and 794 GBS derived SNPs in order to estimate the genetic diversity and infer the population structure within the collection. Both marker types were found informative in polymorphism analysis revealing all high genetic variability. The 30 SSR markers led to a total of 209 alleles with an average of 6.97 alleles per locus, whereas only biallelic SNPs were extracted from GBS data according to specific filter criteria. The polymorphism information content value was 0.57 and 0.25 for SSR and SNP, respectively. The genetic diversity calculated as expected heterozygosity was higher for SSR (0.62) than for SNP (0.35). The inference of the genetic structure subdivided the entire collection into three major groups independent of the marker type. However, the resolving power in population structure analysis was higher for SNP than for SSR. AMOVA and PCoA analyses showed clearer population structure with SNP than SSR. The present study provides a clear insight on the genetic diversity in Beninese pigeon pea and represents the first report comparing the performance of SSR and SNP markers for population genetics analysis in cultivated pigeon pea. It provides useful information for further pigeon pea conservation and breeding in Benin.
机译:Pigeon Pea [Cajanus Cajan(L.)Huth]是在贝宁的传统医学中用于家庭食品安全的宝贵多功能作物。然而,由于作物的忽视状态,其遗传资源并不评估,并且其农艺潜力仍未确定。对于繁殖目的,来自贝宁和三种育种线的总共77种育种型与30个预选的SSR和794 GBS衍生的SNPS同时进行基因分型,以估计遗传多样性并推断收集内的人口结构。在多态性分析中发现了任何标记类型,揭示了所有高遗传变异性。 30个SSR标记导致每位轨迹平均6.97等位基因的总共209个等位基因,而根据特定的滤波器标准,仅从GBS数据中提取双挠曲SNP。对于SSR和SNP,多态性信息含量值分别为0.57和0.25。根据SSR(0.62)的预期杂合子计算的遗传多样性比SNP(0.35)更高。遗传结构的推断将整个收集细分为三个主要群体,与标记类型无关。然而,SNP的群体结构分析中的解决能力比SSR更高。 Amova和PCOA分析显示,SNP比SSR更清晰。本研究对上脑鸽豌豆遗传多样性提供了清晰的洞察力,并代表了第一份报告比较SSR和SNP标志物在栽培鸽豌豆中群体遗传分析的性能。它为贝宁提供了进一步的鸽豌豆养护和繁殖的有用信息。

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