Instituto de Agricultura Sostenible, CSIC, Avda. Menéndez Pidal s/n, 14004 Córdoba, Spain.
Savanna Agriculture Research Institute, CSIR, Nyankpala, Tamale P.O. Box TL52, Ghana.
Int J Mol Sci. 2023 Jan 27;24(3):2470. doi: 10.3390/ijms24032470.
Peas () are the fourth most cultivated pulses worldwide and a critical source of protein in animal feed and human food. Developing pea core collections improves our understanding of pea evolution and may ease the exploitation of their genetic diversity in breeding programs. We carefully selected a highly diverse pea core collection of 325 accessions and established their genetic diversity and population structure. DArTSeq genotyping provided 35,790 polymorphic DArTseq markers, of which 24,279 were SilicoDArT and 11,511 SNP markers. More than 90% of these markers mapped onto the pea reference genome, with an average of 2787 SilicoDArT and 1644 SNP markers per chromosome, and an average LD distance of 0.48 and 1.38 Mbp, respectively. The pea core collection clustered in three or six subpopulations depending on the pea subspecies. Many admixed accessions were also detected, confirming the frequent genetic exchange between populations. Our results support the classification of genus into two species, and (including subsp. , , , , and ). In addition, the study showed that wild alleles were incorporated into the cultivated pea through the intermediate subsp. and subsp. during pea domestication, which have important implications for breeding programs. The high genetic diversity found in the collection and the high marker coverage are also expected to improve trait discovery and the efficient implementation of advanced breeding approaches.
豌豆是全球第四大种植豆类作物,也是动物饲料和人类食品中蛋白质的重要来源。开发豌豆核心种质资源库可以增进我们对豌豆进化的理解,并可能促进其遗传多样性在育种计划中的利用。我们精心挑选了一个高度多样化的豌豆核心种质资源库,其中包含 325 个品系,并对其遗传多样性和群体结构进行了研究。DArTSeq 基因分型技术提供了 35790 个多态性 DArTseq 标记,其中 24279 个是 SilicoDArT 标记,11511 个是 SNP 标记。超过 90%的这些标记映射到豌豆参考基因组上,每个染色体平均有 2787 个 SilicoDArT 标记和 1644 个 SNP 标记,平均 LD 距离分别为 0.48 和 1.38 Mbp。豌豆核心种质资源库根据豌豆亚种聚类为三个或六个亚群。还检测到许多混交品系,证实了群体之间频繁的遗传交换。我们的研究结果支持将 属分为两个种, 和 (包括亚种 、 、 、 、 和 )。此外,研究表明,在豌豆驯化过程中,野生等位基因通过中间亚种 和 亚种被整合到栽培豌豆中,这对育种计划具有重要意义。该核心收集品系中发现的高遗传多样性和高标记覆盖率,也有望提高性状的发现,并有助于更有效地实施先进的育种方法。