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A community resource for exploring and utilizing genetic diversity in the USDA pea single plant plus collection

机译:探索和利用USDA豌豆单株植物及其收藏中遗传多样性的社区资源

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摘要

Globally, pea (Pisum sativum L.) is an important temperate legume crop for food, feed and fodder, and many breeding programs develop cultivars adapted to these end-uses. In order to assist pea development efforts, we assembled the USDA Pea Single Plant Plus Collection (PSPPC), which contains 431 P. sativum accessions with morphological, geographic and taxonomic diversity. The collection was characterized genetically in order to maximize its value for trait mapping and genomics-assisted breeding. To that end, we used genotyping-by-sequencing—a cost-effective method for de novo single-nucleotide polymorphism (SNP) marker discovery—to generate 66 591 high-quality SNPs. These data facilitated the identification of accessions divergent from mainstream breeding germplasm that could serve as sources of novel, favorable alleles. In particular, a group of accessions from Central Asia appear nearly as diverse as a sister species, P. fulvum, and subspecies, P. sativum subsp. elatius. PSPPC genotypes can be paired with new and existing phenotype data for trait mapping; as proof-of-concept, we localized Mendel’s A gene controlling flower color to its known position. We also used SNP data to define a smaller core collection of 108 accessions with similar levels of genetic diversity as the entire PSPPC, resulting in a smaller germplasm set for research screening and evaluation under limited resources. Taken together, the results presented in this study along with the release of a publicly available SNP data set comprise a valuable resource for supporting worldwide pea genetic improvement efforts.
机译:在全球范围内,豌豆(Pisum sativum L.)是一种重要的温带豆类作物,用于食品,饲料和饲料,许多育种计划都开发了适合这些最终用途的品种。为了协助豌豆的发展,我们组装了USDA豌豆单株特集(PSPPC),其中包含431 P. sativum品种,具有形态,地理和分类学多样性。为了最大程度地发挥性状图谱和基因组学辅助育种的价值,对该集合进行了遗传表征。为此,我们使用了通过测序进行基因分型(一种从头到尾的单核苷酸多态性(SNP)标记物发现的经济有效方法)来生成66×591个高质量SNP。这些数据有助于鉴定与主流育种种质不同的种质,这些种质可作为新的有利等位基因的来源。尤其是,一组来自中亚的种质几乎与姐妹种黄腐假单胞菌和亚种P. sativum的亚种一样多样化。 ati PSPPC基因型可以与新的和现有的表型数据配对以进行性状定位;作为概念验证,我们将孟德尔的A基因控制花色定位到了已知位置。我们还使用SNP数据定义了108个种质的较小核心集合,这些种质具有与整个PSPPC相似的遗传多样性,从而在资源有限的情况下形成了较小的种质资源用于研究筛选和评估。综上所述,本研究提出的结果以及公开发布的SNP数据集构成了支持全球豌豆遗传改良工作的宝贵资源。

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