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鉴定美国农业部大豆种质资源库中品系间的遗传异质性。

Characterization of genetic heterogeneity within accessions in the USDA soybean germplasm collection.

机构信息

Department of Agronomy and Plant Genetics, University of Minnesota, Saint Paul, MN, 55108, USA.

出版信息

Plant Genome. 2020 Mar;13(1):e20000. doi: 10.1002/tpg2.20000. Epub 2020 Apr 6.

Abstract

Soybean breeding relies on the use of wild (Glycine soja Sieb. and Zucc.) and domesticated [Glycine max (L.) Merr.] germplasm for trait improvement. Soybeans are self-pollinating and accessions can be maintained as pure lines, however within-accession genetic variation has been observed in previous studies of some landraces and elite cultivars. The objective of this study was to characterize within-line variation in the accessions housed in the USDA Soybean Germplasm Collection. This collection includes over 20,000 accessions, each previously genotyped using the SoySNP50K Chip. Each SoySNP50K genotype was developed by pooling approximately three individuals per accession. Therefore, clusters of SNPs called as heterozygous within an accession can be inferred to represent putative regions of heterogeneity between the three individuals sampled. In this study, we found high-probability intervals of heterogeneity in 4% of the collection, representing 870 accessions. Heterogeneous loci were found on every chromosome and, collectively, covered 98.4% of the soybean genome and 99% of the gene models. Sanger sequencing confirmed regions of genomic heterogeneity among a subset of ten accessions. This dataset provides useful information and considerations for users of crop germplasm seed banks. Furthermore, the heterogeneous accessions and/or loci represent a unique genetic resource that is immediately available for forward and reverse genetics studies.

摘要

大豆育种依赖于野生(Glycine soja Sieb. and Zucc.)和驯化 [Glycine max (L.) Merr.] 种质资源的利用来改善性状。大豆是自花授粉的,可以作为纯系保存,但在以前对一些地方品种和优良品种的研究中,已经观察到了种内的遗传变异。本研究的目的是描述美国农业部大豆种质资源库中保存的品系内的变异。该库包含超过 20,000 个品系,每个品系以前都使用 SoySNP50K 芯片进行过基因型分析。每个 SoySNP50K 基因型是通过对每个品系中的大约三个人进行混合而开发的。因此,在一个品系中被称为杂合的 SNP 簇可以推断为代表所采样的三个个体之间的潜在异质性区域。在本研究中,我们发现 4%的收集品系中存在高概率的异质性区间,代表 870 个品系。在每个染色体上都发现了异质的基因座,这些基因座共同覆盖了大豆基因组的 98.4%和基因模型的 99%。桑格测序证实了十个品系中的一部分存在基因组异质性区域。该数据集为作物种质资源种子库的使用者提供了有用的信息和考虑因素。此外,这些异质的品系和/或基因座代表了一种独特的遗传资源,可立即用于正向和反向遗传学研究。

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