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Variability among Chinese Glycine soja and Chinese and North American soybean genotypes.

机译:中国大豆大豆与中国和北美大豆基因型之间的差异。

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摘要

The narrow genetic base of elite soybean, Glycine max (L.) Merr., germplasm may impede further attempts to improve grain yield and other important agronomic characters. Germplasm collections of wild soybean, Glycine soja Siebold & Zucc., are a source of genetic variability for soybean breeding programs. The objectives of this research were to use genetic markers to characterize diversity among 60 G. soja accessions collected in China and to compare this diversity with 18 U.S. ancestral soybean genotypes, 12 Chinese G. max plant introductions (PIs), and 47 elite soybean lines from the northern USA. These accessions were genotyped with a set of 72 simple sequence repeat markers. The G. soja accessions were found to contain more alleles per locus (17) than the U.S. ancestral genotypes (5.8), the Chinese PIs (5.5), or the elite lines (4.5). Multivariate analyses were able to separate the G. max lines from the G. soja accessions and identify the most diverse subset of G. soja accessions. Multidimensional scaling separated G. soja accessions from high and low latitudes, while Ward's clustering method separated the G. soja accessions into distinct clusters that tended to include accessions from similar geographical regions. These data will be useful to breeders selecting G. soja accessions as parents in a breeding program and for establishing a core collection of G. soja to be used in future research..
机译:优良大豆(Glycine max(L.)Merr。)种质的狭窄遗传基础可能会阻碍进一步尝试提高谷物产量和其他重要的农艺性状。野生大豆的种质资源,大豆大豆育种Siebold&Zucc。,是大豆育种计划遗传变异的来源。这项研究的目的是使用遗传标记来表征在中国收集的60 G.大豆种质中的多样性,并将这种多样性与18种美国祖传大豆基因型,12种中国最大G.植物引入(PIs)和47种优良大豆品系进行比较。来自美国北部。用72个简单的序列重复标记物对这些种质进行基因分型。发现大豆大豆种质每个位点(17)的等位基因比美国祖先基因型(5.8),中国PIs(5.5)或优良品系(4.5)多。多变量分析能够从大豆大豆种质中分离出大豆最大系,并鉴定大豆大豆种质中最多样化的子集。多维缩放将大豆大豆种质与高低纬度分开,而沃德的聚类方法将大豆大豆种质分离为不同的簇,这些簇倾向于包括来自相似地理区域的种质。这些数据对于在育种计划中选择大豆大豆作为育种亲本的育种者以及建立大豆大豆核心收藏品以供将来研究有用。

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