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Highly Variable Patterns of Linkage Disequilibrium in Multiple Soybean Populations

机译:多个大豆群体中连锁不平衡的高度可变模式

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摘要

Prospects for utilizing whole-genome association analysis in autogamous plant populations appear promising due to the reported high levels of linkage disequilibrium (LD). To determine the optimal strategies for implementing association analysis in soybean (Glycine max L. Merr.), we analyzed the structure of LD in three regions of the genome varying in length from 336 to 574 kb. This analysis was conducted in four distinct groups of soybean germplasm: 26 accessions of the wild ancestor of soybean (Glycine soja Seib. et Zucc.); 52 Asian G. max Landraces, the immediate results of domestication from G. soja; 17 Asian Landrace introductions that became the ancestors of North American (N. Am.) cultivars, and 25 Elite Cultivars from N. Am. In G. soja, LD did not extend past 100 kb; however, in the three cultivated G. max groups, LD extended from 90 to 574 kb, likely due to the impacts of domestication and increased self-fertilization. The three genomic regions were highly variable relative to the extent of LD within the three cultivated soybean populations. G. soja appears to be ideal for fine mapping of genes, but due to the highly variable levels of LD in the Landraces and the Elite Cultivars, whole-genome association analysis in soybean may be more difficult than first anticipated.
机译:由于报道了高水平的连锁不平衡(LD),在自生植物种群中利用全基因组关联分析的前景似乎是有希望的。为了确定在大豆(Glycine max L. Merr。)中进行关联分析的最佳策略,我们分析了基因组三个区域中LD的结构,长度从336到574 kb不等。该分析在四个不同的大豆种质资源组中进行:26种大豆野生祖先种质(Glycine soja Seib。et Zucc。); 52亚洲G. max地方品种,大豆的立即驯化结果;成为北美(N. Am。)栽培品种的祖先的17种亚洲地方品种的介绍,以及N. Am。的25种优良品种。在大豆中,LD的长度不超过100 kb;然而,在三个栽培的G​​. max组中,LD从90 kb扩展到574 kb,这可能是由于驯化和自体受精的影响所致。这三个基因组区域相对于三个栽培大豆种群中的LD程度高度可变。大豆大豆似乎是基因精细定位的理想选择,但是由于地方品种和优良品种中LD的水平变化很大,大豆中全基因组关联分析可能比最初预期的要困难。

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