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全基因组比较多样性揭示了六倍体小麦地方品种和品种改良的多个选择目标。

Genome-wide comparative diversity uncovers multiple targets of selection for improvement in hexaploid wheat landraces and cultivars.

机构信息

Commonwealth Scientific and Industrial Research Organization, Plant Industry and Food Futures National Research Flagship, Canberra, ACT 2601, Australia.

出版信息

Proc Natl Acad Sci U S A. 2013 May 14;110(20):8057-62. doi: 10.1073/pnas.1217133110. Epub 2013 Apr 29.

Abstract

Domesticated crops experience strong human-mediated selection aimed at developing high-yielding varieties adapted to local conditions. To detect regions of the wheat genome subject to selection during improvement, we developed a high-throughput array to interrogate 9,000 gene-associated single-nucleotide polymorphisms (SNP) in a worldwide sample of 2,994 accessions of hexaploid wheat including landraces and modern cultivars. Using a SNP-based diversity map we characterized the impact of crop improvement on genomic and geographic patterns of genetic diversity. We found evidence of a small population bottleneck and extensive use of ancestral variation often traceable to founders of cultivars from diverse geographic regions. Analyzing genetic differentiation among populations and the extent of haplotype sharing, we identified allelic variants subjected to selection during improvement. Selective sweeps were found around genes involved in the regulation of flowering time and phenology. An introgression of a wild relative-derived gene conferring resistance to a fungal pathogen was detected by haplotype-based analysis. Comparing selective sweeps identified in different populations, we show that selection likely acts on distinct targets or multiple functionally equivalent alleles in different portions of the geographic range of wheat. The majority of the selected alleles were present at low frequency in local populations, suggesting either weak selection pressure or temporal variation in the targets of directional selection during breeding probably associated with changing agricultural practices or environmental conditions. The developed SNP chip and map of genetic variation provide a resource for advancing wheat breeding and supporting future population genomic and genome-wide association studies in wheat.

摘要

驯化作物经历了强烈的人为选择,旨在开发适应当地条件的高产品种。为了检测在改良过程中小麦基因组受到选择的区域,我们开发了一种高通量芯片,以检测来自全球 2994 个六倍体小麦品系(包括地方品种和现代品种)的 9000 个与基因相关的单核苷酸多态性(SNP)。利用基于 SNP 的多样性图谱,我们描述了作物改良对基因组和遗传多样性的地理模式的影响。我们发现了作物改良对遗传多样性的影响,包括种群瓶颈和广泛利用祖先变异的证据,这些变异通常可以追溯到来自不同地理区域的品种的创始人。通过分析群体间的遗传分化和单倍型共享程度,我们确定了在改良过程中受到选择的等位基因变体。在调控开花时间和物候的基因周围发现了选择清除。通过基于单倍型的分析,检测到了一个野生近缘种衍生的基因的导入,该基因赋予了对真菌病原体的抗性。通过比较不同群体中发现的选择清除,我们表明选择可能作用于小麦地理分布的不同区域或不同功能等效等位基因上的不同目标。大多数选择的等位基因在当地群体中频率较低,这表明在育种过程中,选择压力较弱或目标的定向选择随时间变化,这可能与不断变化的农业实践或环境条件有关。开发的 SNP 芯片和遗传变异图谱为推进小麦育种提供了资源,并支持未来在小麦中进行群体基因组学和全基因组关联研究。

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