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向日葵泛基因组分析表明,杂交改变了基因组成和抗病性。

Sunflower pan-genome analysis shows that hybridization altered gene content and disease resistance.

机构信息

Department of Botany and Biodiversity Research Centre, University of British Columbia, Vancouver, British Columbia, Canada.

Department of Biotechnology, Tel-Hai Academic College, Upper Galilee, Israel.

出版信息

Nat Plants. 2019 Jan;5(1):54-62. doi: 10.1038/s41477-018-0329-0. Epub 2018 Dec 31.

Abstract

Domesticated plants and animals often display dramatic responses to selection, but the origins of the genetic diversity underlying these responses remain poorly understood. Despite domestication and improvement bottlenecks, the cultivated sunflower remains highly variable genetically, possibly due to hybridization with wild relatives. To characterize genetic diversity in the sunflower and to quantify contributions from wild relatives, we sequenced 287 cultivated lines, 17 Native American landraces and 189 wild accessions representing 11 compatible wild species. Cultivar sequences failing to map to the sunflower reference were assembled de novo for each genotype to determine the gene repertoire, or 'pan-genome', of the cultivated sunflower. Assembled genes were then compared to the wild species to estimate origins. Results indicate that the cultivated sunflower pan-genome comprises 61,205 genes, of which 27% vary across genotypes. Approximately 10% of the cultivated sunflower pan-genome is derived through introgression from wild sunflower species, and 1.5% of genes originated solely through introgression. Gene ontology functional analyses further indicate that genes associated with biotic resistance are over-represented among introgressed regions, an observation consistent with breeding records. Analyses of allelic variation associated with downy mildew resistance provide an example in which such introgressions have contributed to resistance to a globally challenging disease.

摘要

家养动植物对选择往往表现出显著的反应,但这些反应所基于的遗传多样性的起源仍知之甚少。尽管经历了驯化和改良瓶颈,栽培向日葵在遗传上仍然高度多样化,这可能是由于与野生近缘种杂交的结果。为了描述向日葵的遗传多样性,并量化野生近缘种的贡献,我们对 287 个栽培品种、17 个美洲原住民地方品种和 189 个野生样本进行了测序,这些野生样本代表了 11 个可杂交的野生种。对于无法映射到向日葵参考基因组的品种序列,我们对每个基因型进行从头组装,以确定栽培向日葵的基因库,即“泛基因组”。然后将组装的基因与野生种进行比较,以估计其起源。结果表明,栽培向日葵的泛基因组由 61205 个基因组成,其中 27%在基因型间存在差异。大约 10%的栽培向日葵泛基因组是通过与野生向日葵物种的基因渗入产生的,而 1.5%的基因仅通过基因渗入产生。基因本体论功能分析进一步表明,与生物抗性相关的基因在渗入区域中过度表达,这一观察结果与育种记录一致。与抗霜霉病相关的等位基因变异的分析提供了一个例子,说明这种基因渗入有助于对全球挑战疾病的抗性。

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