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Intraspecific diversification of the crop wild relative Brassica cretica Lam. using demographic model selection

机译:作物野生相对芸薹属植物林的内部分化。使用人口统计学模型选择

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BACKGROUND:Crop wild relatives (CWRs) contain genetic diversity, representing an invaluable resource for crop improvement. Many of their traits have the potential to help crops to adapt to changing conditions that they experience due to climate change. An impressive global effort for the conservation of various CWR will facilitate their use in crop breeding for food security. The genus Brassica is listed in Annex I of the International Treaty on Plant Genetic Resources for Food and Agriculture. Brassica oleracea (or wild cabbage), a species native to southern and western Europe, has become established as an important human food crop plant because of its large reserves stored over the winter in its leaves. Brassica cretica Lam. (Bc) is a CWR in the brassica group and B. cretica subsp. nivea (Bcn) has been suggested as a separate subspecies. The species Bc has been proposed as a potential gene donor to brassica crops, including broccoli, cabbage, cauliflower, oilseed rape, etc. RESULTS: We sequenced genomes of four Bc individuals, including two Bcn and two Bc. Demographic analysis based on our whole-genome sequence data suggests that populations of Bc are not isolated. Classification of the Bc into distinct subspecies is not supported by the data. Using only the non-coding part of the data (thus, the parts of the genome that has evolved nearly neutrally), we find the gene flow between different Bc population is recent and its genomic diversity is high.CONCLUSIONS:Despite predictions on the disruptive effect of gene flow in adaptation, when selection is not strong enough to prevent the loss of locally adapted alleles, studies show that gene flow can promote adaptation, that local adaptations can be maintained despite high gene flow, and that genetic architecture plays a fundamental role in the origin and maintenance of local adaptation with gene flow. Thus, in the genomic era it is important to link the selected demographic models with the underlying processes of genomic variation because, if this variation is largely selectively neutral, we cannot assume that a diverse population of crop wild relatives will necessarily exhibit the wide-ranging adaptive diversity required for further crop improvement.
机译:背景:农作物野生亲属(CWR)含有遗传多样性,代表作物改善的宝贵资源。他们的许多特征有可能帮助庄稼适应改变他们因气候变化而经历的条件。令人印象深刻的全球努力保护各种CWR将有助于他们在作物育种中使用粮食安全。 Brassica在粮食和农业植物遗传资源国际条约附件一中市。 Brassica Oleracea(或野白卷心菜)是一种原产于南方和西欧的物种,已成为一个重要的人类食物作物植物,因为它的叶子在冬季储存在冬季。芸苔属植物林。 (BC)是芸苔属组和B.Cretica子公司的CWR。纳维亚(BCN)被建议为单独的亚种。该物种BC已提出作为芸苔作物的潜在基因供体,包括西兰花,白菜,花椰菜,油菜等结果:我们测序四种BC个体的基因组,包括两个BCN和两个BC。基于我们的全基因组序列数据的人口分析表明,BC的群体不是孤立的。数据不支持BC分类为不同的亚级。仅使用数据的非编码部分(因此,几乎中性演变的基因组的部分),我们发现近期不同BC群之间的基因流是近期的,其基因组多样性高。结论:尽管对破坏性预测有所预测effect of gene flow in adaptation, when selection is not strong enough to prevent the loss of locally adapted alleles, studies show that gene flow can promote adaptation, that local adaptations can be maintained despite high gene flow, and that genetic architecture plays a fundamental role在局部适应基因流动的起源和维护中。因此,在基因组时代,将选定的人口统计模型与基因组变异的底层过程联系起来是重要的,因为如果这种变异在很大程度上选择性中性,我们不能认为各种各样的作物野生亲属群体必然会展现出广泛的范围进一步作物改善所需的自适应分集。

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