Institute of Genetics and Biophysics, National Research Council (CNR), Naples, Italy.
CREA Research Centre for Vegetable and Ornamental Crops, Pontecagnano Faiano, Italy.
Sci Rep. 2019 Jul 11;9(1):10067. doi: 10.1038/s41598-019-46136-5.
Capsicum is one of the major vegetable crops grown worldwide. Current subdivision in clades and species is based on morphological traits and coarse sets of genetic markers. Broad variability of fruits has been driven by breeding programs and has been mainly studied by linkage analysis. We discovered 746k variable sites by sequencing 1.8% of the genome in a collection of 373 accessions belonging to 11 Capsicum species from 51 countries. We describe genomic variation at population-level, confirm major subdivision in clades and species, and show that the known major subdivision of C. annuum separates large and bulky fruits from small ones. In C. annuum, we identify four novel loci associated with phenotypes determining the fruit shape, including a non-synonymous mutation in the gene Longifolia 1-like (CA03g16080). Our collection covers all the economically important species of Capsicum widely used in breeding programs and represent the widest and largest study so far in terms of the number of species and number of genetic variants analyzed. We identified a large set of markers that can be used for population genetic studies and genetic association analyses. Our results provide a comprehensive and precise perspective on genomic variability in Capsicum at population-level and suggest that future fine genetic association studies will yield useful results for breeding.
辣椒是全球范围内广泛种植的主要蔬菜作物之一。目前,对类群和物种的细分是基于形态特征和粗集的遗传标记。果实的广泛变异性是由育种计划驱动的,主要通过连锁分析进行研究。我们在一个由来自 51 个国家的 11 个辣椒物种的 373 个品种组成的集合中,通过对基因组的 1.8%进行测序,发现了 746k 个可变异位点。我们描述了群体水平上的基因组变异,证实了类群和物种的主要细分,并表明已知的 C. annuum 主要细分将大而结实的果实与小果实区分开来。在 C. annuum 中,我们确定了四个与决定果实形状的表型相关的新基因座,包括 Longifolia 1-like(CA03g16080)基因中的一个非同义突变。我们的收集涵盖了在育种计划中广泛使用的所有具有经济重要性的辣椒物种,代表了迄今为止在物种数量和分析的遗传变异数量方面最广泛和最大的研究。我们鉴定了一大组可用于群体遗传研究和遗传关联分析的标记。我们的研究结果提供了辣椒在群体水平上基因组变异性的全面而精确的视角,并表明未来的精细遗传关联研究将为育种提供有用的结果。