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辣椒属种间杂种的生殖兼容性不一定反映在遗传或表型相似性上。

Reproductive compatibility in Capsicum is not necessarily reflected in genetic or phenotypic similarity between species complexes.

机构信息

Department of Biology and Biochemistry, University of Bath, Claverton Down, Bath, United Kingdom.

World Vegetable Center, Shanhua, Tainan, 74151, Taiwan.

出版信息

PLoS One. 2021 Mar 24;16(3):e0243689. doi: 10.1371/journal.pone.0243689. eCollection 2021.

Abstract

Wild relatives of domesticated Capsicum represent substantial genetic diversity and thus sources of traits of potential interest. Furthermore, the hybridization compatibility between members of Capsicum species complexes remains unresolved. Improving our understanding of the relationship between Capsicum species relatedness and their ability to form hybrids is a highly pertinent issue. Through the development of novel interspecific hybrids in this study, we demonstrate interspecies compatibility is not necessarily reflected in relatedness according to established Capsicum genepool complexes. Based on a phylogeny constructed by genotyping using simple sequence repeat (SSR) markers and with a portion of the waxy locus, and through principal component analysis (PCA) of phenotypic data, we clarify the relationships among wild and domesticated Capsicum species. Together, the phylogeny and hybridization studies provide evidence for the misidentification of a number of species from the World Vegetable Center genebank included in this study. The World Vegetable Center holds the largest collection of Capsicum genetic material globally, therefore this may reflect a wider issue in the misidentification of Capsicum wild relatives. The findings presented here provide insight into an apparent disconnect between compatibility and relatedness in the Capsicum genus, which will be valuable in identifying candidates for future breeding programs.

摘要

栽培辣椒的野生近缘种具有丰富的遗传多样性,是具有潜在应用价值的性状的来源。此外,辣椒属种间杂交的亲和性仍未得到解决。提高我们对辣椒种间亲缘关系与其杂交能力之间关系的认识是一个非常重要的问题。通过本研究中新型种间杂种的开发,我们证明了种间的亲和性不一定反映在根据已建立的辣椒基因库复合物的亲缘关系上。本研究通过利用简单重复序列(SSR)标记和部分蜡质基因座进行基因分型构建的系统发育树,并通过表型数据的主成分分析(PCA),阐明了野生和栽培辣椒种间的关系。系统发育树和杂交研究共同为世界蔬菜中心基因库中一些本研究中包含的物种的错误鉴定提供了证据。世界蔬菜中心拥有全球最大的辣椒遗传物质收藏,因此,这可能反映了辣椒野生近缘种错误鉴定的更广泛问题。这里提出的发现为辣椒属中亲和性与亲缘关系之间明显脱节提供了深入了解,这对于确定未来育种计划的候选者将是有价值的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/023b/8508556/26aef99d3fb4/pone.0243689.g001.jpg

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