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为将未开发的葡萄牙普通豆种质引入育种领域奠定基础。

Establishing the Bases for Introducing the Unexplored Portuguese Common Bean Germplasm into the Breeding World.

作者信息

Leitão Susana T, Dinis Marco, Veloso Maria M, Šatović Zlatko, Vaz Patto Maria C

机构信息

Instituto de Tecnologia Química e Biológica António Xavier, Universidade Nova de LisboaOeiras, Portugal.

Unidade de Investigação de Biotecnologia e Recursos Genéticos, Instituto Nacional de Investigação Agrária e VeterináriaOeiras, Portugal.

出版信息

Front Plant Sci. 2017 Jul 26;8:1296. doi: 10.3389/fpls.2017.01296. eCollection 2017.

Abstract

Common bean ( L.) is among the most important grain legumes for human consumption worldwide. Portugal has a potentially promising common bean germplasm, resulting from more than five centuries of natural adaptation and farmers' selection. Nevertheless, limited characterization of this resource hampers its exploitation by breeding programs. To support a more efficient conservation of the national bean germplasm and promote its use in crop improvement, we performed, for the first time, a simultaneous molecular marker (21 microsatellites and a DNA marker for phaseolin-type diversity analysis) and seed and plant morphological characterization (14 traits) of 175 accessions from Portuguese mainland and islands traditional bean-growing regions. A total of 188 different alleles were identified and an average pairwise Cavalli-Sforza and Edwards' chord genetic distance of 0.193 was estimated among accessions. To relate the Portuguese germplasm with the global common bean diversity, 17 wild relatives and representative accessions from the Andean and Mesoamerican gene pools were evaluated at the molecular level. No correlation was detected between the variability found and the geographic origin of accessions. Structure analysis divided the collection into three main clusters. Most of the Portuguese accessions grouped with the race representatives and wild relatives from the Andean region. One third of the national germplasm had admixed genetic origin and might represent putative hybrids among gene pools from the two original centers of domestication in the Andes and Mesoamerica. The molecular marker-based classification was largely congruent with the three most frequent phaseolin haplotype patterns observed in the accessions analyzed. Seed and plant morphological characterization of 150 Portuguese common bean accessions revealed a clear separation among genetic structure and phaseolin haplotype groups of accessions, with seed size and shape and the number of locules per pod the most discriminant traits. Additionally, we used molecular and morphological data to develop a series of smaller core collections that, by maximizing the genetic and morphological diversity of the original collection, represents the Portuguese common bean germplasm with minimum repetitiveness. A core collection with 37 accessions contained 100% of the genetic variation found in the entire collection. This core collection is appropriate for a more detailed characterization and should be explored, as a priority, in national and international common bean breeding efforts. Furthermore, the identified intermediate accessions (with admixed genetic origin) may have novel genetic combinations useful in future bean breeding.

摘要

普通菜豆(Phaseolus vulgaris L.)是全球最重要的供人类食用的食用豆类之一。葡萄牙拥有颇具潜力的普通菜豆种质资源,这是五个多世纪以来自然适应和农民选育的结果。然而,对该资源的有限表征阻碍了育种计划对其的利用。为了更有效地保护该国的菜豆种质资源并促进其在作物改良中的应用,我们首次对来自葡萄牙大陆和岛屿传统菜豆种植区的175份种质进行了分子标记(21个微卫星标记和一个用于菜豆蛋白类型多样性分析的DNA标记)以及种子和植株形态特征(14个性状)的鉴定。共鉴定出188个不同的等位基因,种质间平均成对的卡瓦利 - 斯福尔扎和爱德华兹弦遗传距离估计为0.193。为了将葡萄牙的种质与全球普通菜豆的多样性联系起来,在分子水平上对17份野生近缘种以及来自安第斯和中美洲基因库的代表性种质进行了评估。未检测到所发现的变异性与种质地理起源之间的相关性。结构分析将该收集群体分为三个主要聚类。大多数葡萄牙种质与来自安第斯地区的品种代表和野生近缘种归为一类。该国三分之一的种质具有混合遗传起源,可能代表了来自安第斯和中美洲两个原始驯化中心基因库之间的假定杂交种。基于分子标记的分类在很大程度上与在所分析的种质中观察到的三种最常见的菜豆蛋白单倍型模式一致。对150份葡萄牙普通菜豆种质的种子和植株形态特征鉴定表明,种质的遗传结构和菜豆蛋白单倍型组之间存在明显分离,种子大小和形状以及每荚节数是最具鉴别力的性状。此外,我们利用分子和形态学数据开发了一系列较小的核心收集群体,通过最大化原始收集群体的遗传和形态多样性,以最小的重复性代表了葡萄牙普通菜豆种质。一个包含37份种质的核心收集群体包含了整个收集群体中发现的100%的遗传变异。这个核心收集群体适合进行更详细的表征,应作为优先事项在国内和国际普通菜豆育种工作中加以探索。此外,所鉴定出的具有混合遗传起源的中间种质可能具有对未来菜豆育种有用的新基因组合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8a7/5526916/c9965db75b06/fpls-08-01296-g0001.jpg

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