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Genetic diversity and accession structure in European Cynara cardunculus collections

机译:欧洲Cynara毛un属植物的遗传多样性和登录结构

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摘要

Understanding the distribution of genetic variations and accession structures is an important factor for managing genetic resources, but also for using proper germplasm in association map analyses and breeding programs. The globe artichoke is the fourth most important horticultural crop in Europe. Here, we report the results of a molecular analysis of a collection including globe artichoke and leafy cardoon germplasm present in the Italian, French and Spanish gene banks. The aims of this study were to: (i) assess the diversity present in European collections, (ii) determine the population structure, (iii) measure the genetic distance between accessions; (iv) cluster the accessions; (v) properly distinguish accessions present in the different national collections carrying the same name; and (vi) understand the diversity distribution in relation to the gene bank and the geographic origin of the germplasm. A total of 556 individuals grouped into 174 accessions of distinct typologies were analyzed by different types of molecular markers, i.e. dominant (ISSR and AFLP) and co-dominant (SSR). The data of the two crops (globe artichoke and leafy cardoon) were analyzed jointly and separately to compute, among other aims, the gene diversity, heterozygosity (He, Ho), fixation indexes, AMOVA, genetic distance and structure. The findings underline the huge diversity present in the analyzed material, and the existence of alleles that are able to discriminate among accessions. The accessions were clustered not only on the basis of their typology, but also on the basis of the gene bank they come from. Probably, the environmental conditions of the different field gene banks affected germplasm conservation. These outcomes will be useful in plant breeding to select accessions and to fingerprint varieties. Moreover, the results highlight the particular attention that should be paid to the method used to conserve the Cynara cardunculus germplasm and suggest to the preference of using accessions from different gene banks to run an association map.
机译:了解遗传变异和登录结构的分布是管理遗传资源的重要因素,也是在关联图分析和育种计划中使用适当种质的重要因素。朝鲜蓟是欧洲第四重要的园艺作物。在这里,我们报告了对包括意大利,法国和西班牙基因库中的朝鲜蓟和绿叶菜心种质在内的集合进行分子分析的结果。这项研究的目的是:(i)评估欧洲馆藏中存在的多样性,(ii)确定种群结构,(iii)测量种质之间的遗传距离; (iv)将种质归类; (v)适当地区分存在于具有相同名称的不同国家藏品中的种质; (vi)了解与基因库和种质地理起源有关的多样性分布。通过不同类型的分子标记,即显性(ISSR和AFLP)和共显性(SSR)分子标记,分析了556个个体,分为174种不同类型的种质。联合和分别分析了两种作物(朝鲜蓟和叶菜蓟)的数据,以计算基因多样性,杂合度(He,Ho),固定指数,AMOVA,遗传距离和结构等。这些发现强调了所分析材料中存在的巨大多样性,以及能够区分种质的等位基因的存在。这些种不仅根据其类型进行分类,而且根据其来源的基因库进行分类。可能不同田间基因库的环境条件影响了种质资源的保存。这些结果将在植物育种中选择种质和指纹品种。此外,结果突出了应特别注意用于保存Cynara cardunculus种质的方法,并建议使用不同基因库的种质来进行关联图谱的偏好。

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