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Genetic Diversity and Structure in a Germplasm Collection of Pansies using SRAP Markers

机译:利用SRAP标记对紫罗兰种质资源的遗传多样性和结构进行分析

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Pansies are one of the most important bedding flowers worldwide. Investigating the genetic diversity and identifying the genetic structure and relationships among germplasms are useful for geneticists and breeders. In this study, the genetic diversity and genetic structure of forty pansies germplasms from six breeding organizations were analysed by sequence-related amplified polymorphism (SRAP). Twenty-four primer pairs generated 430 polymorphic bands and showed high resolving power by 9.92 on average. The Nei’s gene diversity across 40 accessions was 0.271. Compared with the accessions from other organizations, the accessions from Jiuquan Jinqiu Horticulture Seed had high percentage of polymorphic bands and genetic diversity. As for flower size, the polymorphic bands percentage and genetic diversity of medium flower group were large. The genetic distances between mini flower group and others were relatively large. Most of accessions were grouped into three clusters that reflecting the genetic relationships of accessions correlated to their original place using principle coordinate analysis (PCoA) and unweighted pair group method arithmetic means (UPGMA). Bayesian analysis inferred that most pansies accessions had admixed genetic background, and they mainly derived from ‘Jonny Jump Up; ‘Schweizer Riesen’ and cultivars from PanAmerica Seed. These results can be helpful to germplasm introduction and crossing parent selection in pansies breeding.
机译:紫罗兰是世界上最重要的床上用品花之一。调查遗传多样性并确定遗传结构和种质之间的关系对遗传学家和育种者很有用。在这项研究中,通过序列相关的扩增多态性(SRAP)分析了来自六个育种组织的四十个三色堇种质的遗传多样性和遗传结构。 24对引物产生430条多态性条带,平均显示高分辨力,为9.92。 Nei在40个种质中的基因多样性为0.271。与其他组织的种质相比,酒泉金秋园艺种具有较高的多态性条带和遗传多样性。至于花的大小,中等花组的多态性带百分比和遗传多样性较大。小花群与其他小花群之间的遗传距离相对较大。使用主坐标分析(PCoA)和非加权成对分组法算术方法(UPGMA),将大多数种质归为三类,反映了种质与原产地的遗传关系。贝叶斯分析推断,大多数三色紫罗兰种质具有混合的遗传背景,它们主要来自“强尼跳跃”; “ Schweizer Riesen”和PanAmerica Seed的品种。这些结果有助于紫罗兰育种中的种质引进和亲本选育。

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