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Assessment of genetic variation in Bulgarian tomato (Solanum lycopersicum L.) genotypes, using fluorescent SSR genotyping platform

机译:使用荧光SSR基因分型平台评估保加利亚番茄(Solanum lycopersicum L.)基因型的遗传变异

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摘要

Genetic variability in modern crops is limited due to domestication and selection processes. Genetic variation in eight Bulgarian tomato varieties and breeding lines (variety Plovdivska karotina, variety IZK Alya, L21 beta, L53 beta, L1140, L1116, L975, L984) differing in their morphological and biochemical composition was assessed using a highly efficient and low-cost fluorescent simple sequence repeat (SSR) genotyping platform. Genotyping was conducted with 165 publicly available microsatellite markers developed from different research groups under a number of projects in tomato (SOL Genomics SSRs, Kazusa TGS and TES, SLM, TMS and LEMDDNa) among which only five (3.03%) failed to amplify the expected PCR fragments. Of the remaining markers, 81 (50.62%) were polymorphic in the whole collection of eight genotypes. Among the marker groups used, SLM markers were most polymorphic, followed by TMS and SOL Genomics SSR markers. The total number of amplified alleles was 299, with a mean of 1.869; and the average polymorphic information content (PIC) was 0.196. The genetic diversity within the collection was relatively low (0.2222). Nei's genetic distance varied from 0.0953 to 0.3992. Cluster analysis using the un-weighted pair group method with arithmetic mean (UPGMA) method indicated that the studied tomato genotypes are grouped in four main clusters, which is to some extent consistent with the morpho- and hemo-types of the studied tomatoes. Variety IZK Alya (cherry type) and two of the breeding lines (L1140, L1116) formed three separate and more distant clusters. The fourth cluster includes the other five genotypes. The observed grouping of these genotypes in two sub-clusters reflects their similar morphological and biochemical composition. The genetic distance information from this study might be useful for further implementation of breeding strategies and crosses among these inbred lines.
机译:由于驯化和选择过程,现代作物的遗传变异受到限制。使用高效和低成本的方法评估了八个保加利亚番茄品种和育种系(品种Plovdivska karotina,品种IZK Alya,L21 beta,L53 beta,L1140,L1116,L975,L984)的形态和生化组成不同的遗传变异荧光简单序列重复(SSR)基因分型平台。基因分型是使用165个从不同研究小组开发的可公开获得的微卫星标记进行的,这些标记是在多个番茄项目(SOL Genomics SSR,Kazusa TGS和TES,SLM,TMS和LEMDDNa)下进行的,其中只有五个(3.03%)无法放大预期的PCR片段。在其余的标记中,有81个(50.62%)在8个基因型的整个集合中是多态的。在使用的标记组中,SLM标记多态性最高,其次是TMS和SOL Genomics SSR标记。扩增的等位基因总数为299,平均为1.869;平均多态信息含量(PIC)为0.196。馆藏内的遗传多样性相对较低(0.2222)。 Nei的遗传距离从0.0953到0.3992不等。使用算术平均的非加权对分组法(UPGMA)进行聚类分析表明,所研究的番茄基因型分为四个主要类群,在某种程度上与所研究的番茄的形态和血型相符。品种IZK Alya(樱桃型)和两个育种系(L1140,L1116)形成了三个单独的且距离较远的集群。第四类包括其他五种基因型。在两个亚类中观察到的这些基因型的分组反映了它们相似的形态和生化组成。这项研究的遗传距离信息可能对进一步实施育种策略和这些近交系之间的杂交有用。

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