首页> 外文期刊>Journal of Plant Breeding and Crop Science >Genetic diversity studies for quantitative traits of tomato (Solanum lycopersicon L.) genotypes in Western Tigray, Northern Ethiopia
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Genetic diversity studies for quantitative traits of tomato (Solanum lycopersicon L.) genotypes in Western Tigray, Northern Ethiopia

机译:埃塞俄比亚北部西提格雷地区番茄(Solanum lycopersicon L.)基因型数量性状的遗传多样性研究

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The objective of the study was to estimate genetic diversity among tomato genotypes. Thirty-six genotypes introduced from different countries were evaluated at Humera Agricultural Research Center, Northern Ethiopia, during 2010/2011 in 6 × 6 simple lattice design with two replications. Cluster analysis was made by average linkage method. Mahalanobis distance (D2) was used to estimate the genetic distance between pair of clusters. Estimates of cluster analysis revealed that the thirty-six genotypes were grouped in to six distinct clusters. Genetic distance between any pair of clusters showed very highly significant difference. The maximum and minimum distances were recorded between clusters IV and V (1805.00) and cluster II and III (81.94) respectively. This indicated the existence of a possibility to improve genotypes through hybridization from any pair of clusters and subsequent selection can be made from the segregant generations. Principal component analysis showed that the first six principal components explained about 83.03% of the total variation. Generally, the study confirmed presence of adequate genetic diversity between any pair of clusters which could be exploited through hybridization.
机译:该研究的目的是评估番茄基因型之间的遗传多样性。在2010/2011年期间,在埃塞俄比亚北部的Humera农业研究中心对来自不同国家的36种基因型进行了评估,采用6×6简单点阵设计,重复两次。采用平均连锁法进行聚类分析。马氏距离(D2)用于估计成对簇之间的遗传距离。聚类分析的估计表明,三十六种基因型被分为六个不同的聚类。任何一对簇之间的遗传距离都显示出非常高的显着差异。分别记录了群集IV和V(1805.00)以及群集II和III(81.94)之间的最大和最小距离。这表明存在通过从任何一对簇进行杂交来改善基因型的可能性,并且可以从分离子代中进行后续选择。主成分分析表明,前六个主成分解释了总变异的83.03%。通常,该研究证实了可以通过杂交利用的任何一对集群之间都存在足够的遗传多样性。

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