Qualitative characterization and clustering in tomato (Solanum lycopersicum L.) germplasm accessions

Q4 Immunology and Microbiology
Greetty Williams, Anbuselvam Yesudhas
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Abstract

Most of the tomato genotypes are inbred in nature, indicating the need to assess and characterize germplasm accessions as they are the reserve for genotypes with desired traits. Documentation on morphological traits is quite informative in tomato breeding programs since higher levels of diversity on morphological traits are associated with genotypes with lower genetic diversity when assessed using molecular markers. The present investigation aimed to evaluate morphological diversity in tomato germplasm accessions. Morphological characterization was performed in 104 genotypes acquired from various sources. Thirty-three morphological traits, such as seedling, plant, inflorescence and fruit, were scored based on the tomato descriptors. Out of 33 characters studied, 26 traits exhibited diverse modalities, 4 traits exhibited varied classes in genotypes and 3 traits did not show any variants. Qualitative characterization highlighted greater variability among genotypes, as witnessed by their diverse modalities for each trait. The collected data was subjected to Agglomerative Hierarchical Clustering following Ward’s method. Cluster analysis and dendrogram construction displayed genetic diversity's richness in the germplasm accessions. Cluster analysis placed these 104 genotypes in six clusters. The largest cluster comprised 55 genotypes, whereas the smallest cluster had three. Agglomerative Hierarchical Clustering helped to find similarities between genotypes. This efficiently assigned genotypes into groups and thus provided guidelines for parental selection in tomato hybridization and breeding programmes.
番茄(Solanum lycopersicum L.)种质资源的定性和聚类分析
大多数番茄基因型在自然界中是近交的,这表明有必要对种质资源进行评估和表征,因为它们是具有所需性状的基因型的储备。形态学性状的文献资料在番茄育种计划中是非常有用的,因为当使用分子标记进行评估时,形态学性状的高水平多样性与遗传多样性较低的基因型相关。本研究旨在评价番茄种质资源的形态多样性。对来自不同来源的104个基因型进行了形态学鉴定。利用番茄描述符对幼苗、植株、花序和果实等33个形态性状进行了评分。在33个性状中,26个性状表现出不同的形态,4个性状表现出不同的基因型类别,3个性状未表现出任何变异。定性表征强调了基因型之间更大的变异性,正如每个性状的不同模式所证明的那样。将收集到的数据按照Ward的方法进行聚类。聚类分析和树图构建显示了种质资源遗传多样性的丰富性。聚类分析将这104个基因型分为6个聚类。最大的集群包含55个基因型,而最小的集群只有3个。聚类分层聚类有助于发现基因型之间的相似性。这种方法有效地将基因型划分为不同的组,从而为番茄杂交和育种计划中的亲本选择提供指导。
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来源期刊
Journal of Applied and Natural Science
Journal of Applied and Natural Science Immunology and Microbiology-Immunology and Microbiology (all)
CiteScore
0.80
自引率
0.00%
发文量
168
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