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ASSESSMENT OF GENETIC DIVERSITY IN TOMATO FOR FRUIT MORPHOLOGY, COMPOSITION AND YIELD

机译:番茄果实的形态,组成和产量的遗传多样性评估

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Postharvest losses are of great concern in vegetable crops, including tomato, due to their perishable nature. Damage to tomato fruit during transportation is related to its shape besides other factors. Therefore, this study was conducted to assess genetic diversity in the available tomato germplasm (35 genotypes) for fruit morphology, biochemical composition and yield. Considerable variation was observed for all studied traits except number of locules per fruit, TSS and reducing sugars, for which very low range was recorded. While, moderate level of variation existed for stem-end blockiness, blossom-end blockiness and elongated shape which suggested that fruit of most of the varieties could belong to more than one category of fruit shape. Fruit length and diameter had significantly positive correlation with heart shape of tomato, while later was also correlated with blossom-end-blockiness. Heart shape of tomato fruit was also correlated with stem-end blockiness. Yield showed significantly positive correlation with number of inflorescence per plant. Principal component analysis (PCA) revealed PC-I to PC-VI had Eigen values >1, which contributed 73.86% of total variability for different traits. The highest factor loading values for blossom-end-blockiness, stem-end-blockiness, heart shape and elongated shape was recorded in PC-6, PC-4, PC-6 and PC-2, respectively. Thirty five genotypes were grouped into three clusters. Higher yield and stem-end-blockiness was observed in genotypes from cluster II, while higher values for blossom-end-blockiness, heart shape and elongated shape were noticed in cluster I followed by cluster III. So, it can be assumed that genotypes in cluster II showed higher yield and also possessed blocky fruit, a desirable character for transportation and processing purpose. Moreover, it is suggested that genotypes of cluster I and cluster II can be crossed to find heterosis for yield and fruit shape related traits.
机译:收获后的损失由于其易腐烂的性质而在包括番茄在内的蔬菜作物中引起极大关注。除其他因素外,运输过程中对番茄果实的损害还与其形状有关。因此,本研究旨在评估可用番茄种质(35个基因型)的遗传多样性,以了解其果实形态,生化成分和产量。除每个果实的子房数,TSS和还原糖外,所有研究的性状均观察到相当大的变异,其记录的范围很低。同时,茎端结实,花端结实和细长形存在适度的变异,这表明大多数品种的果实可能属于一种以上的果实形。果实的长度和直径与番茄的心形显着正相关,而后来也与开花末期的阻塞性相关。番茄果实的心形也与茎端结块有关。产量与单株花序数呈显着正相关。主成分分析(PCA)显示,PC-1至PC-VI的特征值> 1,占不同性状总变异性的73.86%。分别在PC-6,PC-4,PC-6和PC-2中记录了开花末端阻滞,茎末端阻滞,心形和拉长形状的最高因子负荷值。将35个基因型分为三个簇。在聚类II的基因型中观察到较高的产量和茎端封闭性,而在聚类I和随后的聚类III中观察到较高的开花端封闭性,心形和拉长形状值。因此,可以假设聚类II中的基因型显示出较高的产量,并且还具有块状果实,这对于运输和加工目的是理想的特性。此外,建议可以将群集I和群集II的基因型进行杂交,以发现与产量和果实形状相关性状的杂种优势。

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