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Genetic Diversity in Genus Citrullus (C colocynthis and C. lanatus)

机译:柑橘属(C.loconthis和C. lanatus)的遗传多样性

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Genetic diversity was assessed among 39 genotypes of Citrullus, including 17 of Citrullus colocynthis and 22 of C. lanatus using eight characters such as seed yield plant"' (SYPP), fruit yield planf' (FYPP), number of fruits plant’ (NFPP), single fruit weight (SFW), fruit diameter (FD), seed weight fruif' (SWPF), number of seeds fruit’ (NSPF) and 100-seed weight (HSW). The high genotypic (GCV) and phenotypic coefficient of variations (PCV) were noticed for HSW, NFPP and NSPF. The heritability in broad sense varied from 51.0 to 97.3%. The traits like HSW, SFW, NFPP and NSPF showed high heritability. Cluster analysis through Ward's minimum variance method grouped the entries into seven clusters. Maximum number of 11 genotypes was included in clusterVII followed by eight each in clusters I and V, five in cluster IV, three in cluster VI and two each in clusters II and III. The group IV, comprized of five C. colocynthis genotypes, had high values for characters like SYPP, NFPP and NSPF while the cluster V, with eight C. lanatus genotypes, was superior for FYPP, SFW, SWPF and HSW. Among the characters studied, NSPF (48.2%) contributed the maximum towards the total divergence followed by SWPF (13.8%), HSW (10.1%) and FYPP (6.9%). The present study indicates greater diversity between genotypes of these two species and thus provides good chance to improve both the species through interspecific hybridization and selection for desired traits.
机译:利用八种性状,如种子产量植物'(SYPP),水果产量计划'(FYPP),水果植物数量(NFPP),对39种柑橘属基因型的遗传多样性进行了评估,其中包括17种瓜果瓜和22种C. lanatus。 ),单果实重(SFW),果实直径(FD),种子重果(SWPF),种子果实数(NSPF)和100种子重量(HSW)。高基因型(GCV)和表型系数HSW,NFPP和NSPF的变异(PCV),遗传率从51.0%到97.3%不等; HSW,SFW,NFPP和NSPF等特征显示出高遗传度,通过沃德最小方差法进行聚类分析将条目分为七个聚类,最大的11种基因型包括在聚类VII中,其次是在聚类I和V中各八个,在聚类IV中五个,聚类VI中三个,在聚类II和III中各两个。基因型对于SYPP,NFPP和NSPF等字符具有很高的价值在FYPP,SFW,SWPF和HSW方面,具有八种C. lanatus基因型的聚类V较优。在研究的特征中,NSPF(48.2%)对总差异贡献最大,其次是SWPF(13.8%),HSW(10.1%)和FYPP(6.9%)。本研究表明这两个物种的基因型之间具有更大的多样性,因此提供了通过种间杂交和选择所需性状来改良两个物种的良好机会。

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