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Estimating Combining Ability Effect of the Indian and Exotic Lines of Tomatoes by Partial Diallel Analysis

机译:通过偏Diallel分析估计印度和外来番茄的配合力效应

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Eight nearly homozygous, horticulturally superior and optimally divergent lines of tomato having Indian and exotic adaptability were used for carrying out half diallel design to study General Combining Ability (GCA) and Specific Combining Ability (SCA) estimates for fruit weight, polar and equatorial diameter, locules fruit-1, pericarp thickness and fruit firmness. The variances due to both GCA and SCA were significant, suggesting that both additive and non additive genetic variance were involved for genetic control of the character fruit polar and equatorial diameter, and locules number in F1 and F2 generations. However, the variance due to GCA was more pronounced for fruit weight, pericarp thickness and firmness as a result of additive gene action. Due to their high general combining ability effects, exotic parents Ec 490130 and Ec 177371 producing firm fruited small to medium sized tomato fruits having constant expression of GCA effects over the generationsregarded as best general combiners. The crosses GT 1 x Ec 490130 and Ec 490130 x Ec 398704 having high x high and high x low combinations, respectively in F1. While in F2, GT 1 x Ec 177371 and H 24 x Ec 490130 having high x high and high x low combining lines were considered as best crosses for greater fruit firmness. Therefore, heterosis breeding in F1 and selection of desirable lines in F2 generation is recommended for further improvements were suggested for future hybridization programmes.
机译:使用八种具有印度和异国适应性的近乎纯合,园艺上优和最佳发散的番茄来进行半拨号设计,以研究对水果重量,极地和赤道直径的总结合能力(GCA)和比结合能力(SCA)的估计,子房果1,果皮厚度和果实硬度。由GCA和SCA引起的方差均很显着,表明加性和非加性遗传方差均参与了性状果实的极地和赤道直径以及F1和F2代中子房数的遗传控制。然而,由于加性基因的作用,由于GCA引起的变异在果实重量,果皮厚度和硬度上更为明显。由于它们具有较高的综合能力,外来亲本Ec 490130和Ec 177371生产出结实的中小型番茄果实,在整个世代中均具有GCA效应的恒定表达,被认为是最佳的一般组合物。交叉GT 1 x Ec 490130和Ec 490130 x Ec 398704在F1中分别具有高x高和高x低的组合。在F2中,具有高x高和高x低组合线的GT 1 x Ec 177371和H 24 x Ec 490130被认为是获得更大水果硬度的最佳杂交品种。因此,建议对F1进行杂种优势育种,并在F2代中选择理想的品系,以进一步改善杂交计划。

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