首页> 外文期刊>Current Journal of Applied Science and Technology >General and Specific Combining Ability in Sesame (Sesamum indicum L.) for Seed Yield and Related Traits
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General and Specific Combining Ability in Sesame (Sesamum indicum L.) for Seed Yield and Related Traits

机译:种子产量和相关性状的芝麻(Sesamum Indicum L.)中的一般和特异性组合能力

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Combining ability study on seed yield per plant from a 7x 7 half-diallel cross of sesame over two years showed that both general combining ability (gca) and specific combining ability (sca) variances important for controlling the traits. Thus, the objectives of this study were to evaluate the gene action and select appropriate parents/crosses using combining ability analysis. Both additive and non additive was of greater significance for seed yield per plant, capsules per plant, days to flowering and oil content. Non additive genetic variances were in the genetic for 1000 seed weight and branches per plant. On the contrary preponderance of additive genetic was found in the inheritance of capsule length and seeds per capsule. The relative magnitude non-additive year interaction was larger than additive x year interaction. The variety Suprava was the best general combiner for seed yield and its major components except oil content. The cross combinations Suprava x Savitri, Suprava x JLT 408 and EC 90 x Savitri would be the best choices for obtaining desirable recombinants. Suprava x Savitri having additive gene control emerged as the best specific combiner for yield and its components except oil content. For improving seed yield and oil content simultaneously, the specific combiner IC 59 x Savitri was identified to be ideal as this cross mostly controlled by additive gene action and hence desirable recombinants can be obtained in early segregating generation. Breeding strategy for different crosses has been discussed in details. The information could help sesame breeders for appropriate selection of parents with high yield potential and oil content to develop future hybridization programs.
机译:两年内7倍7 half-diallel交叉的每个植物种子产量的合并能力研究表明,一般组合能力(GCA)和用于控制特征的特定组合能力(SCA)差异很重要。因此,本研究的目的是评估基因作用,并使用组合能力分析选择合适的父母/交叉。添加剂和非添加剂两种植物种子产量具有更大的意义,每株植物胶囊,天花和油含量。非添加性遗传差异在遗传术中为1000种种子重量和每个植物的分支。在相反的优势遗传遗传学中,发现了胶囊长度和每粒种子的种子的遗传。相对幅度非加性年相互作用大于累积X年相互作用。该品种Suprava是种子产量最佳的种子产量和其主要成分的最佳组合物。交叉组合Suprava X Savitri,Suprava X JLT 408和EC 90 X Savitri将是获得所需重组剂的最佳选择。 Suprava X Savitri具有添加剂基因控制作为最佳特异性组合器,用于产量及其组件除外含油含量。为了同时改善种子产量和油含量,鉴定了特定的组合IC 59×Savitri,因为这种十字架主要由添加剂基因作用控制,因此可以在早期隔离产生中获得所需的重组剂。详细讨论了不同十字架的育种策略。 The information could help sesame breeders for appropriate selection of parents with high yield potential and oil content to develop future hybridization programs.

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