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Inheritance of Soybean Pod Number Trait on Acid Soil

机译:酸性土壤上大豆荚数性状的遗传

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Al-toxicity stressed soybean will show its tolerance response by changing pod number per plant. Hence, Al-toxicity tolerance of soybean can be predicted using that character. The objective of the research was to study inheritance of pod number trait of soybean on acid soil. Development of base population was carried out by crossing the genotypes of W3898- 14-3 with MLGG 0583 and MLGG 0709 from March 2002 to January 2003. Then, from March to June 2003, 13 populations resulting from soybean base population were grown on Pulung Kencana, Tulang Bawang, Lampung, where the soil is Ultisol with Al saturity of 32.84%. The design was randomized completely block design with three replications. The space was 40 x 15 cm, one plant per hill. Results showed that based on pod number per plant, soybean tolerance was polygenically controlled, where the gene action was additive and there was no allelic and non-allelic interaction genes. Narrow sense heritability was low, while broad sense heritability was classified as high. Keywords : Al-toxicity, gene action, heritability, pod number trait, soybean
机译:铝毒胁迫的大豆将通过改变单株荚数显示其耐受性。因此,利用该特性可以预测大豆的Al毒性耐受性。本研究的目的是研究酸性土壤上大豆荚果性状的遗传。 2002年3月至2003年1月,通过将W3898-14-3基因型与MLGG 0583和MLGG 0709杂交来进行基本种群的开发。然后,从2003年3月至2003年6月,在普隆肯卡纳州种植了13个大豆基本种群的种群。楠榜的Tulang Bawang,土壤为Ultisol,Al饱和度为32.84%。该设计是随机的完全块设计,具有三个重复。空间为40 x 15厘米,每座山一棵植物。结果表明,基于单株荚果数,大豆耐性是多基因控制的,其中基因作用是加和的,没有等位基因和非等位基因相互作用基因。狭义遗传力较低,而广义遗传力则较高。关键词:铝毒,基因作用,遗传性,荚果性状,大豆

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