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中国农学通报 ›› 2009, Vol. 25 ›› Issue (23): 206-209.

所属专题: 水稻

• 农学 农业基础科学 • 上一篇    下一篇

寒地粳稻粒宽在DH群体中遗传变异研究

孙洪义 刘传雪 邱爱民 冯雅舒 黄晓群 潘国君   

  • 收稿日期:2009-07-16 修回日期:2009-08-17 出版日期:2009-12-05 发布日期:2009-12-05
  • 基金资助:
    黑龙江省农业科学院青年基金项目

Studies on Genetic Variation of Grain Width of Doubled Haploid Japonica Rice in Cold Region

  • Received:2009-07-16 Revised:2009-08-17 Online:2009-12-05 Published:2009-12-05

摘要: 以2个组合的DH群体,应用Choo和 Reibergs提出的模型及公式,研究了粒宽在寒地水稻在DH群体的遗传变异。结果表明,水稻粒宽的遗传变异分为两种遗传模式,第一种遗传模式为主效基因加微效多基因混合数量遗传;无主效基因互作。第二种遗传模式为多个主效基因加微效多基因混合数量遗传,主效基因间存在互作,为互补作用;粒宽在DH群体的遗传力为0.61;控制粒宽的基因为7.8-12.3对、平均9.9对。因此,在寒地花培品质育种中有目的对粒宽进行低世代严格选择,对提高粒重及选育适宜粒型的优异种质是十分有效的。

关键词: 芽胞杆菌, 芽胞杆菌, 石斛兰, 叶斑病, 生物防治

Abstract: The DH population of 2 combinations had been constructed in cold rice region by the technology of anther culture in hybridization combination F1 which from 3 parents of different grain width and analyzed the hereditary variation distribution of grain width in DH population, estimated hereditary capacity and rate over parent in DH population by the model and formula which were presented by Choo and Reibergs, and examined the number of gene pairs and the pattern of gene interaction which controlled these characters. The result showed that the hereditary variation of grain width was divided into two models: Model I was mixed quantitative heredity which was controlled by major gene and many minor genes, there was no interaction of major genes. Model II was mixed quantitative heredity controlled by many major genes and many minor genes, there was effect among major genes, which was complement each other. The hereditary capacity of grain length was 0.61, and the number of gene pairs was 7.8-12.3 pairs controlled by grain length, 9.9 on average. As a result, strictly choose grain width individual of low generation was very effective for germplasm innovation, such as improving grain weight and breeding suitable grain types in quality breeding of anther culture in cold rice region. Key words: Cold region; Japonica rice; Grain Width; DH population; Genetic variation