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出 处:《华南农业大学学报》1994年第1期40-46,共7页Journal of South China Agricultural University
基 金:广东省自然科学基金
摘 要:从籼型水稻品种中鉴定、筛选出7个不同抗级的抗白叶枯病基因源,加入高感病标准品种TN1,作8×8完全双列杂交,按Hayman模型进行遗传分析。结果是:在遗传方差中,加性方差占75.24%,显性方差占20.36%,上位性方差占4.22%;广义遗传力h2R=297.98%,狭义遗传力h2a=73.90%;最少加性基因数k=4,显性基因数k′=24;具不完全正显性,所有显性座位的作用方向相一致,不同显性座位的效应可能稍有差异;遗传群体中,正效基因频率p=0.473,负效基因频率q=0.527,p∶q接近1∶1,但不同亲本正负效基因分布有明显差异。A 8×8 diallel crcos of seven hsien(indica ) rice cultivars with different resistanceto bacterial blight(Xanthomonas oryzae),derived from evaluation and screening,and TN1,a high susceptible standard cultivar ,was made·Genetic analysis was conducted by Hayman 'sModel,within genetic variances,additive variance,dominance variance and epistasis var-ance are 75.42%,20.36% and 4.22%respectively. Heritability in broad sence,hR2=97.98%,while heritability in narrow sense,hN2=73.90%. Least numbers of additive gene,k=4,while numbers of dominant gene,k'=4.In other words , the resistance features in-complete positive dominance and the action direction of all dominant loci is consistent.Theeffect of different dominant loci may exist slight difference. In genetic population,the fre-quency of positive effect gens,p=0.473, while the frequency of negative effect gene,q=0.527.p:q is closely to1 :1 ,The distribution of positive and negative effect genes derivedfrom cultivars with different resistance is markedly different.
分 类 号:S435.111.4[农业科学—农业昆虫与害虫防治]
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