Agronomy Department, Zhejiang Agricultural University, 310029, Hangzhou, China.
Theor Appl Genet. 1991 Dec;83(2):243-9. doi: 10.1007/BF00226258.
The genetics of tiller number at different development stages in rice was studied in a 6 x 6 diallel cross set involving six indica rice varieties in which a large difference of phenotypes existed. Estimates of genetic parameters following Hayman's method showed significant additive and nonadditive gene action, and the latter appeared to be solely due to dominance. High tillering ability was inherited as a partial dominant character conditioned by two or more blocks of genes, and var 'H1459' had more dominant genes, whereas 'Zhu-Yun-Luo' had more recessive ones. Combining ability analysis by Griffing's method also indicated significance of both additive and nonadditive effects, but the former was more important than the latter. 'H1459' and 'Bi-Yu-Zao-Luo' were good general combiners, and their hybrids 'H1459' x 'Le-Yi' and 'Zhu-Yun-Luo' x 'Bi-Yu-Zao-Luo' were better crosses for combining an optimum tiller number with high percentage of productive tiller. An identical polygenic system appeared to be responsible for the genetic control of both tiller number at the different growth stages and the terminal character, productive tiller number. However, with growth of the plant, relative contributions of nonadditive gene action and environmental factors to the variation decreased, while those of additive gene action increased. Selection for high tillering ability, therefore, should be exercised at peak tillering or later stages.
在一个包含六个籼稻品种的 6×6 完全双列杂交组中,研究了不同发育阶段水稻分蘖数的遗传,这些品种之间存在很大的表型差异。采用 Hayman 方法估算的遗传参数表明存在显著的加性和非加性基因作用,后者似乎仅由显性作用引起。高分蘖能力是由两个或更多基因块条件下的部分显性特征遗传的,而品种 H1459 具有更多的显性基因,而 Zhu-Yun-Luo 则具有更多的隐性基因。格里菲斯方法的组合能力分析也表明了加性和非加性效应的重要性,但前者比后者更为重要。H1459 和 Bi-Yu-Zao-Luo 是良好的一般组合者,它们的杂种 H1459×Le-Yi 和 Zhu-Yun-Luo×Bi-Yu-Zao-Luo 是结合最优分蘖数和高比例有效分蘖数的更好杂交种。一个相同的多基因系统似乎负责不同生长阶段分蘖数和终端性状有效分蘖数的遗传控制。然而,随着植株的生长,非加性基因作用和环境因素对变异的相对贡献减少,而加性基因作用的贡献增加。因此,高分蘖能力的选择应在高峰期或后期进行。