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水稻对受体植物化感作用的遗传生态学研究
引用本文:何华勤,林文雄,董章杭,郭玉春,沈荔花,梁义元,陈芳育,梁康迳.水稻对受体植物化感作用的遗传生态学研究[J].应用生态学报,2002,13(12):1582-1586.
作者姓名:何华勤  林文雄  董章杭  郭玉春  沈荔花  梁义元  陈芳育  梁康迳
作者单位:福建农林大学作物学院,福州,350002
基金项目:国家自然科学基金 (3 0 0 70 68),福建省重大科技项目 (2 0 0 2F0 12 ),福建省自然科学基金项目 (D0 110 0 12 ),教育部骨干教师基金资助 项目
摘    要:选用化感作用潜力差异较大的 5个水稻品种 (系 ) ,按不完全双列杂交设计 (4× 5 )配制成一套包括亲本、F1两个世代的遗传材料 ,在不同环境条件下 ,测定其不同叶龄时期对受体植物莴苣幼苗茎长的抑制作用 .采用包括基因型与环境互作的数量性状加性 显性发育遗传模型 ,分析了水稻化感作用的动态遗传及与环境互作效应 .结果表明 ,水稻叶龄在 7叶期对莴苣茎长的化感作用受加性效应的影响 ,在 3叶期和 6叶期由显性效应控制 ,在 5叶期和 8叶期加性和显性效应均有作用 ,以显性效应为主 ,呈现间断表达的遗传特点 .普通狭义遗传率在 5叶期、7叶期和 8叶期达显著水平 ,随叶龄增大趋于下降 .水稻化感作用受基因型与环境互作效应的影响较大 ,应注意控制水稻生长发育的环境 ,以达到最佳利用水稻化感作用潜力的目的 .

关 键 词:水稻  受体植物  化感作用  遗传生态学研究  基因型  环境  遗传方差  遗传率
文章编号:1001-9332(2002)12-1582-05
修稿时间:2002年9月23日

Genetic ecology of rice allelopathy on receiver plant
HE Huaqin,LIN Wenxiong,DONG Zhanghang,GUO Yuchun,SHEN Lihua,LIANG Yiyuan,CHEN Fangyu,LIANG Kangjing.Genetic ecology of rice allelopathy on receiver plant[J].Chinese Journal of Applied Ecology,2002,13(12):1582-1586.
Authors:HE Huaqin  LIN Wenxiong  DONG Zhanghang  GUO Yuchun  SHEN Lihua  LIANG Yiyuan  CHEN Fangyu  LIANG Kangjing
Institution:College of Crop Science, Fujian Agriculture and Forestry University, Fuzhou 350002. hehuaqin@pub2.fz.fj.cn
Abstract:In this study, 5 parental rice lines with different allelopathic potential were employed in partial diallel cross (4 x 5) to get 10 groups of F1 seeds. After testing the inhibitory effects of 5 parents and 10 F1s under different environment at different leaf stage on the shoot length of receiver plant lettuce(Lactuca sativa L.), dynamic genetics of rice allelopathy and its genotype x environment effects were analyzed by using additive-dominant developmental genetic models. The results showed that additive and dominant effect genes expressed alternatively during 3-leaf stage to 8-leaf stage in rice seedling. As additive effect genes were pronounced at 7-leaf stage, dominant effect genes appeared to play the most important role at 3-leaf stage and 6-leaf stage but the two effect genes were equally important at 5-leaf stage and 8-leaf stage. Heritabilities analysis indicated that the general heritability in the narrow sense(HN2) was significant at 5-, 7- and 8-leaf stage, and decreased with increasing leaf stage. Rice allelopathy was significantly affected by genotype x environment (GE) interaction, suggesting that the environment of allelopathic rice development must be controlled for practical use.
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