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作 者:黄荣华[1] 杨仁崔[1] 梁康迳[1] 张书标[1]
机构地区:[1]福建农林大学作物遗传育种研究所,福建福州350002
出 处:《福建农业学报》2001年第1期5-7,共3页Fujian Journal of Agricultural Sciences
基 金:福建省教育厅重点资助项目!( JA980 91)
摘 要:用 9.6 99C· kg- 1 Co6 0 γ射线直接照射恢复系 R12 7干种子 ,在 M2 群体获高秆突变体 ,记为 e R12 7。研究结果表明 ,该突变基因与贵州的 Grlc,江苏的 0 2 42 8h和美国的 76∶ 45 12、IR5 0 eui等高秆突变体的基因属等位基因 ;用 e R12 7和 R12 7组配龙特浦 A、冈 46 A、珍汕 97A和威 2 0 A等三系不育系 ,成对杂种株型无明显差异 ,但含有 eui基因的杂种比相应不含 eui基因的杂种早熟 2~ 3d,植株稍高 ,千粒重增加 ,有更高的产量潜力 ;e R12 7作为制种田父本不需喷 92 0就可达到制种高产的效果。Dried seeds of restore line R127 were treated with γ rays of 9 699 C·kg -1 Co 60 and the mutants were obtained from M 2 population, named eR127. The research results indicated,the mutation gene of R127 belonged to recessive one and eR127 line was allelic to such recessive tall mutants as Grlc of Guizhou, 76∶4512 of the United States, IR50 eui and 02428h of Jiangsu; When eR127 and R127 were crossed with CMS lines Longtepu A, Gang46 A, Zhenshan97 A and V20 A respectively, the plant type of hybrid F 1 didn’t show significantly difference, however, compared with control, hybrids carrying eui gene showed 2-3 days earlier heading, a slightly increased plant height, higher 1000 grain weight and yield potential;seed breeding field of restoring line eR127 not sprayed 920 also gain high yield.
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