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作 者:沈圣泉[1] 庄杰云[2] 王淑珍[3] 舒庆尧[1] 包劲松[1] 夏英武[1]
机构地区:[1]浙江大学农业与生物技术学院,浙江杭州310029 [2]中国水稻研究所国家水稻改良中心,浙江杭州310006 [3]嘉兴市农业科学研究院,浙江嘉兴314500
出 处:《中国水稻科学》2005年第4期319-322,共4页Chinese Journal of Rice Science
基 金:国家863计划分子标记辅助育种重大专项(2003AA207030);国家863计划超级稻和分子育种重大专项(2002AA2070002);浙江省重点项目("8812"计划)(001112030-3)。
摘 要:利用协青早B/密阳46所构建的重组自交系群体及其相应分子遗传图谱,在海南和杭州两地试验,以延伸率作为米粒延伸性考察指标,检测QTL主效应、上位性效应和基因型×环境互作效应的遗传分析方法,进行联合检测分析。结果表明,该性状两地间的平均表现和群体分布特征较为相似,但两地间表型值相关系数却较小。试验检测到1个控制该性状的QTL基因qCRE6,其增效基因来自于父本,提高3.99%的米粒延伸率,可解释5.30%的表型变异,它不存在与环境间显著互作。另外,还检测到2对上位性互作基因,即qCRE2与qCRE5-1、qCRE5-2与qCRE7,前者与环境间存在有显著的基因型×环境互作,在杭州有增加米粒延伸性的效果。The recombinant inbred line population derived from Xieqingzao B/Milyang 46 and its genetic linkage map were used to map the QTLs controlling cooked rice elongation in two environments, Hainan and Hangzhou. The phenotypic performance and distribution were very similar in the two environments, but the correlation coefgicient was small between the two environments. Only one QTL was detected for cooked rice elongation, qCRE 6, with a positive additive effect 3.99% from the male parent and explaining 5.30% of the total phenotypic variations. No genotype-environmental interaction effect was detected for this QTL. Another two pairs of epistasis QTLs were detected, i.e. qCRE 2 vs qCRE 5-1 and qCRE 5-2 vs qCRE 7, the former one showed significant genotype-environmental interaction which increased cooked rice elongation in Hangzhou.
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