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作 者:汤继华[1] 严建兵[1] 马西青[1] 滕文涛[1] 孟义江[1] 戴景瑞[1] 李建生[1]
机构地区:[1]中国农业大学国家玉米改良中心
出 处:《作物学报》2007年第8期1299-1303,共5页Acta Agronomica Sinica
基 金:国家重大基础研究计划(973计划)项目(2001CB108801);国家高技术研究发展计划(863计划)重大专项(2002AA207008)
摘 要:利用RIL群体构建了一套包含441个杂交组合的玉米"永久F2"群体,通过253个SSR标记的等位基因频率分析,发现"永久F2"群体的遗传组成与基因频率与F2群体相似,理论上可以代替F2群体进行相关遗传研究。通过两年一点的田间试验,利用复合区间作图法对玉米产量及其3个主要构成因子进行了遗传分析。结果表明,玉米产量与穗长、穗行数及百粒重呈显著或极显著正相关,而穗长与穗行数和百粒重显著负相关。共定位3个产量QTL、8个穗长QTL,11个穗行数QTL和5个百粒重QTL。Genetic dissection for grain yield and its components can provide a new strategy for crop breeding, and it plays an important role in improving agricultural production. For dissecting the genetic basis of grain yield and its components, a set of recombinant inbred line (RIL) derived from an elite maize hybrid Yuyu 22, which is planted broadly in China, was used to constructed an "immoaalized F2" (IF2) maize ( Zea mays L. ) poptdations including 441 single crosses. The frequency of molecular marker loci for the IF2 population was analyzed using 253 different SSR markers. The results demonstrated that the genetic components and gene frequency of the IF2 poptdation was similar to its F2 population in molecular maker level, theoretically it could replace F2 population in related genetic analyses. The IF2 popttlation was evaluated in one envirormrent over two years, and the genetic mechanism of grain yield and its components was dissected through QTL analysis using composite interval mapping (CIM) method. These results showed that grain yield had positive significant correlation with its three components at P 〈 0.01 or P 〈 0.05 level, and in the three components, ear length had negative significant correlation with row number and 100-grian weight at P 〈 0.05 level. A total of 8 QTL were detected for grain yield, 8 for ear length, 11 for row number and 5 for 100-grain weight.
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