Genetic Analysis on Yield-related Traits and Its Application for Breeding of Zea mays L.
-
摘要: 利用自主育成的3个玉米自交系S1、S3和S7组配的2个组合(S1×S3和S3×S7)的P1、P2、F1、B1、B2、F2等6个世代,运用六世代主基因+多基因模型联合分析方法,进行穗总重、穗长、穗粗、轴粗性状的遗传分析。结果表明,玉米穗总重性状在2个组合中均表现为以主基因遗传为主,2对加性-显性-上位性主基因+加性-显性-上位性多基因遗传。穗长性状组合S1×S3表现为加性-显性-上位性多基因遗传;S3×S7组合表现为1对加性-显性主基因+加性-显性-上位性多基因混合遗传。穗粗性状组合S1×S3表现为1对加性-显性主基因+加性-显性-上位性多基因遗传;S3×S7组合表现为1对完全显性主基因+加性-显性多基因混合遗传。穗长、穗粗性状均表现为多基因遗传为主。轴粗性状组合S1×S3表现为2对加性-显性-上位性主基因+加性-显性多基因混合遗传,主基因遗传为主;S3×S7组合表现为2对加性-显性-上位性主基因+加性-显性-上位性多基因混合遗传,多基因遗传为主。研究结果显示轴粗、穗总重、穗粗多以加性遗传为主,有利等位基因聚合育种及早代选择较有效。而要选获非加性遗传为主控制的穗长性状的高表型个体,晚代选择才有效,且2性状的F1代由于超显性作用可出现高表型组合。
-
关键词:
- 玉米 /
- 产量 /
- 产量相关性状 /
- 六世代主基因+多基因遗传模型联合分析 /
- 育种应用
Abstract: A genetic analysis on the yield-related traits of Zea mays L.was conducted by using the mixed major genes and polygene inheritance models.The joint analytic method on the P1,P2,F1,B1,B2 and F2 generations of two crosses made from 3 inbred lines of the maize,which was newly bred by the Agricultural Sciences Institute of Riparian of Jiangsu Yangtze,was applied for the study.The results indicated that the weight per ear of maize was controlled by two pairs of major genes and the polygenes with additive-dominance-epistatic effects.And,the trait was mainly governed by the major genes in both crosses.The ear length was controlled by the additive-dominance-epistasis polygenes in the cross S1×S3;whereas in the cross S3×S7,the trait was controlled by one additive-dominance major-gene as well as the additive-dominance-epistasis polygenes.The ear diameter was controlled by one additive-dominance major-gene and the additive-dominance-epistasis polygenes in the cross S1×S3;whereas in the cross S3×S7,the trait was controlled by one wholly dominance major-gene and the additive-dominance polygenes.Both ear length and diameter were mostly governed by polygenes.The cob diameter was controlled by two additive-dominance-epistasis major-genes and the additive-dominance polygenes in the cross S1×S3;whereas in the cross S3×S7,the trait was controlled by two additive-dominance-epistasis major-genes and the additive-dominance-epistasis polygenes,and was mainly governed by polygenes.The cob diameter,weight per ear and ear diameter were mostly affected by their additive genetic components.Therefore,to use favorable allele polymerization would be effective for breeding and/or early generation selection.Nevertheless,to obtain the high phenotypic individuals with the ear length trait ought to take place in the late generation stage,as its main genetic components were non-additive.And the F1 generation of the two traits,due to the superdominance effect,could produce the high phenotypic cross combinations. -
[1] 马瑞霞,张爱芹,刘文成.种植密度对不同类型夏玉米生产力和主要生理指标的影响[J].中国农学通报,2006,22(5):171-173. [2] 石明亮,洪德林,沈锦根,等.江苏沿江地区新选玉米自交系产量及其构成性状的配合力分析[J].玉米科学,2009,17(5),38-43,48. [3] 石明亮,薛林,黄小兰,等.江苏沿江地区新选玉米自交系产量及穗部性状的配合力分析[J].江苏农业学报,2010,26(2):240-247. [4] 盖钧镒,章元明,王建康.植物数量性状遗传体系[M].北京:科学出版社,2003:8-369. [5] 石明亮,洪德林,薛林,等.玉米新选自交系穗粒重和百粒重的遗传分析[J].南京农业大学学报,2010,33(3):6-12. [6] 石明亮,江建华,梁奎,等.玉米新选自交系2个组合6个世代穗行数和行粒数的遗传分析[J].华北农学报,2010,25(5):104-111. [7] GAI J Y,WANG J K.Identification and estimation of a QTLmodel and its effects[J].Theor Appl Genet,1998,97:1162-1168. [8] 尹燕枰,童玉森.玉米主要性状的基因效应与其杂种优势关系的研究[J].山东农业大学学报,1987,18(1):19-32. [9] 杨安贵.玉米几个经济性状的基因效应[J].作物学报,1982,8(8):153-162. [10] VELDBOOM L R,LEE M.Molecular-marker-facilitatedstudies of morphological traits in maize.Ⅱ:Determination ofQTLs for grain yield and yield components[J].Theor ApplGenet,1994,89:451-458. [11] 石云素.玉米重要自交系遗传多样性分析及产量相关性状QTL研究[D].北京:中国农业科学院,2008,(7):15-20. [12] 杨俊品,荣廷昭,向道权,等.玉米数量性状基因定位[J].作物学报,2005,31(2):188-196.
计量
- 文章访问数: 225
- HTML全文浏览量: 43
- PDF下载量: 5
- 被引次数: 0