[1] 袁有禄,张天真,郭旺珍,等.棉花高品质纤维性状的主基因与多基因遗传分析[J].遗传学报,2002,29(9):827-834. [2] ELKIND Y, Cahaner A. A mixed model for the effects of single gene, polygenes and their interaction on quantitative traits[J]. Theor Appl Genet,1986,72:377-383. [3] ELSTON R C. The genetic analysis of quantitative trait differences between two homozygous lines[J]. Genetics, 1984, 108: 733-744. [4] 盖钧镒,章元明,王健康.植物数量性状遗传体系[M].北京:科学出版社,2003:169-219. [5] 盖钧镒. 植物数量性状遗传体系的分离分析方法研究[J].遗传,2005,27(1):130-136. [6] 袁有禄.棉花优质纤维特性的遗传及分子标记研究[D].南京:南京农业大学,2000. [7] LOSISEL P,Goffinet B,Monod H, et al. Detecting a major gene in an F2 population [J]. Biometrics,1994,50:512-516 [8] MEREDITH W R J. Cotton breeding for fiber strength[C] // Proceedings from Cotton Fiber Cellulose: Structure, Function, and Utilization conference. Memphis, TN:National Cotton Council of America,1992:289-302. [9] MAY O L, Green C C, Roach S H, et al. Regitration of PD93001,PD93002,PD93003,PD93004 germplasm lines of upland cotton with brown lint and high fiber quality[J].Crop Sci,1994,34:542. [10] MAY O L, Jividen G M. Genetic modification of cotton fiber properties with single and high volume instruments[J].Crop Sci,1999,39:328-333. [11] 唐文武,肖文俊,黄英金,等. 优异纤维品质陆地棉和转基因抗虫棉的杂种优势和亲子相关性[J].棉花学报,2006,18(2):74-78. [12] 宋美珍,喻树迅,范术丽,等.短季棉主要农艺性状的遗传分析[J].棉花学报,2005,17(2):94-98. [13] 石玉真,刘爱英,李俊文,等.陆海种间杂交纤维品质性状的遗传及其F1群体优势分析[J].棉花学报,2008,20(1):56-61. [14] 汤飞宇,程 锦,黄文新,等.高品质陆地棉与不同类型品种杂种的遗传及优势分析[J].棉花学报,2008,20(3):170-173. [15] 殷剑美,武耀廷,朱协飞,等.陆地棉产量与品质性状的主基因与多基因遗传分析[J].棉花学报,2003,15(2):67-72. [16] 王淑芳,石玉真,刘爱英,等.陆地棉纤维品质性状主基因与多基因混合遗传分析[J].中国农学通报,2006,22(2):157-161.