作物学报 ›› 2014, Vol. 40 ›› Issue (03): 457-465.doi: 10.3724/SP.J.1006.2014.00457
何蕊1,2,石玉真2,张金凤2,梁燕2,张保才2,李俊文2,王涛2,龚举武2,刘爱英2,商海红2,巩万奎2,白志川1,*,袁有禄2,*
HE Rui,SHI Yu-Zhen,ZHANG Jin-Feng,LIANG Yan,ZHANG Bao-Cai,LI Jun-Wen,WANG Tao,GONG Ju-Wu,LIU Ai-Ying,SHANG Hai-Hong,GONG Wan-Kui,BAI Zhi-Chuan1,*,YUAN You-Lu2,*
摘要:
| [1]李新裕, 陈玉娟, 闰志顺, 王瑞清. 棉花丰产株型、株高、茎粗与单株成铃的关系. 塔里木农垦大学学报, 1998, 10(1): 34–36 Li X Y, Chen Y J, Yan Z S, Wang R Q. The relation between plant type, height, stem diameter, of high-yielding cotton, and boll number per plant. J Talimu Univ Agric Reclamat, 1998, 10(1): 34–36 (in Chinese with English abstract)[2]葛瑞华, 兰孟焦, 石玉真, 李俊文, 刘爱英, 王涛, 袁有禄. 陆海BC4F3和BC4F4代主要农艺性状的相关和通径分析. 中国农学通报, 2012, 28(3): 127–130Ge R H, Lan M J, Shi Y Z, Lin J W, Liu A Y, Wang T, Yuan Y L. Correlation and path coefficient analysis of main agronomic characters in BC4F3 and BC4F4 generations from Gossypium hirsutum L. × Gossypium barbadense L. Chin Agric Sci Bull, 2012, 28(3): 127–130 (in Chinese with English abstract) [3]王新坤, 潘兆娥, 孙君灵, 何守朴, 唐灿明, 杜雄明. 陆地棉矮秆突变体株高和纤维品质的QTL定位及相关性研究. 核农学报, 2011, 25: 448–455Wang X K, Pan Z E, Sun J L, He S P, Tang C M, Du X M. Correlation analysis and QTL mapping for plant height and fiber quality of dwarf mutant In upland cotton (Gossypium hirsutum L.). Acta Agric Nucl Sin, 2011, 25: 448–455 (in Chinese with English abstract) [4]汤飞宇, 程锦, 黄文新, 肖小红, 肖文俊. 高品质陆地棉数量性状的典型相关研究. 安徽农业科学, 2008, 36: 6725–6726Tang F Y, Cheng J, Huang W X, Xiao X H, Xiao W J. Study on canonical correlation of quantitative traits in upland cotton with high quality. J Anhui Agric Sci, 2008, 36: 6725–6726 (in Chinese with English abstract)[5]Shapply Z W, Jenkins J N, Zhu J, Mccarty J C Jr. Quantitative trait loci associated with agronomic and fiber traits of upland cotton. J Cotton Sci, 1998, 2: 153–163[6]Song X L, Zhang T Z. Quantitative trait loci controlling plant architectural traits in cotton. Plant Sci, 2009, 177: 317–323[7]于霁雯. 短季棉遗传多样性分析及其重要农艺和经济性状的QTL定位. 华中农业大学博士论文, 2006Yu J W. Genetic Diversity Evaluation of Shorted-Season Upland Cotton Cultivars and Localization of QTLs for Important Agriculture Economic Traits. PhD Dissertation of Huazhong Agricultural University, 2006 (in Chinese with English abstract)[8]兰孟焦, 杨泽茂, 石玉真, 葛瑞华, 李爱国, 张保才, 李俊文, 商海红, 刘爱英, 王涛, 袁有禄. 陆海BC4F2和BC4F3代换系的评价及纤维产量与品质相关的QTL的检测. 中国农业科学, 2011, 44: 3086–3097Lan M J, Yang Z M, Shi Y Z, Ge R H, Li A G, Zhang B C, Li J W, Shang H H, Liu A Y, Wang T, Yuan Y L. Assessment of substitution lines and Identification of QTL relater to fiber yield and quality traits in BC4F2 and BC4F3 populations from Gossypium hisutum × Gossypium barbadense. Sci Agric Sin, 2011, 44: 3086–3097 (in Chinese with English abstract)[9]梁燕. 早熟陆地棉染色体片段代换系的构建及QTL初步定位. 中国农业科学院硕士论文, 2010Liang Y. Construction of Chromosome Segment Substitution Lines and Primary QTL Mapping in Early-Maturing Upland Cotton. MS Thesis of Chinese Academy of Agricultural Sciences, 2010 (in Chinese with English abstract)[10]Paterson A H, Brubaker C L, Wendel J F. A rapid method for extraction of cotton (Gossypium spp.) genomic DNA suitable for RFLP or PCR analysis. Plant Mol Biol Rep, 1993, 11: 122–127[11]张金凤. 陆地棉染色体片段代换系(BC5F3、BC5F3:4、BC5F3:5)产量和纤维品质的评价及QTL定位. 中国农业科学院硕士论文, 2010Zhang J F. The Evaluation and Identifying QTL of Fiber Yield and Quality Traits of Chromosome Segment Substitution Lines (BC5F3, BC5F3:4, BC5F3:5) in Upland Cotton. MS Thesis of Chinese Academy of Agricultural Sciences, 2009 (in Chinese with English abstract)[12]张军, 武耀庭, 郭旺珍, 张天真. 棉花微卫星标记的PAGE/银染快速检测. 棉花学报, 2000, 12: 267–269Zhang J, Wu Y T, Guo W Z, Zhang T Z. Fast screening microsatellite markers in cotton with PAGE/silver staining. Acta Gossypii Sin, 2000, 12: 267–269 (in Chinese English abstract)[13]Wang J K, Wan X Y, Crossa J, Crouch J, Weng J F, Zhan H Q, Wan J M. QTL mapping of grain length in rice (Oryza sativa L.) using chromosome segment substitution lines. Genet Res, 2006, 88: 93–104[14]Li H H, Ribaut J M, Li Z L, Wang J K. Inclusive composite interval mapping (ICIM) for digenic epistasis of quantitative traits in biparental populations. Theor Appl Genet, 2008, 116: 243–260[15]秦鸿德. 陆地棉产量与纤维品质性状QTL定位和标记辅助轮回选择. 南京农业大学博士论文, 2007Qin H D. QTL Mapping of Yield and Fiber Quality Traits in Gossypium hirsutum L. and Recurrent Selection with MAS. PhD Dissertation of Nanjing Agricultural University, 2007 (in Chinese with English abstract)[16]Guo X, Guo Y P, Ma J, Wang F, Sun M Z, Gui L J, Zhou J J, Song X L, Sun X Z, Zhang T Z. Mapping heterotic loci for yield and agronomic traits using chromosome segment introgression lines in cotton. J Interqr Plant Biol, 2013[17]王沛政, 秦丽, 苏丽, 胡保民, 张天真. 新疆主栽陆地棉品种形态性状QTL的标记与定位. 植物分子育种, 2007, 5: 811–818Wang P Z, Qin L, Su L, Hu B M, Zhang T Z. QTL mapping of some plant morphological traits for main upland cotton cultivars planted in Xinjiang. Mol Plant Breed, 2007, 5: 811–818 (in Chinese with English abstract)[18]张培通, 朱协飞, 郭旺珍, 俞敬忠, 张天真. 泗棉3号理想株型的遗传及分子标记研究. 棉花学报, 2006, 18: 13–18Zhang P T, Zhu X F, Guo W Z, Yu J Z, Zhang T Z. Inheritance and QTLs tagging for ideal plant architecture of Simian 3 using molecular markers. Cotton Sci, 2006, 18: 13–18 (in Chinese with English abstract)[19]姚金波, 张永山, 陈伟, 栾明宝, 冯志迪, 郭香墨. 利用置换系检测棉花第22染色体短臂的产量相关性状QTLs. 棉花学报, 2010, 22: 521–526Yao J B, Zhang Y S, Chen W, Luan M B, Feng Z D, Guo X M. Tagging QTLs of yield-related traits in chromosome 22th of allotetraploid cotton using substitution line. Cotton Sci, 2010, 22: 521–526 (in Chinese with English abstract)[20]Wang B H, Wu Y T, Huang N T, Zhu X F, Guo W Z, Zhang T Z. QTL mapping for plant architecture traits in upland cotton using RILs and SSR markers. Acta Genet Sin, 2006, 33: 161–170[21]马雪霞. 二倍体亚洲棉遗传图谱的构建及产量/品质QTL分析. 南京农业大学博士论文, 2007Ma X X. Construction of Molecular Linkage Map and Mapping of Cultivated Diploid Cotton (Gossypium arboreum L.). PhD Dissertation of Nanjing Agricultural University, 2007 (in Chinese with English abstract)[22]涂建莉. 湖北省陆地棉品种遗传结构剖析和陆海BC1F8农艺性状QTL定位. 华中农业大学硕士论文, 2012Tu J L. Genetic structure analysis of upland cotton in Hubei province and QTL mapping for agronomic traits of interspecific BC1F8 population. MS Thesis of Huazhong Agricultural University, 2012 (in Chinese with English abstract)[23]兰孟焦. 以中棉所45为背景的海岛棉染色体代换片段的鉴定及纤维产量与品质QTL定位. 中国农业科学院硕士论文, 2009Lan M J. Characterization of Donor Chromosome Fragments from Gossypium barbadense L. in CCRI45 Background of Gossypium hisutum L. and Identification of QTL Related to Fiber Yield and Quality Traits. MS Thesis of Chinese Academy of Agricultural Sciences, 2009 (in Chinese with English abstract)[24]杨泽茂. 陆地棉染色体片段代换系的构建及QTL定位初探. 湖南农业大学硕士论文, 2009 Yang Z M. Developing Chromosome Segment Substitution Lines and Primary Identification of QTL in Upland Cotton (G. hirsutum). MS Thesis of Hunan Agricultural University, 2009 (in Chinese with English abstract)[25]Ulloa M, Cantrell R G, Percy R G. QTL analysis of stomatal conductance and relationship to lint yield in an interspecific cotton. Cotton Sci, 2000, 4: 10–18[26]殷剑美, 武耀廷, 张天真, 郭旺珍, 朱协飞. 陆地棉产量性状QTLs的分子标记及定位. 生物工程学报, 2002, 18: 162–166Yin J M, Wu Y T , Zhang T Z, Guo W Z, Zhu X F. Tagging and mapping of QTLs controlling yield and yield components in upland cotton ( Gossypium hirsutum L.) using SSR and RAPD markers. Chin J Biotech, 2002, 18: 162–166 (in Chinese with English abstract)[27]王沛政, 秦利, 苏丽, 胡保明, 张天真. 新疆陆地棉主栽品种部分产量性状QTL的标记与定位. 中国农业科学, 2008, 41: 2947–2956Wang P Z, Qin L, Su L, Hu B M, Zhang T Z. QTL mapping of the partial yield components of main upland cotton cultivars planted in Xinjiang. Sci Agric Sin, 2008, 41: 2947–2956 (in Chinese with English abstract) |
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