作物学报 ›› 2013, Vol. 39 ›› Issue (06): 1134-1139.doi: 10.3724/SP.J.1006.2013.01134
• 研究简报 • 上一篇
吴建忠,黄文功,康庆华,赵东升,袁红梅,于莹,刘岩,姜卫东,程莉莉,宋喜霞,赵茜,吴广文,关凤芝*
WU Jian-Zhong,HUANG Wen-Gong,KANG Qing-Hua,ZHAO Dong-Sheng,YUAN Hong-Mei,YU Ying,LIU Yan,JIANG Wei-Dong,CHENG Li-Li,SONG Xi-Xia,ZHAO Qian,WU Guang-Wen,GUAN Feng-Zhi*
摘要:
| [1]FAO Databank. http://faostat.fao.org/site/567/default.aspx [2008-12-01][2]Spielmeyer W, Green A G, Bittisnich D, Mendham N, Lagudah E S. Identification of quantitative trait loci contributing to Fusarium wilt resistance on an AFLP linkage map of flax (Linum usitatissimum L.). Theor Appl Genet, 1998, 97: 633–641[3]Oh T J, Gorman M, Cullis C A. RFLP and RAPD map-ping in flax (Linum usitatissimum). Theor Appl Genet, 2000, 101: 590–593[4]Cloutier S, Ragupathy R, Niu Z, Duguid S. SSR-based linkage map of flax (Linum usitatissimum L.) and mapping of QTLs underlying fatty acid composition traits. Mol Breed, 2011 28: 437–451[5]Wu J-Z(吴建忠). Analysis of DNA extraction method in flax genomic. Heilongjiang Agric Sci (黑龙江农业科学), 2011, (7): 18–19 (in Chinese with English abstract) [6]Li G, Quiros C F. Sequence-related amplified polymorphism (SRAP), a new marker system based on a simple PCR reaction: its application to mapping and gene tagging in Brassica. Theor Appl Genet, 2001, 103: 455–461[7]Wu J-Z(吴建忠), Huang W-G(黄文功), Zhao D-S(赵东升), Kang Q-H(康庆华), Liu Y(刘岩), Zhao Q(赵茜). Optimization of SRAP reaction system and screening of polymorphic SRAP markers in flax. Plant Fiber Sci China (中国麻业科学), 2011, (6): 281–284 (in Chinese with English abstract)[8]Li C-L(历朝龙), Chen S-Q(陈枢青), Liu Z-Y(刘子骀), Shen Q-G(沈奇桂), Zhao L-H(赵鲁杭). Biochemistry and Molecular Biology Experiment Technology (生物化学和分子生物学实验技术). Zhejiang: Zhejiang University Press, 1999 (in Chinese)[9]Lander E S, Green P, Abrahamson J, Barlow A, Daly M J, Lincoln S E, Newburg L. MAPMAKER: An interactive computer package for constructing primary genetic linkage maps of experimental and natural populations. Genomics, 1987, 1: 174–181[10]Zhang W-T(张文彤), Yan J(闫洁). SPSS Statistical Analysis Foundation Course (SPSS统计分析基础教程). Beijing: Higher Education Press, 2004. pp 257–278 (in Chinese)[11]Lincoln S E, Daly M E, Lander E S. Constructing Genetic Maps with Mapmaker/Exp 3.0. Cambridge, MA, USA: Whitehead Institute for Biomedical Research, 1992[12]Liu R-H(刘仁虎), Meng J-L(孟金陵). MapDraw: a Microsoft Excel macro for drawing genetic linkage maps based on given genetic linkage data. Hereditas (遗传), 2003, 25(3): 317–321 (in Chinese with English abstract)[13]Lorieux M, Goffinet B, Perrier X, Gonzalez de Leon, Lanaud C. Maximum-likelihood models for mapping genetic markers showing segregation distortion. 1. Backcross populations. Theor Appl Genet, 1995, 90: 73–80[14]Lorieux M, Perrier X, Goffinet B, Lanaud C, Gonzalez de Leon. Maximum-likelihood modles for mapping genetic markers showing segregation distortion.2. F2 populations. Theor Appl Genet, 1995, 90: 81–89 |
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