Acta Agron Sin ›› 2014, Vol. 40 ›› Issue (10): 1872-1876.doi: 10.3724/SP.J.1006.2014.01872
• RESEARCH NOTES • Previous Articles Next Articles
LI Zhi-Xin1,WANG Mei-Huan3,XU Chao-Fei3,LI Hua-Jun2,LI Xiao-Fang1,2,*
[1] 陈恩谦. 对不同类型水稻品种营养生长期的温光效应研究. 种子, 2007, 26(5): 72–74Chen E Q. A long-term study of the effects of temperature and bright on the nutrition growth of different types of rice. Seed, 2007, 26(5): 72–74 (in Chinese with English abstract)[2] 王立志, 王春艳, 李忠杰, 王连敏, 矫江, 许显滨. 寒地水稻抽穗期长短与温度关系研究. 中国农业气象, 2004, 25(2): 43–45Wang L Z, Wang C Y, Li Z J, Wang L M, Jiao J, Xu X B. Studies on correlation between length of rice heading stage and temperature in the cold region in Heilongjiang Province. Chin J Agrometeorol, 2004, 25(2): 43–45 (in Chinese with English abstract)[3] 姚克敏, 刘梅, 潘永地, 高永刚. 水稻气候生产力的数值模拟及其应用. 南京气象学院学报, 1999, 22(2): 1–11Yao K M, Liu M, Pan Y D, Gao Y G. Numerical modeling of rice climate productivity and its application to climate-ecological zoning. J Nangjing Inst Meteorol, 1999, 22(2): 1–11 (in Chinese with English abstract)[4] 李凤霞, 袁海燕, 严秀华, 李茂廷. 宁夏灌区水稻不同灌溉量植株高度的气候生态研究. 干旱气象, 2005, 23(3): 62–64Li F X, Yuan H Y, Yan X H, Li M T. Study on climate ecology for rice plant height under different irrigation treatments in Ningxia irrigation area. Arid Meteorol, 2005, 23(3): 62–64 (in Chinese with English abstract)[5] Wu W, Zheng X M, Lu G, Zhong Z, Gao H, Chen L, Wu C, Wang H J, Wang Q, Zhou K, Wang J L, Wu F, Zhang X, Guo X, Cheng Z, Lei C, Lin Q, Jiang L, Wang H, Ge S, Wan J. Association of functional nucleotide polymorphisms at DTH2 with the northward expansion of rice cultivation in Asia. Proc Natl Acad Sci USA, 2013, 110: 2775–2780[6] 袁爱平, 曹立勇, 庄杰云, 李润植, 郑康乐, 朱军, 程式华. 水稻株高、抽穗期和有效穗穗QTL与环境的互作分. 遗传学报, 2003, 30: 899–906Yuan A P, Cao L Y, Zhuang J Y, Li R Z, Zheng K L, Zhu J, Cheng S H. Analysis of additive and AE interaction effects of QTLs controlling plant height, heading date and panicle number in rice (Oryza sativa L.). Acta Genet Sin, 2003, 30: 899–906 (in Chinese with English abstract)[7] Li Z K, Yu S B, Lafitte H R, Huang N, Courtois B, Hittalmani S, Vijayakumar C H M, Liu GF, Wang G C, Shashidhar H E, Zhuang J Y, Zheng K L, Singh V P, Sidhu J S, Srivantaneeyakul S, Khush G S. QTL × environment interactions in rice: I. Heading date and plant height. Theor Appl Genet, 2003, 108: 141–153[8] 刘文俊, 王令强, 何予卿. 利用2个相关群体定位和比较水稻株高与抽穗期QTL. 华中农业大学学报, 2007, 26: 161–166Liu W J, Wang L Q, He Y Q. Comparison of quantitative trait locis controlling plant height and heading date in rice across two related populations. J Huazhong Agric Univ, 2007, 26: 161–166 (in Chinese with English abstract)[9] 董春林, 孙业盈, 王平荣, 黄晓群, 邓晓建. 水稻显性早熟基因Ef-cd的基因效应分析及育种应用潜力的初步评价. 作物学报, 2007, 33: 384–388Dong C L, Sun Y Y, Wang P R, Huang X Q, Deng X J. Gene effect analysis and evaluation of application potential of rice dominant earliness gene Ef-cd. Acta Agron Sin, 2007, 33: 384–-388 (in Chinese with English abstract)[10] 张文绪. 水稻品种的光温生态研究: III. 水稻品种的基础营养生长和感温性. 北京农业大学学报, 1983, 9(2): 13–27Zhang W X. A study on photo-thermo ecology in rice varieties: III. Basic vegetative phase (BVP) and thermo-sensitivity in rice varieties. J Beijing Agric Univ, 1983, 9(2): 13–27 (in Chinese with English abstract)[11] 水稻光温生态协作组. 水稻品种的光温生态. 北京, 科学出版社, 1978Rice Light and Temperature Ecological Research Collaboration ed. Light and Temperature Ecological of Rice Varieties in China. Beijing: Science Press, 1978 (in Chinese)[12] 唐志明, 李晓方, 庄国富, 金晓春, 卢东柏. 水稻株高差异与光温生态敏感性的关系初探. 广东农业科学, 2007, (4): 7–10Tang Z M, Li X F, Zhuang G F, Jin X C, Lu D B. Searching for the correlative factors of photo sensitiveness and temperature sensibility in rice. Guangdong Agric Sci, 2007, (4): 7–10 (in Chinese with English abstract)[13] 周明全, 章志宏, 赵敏, 胡中立, 李平, 王玲霞, 朱立煌. 水稻株高构成因素的QTL剖析. 武汉植物学研究, 2003, 21: 22–26 Zhou M Q, Zhang Z H, Zhao M, Hu Z L, Li P, Wang L X, Zhu L H. QTL dissection of plant height components in rice (Oryza sativa L.). J Wuhan Bot Res, 2003, 21: 22–26 (in Chinese with English abstract)[14] Li, X F, Liu Z X., Lu D B, Liu Z X, Mao X X, Li Z X, Li H J. Development and evaluation of multi-genotype varieties of rice derived from MAGIC lines. Euphytica, 2013, 192: 77–86[15] 李晓方. 一种水稻种群和品种综合性状良好的选育方法. 中国发明专利. 2002, ZL02152197.2 Li X F. A breeding method for good comprehensive traits of rice species and variety. Chinese Patent. 2002, ZL02152197.2 |
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