Acta Agron Sin ›› 2014, Vol. 40 ›› Issue (10): 1711-1716.doi: 10.3724/SP.J.1006.2014.01711
• CROP GENETICS & BREEDING · GERMPLASM RESOURCES · MOLECULAR GENETICS • Next Articles
WANG Hai-Feng1,GAO Jie1,SUN Wei1,ZHANG Shi-Yong1,ZHAO Qing-Lei1,YIN Liang1,ZHAO Jin-Feng2,LI Xue-Yong2,*,YUAN Shou-Jiang1,*
| [1]Coen E, Meyerowitz E. The war of the whorls: Genetic interactions controlling flower development. Nature, 1991, 353: 31–37[2]Tsukaya H. Leaf morphogenesis: genetic regulations for length, width and size of leaves. Tanpakushitsu Kakusan Koso, 2002, 47: 1576–1580[3]严松, 严长杰, 顾铭洪. 植物叶发育的分子机理. 遗传, 2008, 30: 1127–-1135Yan S, Yan C J, Gu M H. Molecular mechanism of leaf development. Hereditas (Beijing), 2008, 30: 1127–1135 (in Chinese with English abstract)[4]Hake S. MicroRNAs: a role in plant development. Curr Biol, 2003, 13: R851–R852[5]Miyoshi K, Ahn B, Kawakatsu T, Ito Y, Itoh J, Nagato Y, Kurata N. PLASTOCHRON1, a timekeeper of leaf initiation in rice, encodes cytochrome P450. Proc Natl Acad Sci USA, 2004, 101: 875–880[6]Taiji K, Jun-Ichi I, Kazumaru M, Nori K, Nena A, Bruce V, Yasuo N. PLASTOCHRON2 regulates leaf initiation and maturation in rice. Plant Cell, 2006, 18: 612–625[7]Xiong G S, Hu X M, Jiao Y Q, Yu Y C, Chu C C, Li J Y, Qian Q, Wang Y H. LEAFY HEAD2, which encodes a putative RNA-binding protein, regulates shoot development of rice. Cell Res, 2006, 16: 267–276[8]Taiji K, Graziana T, Jun-Ichi I, Justin A, Yutaka S, Soon-Kwan H, Ryan Y, Nobuhiro N, Mikiko K, Makoto K, Hitoshi S, Hajime S, Yasuo N. PLASTOCHRON3/GOLIATH encodes a glutamate carboxypeptidase required for proper development in rice. Plant J, 2009, 58: 1028–1040[9]Veit B, Briggs S, Schmidt R, Yanofsky M , Hake S. Regulation of leaf initiation by the terminal ear1 gene of maize. Nature, 1998, 393: 166–168 [10]Helliwell C, Chin-Atkins A, Wilson L, Chapple R, Dennis E, Chaudhury A. The Arabidopsis AMP1 gene encodes a putative glutamate carboxypeptidase. Plant Cell, 2001, 13: 2115–2125[11]Reed J, Nagpal P, Poole D, Furuya M, Chory J. Mutations in the gene for the red/far-red light receptor phytochrome B alter cell elongation and physiological responses throughout Arabidopsis development. Plant Cell, 1993, 5: 1263–1279[12]Prigge M, Wagner D. The Arabidopsis serrate gene encodes a zinc-finger protein required for normal shoot development. Plant Cell, 2001, 13: 1263–1279[13]Murray M, Thompson W. Rapid isolation of high molecular weight plant DNA. Nucl Acids Res, 1980, 8: 4321–4326[14]Quarrie S, Lazi?-Jan?i? V, Kova?evi? D, Steed A, Peki? S. Bulk segregant analysis with molecular markers and its use for improving drought resistance in maize. J Exp Bot, 1999, 50: 1299–1306[15]Pauaud O, Chen X, McCouch S. Frequency of microsatellite sequences in rice (Oryza sativa L.). Genome, 1995, 38: 1170–1176[16]郭龙彪, 程式化, 钱前. 水稻基因设计育种的研究进展与展望. 中国水稻科学, 2008, 22: 650–657Guo L B, Cheng S H, Qian Q. Progress and prospects of breeding by gene design in rice. Chin J Rice Sci, 2008, 22: 650–657 (in Chinese with English abstract)[17]沈波, 钱惠荣, 王建林, 郑康乐. 应用RFLP定位水稻的生育期基因. 作物学报, 1994, 20: 1–7Shen B, Qian H R, Wang J L, Zheng K L. Tagging genes for heading date in rice via linkage to RFLP markers. Acta Agron Sin, 1994, 20: 1–7 (in Chinese with English abstract) |
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