Acta Agron Sin ›› 2013, Vol. 39 ›› Issue (11): 1970-1975.doi: 10.3724/SP.J.1006.2013.01970
• CROP GENETICS & BREEDING · GERMPLASM RESOURCES · MOLECULAR GENETICS • Previous Articles Next Articles
XIE Zhi-Wei1,2,SUN Wei3,YIN Liang3,ZHAO Jin-Feng2,YUAN Shou-Jiang3,ZHANG Wen-Hui1,*,LI Xue-Yong2,*
| [1]Shen F-C(沈福成). Several opinions on how to use rolled leaf character of rice in breeding. Guizhou Agric Sci (贵州农业科学), 1983, (5): 6–8 (in Chinese with English abstract)[2]Chen Z-X(陈宗祥), Pan X-B(潘学彪), Hu J(胡俊). Relationship between rolled leaf and ideal plant type of rice (Oryza sativa L.). Jiangsu Agric Res (江苏农业研究), 2001, 22(4): 88–91 (in Chinese with English abstract)[3]Lang Y-Z(郎有忠), Zhang Z-J(张祖建), Gu X-Y(顾兴友), Yang J-C(杨建昌), Zhu Q-S(朱庆森). Physiological and ecological effects of crimpy leaf character in rice (Oryza sativa L.): I: leaf orientation, canopy structure and light distribution. Acta Agron Sin (作物学报), 2004, 30(8): 806–810 (in Chinese with English abstract)[4]Luo Y-Z(罗远章), Zhao F-M(赵芳明), Sang X-C(桑贤春), Ling Y-H(凌英华), Yang Z-L(杨正林), He G-H(何光华). Genetic analysis and gene mapping of a novel rolled leaf mutant rl12(t) in rice. Acta Agron Sin (作物学报), 2009, 35(11): 1967–1972 (in Chinese with English abstract)[5]Yu D(余东), Wu H-B(吴海滨), Yang W-T(杨文韬), Gong P-T(巩鹏涛), Li Y-Z(李有志), Zhao D-G(赵德刚). Genetic analysis and mapping of the unilateral rolled leaf trait of rice mutant B157. Mol Plant Breed (分子植物育种), 2008, 6(2): 220–226 (in Chinese with Eng1ish abstract)[6]Shao Y-J(邵元健), Pan C-H(潘存红), Chen Z-X(陈宗祥), Zuo S-M(左示敏), Zhang Y-F(张亚芳), Pan X-B(潘学彪). Fine mapping of an incomplete recessive gene for leaf rolling in rice (Oryza sativa L.). Chin Sci Bull (科学通报), 2005, 50(21): 2466–2472 (in Chinese with English abstract)[7]Zhang G H, Xu Q, Zhu X D, Qian Q, Xue H W. SHALLOT-LIKE1 is a KANADI transcription factor that modulates rice leaf rolling by regulating leaf abaxia cell development. Plant Cell, 2009, 21: 719–735[8]Yan S, Yan C J, Zeng X H, Yang Y C, Fang Y W, Tian C Y, Sun Y W, Cheng Z K, Gu M H. ROLLED LEAF 9, encoding a GARP protein, regulates the leaf abaxial cell fate in rice. Plant Mol Biol, 2008, 68: 239–250[9]Hu J, Zhu L, Zeng D L, Gao Z Y, Guo L B, Fang Y X, Zhang G H, Dong G J, Yan M X, Liu J, Qian Q. Identification and characterization of NARROW AND ROLLED LEAF 1, a novel gene regulating leaf morphology and plant architecture in rice. Plant Mol Biol, 2010, 73: 283–292[10]Zou L P, Sun X H, Zhang Z G, Liu P, Wu J X, Tian C J, Qiu J L, Lu T G. Leaf rolling controlled by the homeodomain leucine zipper class IV gene Roc5 in rice. Plant Physiol, 2011, 156: 1589–1602[11]Hibara K, Obara M, Hayashida E, Abe M, Ishimaru T, Satoh H, Itoh J, Nagato Y. The ADAXIALIZED LEAF1 gene functions in leaf and embryonic pattern formation in rice. Dev Biol, 2009, 334: 345–354[12]Li L, Shi Z Y, Li L, Shen G Z, Wang X Q, An L S, Zhang J L. Overexpression of ACL1 (abaxially curled leaf 1) increased bulliform cells and induced abaxial curling of leaf blades in rice. Mol Plant, 2010, 3: 807–817[13]Waites R, Hudson A. Phantastica: A gene required for dorsoventrality of leaves in Antirrnum majus. Development, 1995, 121: 2143–2154 [14]Emery J F, Floyd S K, Alvarez J, Eshed Y, Hawker N P, Izhaki A, Baum S F, Bowman J L. Radial patterning of Arabidopsis shoots by class HD-ZIPIII and KANADI genes. Curr Biol, 2003, 13: 1768–1774[15]Siegfried K R, Eshed Y, Baum S F, Otsuga D, Drews G N, Bowman J L. Members of the YABBY gene family specify abaxial cell fate in Arabidopsis. Development, 1999, 126: 4117–4128[16]Kerstetter R A, Bollman K, Taylor A R, Bomblies K, Poethig R S. KANADI regulates organ polarity in Arabidopsis. Nature, 2001, 411: 706–709[17]Shi Z Y, Wang J, Wan X S, Shen G Z, Wang X Q, Zhang J L. Over-expression of rice OsAG07 gene induces upward curling of the leaf blade that enhanced erect-leaf habit. Planta, 2007, 226: 99–108[18]Fang L K, Zhao F M, Cong Y F, Sang X C, Du Q, Wang D Z, Li Y F, Ling Y H, Yang Z L, He G H. Rolling-eaf14 is a 2OG-Fe (II) oxygenase family protein that modulates rice leaf rolling by affecting secondary cell wall formation in leaves. Plant Biotechnol J, 2012, 10: 524–532[19]Xiang J J, Zhang G H, Qian Q, Xue H X. SEMI-ROLLED LEAF1 encodes a putative Glycosylphosphatidylinositol-anchored protein and modulates rice leaf rolling by regulating the formation of bulliform cells. Plant Physiol, 2012, 159: 1488–1500[20]Gao Y-H(高艳红), Lü C-G(吕川根), Wang M-Q(王茂青), Wang P(王澎), Yan X-Y(闫晓燕), Xie K(谢坤), Wan J-M(万建民). QTL mapping for rolled leaf gene in rice. Jiangsu Agric Sci (江苏农业学报), 2007, 23(1): 5–10 (in Chinese with English abstract)[21]Zou Q(邹琦). Experimental Guide for Plant Physiology (植物生理学实验指导). Beijing: China Agriculture Press, 2000. pp 72–75 (in Chinese)[22]Guo W-W(郭伟伟)), Li G-X(李广贤), Wang G-Q(王光全), Yuan S-J(袁守江), Zhang W-H(张文会), Zhao J-F(赵金凤), Li X-Y(李学勇). Preliminary studies on erect-drooping panicle in rice. J Nucl Agric Sci (核农学报), 2012, 26(1): 11–16 (in Chinese with English abstract)[23]Micol L J, Hake S. The development of plant leaves. Plant Physiol, 2003, 131: 389–394[24]Byrne M, Timmermans M, Kidner C, Martienssen R. Development of leaf shape. Curr Opin Plant Biol, 2001, 4: 38–43[25]Chen Z-X(陈宗祥), Chen G(陈刚), Hu J(胡俊), Dai L-C(戴留春), Tao G-Y(陶国英), Pan X-B(潘学彪). Genetic expression and effects of rolled leaf gene Rl(t) in hybrid rice (Oryza sativa L.). Acta Agron Sin (作物学报), 2002, 28(6): 847–851 (in Chinese with English abstract)[26]Luo Z K, Yang Z, Zhong B Q, Li Y F, Zhao F M, Ling Y H, He G H. Genetic analysis and fine mapping of a dynamic rolled leaf gene in rice (Oryza sativa L.). Genome, 2007, 50: 811–817 |
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