[1] Coen E S,Meyerowitz E M. The war of the whorls:genetic interactions controlling flower development[J]. Nature,1991,353(6339):31-37.
[2] Gerco C A,John F,Marco B,et al. A nove1 class of MADS box genes is involved in ovule development in petunia[J]. Plant Cell,1995,7:1569-1582.
[3] Lucia C,John F,Emmo K,et al. The petunia MADS box gene FBPI7 determines ovule identity[J]. Plant Cell,1995,7:1859-1868.
[4] Ditta G,Pinyopich A,Robles P,et al. The SEP4 gene of arabidopsis thaliana functions in floralorgan and meristem identity[J]. CurrtBiology,2004,14(21):1935-1940.
[5] 罗琼,朱立煌. 水稻花发育的分子生物学研究进展[J]. 遗传,2002,24(1):87-93.
[6] 刘坚,郭龙彪,钱前. 水稻花器官发育基因的研究进展[J]. 中国稻米,2007(3):8-9.
[7] Takahiro Y,Dong Y L, Akio M,et al. Functional diversification of the two C-class MADS box genes OSMADS3 and OSMADS58 in Oryza sativa[J]. Plant Cell,2006,18:15-28.
[8] Mai K,Atsushi C,Yasuo N,et al. FRIZZY PANICLE is required to prevent the formation of axillary meristems and to establish floral meristem identity in rice spikelets[J]. Development,2003,130(16):3841-3850.
[9] Mai K,Masahiko M,Ko S. The LAX1 and FRIZZY PANICLE 2 genes determine the inflorescence architecture of rice by controlling rachis-branch and spikelet development[J]. Developmental Biology,2001,231(2):364-373.
[10] Keishi K,Masahiko M,Shin U. LAX and SPA:Major regulators of shoot branching in rice[J]. Proc Natl Acad Sci USA,2003,100(20):11765-11770.
[11] Chu H W,Qian Q,Liang W Q,et al. The FLORAL ORGAN NUMBER4 gene encoding a putative ortholog of arabidopsis CLAVATA3 regulates apical meristem size in rice[J]. Plant Physiol,2006,142(3):1039-1052.
[12] Wang S S,Wang C S, Tung H T, et al. High-resolution genetic mapping and candidate gene identification[J]. Theor Appl Genet,2011,122:1489-1496.
[13] 郭爽,李云峰,任德勇,等. 水稻内稃扭曲突变体palea distortion 1(pd1)的鉴定与基因定位[J]. 分子植物育种,2011,9(3):256-260.
[14] 王增,李云峰,马娇,等. 水稻颖壳和浆片异常突变体ahl的基因定位[J]. 作物学报,2011,37(4):629-634.
[15] 陈在杰,吴煜兵,陈少游,等. 水稻生殖发育突变体frol(t)的形态发生及基因定位[J]. 福建农业学报,2010,25(6):677-683.
[16] 曾生元. 水稻颖壳闭合不良突变体的分析和基因定位研究[D]. 扬州:扬州大学,2010:23-35.
[17] 曾生元. 水稻颖壳闭合不良突变体的分析和基因定位研究[D]. 扬州:扬州大学,2010:36-42.
[18] 刘晓玲,毛毕刚,刘华清,等. 一个水稻开颖不育突变体ohsl(t)的遗传分析及基因定位[J]. 分子植物育种,2009,7(2):413-419.
[19] Wang N,Sang X C,Li Y F,et al. Gene mapping and expression analysis of a novel mutant reproduce organs absent (roa) in rice[J]. Genes and Genomics,2009,31(5):361-368.
[20] 李进波,夏明元,万丙良,等. 一个水稻颖壳扭曲突变体的遗传分析与基因定位[J]. 中国水稻科学,2008,22(6):658-660.
[21] Zhang Q F,Xu J D,Li Y,et al. Morphological,anatomical and genetic analysis for a rice mutant with abnormal hull[J]. Journal of Genetics and Genomics, 2007,34(6):519-526
[22] 薛大伟. 两个水稻花器官突变体的遗传分析[D]. 北京:中国农业科学院,2006:42-46.
[23] 李爱宏,武茹,张亚芳,等. 一个水稻多重颖壳突变体的形态学观察及初步遗传分析[J]. 中国水稻科学,2006,20(4):348-354.
[24] 储黄伟,刘海生,李晖,等. 水稻叶状颖壳突变体Oslh的遗传分析和OsLH基因的定位[J]. 植物生理与分子生物学学报,2005,31(6):594-598.
[25] 王彬,韩赞平,吴先军,等. 水稻颖花突变体DLR的鉴定[J]. 种子,2004,23(11):30-33.
[26] Zhang X M, Li S G, Wang Y P,et al. Morphogenesis,anatomical observation and genetic analysis of a long hull floral organ mutant in rice[J]. 植物学报,2004,46(4):451-456.
[27] 罗琼,周开达,刘国庆,等. 水稻无内稃突变体的遗传分析和基因定位[J]. 遗传学报,2002,29 (3):230-234.
[28] 白素兰,刘永胜,孙敬三,等. 水稻颖花开裂基因srs-1定位及其同源异型功能分析[J]. 中国科学:C辑,2000,30(4):337-341.
[29] Jeon J S,Jang S,Lee S C,et al. Leafy hull sterile1 is a homeotic mutation in a rice MADS box gene affecting rice flower development [J]. Plant Cell,2000,12:871-884.
[30] Chen Z X,Wu J G,Ding W N,et al. Morphogenesis and molecular basis on naked seed rice, a novel homeotic mutation of OsMADS1 regulating transcript level of AP3 homologue in rice[J]. Planta,2006,223:882-890.
[31] Yuan Z,Gao S,Xue D W,et al. RETARDED PALEA1 controls palea development and floral zygomorphy in rice[J]. Plant Physiol,2009,149:235-244.
[32] Takahiro Y,Nobuhiro N,Shinji K,et al. The YABBY gene DROOPING LEAF regulates carpel specification and midrib development in Oryza sativa[J]. Plant Cell,2004,16:500-509.
[33] Li H F,Liang W Q,Yin C S,et al. Genetic Interaction of OsMADS3,DROOPING LEAF and OsMADS13 in specifying rice floral organ identities and meristem determinacy[J]. Plant Physiol,2011,156:263-274.
[34] Li H F,Liang W Q,Jia R D,et al. The AGL6-like gene OsMADS6 regulates floral organ and meristem identities in rice[J]. Cell Research,2010,20:299-313.
[35] Li H F,Liang W Q,Hu Y,et al. Rice MADS6 interacts with the floral homeotic genes SUPERWOMAN1,MADS3,MADS58,MADS13,and DROOPING LEAF in specifying floral organ identities and meristem fate[J]. Plant Cell,2011,23:2536-2552.
[36] Duan Y L,Diao Z J,Liu H Q,et al. Molecular cloning and functional characterization of OsJAG gene based on a complete-deletion mutant in rice (Oryza sativa L.) [J]. Plant Mol Biol,2010,74:605-615.
[37] Li A,Zhang Y,Wu X,et al. DH1,a lob domain-like protein required for glume formation in rice[J]. Plant Mol Biol,2008,66:491-502.
[38] Wang K J,Tang D,Hong L L, et al. DEP and AFO regulate reproductive habit in rice[J]. PLoS Genetics,2010,6:1-9.
[39] Luo Q,Zhou K D,Zhao X F,et al. Identification and fine mapping of a mutant gene for palealess spikelet in rice[J]. Planta,2005,221:222-230.