Bradley D, Ratcliffe O, Vincent C, Carpenter R, Coen E. 1997. Inflorescence commitment and architecture in Arabidopsis. Science, 275, 80–83.
Chen Z X, Wu J G, Ding W N, Chen H M, Wu P, Shi C H. 2006. Morphogenesis and molecular basis on naked seed rice, a novel homeotic mutation of OsMADS1 regulating transcript level of AP3 homologue in rice. Planta, 223, 882–890.
Chuck G, Meeley R, Hake S. 2008. Floral meristem initiation and meristem cell fate are regulated by the maize AP2 genes ids1 and sid1. Development, 135, 3013–3019.
Chuck G, Meeley R B, Hake S. 1998. The control of maize spikelet meristem fate by the APETALA2-like gene indeterminate spikelet1. Genes & Development, 12, 1145–1154.
Chuck G, Muszynski M, Kellogg E, Hake S, Schmidt R J. 2002. The control of spikelet meristem identity by the branched silkless1 gene in maize. Science, 298, 1238–1241.
Clifford H T. 1987. Spikelet and floral morphology. In: Soderstrom T R, Hilu K W, Campbell C S, Barkworth M E, eds., Grass Systematics and Evolution. Smithsonian Institution Press, Washington D.C. pp. 21–30.
Hu Y, Liang W Q, Yin C S, Yang X L, Ping B Z, Li A X, Jia R, Chen M J, Luo Z J, Cai Q, Zhao X X, Zhang D B, Yuan Z. 2015. Interactions of OsMADS1 with floral homeotic genes in rice flower development. Molecular Plant, 8, 1366–1384.
Jeon J S, Jang S, Lee S, Nam J, Kim C, Lee S H, Chung Y Y, Kim S R, Lee Y H, Cho Y G, An G. 2000. leafy hull sterile1 is a homeotic mutation in a rice MADS box gene affecting rice flower development. The Plant Cell, 12, 871–884.
Jin Y, Luo Q, Tong H, Wang A, Cheng Z, Tang J, Li D, Zhao X, Li X, Wan J, Jiao Y, Chu C, Zhu L. 2011. An AT-hook gene is required for palea formation and floral organ number control in rice. Developmental Biology, 359, 277–288.
Kellogg E A. 2009. The evolutionary history of Ehrhartoideae, oryzeae, and oryza. Rice, 2, 1–14.
Khanday I, Yadav S R, Vijayraghavan U. 2013. Rice LHS1/OsMADS1 controls floret meristem specification by coordinated regulation of transcription factors and hormone signaling pathways. Plant Physiology, 161, 1970–1983.
Komatsu M, Chujo A, Nagato Y, Shimamoto K, Kyozuka J. 2003. FRIZZY PANICLE is required to prevent the formation of axillary meristems and to establish floral meristem identity in rice spikelets. Development, 130, 3841–3850.
Lee D Y, An G. 2012. Two AP2 family genes, SUPERNUMERARY BRACT (SNB) and OsINDETERMINATE SPIKELET 1 (OsIDS1), synergistically control inflorescence architecture and floral meristem establishment in rice. The Plant Journal, 69, 445–461.
Lee D Y, Lee J, Moon S, Park S Y, An G. 2007. The rice heterochronic gene SUPERNUMERARY BRACT regulates the transition from spikelet meristem to floral meristem. The Plant Journal, 49, 64–78.
Li H, Liang W, Jia R, Yin C, Zong J, Kong H, Zhang D. 2010. The AGL6-like gene OsMADS6 regulates floral organ and meristem identities in rice. Cell Research, 20, 299–313.
Li H F, Liang W Q, Yin C S, Zhu L, Zhang D B. 2011. Genetic interaction of OsMADS3, DROOPING LEAF, and OsMADS13 in specifying rice floral organ identities and meristem determinacy. Plant Physiology, 156, 263–274.
Malcomber S T, Preston J C, Reinheimer R, Kossuth J, Kellogg E A. 2006. Developmental gene evolution and the origin of grass inflorescence diversity. Advances In Botanical Research (Incorporating Advances in Plant Pathology), 44, 425–481.
Nakagawa M, Shimamoto K, Kyozuka J. 2002. Overexpression of RCN1 and RCN2, rice TERMINAL FLOWER 1/CENTRORADIALIS homologs, confers delay of phase transition and altered panicle morphology in rice. The Plant Journal, 29, 743–750.
Rao N N, Prasad K, Kumar P R, Vijayraghavan U. 2008. Distinct regulatory role for RFL, the rice LFY homolog, in determining flowering time and plant architecture. Proceedings of the National Academy of Sciences of the United States of America, 105, 3646–3651.
Ratcliffe O J, Bradley D J, Coen E S. 1999. Separation of shoot and floral identity in Arabidopsis. Development, 126, 1109–1120.
Ren D Y, Li Y F, Zhao F M, Sang X C, Shi J Q, Wang N, Guo S, Ling Y H, Zhang C W, Yang Z L, He G H. 2013. MULTI-FLORET SPIKELET1, which encodes an AP2/ERF protein, determines spikelet meristem fate and sterile lemma identity in rice. Plant Physiology, 162, 872–884.
Sang X C, Li Y F, Luo Z K, Ren D Y, Fang L K, Wang N, Zhao F M, Ling Y H, Yang Z L, Liu Y S, He G H. 2012. CHIMERIC FLORAL ORGANS1, encoding a monocot-specific MADS box protein, regulates floral organ identity in rice. Plant Physiology, 160, 788–807.
Sussex I M, Kerk N M. 2001. The evolution of plant architecture. Current Opinion in Plant Biology, 4, 33–37.
Suzaki T, Sato M, Ashikari M, Miyoshi M, Nagato Y, Hirano H Y. 2004. The gene FLORAL ORGAN NUMBER1 regulates floral meristem size in rice and encodes a leucine-rich repeat receptor kinase orthologous to Arabidopsis CLAVATA1. Development, 131, 5649–5657.
Xiang C Y, Liang X X, Chu R Z, Duan M, Cheng J P, Ding Z Q, Wang J F. 2015. Fine mapping of a palea defective 1 (pd1), a locus associated with palea and stamen development in rice. Plant Cell Reports, 34, 2151–2159.
Yuan Z, Gao S, Xue D W, Luo D, Li L T, Ding S Y, Yao X, Wilson Z A, Qian Q, Zhang D B. 2009. RETARDED PALEA1 controls palea development and floral zygomorphy in rice. Plant Physiology, 149, 235–244.
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