Komeda Y.Genetic regulation of time to flower in Arabidopsis thaliana[J].Annual Review of Plant Biology,2004,55:521-535.
[2]
Mouradov A,Cremer F,Coupland G.Control of flowering time interacting pathways as a basis for diversity[J].The Plant Cell Online,2002,14(suppl 1):S111-S130.
[3]
Putterill J,Laurie R,Macknight R.It''s time to flower:the genetic control of flowering time[J].BioEssays,2004,26(4):363-373.
[4]
Farrona S,Coupland G,Turck F.The impact of chromatin regulation on the floral transition [C].Seminars in cell & developmental biology,2008,19(6):560-573.
[5]
Sablowski R.Flowering and determinacy in Arabidopsis[J].Journal of Experimental Botany,2007,58(5):899-907.
[6]
Becker A,Theissen G.The major clades of MADS-box genes and their role in the development and evolution of flowering plants[J].Molecular Phylogenetics and Evolution,2003,29(3):464-489.
[7]
Mandel M A,Gustafson-Brown C,Savidge B,et al.Molecular characterization of the Arabidopsis floral homeotic gene APETALA1 [J].Nature,1992,360:273-277.
[8]
Weigel D,Nilsson O.A developmental Switch sufficient for flower initiation in diverse plants[J].Nature,1995,377(6549):495-500.
[9]
Sarah J,Gustafson-Brown C,Pinyopich A,et al.Interactions among APETALA1,LEAFY,and TERMINAL FLOWER1 specify meristem fate[J].The Plant Cell Online,1999,11(6):1007-1018.
Chi Y J,Huang F,Liu H C,et al.An APETALA1-like gene of soybean regulates flowering time and specifies floral organs[J].Journal of Plant Physiology,2011,168(18):2251-2259.
[12]
Gai S P,Zhang Y X,Mu P,et al.Transcriptome analysis of tree peony during chilling requirement fulfillment:Assembling,annotation and markers discovering[J].Gene,2012,497(2):256-262.
[13]
Livak K J,Schmittgen T D.Analysis of relative gene expression data using Real-time quantitative PCR and the 2-ΔΔCT method[J].Methods,2001,25:402-408.
[14]
Clough S J,Bent A F.Floral Dip:a simplified method for agrobacterium-mediated transformation of Arabidopsis thaliana[J].The Plant Journal,1998,16(6):735-743.
[15]
Calonje M,Cubas P,Martinez-Zapater J M,et al.Floral meristem identity genes are expressed during tendril development in grapevine[J].Plant Physiology,2004,135(3):1491-1501.
[16]
Kotoda N,Wada M,Komori S, et al. Expression pattern of homologues of floral meristem identity genes LFY and AP1 during flower development in Apple[J].Journal of the American Society for Horticultural Science,2000,125(4):398-403.
[17]
Pillitteri L J,Lovatt C J,Walling L L.Isolation and characterization of LEAFY and APETALA1 homologues from Citrus sinensis L.Osbeck Washington''[J].Journal of the American Society for Horticultural Science,2004,129(6):846-856.
[18]
Liu Y,Kong J,Li T,et al.Isolation and characterization of an APETALA1-like gene from pear(Pyrus pyrifolia) [J].Plant Molecular Biology Reporter,2013,31(4):1031-1039.
[19]
Li C,Xie H,Zhang L,et al.Molecular characterization of the PpMADS1 gene from peach[J].Tree Genetics & Genomes,2012,8(4):831-840.
Kim S,Koh J,Ma H,et al.Sequence and expression studies of A-,B-,and E-class MADS-box homologues in Eupomatia (Eupomatiaceae):Support for the bracteate origin of the calyptra[J].International Journal of Plant Sciences,2005,166(2):185-198.
[23]
Fornara F,Parenicova L,Falasca G,et al.Functional characterization of OsMADS18,a member of the AP1/SQUA subfamily of MADS box genes[J].Plant Physiology,2004,135(4):2207-2219.
Zhang L,Xu Y,Ma R.Molecular cloning,identification,and chromosomal localization of two MADS box genes in peach (Prunus persica) [J].Journal of Genetics and Genomics,2008,35:365-372.
Srikanth A,Schmid M.Regulation of flowering time:all roads lead to Rome[J].Cellular and Molecular Life Sciences,2011,68(12):2013-2037.
[29]
Liu C,Xi W Y,Shen L S,et al.Regulation of floral patterning by flowering time genes[J].Developmental Cell,2009,16(5):711-722.
[30]
Gregis V,Sessa A,Dorca-Fornell C,et al.The arabidopsis floral meristem identity genes AP1,AGL24 and SVP directly repress class B and C floral homeotic genes[J].The Plant Journal,2009,60(4):626-637.