- Michaels SD,Amasino RM
FLOWERING LOCUS C encodes a novel MADS domain protein that acts as a repressor of flowering. Plant Cell, 1999. 11(5): p. 949-56 [PMID:10330478] - Aukerman MJ,Lee I,Weigel D,Amasino RM
The Arabidopsis flowering-time gene LUMINIDEPENDENS is expressed primarily in regions of cell proliferation and encodes a nuclear protein that regulates LEAFY expression. Plant J., 1999. 18(2): p. 195-203 [PMID:10363371] - Chou ML,Yang CH
Late-flowering genes interact with early-flowering genes to regulate flowering time in Arabidopsis thaliana. Plant Cell Physiol., 1999. 40(7): p. 702-8 [PMID:10501030] - Soppe WJ,Bentsink L,Koornneef M
The early-flowering mutant efs is involved in the autonomous promotion pathway of Arabidopsis thaliana. Development, 1999. 126(21): p. 4763-70 [PMID:10518493] - Lee H, et al.
The AGAMOUS-LIKE 20 MADS domain protein integrates floral inductive pathways in Arabidopsis. Genes Dev., 2000. 14(18): p. 2366-76 [PMID:10995392] - van Nocke S,Muszynski M,Briggs K,Amasino RM
Characterization of a gene from Zea mays related to the Arabidopsis flowering-time gene LUMINIDEPENDENS. Plant Mol. Biol., 2000. 44(1): p. 107-22 [PMID:11094985] - Michaels SD,Amasino RM
Loss of FLOWERING LOCUS C activity eliminates the late-flowering phenotype of FRIGIDA and autonomous pathway mutations but not responsiveness to vernalization. Plant Cell, 2001. 13(4): p. 935-41 [PMID:11283346] - Schomburg FM,Patton DA,Meinke DW,Amasino RM
FPA, a gene involved in floral induction in Arabidopsis, encodes a protein containing RNA-recognition motifs. Plant Cell, 2001. 13(6): p. 1427-36 [PMID:11402170] - Zhang H,van Nocker S
The VERNALIZATION INDEPENDENCE 4 gene encodes a novel regulator of FLOWERING LOCUS C. Plant J., 2002. 31(5): p. 663-73 [PMID:12207655] - Noh YS,Amasino RM
PIE1, an ISWI family gene, is required for FLC activation and floral repression in Arabidopsis. Plant Cell, 2003. 15(7): p. 1671-82 [PMID:12837955] - Tzeng TY,Hsiao CC,Chi PJ,Yang CH
Two lily SEPALLATA-like genes cause different effects on floral formation and floral transition in Arabidopsis. Plant Physiol., 2003. 133(3): p. 1091-101 [PMID:14526112] - Boss PK,Bastow RM,Mylne JS,Dean C
Multiple pathways in the decision to flower: enabling, promoting, and resetting. Plant Cell, 2004. 16 Suppl: p. S18-31 [PMID:15037730] - Lewandowska D, et al.
Determinants of plant U12-dependent intron splicing efficiency. Plant Cell, 2004. 16(5): p. 1340-52 [PMID:15100401] - Nakagawa M,Komeda Y
Flowering of Arabidopsis cop1 mutants in darkness. Plant Cell Physiol., 2004. 45(4): p. 398-406 [PMID:15111714] - Doyle MR, et al.
HUA2 is required for the expression of floral repressors in Arabidopsis thaliana. Plant J., 2005. 41(3): p. 376-85 [PMID:15659097] - Werner JD, et al.
FRIGIDA-independent variation in flowering time of natural Arabidopsis thaliana accessions. Genetics, 2005. 170(3): p. 1197-207 [PMID:15911588] - Salathia N, et al.
FLOWERING LOCUS C-dependent and -independent regulation of the circadian clock by the autonomous and vernalization pathways. BMC Plant Biol., 2006. 6: p. 10 [PMID:16737527] - Yoo SK,Lee JS,Ahn JH
Overexpression of AGAMOUS-LIKE 28 (AGL28) promotes flowering by upregulating expression of floral promoters within the autonomous pathway. Biochem. Biophys. Res. Commun., 2006. 348(3): p. 929-36 [PMID:16899218] - Kim S,Choi K,Park C,Hwang HJ,Lee I
SUPPRESSOR OF FRIGIDA4, encoding a C2H2-Type zinc finger protein, represses flowering by transcriptional activation of Arabidopsis FLOWERING LOCUS C. Plant Cell, 2006. 18(11): p. 2985-98 [PMID:17138694] - Domagalska MA, et al.
Attenuation of brassinosteroid signaling enhances FLC expression and delays flowering. Development, 2007. 134(15): p. 2841-50 [PMID:17611230] - Jin JB, et al.
The SUMO E3 ligase, AtSIZ1, regulates flowering by controlling a salicylic acid-mediated floral promotion pathway and through affects on FLC chromatin structure. Plant J., 2008. 53(3): p. 530-40 [PMID:18069938] - Manzano C,Abraham Z,L
Identification of ubiquitinated proteins in Arabidopsis. Plant Mol. Biol., 2008. 68(1-2): p. 145-58 [PMID:18535787] - Wang Y, et al.
Transcriptome analyses show changes in gene expression to accompany pollen germination and tube growth in Arabidopsis. Plant Physiol., 2008. 148(3): p. 1201-11 [PMID:18775970] - Chang IF, et al.
Proteomic profiling of tandem affinity purified 14-3-3 protein complexes in Arabidopsis thaliana. Proteomics, 2009. 9(11): p. 2967-85 [PMID:19452453] - Doyle MR,Amasino RM
A single amino acid change in the enhancer of zeste ortholog CURLY LEAF results in vernalization-independent, rapid flowering in Arabidopsis. Plant Physiol., 2009. 151(3): p. 1688-97 [PMID:19755537] - Nah G,Jeffrey Chen Z
Tandem duplication of the FLC locus and the origin of a new gene in Arabidopsis related species and their functional implications in allopolyploids. New Phytol., 2010. 186(1): p. 228-38 [PMID:20100201] - Tamura K,Fukao Y,Iwamoto M,Haraguchi T,Hara-Nishimura I
Identification and characterization of nuclear pore complex components in Arabidopsis thaliana. Plant Cell, 2010. 22(12): p. 4084-97 [PMID:21189294] - Jin J, et al.
An Arabidopsis Transcriptional Regulatory Map Reveals Distinct Functional and Evolutionary Features of Novel Transcription Factors. Mol. Biol. Evol., 2015. 32(7): p. 1767-73 [PMID:25750178] - Chakrabortee S, et al.
Luminidependens (LD) is an Arabidopsis protein with prion behavior. Proc. Natl. Acad. Sci. U.S.A., 2016. 113(21): p. 6065-70 [PMID:27114519] - Lee I, et al.
Isolation of LUMINIDEPENDENS: a gene involved in the control of flowering time in Arabidopsis. Plant Cell, 1994. 6(1): p. 75-83 [PMID:7907507] - Sanda SL,Amasino RM
Interaction of FLC and late-flowering mutations in Arabidopsis thaliana. Mol. Gen. Genet., 1996. 251(1): p. 69-74 [PMID:8628249] - Haung MD,Yang CH
EMF genes interact with late-flowering genes to regulate Arabidopsis shoot development. Plant Cell Physiol., 1998. 39(4): p. 382-93 [PMID:9615462]
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