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At the end of the day: a common molecular mechanism for photoperiod responses in plants?LAGERCRANTZ, Ulf.Journal of experimental botany. 2009, Vol 60, Num 9, pp 2501-2515, issn 0022-0957, 15 p.Article

SOC1 translocated to the nucleus by interaction with AGL24 directly regulates LEAFYLEE, Jungeun; OH, Mijin; PARK, Hanna et al.Plant journal. 2008, Vol 55, Num 5, pp 832-843, issn 0960-7412, 12 p.Article

Association mapping reveals gene action and interactions in the determination of flowering time in barleySTRACKE, Silke; HASENEYER, Grit; VEYRIERAS, Jean-Baptiste et al.Theoretical and applied genetics. 2009, Vol 118, Num 2, pp 259-273, issn 0040-5752, 15 p.Article

Regulation of Floral Patterning by Flowering Time GenesCHANG LIU; WANYAN XI; LISHA SHEN et al.Developmental cell. 2009, Vol 16, Num 5, pp 711-722, issn 1534-5807, 12 p.Article

Functional characterization of rice OsDofl2DEJUN LI; CHUNHUA YANG; XIAOBING LI et al.Planta. 2009, Vol 229, Num 6, pp 1159-1169, issn 0032-0935, 11 p.Article

Regulation of flowering time and floral patterning by miR172ZHU, Qian-Hao; HELLIWELL, Chris A.Journal of experimental botany. 2011, Vol 62, Num 2, pp 487-495, issn 0022-0957, 9 p.Article

FLC or not FLC : the other side of vernalizationALEXANDRE, Cristina Madeira; HENNIG, Lars.Journal of experimental botany. 2008, Vol 59, Num 6, pp 1127-1135, issn 0022-0957, 9 p.Article

Plasticity, its cost, and phenotypic selection under water and nutrient stress in two annual grassesVOLIS, Sergei.Biological Journal of the Linnean Society. 2009, Vol 97, Num 3, pp 581-593, issn 0024-4066, 13 p.Article

Vegetative phenology constrains the onset of flowering in the perennial herb Lathyrus vernusSOLA, Ana J; EHRLEN, Johan.Journal of Ecology. 2007, Vol 95, Num 1, pp 208-216, issn 0022-0477, 9 p.Article

Comparison of environmental and mutational variation in flowering time in ArabidopsisPOUTEAU, Sylvie; FERRET, Valérie; LEFEBVRE, Delphine et al.Journal of experimental botany. 2006, Vol 57, Num 15, pp 4099-4109, issn 0022-0957, 11 p.Article

Additional targets of the Arabidopsis autonomous pathway members, FCA and FYMARQUARDT, S; BOSS, P. K; HADFIELD, J et al.Journal of experimental botany. 2006, Vol 57, Num 13, pp 3379-3386, issn 0022-0957, 8 p.Conference Paper

Climate change and the flowering time of annual cropsCRAUFURD, P. Q; WHEELER, T. R.Journal of experimental botany. 2009, Vol 60, Num 9, pp 2529-2539, issn 0022-0957, 11 p.Article

Investigation of the geographical scale of adaptive phenological variation and its underlying genetics in Arabidopsis thalianaBRACHI, Benjamin; VILLOUTREIX, Romain; FAURE, Nathalie et al.Molecular ecology. 2013, Vol 22, Num 16, pp 4222-4240, issn 0962-1083, 19 p.Article

Co-ordinated regulation of flowering time, plant architecture and growth by FASCICULATE : the pepper orthologue of SELF PRUNINGELITZUR, Tomer; NAHUM, Hadas; BOROVSKY, Yelena et al.Journal of experimental botany. 2009, Vol 60, Num 3, pp 869-880, issn 0022-0957, 12 p.Article

PRR5 (PSEUDO-RESPONSE REGULATOR 5) plays antagonistic roles to CCA1 (CIRCADIAN CLOCK-ASSOCIATED 1) in Arabidopsis thalianaFUJIMORI, Toru; SATO, Eriko; YAMASHINO, Takafumi et al.Bioscience, biotechnology, and biochemistry. 2005, Vol 69, Num 2, pp 426-430, issn 0916-8451, 5 p.Article

BROTHER OF FT AND TFL 1 (BFT) has TFL 1-like activity and functions redundantly with TFL 1 in inflorescence meristem development in ArabidopsisSEONG JEON YOO; KYUNG SOOK CHUNG; SEUNG HYE JUNG et al.Plant journal. 2010, Vol 63, Num 2, pp 241-253, issn 0960-7412, 13 p.Article

LOV KELCH PROTEIN2 and ZEITLUPE repress Arabidopsis photoperiodic flowering under non-inductive conditions, dependent on FLAVIN-BINDING KELCH REPEAT F-BOX1TAKASE, Tomoyuki; NISHIYAMA, Yuuki; TANIHIGASHI, Haruna et al.Plant journal. 2011, Vol 67, Num 4, pp 608-621, issn 0960-7412, 14 p.Article

CONSTANS and ASYMMETRIC LEAVES 1 complex is involved in the induction of FLOWERING LOCUS Tin photoperiodic flowering in ArabidopsisYOUNG HUN SONG; LEE, Ilha; SANG YEOL LEE et al.Plant journal. 2012, Vol 69, Num 2, pp 332-342, issn 0960-7412, 11 p.Article

Epigenetic variation in the FWA gene within the genus ArabidopsisFUJIMOTO, Ryo; SASAKI, Taku; KUDOH, Hiroshi et al.Plant journal. 2011, Vol 66, Num 5, pp 831-843, issn 0960-7412, 13 p.Article

LATE, a C2H2 zinc-finger protein that acts as floral repressorWEINGARTNER, Magdalena; SUBERT, Christa; SAUER, Norbert et al.Plant journal. 2011, Vol 68, Num 4, pp 681-692, issn 0960-7412, 12 p.Article

OsCOL4 is a constitutive flowering repressor upstream of Ehd1 and downstream of OsphyBLEE, Yang-Seok; JEONG, Dong-Hoon; CHO, Lae-Hyeon et al.Plant journal. 2010, Vol 63, Num 1, pp 18-30, issn 0960-7412, 13 p.Article

Genome-wide identification of SOC1 and SVP targets during the floral transition in ArabidopsisZHEN TAO; LISHA SHEN; CHANG LIU et al.Plant journal. 2012, Vol 70, Num 4, pp 549-561, issn 0960-7412, 13 p.Article

Association mapping of grain quality and flowering time in elite japonica rice germplasmORDONEZ, Samuel A; SILVA, James; OARD, James H et al.Journal of cereal science (Print). 2010, Vol 51, Num 3, pp 337-343, issn 0733-5210, 7 p.Article

Flowering time control: another window to the connection between antisense RNA and chromatinLETSWAART, Robert; ZHE WU; DEAN, Caroline et al.Trends in genetics (Regular ed.). 2012, Vol 28, Num 9, pp 445-453, issn 0168-9525, 9 p.Article

Increased ascorbate content delays flowering in long-day grown Arabidopsis thaliana (L.) HeynhATTOLICO, A. D; DE TULLIO, M. C.Plant physiology and biochemistry (Paris). 2006, Vol 44, Num 7-9, pp 462-466, issn 0981-9428, 5 p.Article

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