-
1
-
-
84921949083
-
Sensing the light environment in plants: Photoreceptors and early signaling steps
-
Galvão VC, Fankhauser C (2015) Sensing the light environment in plants: Photoreceptors and early signaling steps. Curr Opin Neurobiol 34:46-53.
-
(2015)
Curr Opin Neurobiol
, vol.34
, pp. 46-53
-
-
Galvão, V.C.1
Fankhauser, C.2
-
2
-
-
33847042609
-
Light-regulated transcriptional networks in higher plants
-
Jiao Y, Lau OS, Deng XW (2007) Light-regulated transcriptional networks in higher plants. Nat Rev Genet 8(3):217-230.
-
(2007)
Nat Rev Genet
, vol.8
, Issue.3
, pp. 217-230
-
-
Jiao, Y.1
Lau, O.S.2
Deng, X.W.3
-
4
-
-
84896832547
-
PIFs: Systems integrators in plant development
-
Leivar P, Monte E (2014) PIFs: Systems integrators in plant development. Plant Cell 26(1):56-78.
-
(2014)
Plant Cell
, vol.26
, Issue.1
, pp. 56-78
-
-
Leivar, P.1
Monte, E.2
-
5
-
-
84929315761
-
Combinatorial complexity in a transcriptionally centered signaling hub in Arabidopsis
-
Pfeiffer A, Shi H, Tepperman JM, Zhang Y, Quail PH (2014) Combinatorial complexity in a transcriptionally centered signaling hub in Arabidopsis. Mol Plant 7(11):1598-1618.
-
(2014)
Mol Plant
, vol.7
, Issue.11
, pp. 1598-1618
-
-
Pfeiffer, A.1
Shi, H.2
Tepperman, J.M.3
Zhang, Y.4
Quail, P.H.5
-
6
-
-
33750993478
-
Arabidopsis FHY3 specifically gates phytochrome signaling to the circadian clock
-
Allen T, et al. (2006) Arabidopsis FHY3 specifically gates phytochrome signaling to the circadian clock. Plant Cell 18(10):2506-2516.
-
(2006)
Plant Cell
, vol.18
, Issue.10
, pp. 2506-2516
-
-
Allen, T.1
-
7
-
-
34447520296
-
Rhythmic growth explained by coincidence between internal and external cues
-
Nozue K, et al. (2007) Rhythmic growth explained by coincidence between internal and external cues. Nature 448(7151):358-361.
-
(2007)
Nature
, vol.448
, Issue.7151
, pp. 358-361
-
-
Nozue, K.1
-
8
-
-
84864439477
-
Phytochrome-imposed oscillations in PIF3 protein abundance regulate hypocotyl growth under diurnal light/dark conditions in Arabidopsis
-
Soy J, et al. (2012) Phytochrome-imposed oscillations in PIF3 protein abundance regulate hypocotyl growth under diurnal light/dark conditions in Arabidopsis. Plant J 71(3):390-401.
-
(2012)
Plant J
, vol.71
, Issue.3
, pp. 390-401
-
-
Soy, J.1
-
9
-
-
84874735092
-
Verification at the protein level of the PIF4-mediated external coincidence model for the temperature-adaptive photoperiodic control of plant growth in Arabidopsis thaliana
-
Yamashino T, et al. (2013) Verification at the protein level of the PIF4-mediated external coincidence model for the temperature-adaptive photoperiodic control of plant growth in Arabidopsis thaliana. Plant Signal Behav 8(3):e23390.
-
(2013)
Plant Signal Behav
, vol.8
, Issue.3
, pp. e23390
-
-
Yamashino, T.1
-
10
-
-
84869169171
-
Circadian clockand PIF4-controlled plant growth: A coincidence mechanism directly integrates a hormone signaling network into the photoperiodic control of plant architectures in Arabidopsis thaliana
-
Nomoto Y, Kubozono S, Yamashino T, Nakamichi N, Mizuno T (2012) Circadian clockand PIF4-controlled plant growth: A coincidence mechanism directly integrates a hormone signaling network into the photoperiodic control of plant architectures in Arabidopsis thaliana. Plant Cell Physiol 53(11):1950-1964.
-
(2012)
Plant Cell Physiol
, vol.53
, Issue.11
, pp. 1950-1964
-
-
Nomoto, Y.1
Kubozono, S.2
Yamashino, T.3
Nakamichi, N.4
Mizuno, T.5
-
11
-
-
84896845993
-
PIF1 promotes phytochrome-regulated growth under photoperiodic conditions in Arabidopsis together with PIF3, PIF4, and PIF5
-
Soy J, Leivar P, Monte E (2014) PIF1 promotes phytochrome-regulated growth under photoperiodic conditions in Arabidopsis together with PIF3, PIF4, and PIF5. J Exp Bot 65(11):2925-2936.
-
(2014)
J Exp Bot
, vol.65
, Issue.11
, pp. 2925-2936
-
-
Soy, J.1
Leivar, P.2
Monte, E.3
-
12
-
-
0346258011
-
Gating of the rapid shade-avoidance response by the circadian clock in plants
-
Salter MG, Franklin KA, Whitelam GC (2003) Gating of the rapid shade-avoidance response by the circadian clock in plants. Nature 426(6967):680-683.
-
(2003)
Nature
, vol.426
, Issue.6967
, pp. 680-683
-
-
Salter, M.G.1
Franklin, K.A.2
Whitelam, G.C.3
-
13
-
-
54749087162
-
A morning-specific phytohormone gene expression program underlying rhythmic plant growth
-
Michael TP, et al. (2008) A morning-specific phytohormone gene expression program underlying rhythmic plant growth. PLoS Biol 6(9):e225.
-
(2008)
PLoS Biol
, vol.6
, Issue.9
, pp. e225
-
-
Michael, T.P.1
-
14
-
-
84859508042
-
Mapping the core of the Arabidopsis circadian clock defines the network structure of the oscillator
-
Huang W, et al. (2012) Mapping the core of the Arabidopsis circadian clock defines the network structure of the oscillator. Science 336(6077):75-79.
-
(2012)
Science
, vol.336
, Issue.6077
, pp. 75-79
-
-
Huang, W.1
-
15
-
-
0036008343
-
The APRR1/TOC1 quintet implicated in circadian rhythms of Arabidopsis thaliana: I Characterization with APRR1-overexpressing plants
-
Makino S, Matsushika A, Kojima M, Yamashino T, Mizuno T (2002) The APRR1/TOC1 quintet implicated in circadian rhythms of Arabidopsis thaliana: I. Characterization with APRR1-overexpressing plants. Plant Cell Physiol 43(1):58-69.
-
(2002)
Plant Cell Physiol
, vol.43
, Issue.1
, pp. 58-69
-
-
Makino, S.1
Matsushika, A.2
Kojima, M.3
Yamashino, T.4
Mizuno, T.5
-
16
-
-
84857383458
-
Arabidopsis circadian clock protein, TOC1, is a DNA-binding transcription factor
-
Gendron JM, et al. (2012) Arabidopsis circadian clock protein, TOC1, is a DNA-binding transcription factor. Proc Natl Acad Sci USA 109(8):3167-3172.
-
(2012)
Proc Natl Acad Sci USA
, vol.109
, Issue.8
, pp. 3167-3172
-
-
Gendron, J.M.1
-
17
-
-
62449114708
-
A functional genomics approach reveals CHE as a component of the Arabidopsis circadian clock
-
Pruneda-Paz JL, Breton G, Para A, Kay SA (2009) A functional genomics approach reveals CHE as a component of the Arabidopsis circadian clock. Science 323(5920):1481-1485.
-
(2009)
Science
, vol.323
, Issue.5920
, pp. 1481-1485
-
-
Pruneda-Paz, J.L.1
Breton, G.2
Para, A.3
Kay, S.A.4
-
18
-
-
33644814040
-
ELF4 is a phytochrome-regulated component of a negative-feedback loop involving the central oscillator components CCA1 and LHY
-
Kikis EA, Khanna R, Quail PH (2005) ELF4 is a phytochrome-regulated component of a negative-feedback loop involving the central oscillator components CCA1 and LHY.Plant J 44(2):300-313.
-
(2005)
Plant J
, vol.44
, Issue.2
, pp. 300-313
-
-
Kikis, E.A.1
Khanna, R.2
Quail, P.H.3
-
19
-
-
0031889304
-
The short-period mutant, toc1-1, alters circadian clock regulation of multiple outputs throughout development in Arabidopsis thaliana
-
Somers DE, Webb AA, Pearson M, Kay SA (1998) The short-period mutant, toc1-1, alters circadian clock regulation of multiple outputs throughout development in Arabidopsis thaliana. Development 125(3):485-494.
-
(1998)
Development
, vol.125
, Issue.3
, pp. 485-494
-
-
Somers, D.E.1
Webb, A.A.2
Pearson, M.3
Kay, S.A.4
-
20
-
-
79956021324
-
Genomic analysis of circadian clock-, light-, and growth-correlated genes reveals PHYTOCHROME-INTERACTING FACTOR5 as a modulator of auxin signaling in Arabidopsis
-
Nozue K, Harmer SL, Maloof JN (2011) Genomic analysis of circadian clock-, light-, and growth-correlated genes reveals PHYTOCHROME-INTERACTING FACTOR5 as a modulator of auxin signaling in Arabidopsis. Plant Physiol 156(1):357-372.
-
(2011)
Plant Physiol
, vol.156
, Issue.1
, pp. 357-372
-
-
Nozue, K.1
Harmer, S.L.2
Maloof, J.N.3
-
21
-
-
57649111510
-
Multiple phytochrome-interacting bHLH transcription factors repress premature seedling photomorphogenesis in darkness
-
Leivar P, et al. (2008) Multiple phytochrome-interacting bHLH transcription factors repress premature seedling photomorphogenesis in darkness. Curr Biol 18(23):1815-1823.
-
(2008)
Curr Biol
, vol.18
, Issue.23
, pp. 1815-1823
-
-
Leivar, P.1
-
22
-
-
84861403941
-
Dynamic antagonism between phytochromes and PIF family basic helix-loop-helix factors induces selective reciprocal responses to light and shade in a rapidly responsive transcriptional network in Arabidopsis
-
Leivar P, et al. (2012) Dynamic antagonism between phytochromes and PIF family basic helix-loop-helix factors induces selective reciprocal responses to light and shade in a rapidly responsive transcriptional network in Arabidopsis. Plant Cell 24(4):1398-1419.
-
(2012)
Plant Cell
, vol.24
, Issue.4
, pp. 1398-1419
-
-
Leivar, P.1
-
23
-
-
0037256650
-
Dual role of TOC1 in the control of circadian and photomorphogenic responses in Arabidopsis
-
Más P, Alabadí D, Yanovsky MJ, Oyama T, Kay SA (2003) Dual role of TOC1 in the control of circadian and photomorphogenic responses in Arabidopsis. Plant Cell 15(1):223-236.
-
(2003)
Plant Cell
, vol.15
, Issue.1
, pp. 223-236
-
-
Más, P.1
Alabadí, D.2
Yanovsky, M.J.3
Oyama, T.4
Kay, S.A.5
-
24
-
-
84872177734
-
Transcriptional corepressor TOPLESS complexes with pseudoresponse regulator proteins and histone deacetylases to regulate circadian transcription
-
Wang L, Kim J, Somers DE (2013) Transcriptional corepressor TOPLESS complexes with pseudoresponse regulator proteins and histone deacetylases to regulate circadian transcription. Proc Natl Acad Sci USA 110(2):761-766.
-
(2013)
Proc Natl Acad Sci USA
, vol.110
, Issue.2
, pp. 761-766
-
-
Wang, L.1
Kim, J.2
Somers, D.E.3
-
25
-
-
84941941328
-
Integrating circadian dynamics with physiological processes in plants
-
Greenham K, McClung CR (2015) Integrating circadian dynamics with physiological processes in plants. Nat Rev Genet 16(10):598-610.
-
(2015)
Nat Rev Genet
, vol.16
, Issue.10
, pp. 598-610
-
-
Greenham, K.1
McClung, C.R.2
-
26
-
-
84878297994
-
Phytochrome-interacting factors (PIFs) as bridges between environmental signals and the circadian clock: Diurnal regulation of growth and development
-
Shin J, Anwer MU, Davis SJ (2013) Phytochrome-interacting factors (PIFs) as bridges between environmental signals and the circadian clock: Diurnal regulation of growth and development. Mol Plant 6(3):592-595.
-
(2013)
Mol Plant
, vol.6
, Issue.3
, pp. 592-595
-
-
Shin, J.1
Anwer, M.U.2
Davis, S.J.3
-
27
-
-
51749110466
-
Global transcriptome analysis reveals circadian regulation of key pathways in plant growth and development
-
Covington MF, Maloof JN, Straume M, Kay SA, Harmer SL (2008) Global transcriptome analysis reveals circadian regulation of key pathways in plant growth and development Genome Biol 9(8):R130.
-
(2008)
Genome Biol
, vol.9
, Issue.8
, pp. R130
-
-
Covington, M.F.1
Maloof, J.N.2
Straume, M.3
Kay, S.A.4
Harmer, S.L.5
-
28
-
-
84855222513
-
Functional profiling identifies genes involved in organ-specific branches of the PIF3 regulatory network in Arabidopsis
-
Sentandreu M, et al. (2011) Functional profiling identifies genes involved in organ-specific branches of the PIF3 regulatory network in Arabidopsis. Plant Cell 23(11):3974-3991.
-
(2011)
Plant Cell
, vol.23
, Issue.11
, pp. 3974-3991
-
-
Sentandreu, M.1
-
29
-
-
48249088161
-
The Arabidopsis phytochrome-interacting factor PIF7, together with PIF3 and PIF4, regulates responses to prolonged red light by modulating phyB levels
-
Leivar P, et al. (2008) The Arabidopsis phytochrome-interacting factor PIF7, together with PIF3 and PIF4, regulates responses to prolonged red light by modulating phyB levels. Plant Cell 20(2):337-352.
-
(2008)
Plant Cell
, vol.20
, Issue.2
, pp. 337-352
-
-
Leivar, P.1
-
30
-
-
84921385840
-
ELF3-PIF4 interaction regulates plant growth independently of the Evening Complex
-
Nieto C, López-Salmerón V, Davière JM, Prat S (2015) ELF3-PIF4 interaction regulates plant growth independently of the Evening Complex. Curr Biol 25(2):187-193.
-
(2015)
Curr Biol
, vol.25
, Issue.2
, pp. 187-193
-
-
Nieto, C.1
López-Salmerón, V.2
Davière, J.M.3
Prat, S.4
-
32
-
-
33746428382
-
Photoactivated phytochrome induces rapid PIF3 phosphorylation prior to proteasome-mediated degradation
-
Al-Sady B, Ni W, Kircher S, Schäfer E, Quail PH (2006) Photoactivated phytochrome induces rapid PIF3 phosphorylation prior to proteasome-mediated degradation. Mol Cell 23(3):439-446.
-
(2006)
Mol Cell
, vol.23
, Issue.3
, pp. 439-446
-
-
Al-Sady, B.1
Ni, W.2
Kircher, S.3
Schäfer, E.4
Quail, P.H.5
|