-
1
-
-
84864219032
-
Circadian biology: a 2.5 billion year old clock
-
Loudon A.S.I. Circadian biology: a 2.5 billion year old clock. Current Biology 2012, 22:R570-R571.
-
(2012)
Current Biology
, vol.22
-
-
Loudon, A.S.I.1
-
2
-
-
0034671791
-
Orchestrated transcription of key pathways in Arabidopsis by the circadian clock
-
Harmer S.L., Hogenesch J.B., Straume M., Chang H., Han B., Zhu T., et al. Orchestrated transcription of key pathways in Arabidopsis by the circadian clock. Science 2000, 290:2110-2113.
-
(2000)
Science
, vol.290
, pp. 2110-2113
-
-
Harmer, S.L.1
Hogenesch, J.B.2
Straume, M.3
Chang, H.4
Han, B.5
Zhu, T.6
-
3
-
-
40149105297
-
Network discovery pipeline elucidates conserved time-of-day-specific cis-regulatory modules
-
Michael T.P., Mockler T.C., Breton G., McEntee C., Byer A., Trout J.D., et al. Network discovery pipeline elucidates conserved time-of-day-specific cis-regulatory modules. PLoS Genetics 2008, 4:e14.
-
(2008)
PLoS Genetics
, vol.4
-
-
Michael, T.P.1
Mockler, T.C.2
Breton, G.3
McEntee, C.4
Byer, A.5
Trout, J.D.6
-
4
-
-
51749110466
-
Global transcriptome analysis reveals circadian regulation of key pathways in plant growth and development
-
Covington M.F., Maloof J.N., Straume M., Kay S.A., Harmer S.L. Global transcriptome analysis reveals circadian regulation of key pathways in plant growth and development. Genome Biology 2008, 9:R130.
-
(2008)
Genome Biology
, vol.9
-
-
Covington, M.F.1
Maloof, J.N.2
Straume, M.3
Kay, S.A.4
Harmer, S.L.5
-
5
-
-
84879187225
-
Global approaches for telling time: omics and the Arabidopsis circadian clock
-
Chow B.Y., Kay S.A. Global approaches for telling time: omics and the Arabidopsis circadian clock. Seminars in Cell and Developmental Biology 2013, 24:383-392.
-
(2013)
Seminars in Cell and Developmental Biology
, vol.24
, pp. 383-392
-
-
Chow, B.Y.1
Kay, S.A.2
-
6
-
-
66449087281
-
The circadian system in higher plants
-
Harmer S.L. The circadian system in higher plants. Annual Review of Plant Biology 2009, 60:357-377.
-
(2009)
Annual Review of Plant Biology
, vol.60
, pp. 357-377
-
-
Harmer, S.L.1
-
7
-
-
22744451756
-
Plant circadian clocks increase photosynthesis, growth, survival, and competitive advantage
-
Dodd A.N., Salathia N., Hall A., Kévei E., Tóth R., Nagy F., et al. Plant circadian clocks increase photosynthesis, growth, survival, and competitive advantage. Science 2005, 309:630-633.
-
(2005)
Science
, vol.309
, pp. 630-633
-
-
Dodd, A.N.1
Salathia, N.2
Hall, A.3
Kévei, E.4
Tóth, R.5
Nagy, F.6
-
8
-
-
84867644429
-
CIRCADIAN CLOCK-ASSOCIATED 1 regulates ROS homeostasis and oxidative stress responses
-
Lai A.G., Doherty C.J., Mueller-Roeber B., Kay S.A., Schippers J.H.M., Dijkwel P.P. CIRCADIAN CLOCK-ASSOCIATED 1 regulates ROS homeostasis and oxidative stress responses. Proceedings of the National Academy of Sciences of the United States of America 2012, 109:17129-17134.
-
(2012)
Proceedings of the National Academy of Sciences of the United States of America
, vol.109
, pp. 17129-17134
-
-
Lai, A.G.1
Doherty, C.J.2
Mueller-Roeber, B.3
Kay, S.A.4
Schippers, J.H.M.5
Dijkwel, P.P.6
-
9
-
-
33644666348
-
Daylength and circadian effects on starch degradation and maltose metabolism
-
Lu Y., Gehan J.P., Sharkey T.D. Daylength and circadian effects on starch degradation and maltose metabolism. Plant Physiology 2005, 138:2280-2291.
-
(2005)
Plant Physiology
, vol.138
, pp. 2280-2291
-
-
Lu, Y.1
Gehan, J.P.2
Sharkey, T.D.3
-
10
-
-
77952704133
-
Circadian control of carbohydrate availability for growth in Arabidopsis plants at night
-
Graf A., Schlereth A., Stitt M., Smith A.M. Circadian control of carbohydrate availability for growth in Arabidopsis plants at night. Proceedings of the National Academy of Sciences of the United States of America 2010, 107:9458-9463.
-
(2010)
Proceedings of the National Academy of Sciences of the United States of America
, vol.107
, pp. 9458-9463
-
-
Graf, A.1
Schlereth, A.2
Stitt, M.3
Smith, A.M.4
-
11
-
-
42449106989
-
Systems approach identifies an organic nitrogen-responsive gene network that is regulated by the master clock control gene CCA1
-
Gutiérrez R.A., Stokes T.L., Thum K., Xu X., Obertello M., Katari M.S., et al. Systems approach identifies an organic nitrogen-responsive gene network that is regulated by the master clock control gene CCA1. Proceedings of the National Academy of Sciences of the United States of America 2008, 105:4939-4944.
-
(2008)
Proceedings of the National Academy of Sciences of the United States of America
, vol.105
, pp. 4939-4944
-
-
Gutiérrez, R.A.1
Stokes, T.L.2
Thum, K.3
Xu, X.4
Obertello, M.5
Katari, M.S.6
-
12
-
-
79953094978
-
Network quantitative trait loci mapping of circadian clock outputs identifies metabolic pathway-to-clock linkages in Arabidopsis
-
Kerwin R.E., Jimenez-Gomez J.M., Fulop D., Harmer S.L., Maloof J.N., Kliebenstein D.J. Network quantitative trait loci mapping of circadian clock outputs identifies metabolic pathway-to-clock linkages in Arabidopsis. Plant Cell 2011, 23:471-485.
-
(2011)
Plant Cell
, vol.23
, pp. 471-485
-
-
Kerwin, R.E.1
Jimenez-Gomez, J.M.2
Fulop, D.3
Harmer, S.L.4
Maloof, J.N.5
Kliebenstein, D.J.6
-
13
-
-
84861452257
-
Peroxiredoxins are conserved markers of circadian rhythms
-
Edgar R.S., Green E.W., Zhao Y., Van Ooijen G., Olmedo M., Qin X., et al. Peroxiredoxins are conserved markers of circadian rhythms. Nature 2012, 485:459-464.
-
(2012)
Nature
, vol.485
, pp. 459-464
-
-
Edgar, R.S.1
Green, E.W.2
Zhao, Y.3
Van Ooijen, G.4
Olmedo, M.5
Qin, X.6
-
14
-
-
0035800467
-
Reciprocal regulation between TOC1 and LHY/CCA1 within the Arabidopsis circadian clock
-
Alabadí D., Oyama T., Yanovsky M.J., Harmon F.G., Más P., Kay S.A. Reciprocal regulation between TOC1 and LHY/CCA1 within the Arabidopsis circadian clock. Science 2001, 293:880-883.
-
(2001)
Science
, vol.293
, pp. 880-883
-
-
Alabadí, D.1
Oyama, T.2
Yanovsky, M.J.3
Harmon, F.G.4
Más, P.5
Kay, S.A.6
-
15
-
-
77952919484
-
Pseudo-response regulators 9, 7 and 5 are transcriptional repressors in the Arabidopsis circadian clock
-
Nakamichi N., Kiba T., Henriques R., Mizuno T., Chua N.-H., Sakakibara H. Pseudo-response regulators 9, 7 and 5 are transcriptional repressors in the Arabidopsis circadian clock. Plant Cell 2010, 22:594-605.
-
(2010)
Plant Cell
, vol.22
, pp. 594-605
-
-
Nakamichi, N.1
Kiba, T.2
Henriques, R.3
Mizuno, T.4
Chua, N.-H.5
Sakakibara, H.6
-
16
-
-
84857383458
-
Arabidopsis circadian clock protein, TOC1, is a DNA-binding transcription factor
-
Gendron J.M., Pruneda-Paz J.L., Doherty C.J., Gross A.M., Kang S.E., Kay S.A. Arabidopsis circadian clock protein, TOC1, is a DNA-binding transcription factor. Proceedings of the National Academy of Sciences of the United States of America 2012, 109:3167-3172.
-
(2012)
Proceedings of the National Academy of Sciences of the United States of America
, vol.109
, pp. 3167-3172
-
-
Gendron, J.M.1
Pruneda-Paz, J.L.2
Doherty, C.J.3
Gross, A.M.4
Kang, S.E.5
Kay, S.A.6
-
17
-
-
84859508042
-
Mapping the core of the Arabidopsis circadian clock defines the network structure of the oscillator
-
Huang W., Pérez-García P., Pokhilko A., Millar A.J., Antoshechkin I., Riechmann J.L., et al. Mapping the core of the Arabidopsis circadian clock defines the network structure of the oscillator. Science 2012, 336:75-79.
-
(2012)
Science
, vol.336
, pp. 75-79
-
-
Huang, W.1
Pérez-García, P.2
Pokhilko, A.3
Millar, A.J.4
Antoshechkin, I.5
Riechmann, J.L.6
-
18
-
-
34548813657
-
ZEITLUPE is a circadian photoreceptor stabilized by GIGANTEA in blue light
-
Kim W.-Y., Fujiwara S., Suh S.-S., Kim J., Kim Y., Han L., et al. ZEITLUPE is a circadian photoreceptor stabilized by GIGANTEA in blue light. Nature 2007, 449:356-360.
-
(2007)
Nature
, vol.449
, pp. 356-360
-
-
Kim, W.-Y.1
Fujiwara, S.2
Suh, S.-S.3
Kim, J.4
Kim, Y.5
Han, L.6
-
19
-
-
79960621365
-
The ELF4-ELF3-LUX complex links the circadian clock to diurnal control of hypocotyl growth
-
Nusinow D.A., Helfer A., Hamilton E.E., King J.J., Imaizumi T., Schultz T.F., et al. The ELF4-ELF3-LUX complex links the circadian clock to diurnal control of hypocotyl growth. Nature 2011, 475:398-402.
-
(2011)
Nature
, vol.475
, pp. 398-402
-
-
Nusinow, D.A.1
Helfer, A.2
Hamilton, E.E.3
King, J.J.4
Imaizumi, T.5
Schultz, T.F.6
-
20
-
-
84859043500
-
EARLY FLOWERING4 recruitment of EARLY FLOWERING3 in the nucleus sustains the Arabidopsis circadian clock
-
Herrero E., Kolmos E., Bujdoso N., Yuan Y., Wang M., Berns M.C., et al. EARLY FLOWERING4 recruitment of EARLY FLOWERING3 in the nucleus sustains the Arabidopsis circadian clock. Plant Cell 2012, 24:428-443.
-
(2012)
Plant Cell
, vol.24
, pp. 428-443
-
-
Herrero, E.1
Kolmos, E.2
Bujdoso, N.3
Yuan, Y.4
Wang, M.5
Berns, M.C.6
-
22
-
-
84879185726
-
Beyond Arabidopsis: the circadian clock in non-model plant species
-
McClung C.R. Beyond Arabidopsis: the circadian clock in non-model plant species. Seminars in Cell and Developmental Biology 2013, 24:430-436.
-
(2013)
Seminars in Cell and Developmental Biology
, vol.24
, pp. 430-436
-
-
McClung, C.R.1
-
23
-
-
57849139821
-
The circadian clock in Arabidopsis roots is a simplified slave version of the clock in shoots
-
James A.B., Monreal J.A., Nimmo G.A., Kelly C.L., Herzyk P., Jenkins G.I., et al. The circadian clock in Arabidopsis roots is a simplified slave version of the clock in shoots. Science 2008, 322:1832-1835.
-
(2008)
Science
, vol.322
, pp. 1832-1835
-
-
James, A.B.1
Monreal, J.A.2
Nimmo, G.A.3
Kelly, C.L.4
Herzyk, P.5
Jenkins, G.I.6
-
24
-
-
37849047792
-
PRR3 is a vascular regulator of TOC1 stability in the Arabidopsis circadian clock
-
Para A., Farré E.M., Imaizumi T., Pruneda-Paz J.L., Harmon F.G., Kay S.A. PRR3 is a vascular regulator of TOC1 stability in the Arabidopsis circadian clock. Plant Cell 2007, 19:3462-3473.
-
(2007)
Plant Cell
, vol.19
, pp. 3462-3473
-
-
Para, A.1
Farré, E.M.2
Imaizumi, T.3
Pruneda-Paz, J.L.4
Harmon, F.G.5
Kay, S.A.6
-
25
-
-
0028817878
-
Circadian oscillations of cytosolic and chloroplastic free calcium in plants
-
Johnson C.H., Knight M.R., Kondo T., Masson P., Sedbrook J., Haley A., et al. Circadian oscillations of cytosolic and chloroplastic free calcium in plants. Science 1995, 269:1863-1865.
-
(1995)
Science
, vol.269
, pp. 1863-1865
-
-
Johnson, C.H.1
Knight, M.R.2
Kondo, T.3
Masson, P.4
Sedbrook, J.5
Haley, A.6
-
26
-
-
33744515807
-
Circadian orchestration of the hepatic proteome
-
Reddy A.B., Karp N.A., Maywood E.S., Sage E.A., Deery M., O'Neill J.S., et al. Circadian orchestration of the hepatic proteome. Current Biology 2006, 16:1107-1115.
-
(2006)
Current Biology
, vol.16
, pp. 1107-1115
-
-
Reddy, A.B.1
Karp, N.A.2
Maywood, E.S.3
Sage, E.A.4
Deery, M.5
O'Neill, J.S.6
-
27
-
-
82555185702
-
Cross-talk between the cellular redox state and the circadian system in Neurosporra
-
Yoshida Y., Iigusa H., Wang N., Hasunuma K. Cross-talk between the cellular redox state and the circadian system in Neurosporra. PLoS ONE 2011, 6:e28227.
-
(2011)
PLoS ONE
, vol.6
-
-
Yoshida, Y.1
Iigusa, H.2
Wang, N.3
Hasunuma, K.4
-
28
-
-
0014968186
-
Circadian variation in ATP content in the chloroplasts of Acetabularia mediterranea
-
Vanden Driessche T. Circadian variation in ATP content in the chloroplasts of Acetabularia mediterranea. Biochimica et Biophysica Acta 1970, 205:526-528.
-
(1970)
Biochimica et Biophysica Acta
, vol.205
, pp. 526-528
-
-
Vanden Driessche, T.1
-
29
-
-
0022253422
-
Biochemical modeling of an autonomously oscillatory circadian clock in Euglena
-
Goto K., Laval-Martin D., Leland N. Biochemical modeling of an autonomously oscillatory circadian clock in Euglena. Advancement of Science 1985, 228:128.
-
(1985)
Advancement of Science
, vol.228
, pp. 128
-
-
Goto, K.1
Laval-Martin, D.2
Leland, N.3
-
30
-
-
79251566511
-
Circadian clocks in human red blood cells
-
O'Neill J.S., Reddy A.B. Circadian clocks in human red blood cells. Nature 2011, 469:498-503.
-
(2011)
Nature
, vol.469
, pp. 498-503
-
-
O'Neill, J.S.1
Reddy, A.B.2
-
31
-
-
79251539603
-
Circadian rhythms persist without transcription in a eukaryote
-
O'Neill J.S., Van Ooijen G., Dixon L.E., Troein C., Corellou F., Bouget F.-Y., et al. Circadian rhythms persist without transcription in a eukaryote. Nature 2011, 469:554-558.
-
(2011)
Nature
, vol.469
, pp. 554-558
-
-
O'Neill, J.S.1
Van Ooijen, G.2
Dixon, L.E.3
Troein, C.4
Corellou, F.5
Bouget, F.-Y.6
-
32
-
-
20844461135
-
Obesity and metabolic syndrome in circadian Clock mutant mice
-
Turek F.W., Joshu C., Kohsaka A., Lin E., Ivanova G., McDearmon E., et al. Obesity and metabolic syndrome in circadian Clock mutant mice. Science 2005, 308:1043-1045.
-
(2005)
Science
, vol.308
, pp. 1043-1045
-
-
Turek, F.W.1
Joshu, C.2
Kohsaka, A.3
Lin, E.4
Ivanova, G.5
McDearmon, E.6
-
33
-
-
14044264801
-
BMAL1 and CLOCK, two essential components of the circadian clock, are involved in glucose homeostasis
-
Rudic R.D., McNamara P., Curtis A.-M., Boston R.C., Panda S., Hogenesch J.B., et al. BMAL1 and CLOCK, two essential components of the circadian clock, are involved in glucose homeostasis. PLoS Biology 2004, 2:e377.
-
(2004)
PLoS Biology
, vol.2
-
-
Rudic, R.D.1
McNamara, P.2
Curtis, A.-M.3
Boston, R.C.4
Panda, S.5
Hogenesch, J.B.6
-
34
-
-
75749086085
-
New genetic loci implicated in fasting glucose homeostasis and their impact on type 2 diabetes risk
-
Dupuis J., Langenberg C., Prokopenko I., Saxena R., Soranzo N., Jackson A.U., et al. New genetic loci implicated in fasting glucose homeostasis and their impact on type 2 diabetes risk. Nat Genetics 2010, 42:105-116.
-
(2010)
Nat Genetics
, vol.42
, pp. 105-116
-
-
Dupuis, J.1
Langenberg, C.2
Prokopenko, I.3
Saxena, R.4
Soranzo, N.5
Jackson, A.U.6
-
35
-
-
84859228435
-
Circadian gene variants and susceptibility to type 2 diabetes: a pilot study
-
Kelly M.A., Rees S.D., Hydrie M.Z.I., Shera A.S., Bellary S., O'Hare J.P., et al. Circadian gene variants and susceptibility to type 2 diabetes: a pilot study. PLoS ONE 2012, 7:e32670.
-
(2012)
PLoS ONE
, vol.7
-
-
Kelly, M.A.1
Rees, S.D.2
Hydrie, M.Z.I.3
Shera, A.S.4
Bellary, S.5
O'Hare, J.P.6
-
36
-
-
18444414586
-
Coordinated transcription of key pathways in the mouse by the circadian clock
-
Panda S., Antoch M.P., Miller B.H., Su A.I., Schook A.B., Straume M., et al. Coordinated transcription of key pathways in the mouse by the circadian clock. Cell 2002, 109:307-320.
-
(2002)
Cell
, vol.109
, pp. 307-320
-
-
Panda, S.1
Antoch, M.P.2
Miller, B.H.3
Su, A.I.4
Schook, A.B.5
Straume, M.6
-
37
-
-
33747157406
-
Nuclear receptor expression links the circadian clock to metabolism
-
Yang X., Downes M., Yu R.T., Bookout A.L., He W., Straume M., et al. Nuclear receptor expression links the circadian clock to metabolism. Cell 2006, 126:801-810.
-
(2006)
Cell
, vol.126
, pp. 801-810
-
-
Yang, X.1
Downes, M.2
Yu, R.T.3
Bookout, A.L.4
He, W.5
Straume, M.6
-
38
-
-
37249086610
-
Rev-erb alpha, a heme sensor that coordinates metabolic and circadian pathways
-
Yin L., Wu N., Curtin J.C., Qatanani M., Szwergold N.R., Reid R.A., et al. Rev-erb alpha, a heme sensor that coordinates metabolic and circadian pathways. Science 2007, 318:1786-1789.
-
(2007)
Science
, vol.318
, pp. 1786-1789
-
-
Yin, L.1
Wu, N.2
Curtin, J.C.3
Qatanani, M.4
Szwergold, N.R.5
Reid, R.A.6
-
39
-
-
79952529158
-
A circadian rhythm orchestrated by histone deacetylase 3 controls hepatic lipid metabolism
-
Feng D., Liu T., Sun Z., Bugge A., Mullican S.E., Alenghat T., et al. A circadian rhythm orchestrated by histone deacetylase 3 controls hepatic lipid metabolism. Science 2011, 331:1315-1319.
-
(2011)
Science
, vol.331
, pp. 1315-1319
-
-
Feng, D.1
Liu, T.2
Sun, Z.3
Bugge, A.4
Mullican, S.E.5
Alenghat, T.6
-
40
-
-
84860264490
-
Regulation of circadian behaviour and metabolism by REV-ERB-α and REV-ERB-β
-
Cho H., Zhao X., Hatori M., Yu R.T., Barish G.D., Lam M.T., et al. Regulation of circadian behaviour and metabolism by REV-ERB-α and REV-ERB-β. Nature 2012, 485:123-127.
-
(2012)
Nature
, vol.485
, pp. 123-127
-
-
Cho, H.1
Zhao, X.2
Hatori, M.3
Yu, R.T.4
Barish, G.D.5
Lam, M.T.6
-
41
-
-
77957821693
-
Cryptochrome mediates circadian regulation of cAMP signaling and hepatic gluconeogenesis
-
Zhang E.E., Liu Y., Dentin R., Pongsawakul P.Y., Liu A.C., Hirota T., et al. Cryptochrome mediates circadian regulation of cAMP signaling and hepatic gluconeogenesis. Nature Medicine 2010, 16:1152-1156.
-
(2010)
Nature Medicine
, vol.16
, pp. 1152-1156
-
-
Zhang, E.E.1
Liu, Y.2
Dentin, R.3
Pongsawakul, P.Y.4
Liu, A.C.5
Hirota, T.6
-
42
-
-
84255206549
-
Cryptochromes mediate rhythmic repression of the glucocorticoid receptor
-
Lamia K.A., Papp S.J., Yu R.T., Barish G.D., Uhlenhaut N.H., Jonker J.W., et al. Cryptochromes mediate rhythmic repression of the glucocorticoid receptor. Nature 2011, 480:552-556.
-
(2011)
Nature
, vol.480
, pp. 552-556
-
-
Lamia, K.A.1
Papp, S.J.2
Yu, R.T.3
Barish, G.D.4
Uhlenhaut, N.H.5
Jonker, J.W.6
-
43
-
-
84865558040
-
Identification of small molecule activators of cryptochrome
-
Hirota T., Lee J.W., St John P.C., Sawa M., Iwaisako K., Noguchi T., et al. Identification of small molecule activators of cryptochrome. Science 2012, 337:1094-1097.
-
(2012)
Science
, vol.337
, pp. 1094-1097
-
-
Hirota, T.1
Lee, J.W.2
St John, P.C.3
Sawa, M.4
Iwaisako, K.5
Noguchi, T.6
-
45
-
-
78649592081
-
Interaction with diurnal and circadian regulation results in dynamic metabolic and transcriptional changes during cold acclimation in Arabidopsis
-
Espinoza C., Degenkolbe T., Caldana C., Zuther E., Leisse A., Willmitzer L., et al. Interaction with diurnal and circadian regulation results in dynamic metabolic and transcriptional changes during cold acclimation in Arabidopsis. PLoS ONE 2010, 5:e14101.
-
(2010)
PLoS ONE
, vol.5
-
-
Espinoza, C.1
Degenkolbe, T.2
Caldana, C.3
Zuther, E.4
Leisse, A.5
Willmitzer, L.6
-
46
-
-
34547477624
-
Coordination of carbon supply and plant growth
-
Smith A.M., Stitt M. Coordination of carbon supply and plant growth. Plant, Cell and Environment 2007, 30:1126-1149.
-
(2007)
Plant, Cell and Environment
, vol.30
, pp. 1126-1149
-
-
Smith, A.M.1
Stitt, M.2
-
47
-
-
66349124175
-
Impact of clock-associated Arabidopsis pseudo-response regulators in metabolic coordination
-
Fukushima A., Kusano M., Nakamichi N., Kobayashi M., Hayashi N., Sakakibara H., et al. Impact of clock-associated Arabidopsis pseudo-response regulators in metabolic coordination. Proceedings of the National Academy of Sciences of the United States of America 2009, 106:7251-7256.
-
(2009)
Proceedings of the National Academy of Sciences of the United States of America
, vol.106
, pp. 7251-7256
-
-
Fukushima, A.1
Kusano, M.2
Nakamichi, N.3
Kobayashi, M.4
Hayashi, N.5
Sakakibara, H.6
-
48
-
-
84867656050
-
Transcriptional repressor PRR5 directly regulates clock-output pathways
-
Nakamichi N., Kiba T., Kamioka M., Suzuki T., Yamashino T., Higashiyama T., et al. Transcriptional repressor PRR5 directly regulates clock-output pathways. Proceedings of the National Academy of Sciences of the United States of America 2012, 109:17123-17128.
-
(2012)
Proceedings of the National Academy of Sciences of the United States of America
, vol.109
, pp. 17123-17128
-
-
Nakamichi, N.1
Kiba, T.2
Kamioka, M.3
Suzuki, T.4
Yamashino, T.5
Higashiyama, T.6
-
49
-
-
0033637383
-
Restricted feeding uncouples circadian oscillators in peripheral tissues from the central pacemaker in the suprachiasmatic nucleus
-
Damiola F., Le Minh N., Preitner N., Kornmann B., Fleury-Olela F., Schibler U. Restricted feeding uncouples circadian oscillators in peripheral tissues from the central pacemaker in the suprachiasmatic nucleus. Genes and Development 2000, 14:2950-2961.
-
(2000)
Genes and Development
, vol.14
, pp. 2950-2961
-
-
Damiola, F.1
Le Minh, N.2
Preitner, N.3
Kornmann, B.4
Fleury-Olela, F.5
Schibler, U.6
-
50
-
-
0035910387
-
Entrainment of the circadian clock in the liver by feeding
-
Stokkan K.A., Yamazaki S., Tei H., Sakaki Y., Menaker M. Entrainment of the circadian clock in the liver by feeding. Science 2001, 291:490-493.
-
(2001)
Science
, vol.291
, pp. 490-493
-
-
Stokkan, K.A.1
Yamazaki, S.2
Tei, H.3
Sakaki, Y.4
Menaker, M.5
-
51
-
-
75849136095
-
Time of feeding and the intrinsic circadian clock drive rhythms in hepatic gene expression
-
Vollmers C., Gill S., DiTacchio L., Pulivarthy S.R., Le H.D., Panda S. Time of feeding and the intrinsic circadian clock drive rhythms in hepatic gene expression. Science 2009, 106:21453-21458.
-
(2009)
Science
, vol.106
, pp. 21453-21458
-
-
Vollmers, C.1
Gill, S.2
DiTacchio, L.3
Pulivarthy, S.R.4
Le, H.D.5
Panda, S.6
-
52
-
-
35548930677
-
High-fat diet disrupts behavioral and molecular circadian rhythms in mice
-
Kohsaka A., Laposky A.D., Ramsey K.M., Estrada C., Joshu C., Kobayashi Y., et al. High-fat diet disrupts behavioral and molecular circadian rhythms in mice. Cell Metabolism 2007, 6:414-421.
-
(2007)
Cell Metabolism
, vol.6
, pp. 414-421
-
-
Kohsaka, A.1
Laposky, A.D.2
Ramsey, K.M.3
Estrada, C.4
Joshu, C.5
Kobayashi, Y.6
-
53
-
-
70350128135
-
AMPK regulates the circadian clock by cryptochrome phosphorylation and degradation
-
Lamia K.A., Sachdeva U.M., DiTacchio L., Williams E.C., Alvarez J.G., Egan D.F., et al. AMPK regulates the circadian clock by cryptochrome phosphorylation and degradation. Science 2009, 326:437-440.
-
(2009)
Science
, vol.326
, pp. 437-440
-
-
Lamia, K.A.1
Sachdeva, U.M.2
DiTacchio, L.3
Williams, E.C.4
Alvarez, J.G.5
Egan, D.F.6
-
54
-
-
33644816031
-
Sugars and circadian regulation make major contributions to the global regulation of diurnal gene expression in Arabidopsis
-
Bläsing O.E., Gibon Y., Günther M., Höhne M., Morcuende R., Osuna D., et al. Sugars and circadian regulation make major contributions to the global regulation of diurnal gene expression in Arabidopsis. Plant Cell 2005, 17:3257-3281.
-
(2005)
Plant Cell
, vol.17
, pp. 3257-3281
-
-
Bläsing, O.E.1
Gibon, Y.2
Günther, M.3
Höhne, M.4
Morcuende, R.5
Osuna, D.6
-
55
-
-
55549092089
-
Sensitive to freezing6 integrates cellular and environmental inputs to the plant circadian clock
-
Knight H., Thomson A.J.W., McWatters H.G. Sensitive to freezing6 integrates cellular and environmental inputs to the plant circadian clock. Plant Physiology 2008, 148:293-303.
-
(2008)
Plant Physiology
, vol.148
, pp. 293-303
-
-
Knight, H.1
Thomson, A.J.W.2
McWatters, H.G.3
-
56
-
-
34249826038
-
Purification of a plant mediator from Arabidopsis thaliana identifies PFT1 as the Med25 subunit
-
Bäckström S., Elfving N., Nilsson R., Wingsle G., Björklund S. Purification of a plant mediator from Arabidopsis thaliana identifies PFT1 as the Med25 subunit. Molecular Cell 2007, 26:717-729.
-
(2007)
Molecular Cell
, vol.26
, pp. 717-729
-
-
Bäckström, S.1
Elfving, N.2
Nilsson, R.3
Wingsle, G.4
Björklund, S.5
-
57
-
-
79953169515
-
The circadian oscillator gene GIGANTEA mediates a long-term response of the Arabidopsis thaliana circadian clock to sucrose
-
Dalchau N., Baek S.J., Briggs H.M., Robertson F.C., Dodd A.N., Gardner M.J., et al. The circadian oscillator gene GIGANTEA mediates a long-term response of the Arabidopsis thaliana circadian clock to sucrose. Proceedings of the National Academy of Sciences of the United States of America 2011, 108:5104-5109.
-
(2011)
Proceedings of the National Academy of Sciences of the United States of America
, vol.108
, pp. 5104-5109
-
-
Dalchau, N.1
Baek, S.J.2
Briggs, H.M.3
Robertson, F.C.4
Dodd, A.N.5
Gardner, M.J.6
-
58
-
-
0029187334
-
Monogenic recessive mutations causing both late floral initiation and excess starch accumulation in Arabidopsis
-
Eimert K., Wang S.-M., Lue W.-I., Chen J. Monogenic recessive mutations causing both late floral initiation and excess starch accumulation in Arabidopsis. Plant Cell 1995, 7:1703-1712.
-
(1995)
Plant Cell
, vol.7
, pp. 1703-1712
-
-
Eimert, K.1
Wang, S.-M.2
Lue, W.-I.3
Chen, J.4
-
59
-
-
79959845049
-
Os-GIGANTEA confers robust diurnal rhythms on the global transcriptome of rice in the field
-
Izawa T., Mihara M., Suzuki Y., Gupta M., Itoh H., Nagano A.J., et al. Os-GIGANTEA confers robust diurnal rhythms on the global transcriptome of rice in the field. Plant Cell 2011, 23:1741-1755.
-
(2011)
Plant Cell
, vol.23
, pp. 1741-1755
-
-
Izawa, T.1
Mihara, M.2
Suzuki, Y.3
Gupta, M.4
Itoh, H.5
Nagano, A.J.6
-
61
-
-
0037432789
-
Role of the Arabidopsis glucose sensor HXK1 in nutrient, light, and hormonal signaling
-
Moore B., Zhou L., Rolland F., Hall Q., Cheng W.-H., Liu Y.-X., et al. Role of the Arabidopsis glucose sensor HXK1 in nutrient, light, and hormonal signaling. Science 2003, 300:332-336.
-
(2003)
Science
, vol.300
, pp. 332-336
-
-
Moore, B.1
Zhou, L.2
Rolland, F.3
Hall, Q.4
Cheng, W.-H.5
Liu, Y.-X.6
-
62
-
-
34548190012
-
A central integrator of transcription networks in plant stress and energy signalling
-
Baena-González E., Rolland F., Thevelein J.M., Sheen J. A central integrator of transcription networks in plant stress and energy signalling. Nature 2007, 448:938-942.
-
(2007)
Nature
, vol.448
, pp. 938-942
-
-
Baena-González, E.1
Rolland, F.2
Thevelein, J.M.3
Sheen, J.4
-
63
-
-
4344670029
-
AtRGS1 function in Arabidopsis thaliana
-
Chen J.-G., Jones A.M. AtRGS1 function in Arabidopsis thaliana. Methods in Enzymology 2004, 389:338-350.
-
(2004)
Methods in Enzymology
, vol.389
, pp. 338-350
-
-
Chen, J.-G.1
Jones, A.M.2
-
64
-
-
78651453820
-
Light-driven changes in energy metabolism directly entrain the cyanobacterial circadian oscillator
-
Rust M.J., Golden S.S., O'Shea E.K. Light-driven changes in energy metabolism directly entrain the cyanobacterial circadian oscillator. Science 2011, 331:220-223.
-
(2011)
Science
, vol.331
, pp. 220-223
-
-
Rust, M.J.1
Golden, S.S.2
O'Shea, E.K.3
-
65
-
-
58849163578
-
Ferritins control interaction between iron homeostasis and oxidative stress in Arabidopsis
-
Ravet K., Touraine B., Boucherez J., Briat J.-F., Gaymard F., Cellier F. Ferritins control interaction between iron homeostasis and oxidative stress in Arabidopsis. Plant Journal 2009, 57:400-412.
-
(2009)
Plant Journal
, vol.57
, pp. 400-412
-
-
Ravet, K.1
Touraine, B.2
Boucherez, J.3
Briat, J.-F.4
Gaymard, F.5
Cellier, F.6
-
66
-
-
73649085487
-
Regulation of iron homeostasis in Arabidopsis thaliana by the clock regulator time for coffee
-
Duc C., Cellier F., Lobréaux S., Briat J.-F., Gaymard F. Regulation of iron homeostasis in Arabidopsis thaliana by the clock regulator time for coffee. Journal of Biological Chemistry 2009, 284:36271-36281.
-
(2009)
Journal of Biological Chemistry
, vol.284
, pp. 36271-36281
-
-
Duc, C.1
Cellier, F.2
Lobréaux, S.3
Briat, J.-F.4
Gaymard, F.5
-
67
-
-
10744221727
-
The TIME FOR COFFEE gene maintains the amplitude and timing of Arabidopsis circadian clocks
-
Hall A., Bastow R.M., Davis S.J., Hanano S., Mcwatters H.G., Hibberd V., et al. The TIME FOR COFFEE gene maintains the amplitude and timing of Arabidopsis circadian clocks. Plant Cell 2003, 15:2719-2729.
-
(2003)
Plant Cell
, vol.15
, pp. 2719-2729
-
-
Hall, A.1
Bastow, R.M.2
Davis, S.J.3
Hanano, S.4
Mcwatters, H.G.5
Hibberd, V.6
-
68
-
-
0032103771
-
Oxidative stress tolerance and longevity in Arabidopsis: the late-flowering mutant gigantea is tolerant to paraquat
-
Kurepa J., Smalle J., Van Montagu M., Inzé D. Oxidative stress tolerance and longevity in Arabidopsis: the late-flowering mutant gigantea is tolerant to paraquat. Plant Journal 1998, 14:759-764.
-
(1998)
Plant Journal
, vol.14
, pp. 759-764
-
-
Kurepa, J.1
Smalle, J.2
Van Montagu, M.3
Inzé, D.4
-
69
-
-
35848934561
-
Conditional oxidative stress responses in the Arabidopsis photorespiratory mutant cat2 demonstrate that redox state is a key modulator of daylength-dependent gene expression, and define photoperiod as a crucial factor in the regulation of H2O2-induced cell death
-
Queval G., Issakidis-Bourguet E., Hoeberichts F.A., Vandorpe M., Gakière B., Vanacker H., et al. Conditional oxidative stress responses in the Arabidopsis photorespiratory mutant cat2 demonstrate that redox state is a key modulator of daylength-dependent gene expression, and define photoperiod as a crucial factor in the regulation of H2O2-induced cell death. Plant Journal 2007, 52:640-657.
-
(2007)
Plant Journal
, vol.52
, pp. 640-657
-
-
Queval, G.1
Issakidis-Bourguet, E.2
Hoeberichts, F.A.3
Vandorpe, M.4
Gakière, B.5
Vanacker, H.6
-
70
-
-
0036142055
-
Detection of poly(ADP-ribose) polymerase activation in oxidatively stressed cells and tissues using biotinylated NAD substrate
-
Bakondi E., Bai P., Szabo E., Hunyadi J., Gergely P., Szabo C., et al. Detection of poly(ADP-ribose) polymerase activation in oxidatively stressed cells and tissues using biotinylated NAD substrate. Journal of Histochemistry and Cytochemistry 2002, 50:91-98.
-
(2002)
Journal of Histochemistry and Cytochemistry
, vol.50
, pp. 91-98
-
-
Bakondi, E.1
Bai, P.2
Szabo, E.3
Hunyadi, J.4
Gergely, P.5
Szabo, C.6
-
71
-
-
0034687694
-
Silent information regulator 2 family of NAD-dependent histone/protein deacetylases generates a unique product, 1-O-acetyl-ADP-ribose
-
Tanner K.G., Landry J., Sternglanz R., Denu J.M. Silent information regulator 2 family of NAD-dependent histone/protein deacetylases generates a unique product, 1-O-acetyl-ADP-ribose. Proceedings of the National Academy of Sciences of the United States of America 2000, 97:14178-14182.
-
(2000)
Proceedings of the National Academy of Sciences of the United States of America
, vol.97
, pp. 14178-14182
-
-
Tanner, K.G.1
Landry, J.2
Sternglanz, R.3
Denu, J.M.4
-
72
-
-
0024496833
-
Structural determination of a cyclic metabolite of NAD+ with intracellular Ca2+-mobilizing activity
-
Lee H.C., Walseth T.F., Bratt G.T., Hayes R.N., Clapper D.L. Structural determination of a cyclic metabolite of NAD+ with intracellular Ca2+-mobilizing activity. Journal of Biological Chemistry 1989, 264:1608-1615.
-
(1989)
Journal of Biological Chemistry
, vol.264
, pp. 1608-1615
-
-
Lee, H.C.1
Walseth, T.F.2
Bratt, G.T.3
Hayes, R.N.4
Clapper, D.L.5
-
73
-
-
65549118773
-
Circadian control of the NAD+ salvage pathway by CLOCK-SIRT1
-
Nakahata Y., Sahar S., Astarita G., Kaluzova M., Sassone-Corsi P. Circadian control of the NAD+ salvage pathway by CLOCK-SIRT1. Science 2009, 324:654-657.
-
(2009)
Science
, vol.324
, pp. 654-657
-
-
Nakahata, Y.1
Sahar, S.2
Astarita, G.3
Kaluzova, M.4
Sassone-Corsi, P.5
-
74
-
-
65549103855
-
Circadian clock feedback cycle through NAMPT-mediated NAD+ biosynthesis
-
Ramsey K.M., Yoshino J., Brace C.S., Abrassart D., Kobayashi Y., Marcheva B., et al. Circadian clock feedback cycle through NAMPT-mediated NAD+ biosynthesis. Science 2009, 324:651-654.
-
(2009)
Science
, vol.324
, pp. 651-654
-
-
Ramsey, K.M.1
Yoshino, J.2
Brace, C.S.3
Abrassart, D.4
Kobayashi, Y.5
Marcheva, B.6
-
75
-
-
33745941115
-
Early steps in the biosynthesis of NAD in Arabidopsis start with Aspartate and occur in the plastid
-
Katoh A., Uenohara K., Akita M., Hashimoto T. Early steps in the biosynthesis of NAD in Arabidopsis start with Aspartate and occur in the plastid. Plant Physiology 2006, 141:851-857.
-
(2006)
Plant Physiology
, vol.141
, pp. 851-857
-
-
Katoh, A.1
Uenohara, K.2
Akita, M.3
Hashimoto, T.4
-
76
-
-
33745587529
-
NAD(P) synthesis and pyridine nucleotide cycling in plants and their potential importance on stress conditions
-
Noctor G., Queval G., Gakière B. NAD(P) synthesis and pyridine nucleotide cycling in plants and their potential importance on stress conditions. Journal of Experimental Botany 2006, 57:1603-1620.
-
(2006)
Journal of Experimental Botany
, vol.57
, pp. 1603-1620
-
-
Noctor, G.1
Queval, G.2
Gakière, B.3
-
77
-
-
19544381343
-
De novo and salvage biosynthetic pathways of pyridine nucleotides and nicotinic acid conjugates in cultured plant cells
-
Ashihara H., Stasolla C., Yin Y., Loukanina N., Thorpe T. De novo and salvage biosynthetic pathways of pyridine nucleotides and nicotinic acid conjugates in cultured plant cells. Plant Sci 2005, 169:107-114.
-
(2005)
Plant Sci
, vol.169
, pp. 107-114
-
-
Ashihara, H.1
Stasolla, C.2
Yin, Y.3
Loukanina, N.4
Thorpe, T.5
-
78
-
-
10944270187
-
The NAD biosynthesis pathway mediated by nicotinamide phosphoribosyltransferase regulates Sir2 activity in mammalian cells
-
Revollo J.R., Grimm A.A., Imai S. The NAD biosynthesis pathway mediated by nicotinamide phosphoribosyltransferase regulates Sir2 activity in mammalian cells. Journal of Biological Chemistry 2004, 279:50754-50763.
-
(2004)
Journal of Biological Chemistry
, vol.279
, pp. 50754-50763
-
-
Revollo, J.R.1
Grimm, A.A.2
Imai, S.3
-
79
-
-
37249077411
-
The Arabidopsis circadian clock incorporates a cADPR-based feedback loop
-
Dodd A.N., Gardner M.J., Hotta C.T., Hubbard K.E., Dalchau N., Love J., et al. The Arabidopsis circadian clock incorporates a cADPR-based feedback loop. Science 2007, 318:1789-1792.
-
(2007)
Science
, vol.318
, pp. 1789-1792
-
-
Dodd, A.N.1
Gardner, M.J.2
Hotta, C.T.3
Hubbard, K.E.4
Dalchau, N.5
Love, J.6
-
80
-
-
77956627087
-
Poly(ADP-ribose) polymerase 1 participates in the phase entrainment of circadian clocks to feeding
-
Asher G., Reinke H., Altmeyer M., Gutierrez-Arcelus M., Hottiger M.O., Schibler U. Poly(ADP-ribose) polymerase 1 participates in the phase entrainment of circadian clocks to feeding. Cell 2010, 142:943-953.
-
(2010)
Cell
, vol.142
, pp. 943-953
-
-
Asher, G.1
Reinke, H.2
Altmeyer, M.3
Gutierrez-Arcelus, M.4
Hottiger, M.O.5
Schibler, U.6
-
82
-
-
0037160097
-
Inhibition of silencing and accelerated aging by nicotinamide, a putative negative regulator of yeast sir2 and human SIRT1
-
Bitterman K.J., Anderson R.M., Cohen H.Y., Latorre-Esteves M., Sinclair D.A. Inhibition of silencing and accelerated aging by nicotinamide, a putative negative regulator of yeast sir2 and human SIRT1. Journal of Biological Chemistry 2002, 277:45099-45107.
-
(2002)
Journal of Biological Chemistry
, vol.277
, pp. 45099-45107
-
-
Bitterman, K.J.1
Anderson, R.M.2
Cohen, H.Y.3
Latorre-Esteves, M.4
Sinclair, D.A.5
-
83
-
-
47749140333
-
SIRT1 regulates circadian clock gene expression through PER2 deacetylation
-
Asher G., Gatfield D., Stratmann M., Reinke H., Dibner C., Kreppel F., et al. SIRT1 regulates circadian clock gene expression through PER2 deacetylation. Cell 2008, 134:317-328.
-
(2008)
Cell
, vol.134
, pp. 317-328
-
-
Asher, G.1
Gatfield, D.2
Stratmann, M.3
Reinke, H.4
Dibner, C.5
Kreppel, F.6
-
84
-
-
0032170409
-
Higher plants possess two structurally different poly(ADP-ribose) polymerases
-
Babiychuk E., Cottrill P.B., Storozhenko S., Fuangthong M., Chen Y., O'Farrell M.K., et al. Higher plants possess two structurally different poly(ADP-ribose) polymerases. Plant Journal 1998, 15:635-645.
-
(1998)
Plant Journal
, vol.15
, pp. 635-645
-
-
Babiychuk, E.1
Cottrill, P.B.2
Storozhenko, S.3
Fuangthong, M.4
Chen, Y.5
O'Farrell, M.K.6
-
86
-
-
0036069642
-
Tej defines a role for poly(ADP-ribosyl)ation in establishing period length of the Arabidopsis circadian oscillator
-
Panda S., Poirier G.G., Kay S.A. tej defines a role for poly(ADP-ribosyl)ation in establishing period length of the Arabidopsis circadian oscillator. Developmental Cell 2002, 3:51-61.
-
(2002)
Developmental Cell
, vol.3
, pp. 51-61
-
-
Panda, S.1
Poirier, G.G.2
Kay, S.A.3
-
87
-
-
0027763586
-
Formation and hydrolysis of cyclic ADP-ribose catalyzed by lymphocyte antigen CD38
-
Howard M., Grimaldi J.C., Bazan J.F., Lund F.E., Santos-Argumedo L., Parkhouse R.M., et al. Formation and hydrolysis of cyclic ADP-ribose catalyzed by lymphocyte antigen CD38. Science 1993, 262:1056-1059.
-
(1993)
Science
, vol.262
, pp. 1056-1059
-
-
Howard, M.1
Grimaldi, J.C.2
Bazan, J.F.3
Lund, F.E.4
Santos-Argumedo, L.5
Parkhouse, R.M.6
-
88
-
-
2342462289
-
ABA activates ADPR cyclase and cADPR induces a subset of ABA-responsive genes in Arabidopsis
-
Sánchez J.-P., Duque P., Chua N.-H. ABA activates ADPR cyclase and cADPR induces a subset of ABA-responsive genes in Arabidopsis. Plant Journal 2004, 38:381-395.
-
(2004)
Plant Journal
, vol.38
, pp. 381-395
-
-
Sánchez, J.-P.1
Duque, P.2
Chua, N.-H.3
-
89
-
-
0029828803
-
Nicotinamide inhibits cyclic ADP-ribose-mediated calcium signalling in sea urchin eggs
-
Sethi J.K., Empson R.M., Galione A. Nicotinamide inhibits cyclic ADP-ribose-mediated calcium signalling in sea urchin eggs. Biochemical Journal 1996, 319:613-617.
-
(1996)
Biochemical Journal
, vol.319
, pp. 613-617
-
-
Sethi, J.K.1
Empson, R.M.2
Galione, A.3
-
90
-
-
0037688038
-
Circadian dynamics of cytosolic and nuclear Ca2+ in single suprachiasmatic nucleus neurons
-
Ikeda M., Sugiyama T., Wallace C.S., Gompf H.S., Yoshioka T., Miyawaki A., et al. Circadian dynamics of cytosolic and nuclear Ca2+ in single suprachiasmatic nucleus neurons. Neuron 2003, 38:253-263.
-
(2003)
Neuron
, vol.38
, pp. 253-263
-
-
Ikeda, M.1
Sugiyama, T.2
Wallace, C.S.3
Gompf, H.S.4
Yoshioka, T.5
Miyawaki, A.6
-
91
-
-
44249094901
-
CAMP-dependent signaling as a core component of the mammalian circadian pacemaker
-
O'Neill J.S., Maywood E.S., Chesham J.E., Takahashi J.S., Hastings M.H. cAMP-dependent signaling as a core component of the mammalian circadian pacemaker. Science 2008, 320:949-953.
-
(2008)
Science
, vol.320
, pp. 949-953
-
-
O'Neill, J.S.1
Maywood, E.S.2
Chesham, J.E.3
Takahashi, J.S.4
Hastings, M.H.5
-
92
-
-
84455180597
-
Altered behavioral and metabolic circadian rhythms in mice with disrupted NAD+ oscillation
-
Sahar S., Nin V., Barbosa M.T., Chini E.N., Sassone-Corsi P. Altered behavioral and metabolic circadian rhythms in mice with disrupted NAD+ oscillation. Aging 2011, 3:794-802.
-
(2011)
Aging
, vol.3
, pp. 794-802
-
-
Sahar, S.1
Nin, V.2
Barbosa, M.T.3
Chini, E.N.4
Sassone-Corsi, P.5
-
93
-
-
79960021841
-
Chronic inhibition of endoplasmic reticulum calcium-release channels and calcium-ATPase lengthens the period of hepatic clock gene Per1
-
Báez-Ruiz A., Díaz-Muñoz M. Chronic inhibition of endoplasmic reticulum calcium-release channels and calcium-ATPase lengthens the period of hepatic clock gene Per1. Journal of Circadian Rhythms 2011, 9:6.
-
(2011)
Journal of Circadian Rhythms
, vol.9
, pp. 6
-
-
Báez-Ruiz, A.1
Díaz-Muñoz, M.2
-
94
-
-
80052899933
-
Genetics of circadian rhythms in mammalian model organisms
-
Lowrey P.L., Takahashi J.S. Genetics of circadian rhythms in mammalian model organisms. Advances in Genetics 2011, 74:175-230.
-
(2011)
Advances in Genetics
, vol.74
, pp. 175-230
-
-
Lowrey, P.L.1
Takahashi, J.S.2
-
95
-
-
79955917087
-
Setting the clock - by nature: circadian rhythm in the fruitfly Drosophila melanogaster
-
Peschel N., Helfrich-Förster C. Setting the clock - by nature: circadian rhythm in the fruitfly Drosophila melanogaster. FEBS Letters 2011, 585:1435-1442.
-
(2011)
FEBS Letters
, vol.585
, pp. 1435-1442
-
-
Peschel, N.1
Helfrich-Förster, C.2
|