Martine Trevisan

Publications | Mémoires et thèses

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17 publications

2023 | 2022 | 2021 | 2020 | 2019 | 2018 | 2017 | 2016 | 2014 | 2013 | 2012 | 2009 | 2006 |
 
Air channels create a directional light signal to regulate hypocotyl phototropism.
Nawkar G.M., Legris M., Goyal A., Schmid-Siegert E., Fleury J., Mucciolo A., De Bellis D., Trevisan M., Schueler A., Fankhauser C., 2023/11/24. Science, 382 (6673) pp. 935-940. Peer-reviewed.
 
Abscisic acid modulates neighbor proximity-induced leaf hyponasty in Arabidopsis.
Michaud O., Krahmer J., Galbier F., Lagier M., Galvão V.C., Ince Y.Ç., Trevisan M., Knerova J., Dickinson P., Hibberd J.M. et al., 2023/01/02. Plant physiology, 191 (1) pp. 542-557. Peer-reviewed.
A combination of plasma membrane sterol biosynthesis and autophagy is required for shade-induced hypocotyl elongation.
Ince Y.Ç., Krahmer J., Fiorucci A.S., Trevisan M., Galvão V.C., Wigger L., Pradervand S., Fouillen L., Van Delft P., Genva M. et al., 2022/10/10. Nature communications, 13 (1) p. 5659. Peer-reviewed.
Shade suppresses wound-induced leaf repositioning through a mechanism involving PHYTOCHROME KINASE SUBSTRATE (PKS) genes.
Fiorucci A.S., Michaud O., Schmid-Siegert E., Trevisan M., Allenbach Petrolati L., Çaka Ince Y., Fankhauser C., 2022/05. PLoS genetics, 18 (5) pp. e1010213. Peer-reviewed.
Phototropin-mediated perception of light direction in leaves regulates blade flattening.
Legris M., Szarzynska-Erden B.M., Trevisan M., Allenbach Petrolati L., Fankhauser C., 2021/11/03. Plant physiology, 187 (3) pp. 1235-1249. Peer-reviewed.
 
PHYTOCHROME INTERACTING FACTOR 7 is important for early responses to elevated temperature in Arabidopsis seedlings.
Fiorucci A.S., Galvão V.C., Ince Y.Ç., Boccaccini A., Goyal A., Allenbach Petrolati L., Trevisan M., Fankhauser C., 2020/04. The New phytologist, 226 (1) pp. 50-58. Peer-reviewed.
PIF transcription factors link a neighbor threat cue to accelerated reproduction in Arabidopsis.
Galvāo V.C., Fiorucci A.S., Trevisan M., Franco-Zorilla J.M., Goyal A., Schmid-Siegert E., Solano R., Fankhauser C., 2019/09/05. Nature communications, 10 (1) p. 4005. Peer-reviewed.
A phosphorylation switch turns a positive regulator of phototropism into an inhibitor of the process.
Schumacher P., Demarsy E., Waridel P., Petrolati L.A., Trevisan M., Fankhauser C., 2018/06/19. Nature communications, 9 (1) p. 2403. Peer-reviewed.
UV-B Perceived by the UVR8 Photoreceptor Inhibits Plant Thermomorphogenesis.
Hayes S., Sharma A., Fraser D.P., Trevisan M., Cragg-Barber C.K., Tavridou E., Fankhauser C., Jenkins G.I., Franklin K.A., 2017/01/09. Current biology, 27 (1) pp. 120-127. Peer-reviewed.
Neighbor Detection Induces Organ-Specific Transcriptomes, Revealing Patterns Underlying Hypocotyl-Specific Growth.
Kohnen M.V., Schmid-Siegert E., Trevisan M., Petrolati L.A., Sénéchal F., Müller-Moulé P., Maloof J., Xenarios I., Fankhauser C., 2016/12. The Plant cell, 28 (12) pp. 2889-2904. Peer-reviewed.
Light intensity modulates the regulatory network of the shade avoidance response in Arabidopsis.
Hersch M., Lorrain S., de Wit M., Trevisan M., Ljung K., Bergmann S., Fankhauser C., 2014. Proceedings of the National Academy of Sciences of the United States of America, 111 (17) pp. 6515-6520. Peer-reviewed.
Conditional Involvement of CONSTITUTIVE PHOTOMORPHOGENIC1 in the Degradation of Phytochrome A.
Debrieux D., Trevisan M., Fankhauser C., 2013. Plant Physiology, 161 (4) pp. 2136-2145.
 
D6PK AGCVIII Kinases Are Required for Auxin Transport and Phototropic Hypocotyl Bending in Arabidopsis.
Willige B.C., Ahlers S., Zourelidou M., Barbosa I.C., Demarsy E., Trevisan M., Davis P.A., Roelfsema M.R., Hangarter R., Fankhauser C. et al., 2013. Plant Cell, 25 (5) pp. 1674-1688.
Nuclear phytochrome a signaling promotes phototropism in Arabidopsis.
Kami C., Hersch M., Trevisan M., Genoud T., Hiltbrunner A., Bergmann S., Fankhauser C., 2012. Plant Cell, 24 (2) pp. 566-576.
Phytochrome interacting factors 4 and 5 control seedling growth in changing light conditions by directly controlling auxin signaling.
Hornitschek P., Kohnen M.V., Lorrain S., Rougemont J., Ljung K., López-Vidriero I., Franco-Zorrilla J.M., Solano R., Trevisan M., Pradervand S. et al., 2012. Plant Journal, 71 (5) pp. 699-711.
Phytochrome interacting factors 4 and 5 redundantly limit seedling de-etiolation in continuous far-red light.
Lorrain S., Trevisan M., Pradervand S., Fankhauser C., 2009. The Plant Journal, 60 (3) pp. 449-461. Peer-reviewed.
 
PHYTOCHROME KINASE SUBSTRATE 1 is a phototropin 1 binding protein required for phototropism.
Lariguet P., Schepens I., Hodgson D., Pedmale U.V., Trevisan M., Kami C., de Carbonnel M., Alonso J.M., Ecker J.R., Liscum E. et al., 2006. Proceedings of the National Academy of Sciences of the United States of America, 103 (26) pp. 10134-10139. Peer-reviewed.
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