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Functional characterization of tomato Sl-IAA3 and Sl-hls genes. Role ...

Functional characterization of tomato Sl-IAA3 and Sl-hls genes. Role ...

CHAPITRE III. HOOKLESS1,

CHAPITRE III. HOOKLESS1, an Integrator of Multiple Signaling Pathways in Arabidopsis Bullen, B.L., Best, T.R., Gregg, M.M., Barsel, S.-E., and Poff, K.L. (1990). A direct screening procedure for gravitropism mutants in Arabidopsis fhaliana (L.) Heynh. Plant Physiol. 93, 525-531. Chory, J., and Peto, C.A. (1990). Mutations in the DET1 gene affect cell-type-specific expression of light-regulated genes and chloro plast development in Arabidopsis. Proc. Natl. Acad. Sci. USA 87, 8776–8780. Chory, J., Nagpal, P. and Peto, C.A. (1991) Phenotypic and genetic analysis of det2, a new mutant that affects light-regulated seedling development in Arabidopsis. Plant Cell 3: 445–459. De Grauwe L, Vandenbussche F, Tietz O, Palme K, Van Der Straeten D.(2005) Auxin, Ethylene and Brassinosteroids: Tripartite Control of Growth in the Arabidopsis Hypocotyl. Plant Cell Physiol. 46(6): 827–836 Evens, M.L. (1991). Gravitropism: lnteraction of sensitivity modulation and effector redistribution. Plant Physiol. 95, 1-5. Guzman, P., and Ecker, J.R. (1990). Exploiting the triple response of Arabidopsis to identify ethylene-related mutants. Plant Cell 2, 513–523. Huq E, Al-Sady B, Hudson M, Kim C, Apel K, Quail PH.(2004) PHYTOCHROME- INTERACTING FACTOR 1 Is a Critical bHLH Regulator of Chlorophyll Biosynthesis Science: 305, 5692, 1937 – 1941. Hou, Y., Von Arnim, A.G., and Deng, X.W. (1993). A new class of Arabidopsis constitutive photomorphogenic genes involved in regu- lating cotyledon development. Plant Cell 5, 329–339. Jang, J.C., Leo´ n, P., Zhou, L., and Sheen, J. (1997). Hexokinase as a sugar sensor in higher plants. Plant Cell 9: 5–19. Kauschmann, A., Jessop, A., Koncz, C., Szekeres, M., Willmitzer, L. and Altmann, T. (1996) Genetic evidence for an essential role of brassinosteroids in plant development. Plant J. 9: 701–713. Kieber, J.J., Rothenberg, M., Roman, G., Feldmann, K.A., and Ecker, J.R. (1993). CTR1, a negative regulator of the ethylene response pathway in Arabidopsis, encodes a member of the raf family of protein kinases. Cell 72, 427–441. King, J.J., Stimart, D.P., Fisher, R.H., and Bleecker, A.B. (1995). A mutation altering auxin homeostasis and plant morphology in Arabidopsis. Plant Cell 7, 2023–2037. Kwok, S.F., Piekos, B., Misera, S., and Deng, X.W. (1996). A complement of ten essential and pleiotropic Arabidopsis COP/DET/FUS genes is necessary for repression of photomorphogenesis in darkness. Plant Physiol 110 731–742 Lehman, A., Black, R., and Ecker, J.R. (1996). HOOKLESS1, an ethylene response gene, is required for differential cell elongation in the Arabidopsis hypocotyl. Cell 85, 183–194. Lincoln, C., Britton, J.H., and Estelle, M. (1990). Growth and development of the axr1 mutants of Arabidopsis. Plant Cell 2, 1071–1080. Li, H., Johnson, P., Stepanova, A., Alonso, J.M. and Ecker, J.R. (2004) Convergence of signaling pathways in the control of differential cell growth in Arabidopsis. Dev. Cell 7: 193–204. Liscum, E., and Hangarter, R.P. (1993). Light-stimulated apical hook opening in wild-type Arabidopsis thaliana seedlings. Plant Physiol.101, 567–572. Ohto, M., Hayashi, S., Sawa, S., Hashimoto-Ohta, A ., and Nakamura, K. (2006) Involvement of HLS1 in Sugar and Auxin Signaling in Arabidopsis LeavesPlant Cell Physiol. 47(12): 1603–1611 99

CHAPITRE III. HOOKLESS1, an Integrator of Multiple Signaling Pathways in Arabidopsis Okada, K., and Shimura, Y. (1992). Aspects of recent developments in mutational studies of plant signaling pathways. Cell70,369-372. Op den Camp R. G. L.,. Przybyla D,. Ochsenbein C,. Laloi C,. Kim C,. Danon A,. Wagner D,. Hideg E,. Gobel C,. Feussner I. (2003) Rapid Induction of Distinct Stress Responses after the Release of Singlet Oxygen in Arabidopsis. Plant Cell 15, 2320-2332 Redei, G.P., Nagy, F., Schell, J. and Koncz, C. (1996). Brassinosteroids rescue the deficiency of CYP90, a cytochrome P450, controlling cell elongation and de-etiolation in Arabidopsis. Cell. 85: 171–182. Reinbothe, S., Reinbothe, C., Apel, K., Lebedev, N. (1996). Evolution of chlorophyll biosynthesis :the challenge to survive photooxidation .Cell. 86, 703-705 Roman, G., Lubarsky, B., Kieber, J.J., Rothenberg, M., and Ecker, J.R. (1995). Genetic analysis of ethylene signal transduction in Arabidopsis thaliana: five novel mutant loci integrated into a stress response pathway. Genetics 139, 1393–1409. Rubenstein, B. (1971). Auxin and red light in the control of the hypocotyls hook opening in beans. Plant Physiol. 49, 640–643. Silk, W.H., and Erickson, R.O. (1978). Kinematics of hypocotyl curvature. Am. J. Bot. 65, 310–319. Szekeres, M., Nemeth, K., Koncz-Kalman, Z., Mathur, J., Kauschmann, A., Altmann, T., Vriezen, W.H., Achard, P., Harberd, N. and Van Der Straeten, D. (2004) Ethylene- mediated enhancement of apical hook formation in etiolated Arabidopsis thaliana seedlings is gibberellin dependent. Plant J. 37: 505–516. Yanagisawa S, SD Yoo, Sheen J (2003). Differential regulation of EIN3 stability by glucose and ethylene signalling in plants. Nature 425. 521-25. Zhao Y, Christensen SK, Fankhauser C, Cashman JR, Cohen JD, Weigel D, Chory J. (2001). A role for flavin monooxygenase-like enzymes in auxin biosynthesis. Science. 291,306-9. Zhou L, Jang JC, Jones TL, Sheen J. (1998) Signal transduction crosstalk revealed by an Arabidopsis glucose-insensitive mutan Proc Natl Acad Sci U S A. 95:10294-10299 100

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