K. Akashi, N. Nishimura, Y. Ishida, and A. Yokota, Potent hydroxyl radical-scavenging activity of drought-induced type-2 metallothionein in wild watermelon, Biochem Biophys Res Commun, vol.323, pp.72-78, 2004.

G. Aussenac, Interactions between forest stands and microclimate: ecophysiological aspects and consequences for silviculture, Ann Sci, vol.57, pp.287-301, 2000.
URL : https://hal.archives-ouvertes.fr/hal-00883349

D. Bartels and E. Souer, Molecular responses of higher plants to dehydration, Topics in Current Genetics: Plant Response to Abiotic Stress, vol.4, pp.9-38, 2003.

L. Bentsink, C. Alonso-blanco, D. Vreugdenhil, K. Tesnier, S. Groot et al., Genetic analysis of seed-soluble oligosaccharides in relation to seed storability of Arabidopsis, Plant Physiol, vol.124, pp.1595-1604, 2000.

C. Blö-dner, A. Majcherczyk, U. Kü-es, and A. Polle, Mild drought stress affects the proteome of spruce needles, Tree Physiol, 2007.

J. S. Boyer, A. J. Cavalieri, and E. D. Schulze, Control of the rate of cell enlargement: excision, wall relaxation, and growth-induced water potentials, Planta, vol.163, pp.527-543, 1985.

E. A. Bray, Genes commonly regulated by water-deficit stress in Arabidopsis thaliana, J Exp Bot, vol.55, pp.2331-2341, 2004.

E. A. Bray, J. Bailey-serres, and E. Weretilnyk, Responses to abiotic stresses, Biochemistry and Molecular Biology of Plants, pp.1158-1203, 2000.

N. Breda and A. Granier, Intra-and interannual variations of transpiration, leaf area index and radial growth of a sessile oak stand (Quercus petraea), Ann Sci For, vol.53, pp.521-536, 1996.
URL : https://hal.archives-ouvertes.fr/hal-00883072

F. Brignolas, C. Thierry, G. Guerrier, and E. Boudouresque, Compared water deficit response of two Populus x euramericana clones, Luisa Avanzo and Dorskamp, Ann Sci, vol.57, pp.261-266, 2000.
URL : https://hal.archives-ouvertes.fr/hal-00883346

M. Brosché, B. Vinocur, E. R. Alatalo, A. Lamminmaki, T. Teichmann et al., Gene expression and metabolite profiling of Populus euphratica growing in the Negev desert, Genome Biol, vol.6, p.101, 2005.

H. Bruelheide, U. Jandt, D. Gries, F. M. Thomas, A. Foetzki et al., Vegetation changes in a river oasis on the southern rim of the Taklamakan Desert in China between, Phytocoenologia, vol.33, pp.801-818, 1956.

M. M. Chaves, J. P. Maroco, and J. S. Pereira, Understanding plant responses to drought: from genes to the whole plant, Funct Plant Biol, vol.30, pp.239-264, 2003.

S. L. Chen, J. K. Li, S. S. Wang, E. Fritz, A. Huttermann et al., Effects of NaCl on shoot growth, transpiration, ion compartmentation, and transport in regenerated plants of Populus euphratica and Populus tomentosa, Can J For Res, vol.33, pp.967-975, 2003.

C. Cobbett and P. Goldsbrough, Phytochelatins and metallothioneins: roles in heavy metal detoxification and homeostasis, Annu Rev Plant Biol, vol.53, pp.159-182, 2002.

D. Cosgrove, Wall relaxation and the driving forces for cell expansive growth, Plant Physiol, vol.84, pp.561-564, 1987.

D. J. Cosgrove, New genes and new biological roles for expansins, Curr Opin Plant Biol, vol.3, pp.73-78, 2000.

T. Czechowski, R. P. Bari, M. Stitt, W. R. Scheible, and M. K. Udvardi, Realtime RT-PCR profiling of over 1400 Arabidopsis transcription factors: unprecedented sensitivity reveals novel root-and shoot-specific genes, Plant J, vol.38, pp.366-379, 2004.

J. L. Dangl, R. A. Dietrich, and H. Thomas, Senescence and programmed cell death, Biochemistry and Molecular Biology of Plants, pp.1044-1100, 2000.

J. M. Delong, R. K. Prange, D. M. Hodges, C. F. Forney, M. C. Bishop et al., Using a modified ferrous oxidation-xylenol orange (FOX) assay for detection of lipid hydroperoxides in plant tissue, J Agric Food Chem, vol.50, pp.248-254, 2002.

O. Dgany, A. Gonzalez, O. Sofer, W. X. Wang, G. Zolotnitsky et al., The structural basis of the thermostability of SP1, a novel plant (Populus tremula) boiling stable protein, J Biol Chem, vol.279, pp.51516-51523, 2004.

E. Dreyer, M. B. Bogeat-triboulot, L. Thiec, D. Guehl, J. M. Brignolas et al., Drought tolerance of poplars: can we expect to improve it?, Biofutur, vol.247, pp.54-58, 2004.

S. El-ouakfaoui and B. Miki, The stability of the Arabidopsis transcriptome in transgenic plants expressing the marker genes nptII and uidA, Plant J, vol.41, pp.791-800, 2005.

J. R. Evans, V. Caemmerer, and S. , Carbon dioxide diffusion inside leaves, Plant Physiol, vol.110, pp.339-346, 1996.

S. Ferrario-mery, M. H. Valadier, and C. H. Foyer, Overexpression of nitrate reductase in tobacco delays drought-induced decreases in nitrate reductase activity and mRNA, Plant Physiol, vol.117, pp.293-302, 1998.
URL : https://hal.archives-ouvertes.fr/hal-02698507

J. Flexas, J. Bota, F. Loreto, G. Cornic, and T. D. Sharkey, Diffusive and metabolic limitations to photosynthesis under drought and salinity in C-3 plants, Plant Biol, vol.6, pp.269-279, 2004.

G. M. Gebre, T. J. Tschaplinski, G. A. Tuskan, and D. E. Todd, Clonal and seasonal differences in leaf osmotic potential and organic solutes of five hybrid poplar clones grown under field conditions, Tree Physiol, vol.18, pp.645-652, 1998.

D. Gerlach, , 1977.

D. Gries, F. Zeng, A. Foetzki, S. K. Arndt, H. Bruelheide et al., Growth and water relations of Tamarix ramosissima and Populus euphratica on Taklamakan desert dunes in relation to depth to a permanent water table, Plant Cell Environ, vol.26, pp.725-736, 2003.

R. S. Gu, Q. L. Liu, D. Pei, and X. N. Jiang, Understanding saline and osmotic tolerance of Populus euphratica suspended cells, Plant Cell Tissue Organ Cult, vol.78, pp.261-265, 2004.

C. Guignard, L. Jouve, M. B. Bogeat-triboulot, E. Dreyer, J. F. Hausman et al., Analysis of carbohydrates in plants by high performance anion-exchange chromatography coupled with electrospray mass spectometry, J Chromatogr, vol.1085, pp.137-142, 2005.

S. P. Gygi, Y. Rochon, and B. R. Franza, Aebersold R (1999) Correlation between protein and mRNA abundance in yeast, Mol Cell Biol, vol.19, pp.1720-1730

M. Hajheidari, M. Abdollahian-noghabi, H. Askari, M. Heidari, S. Y. Sadeghian et al., Proteome analysis of sugar beet leaves under drought stress, Proteomics, vol.5, pp.950-960, 2005.

H. Harrak, S. Azelmat, E. N. Baker, and Z. Tabaeizadeh, Isolation and characterization of a gene encoding a drought-induced cysteine protease in tomato (Lycopersicon esculentum), Genome, vol.44, pp.368-374, 2001.

D. M. Hodges, J. M. Delong, C. F. Forney, and R. K. Prange, Improving the thiobarbituric acid-reactive-substances assay for estimating lipid peroxidation in plant tissues containing anthocyanin and other interfering compounds, Planta, vol.207, pp.604-611, 1999.

T. C. Hsiao, Plant responses to water stress, Annu Rev Plant Physiol, vol.24, pp.519-570, 1973.

D. Hukin, H. Cochard, E. Dreyer, L. Thiec, D. Bogeat-triboulot et al., Cavitation vulnerability in roots and shoots: does Populus euphratica Oliv., a poplar from arid areas of Central Asia, differ from other poplar species?, J Exp Bot, vol.56, pp.2003-2010, 2005.
URL : https://hal.archives-ouvertes.fr/hal-01189134

V. Jagtap, S. Bhargava, P. Streb, and J. Feierabend, Comparative effect of water, heat and light stresses on photosynthetic reactions in Sorghum bicolor (L.) Moench, J Exp Bot, vol.49, pp.1715-1721, 1998.

J. Y. Jang, D. G. Kim, Y. O. Kim, J. S. Kim, and H. S. Kang, An expression analysis of a gene family encoding plasma membrane aquaporins in response to abiotic stresses in Arabidopsis thaliana, Plant Mol Biol, vol.54, pp.713-725, 2004.

H. Javot and C. Maurel, The role of aquaporins in root water uptake, Ann Bot (Lond), vol.90, pp.301-313, 2002.

R. Kawaguchi, T. Girke, E. A. Bray, and J. Bailey-serres, Differential mRNA translation contributes to gene regulation under non-stress and dehydration stress conditions in Arabidopsis thaliana, Plant J, vol.38, pp.823-839, 2004.

R. Kawaguchi, A. J. Williams, E. A. Bray, and J. Bailey-serres, Water-deficitinduced translational control in Nicotiana tabacum, Plant Cell Environ, vol.26, pp.221-229, 2003.

S. Kawasaki, C. Miyake, T. Kohchi, S. Fujii, M. Uchida et al., Responses of wild watermelon to drought stress: accumulation of an ArgE homologue and citrulline in leaves during water deficits, Plant Cell Physiol, vol.41, pp.864-873, 2000.

A. Kohler, D. Blaudez, M. Chalot, and F. Martin, Cloning and expression of multiple metallothioneins from hybrid poplar, New Phytol, vol.164, pp.83-93, 2004.
URL : https://hal.archives-ouvertes.fr/hal-02680733

J. A. Kreps, Y. J. Wu, H. S. Chang, T. Zhu, X. Wang et al., Transcriptome changes for Arabidopsis in response to salt, osmotic, and cold stress, Plant Physiol, vol.130, pp.2129-2141, 2002.

J. Lecoeur, J. Wery, O. Turc, and F. Tardieu, Expansion of pea leaves subjected to short water-deficit: cell number and cell-size are sensitive to stress at different periods of leaf development, J Exp Bot, vol.46, pp.1093-1101, 1995.
URL : https://hal.archives-ouvertes.fr/hal-02701978

D. T. Luu and C. Maurel, Aquaporins in a challenging environment: molecular gears for adjusting plant water status, Plant Cell Environ, vol.28, pp.85-96, 2005.
URL : https://hal.archives-ouvertes.fr/hal-00086597

R. Mittler, Oxidative stress, antioxidants and stress tolerance, Trends Plant Sci, vol.7, pp.405-410, 2002.

R. Monclus, E. Dreyer, M. Villar, F. M. Delmotte, D. Delay et al., Impact of drought on productivity and water use efficiency in 29 genotypes of Populus deltoides x Populus nigra, New Phytol, vol.169, pp.765-777, 2006.
URL : https://hal.archives-ouvertes.fr/hal-02665985

R. Murakami, K. Ifuku, A. Takabayashi, T. Shikanai, T. Endo et al., Functional dissection of two Arabidopsis PsbO proteins, FEBS J, vol.272, pp.2165-2175, 2005.

R. P. Newton, A. G. Brenton, C. J. Smith, and E. Dudley, Plant proteome analysis by mass spectrometry: principles, problems, pitfalls and recent developments, Phytochemistry, vol.65, pp.1449-1485, 2004.

G. Noctor and C. H. Foyer, Simultaneous measurement of foliar glutathione, gamma-glutamylcysteine, and amino acids by high-performance liquid chromatography: comparison with two other assay methods for glutathione, Anal Biochem, vol.264, pp.98-110, 1998.

M. A. Noordermeer, I. Feussner, A. Kolbe, G. A. Veldink, and J. Vliegenthart, Oxygenation of (3Z)-alkenals to 4-hydroxy-(2E)-alkenals in plant extracts: a nonenzymatic process, Biochem Biophys Res Commun, vol.277, pp.112-116, 2000.

E. A. Ottow, M. Brinker, T. Teichmann, E. Fritz, W. Kaiser et al., Populus euphratica displays apoplastic sodium accumulation, osmotic adjustment by decreases in calcium and soluble carbohydrates, and develops leaf succulence under salt stress, Plant Physiol, vol.139, pp.1762-1772, 2005.

Z. N. Ozturk, V. Talame, M. Deyholos, C. B. Michalowski, D. W. Galbraith et al., Monitoring large-scale changes in transcript abundance in drought-and salt-stressed barley, Plant Mol Biol, vol.48, pp.551-573, 2002.

J. B. Passioura, Drought and drought tolerance, Plant Growth Regul, vol.20, pp.79-83, 1996.

D. N. Perkins, D. Pappin, D. M. Creasy, and J. S. Cottrell, Probability-based protein identification by searching sequence databases using mass spectrometry data, Electrophoresis, vol.20, pp.3551-3567, 1999.

C. Plomion, C. Lalanne, S. Claverol, H. Meddour, A. Kohler et al., Mapping the proteome of poplar and application to the discovery of drought-stress responsive proteins, Proteomics, vol.6, pp.6509-6527, 2006.
URL : https://hal.archives-ouvertes.fr/hal-02663888

A. Polle, A. Altman, and X. N. Jiang, Towards genetic engineering for drought tolerance in trees, Tree Transgenesis: Recent Developments, pp.275-297, 2006.

J. Renaut, S. Lutts, L. Hoffmann, and J. F. Hausman, Responses of poplar to chilling temperatures: proteomic and physiological aspects, Plant Biol, vol.6, pp.81-90, 2004.

S. B. Rood, J. H. Braatne, and F. Hughes, Ecophysiology of riparian cottonwoods: stream flow dependency, water relations and restoration, Tree Physiol, vol.23, pp.1113-1124, 2003.

G. H. Salekdeh, J. Siopongco, L. J. Wade, B. Ghareyazie, and J. Bennett, Proteomic analysis of rice leaves during drought stress and recovery, Proteomics, vol.2, pp.1131-1145, 2002.

J. Sanderson, C. Schneider, K. A. Tallman, N. A. Porter, and A. R. Brash, Two distinct pathways of formation of 4-hydroxynonenal: mechanisms of nonenzymatic transformation of the 9-and 13-hydroperoxides of linoleic acid to 4-hydroxyalkenals, Royal Microscopical Society. Bios Scientific Publishers, vol.28, pp.20831-20838, 1994.

M. Seki, M. Narusaka, J. Ishida, T. Nanjo, M. Fujita et al., Monitoring the expression profiles of 7000 Arabidopsis genes under drought, cold and highsalinity stresses using a full-length cDNA microarray, Plant J, vol.31, pp.279-292, 2002.

A. Sharma, B. N. Dwivedi, B. Singh, and K. Kumar, Introduction of Populus euphratica in Indian semi-arid trans Gangetic plains, Ann For, vol.7, pp.1-8, 1999.

R. E. Sharp, V. Poroyko, L. G. Hejlek, W. G. Spollen, G. K. Springer et al., Root growth maintenance during water deficits: physiology to functional genomics, J Exp Bot, vol.55, pp.2343-2351, 2004.

H. A. Skynner, T. W. Rosahl, M. R. Knowles, K. Salim, L. Reid et al., Alterations of stress related proteins in genetically altered mice revealed by two-dimensional differential in-gel electrophoresis analysis, Proteomics, vol.2, pp.1018-1025, 2002.

L. B. Smart, W. A. Moskal, K. D. Cameron, and A. B. Bennett, MIP genes are down-regulated under drought stress in Nicotiana glauca, Plant Cell Physiol, vol.42, pp.686-693, 2001.

J. S. Sperry, U. G. Hacke, R. Oren, and J. P. Comstock, Water deficits and hydraulic limits to leaf water supply, Plant Cell Environ, vol.25, pp.251-263, 2002.

D. Y. Sung, E. Vierling, and C. L. Guy, Comprehensive expression profile analysis of the Arabidopsis hsp70 gene family, Plant Physiol, vol.126, pp.789-800, 2001.

R. Sunkar, D. Bartels, and H. H. Kirch, Overexpression of a stress-inducible aldehyde dehydrogenase gene from Arabidopsis thaliana in transgenic plants improves stress tolerance, Plant J, vol.35, pp.452-464, 2003.

R. Tanaka, M. Hirashima, S. Satoh, and A. Tanaka, The Arabidopsisaccelerated cell death gene ACD1 is involved in oxygenation of pheophorbide a: inhibition of the pheophorbide a oxygenase activity does not lead to the ''Stay-Green'' phenotype in Arabidopsis, Plant Cell Physiol, vol.44, pp.1266-1274, 2003.

N. L. Taylor, D. A. Day, and A. H. Millar, Targets of stress-induced oxidative damage in plant mitochondria and their impact on cell carbon/nitrogen metabolism, J Exp Bot, vol.55, pp.1-10, 2004.

T. J. Tschaplinski, G. A. Tuskan, G. M. Gebre, and D. E. Todd, Drought resistance of two hybrid Populus clones grown in a large-scale plantation, Tree Physiol, vol.18, pp.653-658, 1998.

T. J. Tschaplinski, G. A. Tuskan, and C. A. Gunderson, Water-stress tolerance of black and eastern cottonwood clones and four hybrid progeny. 1. Growth, water relations, and gas exchange, Can J For Res, vol.24, pp.364-371, 1994.

G. A. Tuskan, S. P. Difazio, and T. Teichmann, Poplar genomics is getting popular: the impact of the poplar genome project on tree research, Plant Biol, vol.6, pp.2-4, 2004.

R. Vera-estrella, B. J. Barkla, H. J. Bohnert, and O. Pantoja, Novel regulation of aquaporins during osmotic stress, Plant Physiol, vol.135, pp.2318-2329, 2004.

B. Vinocur and A. Altman, Recent advances in engineering plant tolerance to abiotic stress: achievements and limitations, Curr Opin Biotechnol, vol.16, pp.123-132, 2005.

W. Wang, D. Pelah, T. Alergand, O. Shoseyov, and A. Altman, Characterization of SP1, a stress-responsive, boiling-soluble, homo-oligomeric protein from aspen, Plant Physiol, vol.130, pp.865-875, 2002.

W. Wang, B. Vinocur, O. Shoseyov, and A. Altman, Role of plant heat-shock proteins and molecular chaperones in the abiotic stress response, Trends Plant Sci, vol.9, pp.244-252, 2004.

S. Watanabe, K. Kojima, Y. Ide, and S. Sasaki, Effects of saline and osmotic stress on proline and sugar accumulation in Populus euphratica in vitro, Plant Cell Tissue Organ Cult, vol.63, pp.199-206, 2000.

S. W. Wright, S. W. Jeffrey, R. Mantoura, C. A. Llewellyn, T. Bjornland et al., Improved HPLC method for the analysis of chlorophylls and carotenoids from marine-phytoplankton, Mar Ecol Prog Ser, vol.77, pp.183-196, 1991.

L. Xiong and J. K. Zhu, Molecular and genetic aspects of plant responses to osmotic stress, Plant Cell Environ, vol.25, pp.131-139, 2002.

N. Zhang and A. Portis, Mechanism of light regulation of Rubisco: a specific role for the larger Rubisco activase isoform involving reductive activation by thioredoxin-f, Proc Natl Acad Sci, vol.96, pp.9438-9443, 1999.