C. Antonio, C. Päpke, M. Rocha, H. Diab, A. M. Limami et al., Regulation of primary metabolism in response to low oxygen availability as revealed by carbon and nitrogen isotope redistribution, Plant Physiology, vol.170, pp.43-56, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01392704

A. M. Bedoya and S. Madriñán, Evolution of the aquatic habit in Ludwigia (Onagraceae): Morpho-anatomical adaptive strategies in the Neotropics, Aquatic Botany, vol.120, pp.352-362, 2015.

D. A. Bird, The role of ABC transporters in cuticular lipid secretion, Plant Science, vol.174, pp.563-569, 2008.

L. Boudière, M. Michaud, D. Petroutsos, F. Rebeille, D. Falconet et al., Glycerolipids in photosynthesis: Composition, synthesis and trafficking, Biochimica et Biophysica Acta, vol.1837, pp.470-480, 2014.

A. Campalans, R. Messeguer, A. Goday, and M. Pages, Plant responses to drought, from ABA signal transduction events to the action of the induced proteins, Plant Physiology and Biochemistry, vol.37, pp.327-340, 1999.

R. I. Colautti, I. A. Grigorovich, and H. J. Macisaac, Propagule pressure: A null model for biological invasions, Biological Invasions, vol.8, pp.1023-1037, 2006.

S. Dandelot, R. Verlaque, A. Dutartre, and A. Cazaubon, Ecological, dynamic and taxonomic problems due to Ludwigia (Onagraceae) in France, Hydrobiologia, vol.551, pp.131-136, 2005.

H. Dietz and P. J. Edwards, Recognition that causal processes change during plant invasion helps explain conflicts in evidence, Ecology, vol.87, pp.1359-1367, 2006.

M. H. Dixon, S. A. Hill, M. B. Jackson, R. G. Ratcliffe, and L. J. Sweetlove, Physiological and metabolic adaptations of Potamogeton pectinatus L. tubers support rapid elongation of stem tissue in the absence of oxygen, Plant and Cell Physiology, vol.47, pp.128-140, 2006.

J. T. Van-dongen, K. J. Gupta, S. J. Ramírez-aguilar, W. L. Araújo, A. Nunesnesi et al., Regulation of respiration in plants: A role for alternative metabolic pathways, Journal of Plant Physiology, vol.168, pp.1434-1443, 2011.

M. C. Drew, Oxygen deficiency and root metabolism: Injury and acclimation under hypoxia and anoxia, Annual Review of Plant Biology, vol.48, pp.223-250, 1997.

. Eppo, Ludwigia grandiflora and L. peploides Onagraceae-Water primroses, EPPO Bulletin, vol.41, pp.414-418, 2011.

R. H. Fortney, M. Benedict, J. F. Gottgens, T. L. Walters, B. S. Leady et al., Aquatic plant community composition and distribution along an inundation gradient at two ecologicallydistinct sites in the Pantanal region of Brazil, Wetlands Ecology and Management, vol.12, pp.575-585, 2004.

J. Fox, The R Commander: A basic-statistics graphical user interface to R, Journal of Statistical Software, vol.14, pp.1-42, 2005.

H. Frost-christensen and F. Floto, Resistance to CO 2 diffusion in cuticular membranes of amphibious plants and the implication for CO 2 acquisition, Plant, Cell & Environment, vol.30, pp.12-18, 2007.

T. Fukao and J. Bailey-serres, Plant responses to hypoxia-Is survival a balancing act, Trends in Plant Science, vol.9, pp.449-456, 2004.

Y. P. Geng, X. Y. Pan, C. Y. Xu, W. J. Zhang, B. Li et al., Phenotypic plasticity of invasive Alternanthera philoxeroides in relation to different water availability, compared to its native congener, Acta Oecologica, vol.30, pp.380-385, 2006.

M. Gillard, G. Thiébaut, C. Deleu, and B. Leroy, Present and future distribution of three aquatic plants taxa across the world: Decrease in native and increase in invasive ranges, Biological Invasions, vol.19, pp.2159-2170, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01577986

D. K. Gladish, J. Xu, and T. Niki, Apoptosis-like programmed cell death occurs in procambium and ground meristem of pea (Pisum sativum) root tips exposed to sudden flooding, Annals of Botany, vol.97, pp.895-902, 2006.

U. Gowik and P. Westhoff, The path from C3 to C4 photosynthesis, Plant Physiology, vol.155, pp.56-63, 2011.

A. H. Gunawardena, D. M. Pierce, M. B. Jackson, C. R. Hawes, and D. E. Evans, Characterization of programmed cell death during aerenchyma formation induced by ethylene or hypoxia in roots of maize (Zea mays L.), Planta, vol.212, pp.205-214, 2001.

J. Haury, J. Damien, J. Maisonneuve, and B. Bottner, La gestion des Jussies en milieu aquatique et en prairies humides, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00907039

. Matrat, Actes du colloque régional Les plantes invasives en Pays-de-laLoire, AEstuaria, collection Paroles des Marais atlantiques 18, pp.171-189

J. Haury, A. Druel, T. Cabral, Y. Paulet, M. Bozec et al., Which adaptations of some invasive Ludwigia spp. (Rosidae, Onagraceae) populations occur in contrasting hydrological conditions in Western France?, Hydrobiologia, vol.737, pp.45-56, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01210227

J. Haury, F. Noël, M. Bozec, J. Coudreuse, J. Guil et al., Importance of Ludwigia grandiflora as invasive weed in meadows and pastures in Western France, 3rd International Symposium on Weeds and Invasive Plants, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00842412

T. M. Hildebrandt, A. N. Nesi, W. L. Araujo, and H. P. Braun, Amino acid catabolism in plants, Molecular Plant, vol.8, pp.1563-1579, 2015.
DOI : 10.1016/j.molp.2015.09.005

URL : https://doi.org/10.1016/j.molp.2015.09.005

A. Hussner, Growth and photosynthesis of four invasive aquatic plant species in Europe, Weed Research, vol.49, pp.506-515, 2009.

A. Hussner, Growth response and root system development of the invasive Ludwigia grandiflora and Ludwigia peploides to nutrient availability and water level, Fundamental and Applied Limnology, vol.177, pp.189-196, 2010.

A. Hussner and C. Meyer, The influence of water level on growth and photosynthesis of Hydrocotyle ranunculoides L.fil. Flora-Morphology, Distribution, Functional Ecology of Plants, vol.204, pp.755-761, 2009.

A. Hussner, C. Meyer, and J. Busch, The influence of water level and nutrient availability on growth and root system development of Myriophyllum aquaticum (Vell.) Verdc. Weed Research, vol.49, pp.73-80, 2009.

A. Hussner, I. Stiers, M. J. Verhofstad, E. S. Bakker, B. M. Grutters et al., Management and control methods of invasive alien freshwater aquatic plants: A review, Aquatic Botany, vol.136, pp.112-137, 2017.
DOI : 10.1016/j.aquabot.2016.08.002

URL : https://hal.archives-ouvertes.fr/hal-01561008

A. Hussner, M. Windhaus, and U. Starfinger, From weed biology to successful control: An example of successful management of Ludwigia grandiflora in Germany, Weed Research, vol.56, pp.434-441, 2016.

M. Ibba, A. W. Curnow, and D. Söll, Aminoacyl-tRNA synthesis: Divergent routes to a common goal, Trends in Biochemical Sciences, vol.22, pp.39-42, 1997.
DOI : 10.1016/s0968-0004(96)20033-7

V. Joshi, J. G. Joung, Z. Fei, and G. Jander, Interdependence of threonine, methionine and isoleucine metabolism in plants: Accumulation and transcriptional regulation under abiotic stress, Amino Acids, vol.39, pp.933-947, 2010.
DOI : 10.1007/s00726-010-0505-7

J. Jung, S. C. Lee, and H. K. Choi, Anatomical patterns of aerenchyma in aquatic and wetland plants, Journal of Plant Biology, vol.51, pp.428-439, 2008.

S. H. Justin and W. Armstrong, The anatomical characteristics of roots and plant response to soil flooding, New Phytologist, vol.106, pp.465-495, 1987.

S. M. Kercher and J. B. Zedler, Flood tolerance in wetland angiosperms: A comparison of invasive and non invasive species, Aquatic Botany, vol.80, pp.89-102, 2004.

E. Lambert, A. Dutartre, J. Coudreuse, and J. Haury, Relationships between the biomass production of invasive Ludwigia species and physical properties of habitats in France, Hydrobiologia, vol.656, pp.173-186, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00729607

S. Lê, J. Josse, and F. Husson, FactoMineR: An R package for multivariate analysis, Journal of Statistical Software, vol.25, pp.1-18, 2008.

H. Less and G. Galili, Principal transcriptional programs regulating plant amino acid metabolism in response to abiotic stresses, Plant Physiology, vol.147, pp.316-330, 2008.
DOI : 10.1104/pp.108.115733

URL : http://www.plantphysiol.org/content/plantphysiol/147/1/316.full.pdf

Z. Q. Li, D. Yu, and J. Xu, Adaptation to water level variation: Responses of a floating-leaved macrophyte Nymphoides peltata to terrestrial habitats, Annales de Limnologie-International Journal of Limnology, vol.47, pp.97-102, 2011.

N. Madanes, R. D. Quintana, P. Kandus, and R. F. Bo, Species richness and functional groups of angiosperms from the Parana River Delta region (Argentina). Check List, vol.11, p.1803, 2015.
DOI : 10.15560/11.6.1803

URL : https://checklist.pensoft.net/lib/ajax_srv/article_elements_srv.php?action=download_pdf&item_id=19405

A. Maggio, S. Miyazaki, P. Veronese, T. Fujita, J. I. Ibeas et al., Does proline accumulation play an active role in stress-induced growth reduction?, The Plant Journal, vol.31, pp.699-712, 2002.
DOI : 10.1046/j.1365-313x.2002.01389.x

A. I. Malik, T. D. Colmer, H. Lambers, and M. Schortemeyer, Aerenchyma formation and radial O 2 loss along adventitious roots of wheat with only the apical root portion exposed to O 2 deficiency, Plant, Cell and Environment, vol.26, pp.1713-1722, 2003.

T. Nakamura, R. Yamamoto, S. Hiraga, N. Nakayama, K. Okazaki et al., Evaluation of metabolite alteration under flooding stress in soybeans, Japan Agricultural Research Quarterly, vol.46, pp.237-248, 2012.

R. Narsai, M. Rocha, P. Geigenberger, J. Whelan, and J. T. Van-dongen, Comparative analysis between plant species of transcriptional and metabolic responses to hypoxia, New Phytologist, vol.190, pp.472-487, 2011.
DOI : 10.1111/j.1469-8137.2010.03589.x

URL : http://onlinelibrary.wiley.com/doi/10.1111/j.1469-8137.2010.03589.x/pdf

J. S. Nowak, J. Ono, and Q. C. Cronk, Anatomical study of an aquatic mustard: Subularia aquatica (Brassicaceae), Aquatic Botany, vol.93, pp.55-58, 2010.
DOI : 10.1016/j.aquabot.2010.02.004

H. Poorter and O. Nagel, The role of biomass allocation in the growth responses of plants to different levels of light CO and water: A quantitative review, Australian Journal of Plant Physiology, vol.27, pp.595-607, 2000.

, R: A language and environment for statistical computing, R Foundation for Statistical Computing, 2008.

D. Rhodes, P. E. Verslues, and R. E. Sharp, Role of amino acids in abiotic stress resistance, Plant amino acids: Biochemistry and bio-technology, pp.319-359, 1999.

K. Sand-jensen, O. Pedersen, T. Binzer, and J. Borum, Contrasting oxygen dynamics in the freshwater isoetid Lobelia dortmanna and the marine seagrass Zostera marina, Annals of Botany, vol.96, pp.613-623, 2005.

A. A. Serra, A. Nuttens, V. Larvor, D. Renault, I. Couée et al., Low environmentally relevant levels of bioactive xenobiotics and associated degradation products cause cryptic perturbations of metabolism and molecular stress responses in Arabidopsis thaliana, Journal of Experimental Botany, vol.64, pp.2753-2766, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00858016

N. L. Taylor, J. L. Heazlewood, D. A. Day, and A. H. Millar, Lipoic acid-dependent oxidative catabolism of alpha-keto acids in mitochondria provides evidence for branched-chain amino acid catabolism in Arabidopsis, Plant Physiology, vol.134, pp.838-848, 2004.

L. Thouvenot, J. Haury, and G. Thiébaut, A success story: Water primroses, aquatic plant pests. Aquatic Conservation: Marine and Freshwater Ecosystems, vol.23, pp.790-803, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00932259

L. A. Voesenek, T. D. Colmer, R. Pierik, F. F. Millenaar, and A. J. Peeters, How plants cope with complete submergence, New Phytologist, vol.170, pp.213-226, 2007.

W. Wallace, J. Secor, and L. E. Schrader, Rapid accumulation of gaminobutyric acid and alanine in soybean leaves in response to an abrupt transfer to lower temperature, darkness, or mechanical manipulation, Plant Physiology, vol.75, pp.170-175, 1984.

C. Wells and M. Pigliucci, Adaptive phenotypic plasticity: The case of heterophylly in aquatic plants, Perspectives in Plant Ecology, Evolution and Systematics, vol.3, pp.1-18, 2000.

J. Xia, I. Sinelnikov, B. Han, and D. S. Wishart, MetaboAnalyst 3.0-Making metabolomics more meaningful, Nucleic Acids Research, vol.43, pp.251-257, 2015.

Y. H. Xie, S. Q. An, and B. F. Wu, Resource allocation in the submerged plant Vallisneria natans related to sediment type, rather than water-column nutrients, Freshwater Biology, vol.50, pp.391-402, 2005.