Littérature scientifique sur le sujet « Transporteurs ABC »
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Articles de revues sur le sujet "Transporteurs ABC"
Geillon, Flore, Doriane Trompier, Catherine Gondcaille, Gérard Lizard et Stéphane Savary. « Transporteurs ABC peroxysomaux et adrénoleucodystrophie liée au chromosome X ». médecine/sciences 28, no 12 (décembre 2012) : 1087–94. http://dx.doi.org/10.1051/medsci/20122812019.
Texte intégralDAUCHY, S., N. TOURNIER, S. YOUSIF, A. JACOB et X. DECLEVES. « Barrière hémato-encéphalique : implication des transporteurs ABC en neuropharmacologie ». Réanimation 17, no 7 (octobre 2008) : 664–69. http://dx.doi.org/10.1016/j.reaurg.2008.07.013.
Texte intégralArnaud, L. « Systèmes de groupes sanguins : les transporteurs ABC rejoignent le club ! » Transfusion Clinique et Biologique 20, no 3 (juin 2013) : 280. http://dx.doi.org/10.1016/j.tracli.2013.04.096.
Texte intégralZHAO, Li-Xia, Cheng-Ji ZHOU, Arowu TANAKA, Masanori NAKATA, Takahiro HIRABAYASHI, Teruo AMACHI, Seiji SHIODA, Kazumitsu UEDA et Nobuya INAGAKI. « Cloning, characterization and tissue distribution of the rat ATP-binding cassette (ABC) transporter ABC2/ABCA2 ». Biochemical Journal 350, no 3 (8 septembre 2000) : 865–72. http://dx.doi.org/10.1042/bj3500865.
Texte intégralMourez, M., M. Jéhanno, M. Hofnung et E. Dassa. « Rôle, fonctionnement et structure des transporteurs à ATP binding cassette (ABC). » médecine/sciences 16, no 3 (2000) : 386. http://dx.doi.org/10.4267/10608/1658.
Texte intégralLatif, Haythem, Merve Sahin, Janna Tarasova, Yekaterina Tarasova, Vasiliy A. Portnoy, Juan Nogales et Karsten Zengler. « Adaptive Evolution of Thermotoga maritima Reveals Plasticity of the ABC Transporter Network ». Applied and Environmental Microbiology 81, no 16 (5 juin 2015) : 5477–85. http://dx.doi.org/10.1128/aem.01365-15.
Texte intégralOgawa, Atsuko, Takashi Hashida-Okado, Masahiro Endo, Hirofumi Yoshioka, Takashi Tsuruo, Kazutoh Takesako et Ikunoshin Kato. « Role of ABC Transporters in Aureobasidin A Resistance ». Antimicrobial Agents and Chemotherapy 42, no 4 (1 avril 1998) : 755–61. http://dx.doi.org/10.1128/aac.42.4.755.
Texte intégralMichaelis, Martin, Florian Rothweiler, Thomas Nerreter, Mohsen Sharifi, Taravat Ghafourian et Jindrich Cinatl. « Karanjin interferes with ABCB1, ABCC1, and ABCG2 ». Journal of Pharmacy & ; Pharmaceutical Sciences 17, no 1 (10 mars 2014) : 92. http://dx.doi.org/10.18433/j3bw2s.
Texte intégralZhang, Wandong, Qing Yan Liu, Arsalan S. Haqqani, Ziying Liu, Caroline Sodja, Sonia Leclerc, Ewa Baumann, Christie E. Delaney, Eric Brunette et Danica B. Stanimirovic. « Differential Expression of ABC Transporter Genes in Brain Vessels vs. Peripheral Tissues and Vessels from Human, Mouse and Rat ». Pharmaceutics 15, no 5 (22 mai 2023) : 1563. http://dx.doi.org/10.3390/pharmaceutics15051563.
Texte intégralKropf, Christian, Karl Fent, Stephan Fischer, Ayako Casanova et Helmut Segner. « ABC transporters in gills of rainbow trout (Oncorhynchus mykiss) ». Journal of Experimental Biology 223, no 15 (12 juin 2020) : jeb221069. http://dx.doi.org/10.1242/jeb.221069.
Texte intégralThèses sur le sujet "Transporteurs ABC"
Vorac, Jaroslav. « Le fonctionnement du transporteur ABC de Streptococcus pneumoniae impliqué dans la résistance contre les peptides antimicrobiens ». Thesis, Université Grenoble Alpes (ComUE), 2016. http://www.theses.fr/2016GREAV009/document.
Texte intégralStreptococcus pneumoniae, the pneumococcus, is a major human pathogen causing over a million deaths each year. Many pneumococcal strains display resistance towards antibiotics causing world-wide health concern. Some of these antibiotics are antimicrobial peptides (AMP), which are produced as a primary defense by hosts as well as pathogens. The pneumococcus harbors a system comprised of an ATP-binding cassette (ABC) transporter and a two-component system (TCS) composed of a histidine kinase (HK) and a response regulator (RR), which targets these molecules. It has been shown recently that the removal of this ABC transporter increases the sensitivity of the bacteria towards bacitracin. In this project, we tried to understand the functioning mechanism of the ABC transporter and the co-operation with the TCS using both in vivo and in vitro techniques
Matar, Merheb Rachel Rima. « Caractérisation d’une nouvelle génération de détergents stabilisateurs des transporteurs abc en solution : cristallisation de BmrA, transporteur ABC bactérien ». Thesis, Lyon 1, 2010. http://www.theses.fr/2010LYO10303.
Texte intégralDue to their preponderance in the resistance to chemotherapies, the MDR ABC transporters have drawn the attention of the scientific community. Our project aimed at finding conditions in which ABC transporters are active in solution to lead the crystallization of these proteins in an active conformation. In this purpose, we conceived and developed a new class of detergents, based on calix[4]arene ring, that stabilize these proteins. In order to solve the 3D-structure to atomic resolution of bacterial ABC transporter “BmrA” responsible for antibiotic resistance, we used a classical approach with commercial detergents in addition to the innovative ones. We have crystallized the protein in presence of Foscholine 12 with a diffraction resolution up to 5 Å. The data was incomplete; solving partially the structure of the transmembrane domains. On the other hand, we have reached the objective of extraction, purification and stabilization of this transporter by using calix[4]arene-based detergents. We have also shown that these detergents promote and enhance the kinetics of crystallization of BmrA, a step that we are improving, to get crystals of better resolution, for resolving the BmrA 3D-structure which will be used to design adapted inhibitors
Koraichi, Farah. « Étude in vivo / in vitro de l'effet de la zéaralénone sur l'expression de transporteurs ABC majeurs lors d'une exposition gestationnelle ou néonatale ». Thesis, Lyon 1, 2012. http://www.theses.fr/2012LYO10314/document.
Texte intégralZearalenone (ZEN) is a mycotoxin produced by Fusarium that infect cereal crops. This Estrogenmimetic and endocrine disruptor affects the reproductive system. Upstream of the risk assessment of exposure to low doses of ZEN, we are interested in the effect of ZEN on the expression level of major ABC transporters. These efflux pumps are present in the barriers of organism (including testicular and placental barriers), where they protect tissues against the toxicity of their xenobiotic substrates. In this work, we first characterized the metabolism and tissue distribution of ZEN in rat and then evaluated respectively its short and long-term effect on ABC transporters expression after gestational and neonatal exposure. Our results highlight differences in the toxicokinetic behavior of ZEN by gender and hormonal status, and fetal and neonatal real exposure via the mother. ZEN modulates the expression of major ABC transporters in vivo (in the maternal organs, fetal liver, testis of young adult exposed J1-J5). The results of in vitro models (sertoli and placental cell lines) suggest that these variations are partly due to the interaction of ZEN with the estrogen receptors. The consequences of expression modulations of ABC transporters induced by ZEN could be dramatic for the development and health of individuals in adulthood and should be evaluated
Jorajuria, Sylvie. « Rôle des transporteurs ABC dans l'efficacité pharmacologique des antirétroviraux ». Paris 5, 2003. http://www.theses.fr/2003PA05P618.
Texte intégralTreatment of AIDS is restricted by therapeutical escape, relying notably on modulation of P-gp and MRP. In primary cultures of human monocyte-derived macrophages, we evidence a transient increase of P-gp activity related to an increase of P-gp expression at cell surface and of P-gp mRNA. This transcriptional up-regulation is associated with a TNF-a overproduction and could result from the binding between viral gp120 and CCR5, one of HIV coreceptors. Same profile is obtained for MRP4 mRNA expression while those of MRP5 and MRP1 mRNA increase concomitantly with HIV replication. In parallel, we observe that anti-HIV effects of antiretroviral drugs such AZT and indinavir are increased when we inhibit the P-gp and/or MRP efflux with specific inhibitors (PSC833 and probenecid). Transduction pathways activated by PSC833 may account for AZT-induced mrp4 and mrp5 expression and thus for increased AZT antiviral efficacy in vitro
Broccardo, Cyril. « Etude de la sous-classe ABCA de la famille des transporteurs ABC : Analyse génomique et inactivation fonctionnelle du gène ABC-1 ». Aix-Marseille 2, 2000. http://www.theses.fr/2000AIX22011.
Texte intégralMingam, Rozenn. « Etude de la modulation de la production et de l'action des cytokines cérébrales : le rôle du recepteur P2X7 ». Bordeaux 2, 2006. http://www.theses.fr/2006BOR21407.
Texte intégralFribourg, Pierre-Frédéric. « Analyse structurale de transporteurs membranaires ABC d'efflux par microscopie électronique ». Paris 6, 2012. http://www.theses.fr/2012PA066579.
Texte intégralThe goals of the PhD thesis is the biochemical and the structural analysis by cryo-electron microscopy of two « ATP-binding cassette » (ABC) membrane transporters, namely BmrA from B. Subtilis and ABCC2, a human transporter. ABC transporters are responsible for the ATP-dependent translocation across the cell membranes of a wide variety of organic endobiotics and xenobiotics. Several ABC transporters, including BmrA and ABCC2 are involved in a cellular multidrugs resistance against antibiotics, antiviral and anticancer agents. The absence of structural information on these ABC transporters prevents the conception of new inhibitors. In this context, we have characterized by electron microscopy BmrA in nucleotide-free and nucleotide bound conformation in a lipidic environment after reconstitution of BmrA at high protein densities. A tridimensional reconstruction at 23 Å resolution of the nucleotide-free conformation has been calculated from cryo-embebded samples by single particle analysis. A projection map at 16 Å of the nucleotide-bound conformation was calculated from 2D crystals. Overall, results revealed an inward-open conformation of BmrA in absence of nucleotides and an outward-facing conformation in post-hydrolytic state. This demonstrated a bellows-like mechanism of drugs transports involving a large conformational change that changes the cellular orientation of the drugs binding side upon ATP binding. ABCC2 has been purified and a 3D model at low resolution has been calculated from negatively stained images. Overall, the results have demonstrated the capacity of ABCC2 to be assembled in supramolecular organisation
Lakli, Mounia. « Pharmacothérapie ciblée de variants d'ABCB4, le transporteur biliaire de phospholipides ». Electronic Thesis or Diss., université Paris-Saclay, 2024. http://www.theses.fr/2024UPASQ026.
Texte intégralABCB4/MDR3 is a transmembrane protein that secretes phosphatidylcholine, a fundamental component of bile, to the canalicular membrane of hepatocytes. Numerous mutations in the gene encoding this transporter are responsible for rare cholestatic diseases, the most severe one being progressive familial intrahepatic cholestasis type 3 (PFIC3). To date, at least 50 % of patients do not respond to conventional treatments, making liver transplantation the ultimate alternative therapy. Thus, this thesis was dedicated to characterizing and validating new pharmacological correctors for three traffic-defective ABCB4 variants (I541F, L556R and I490T) retained in the endoplasmic reticulum. In cell models, the biochemical and morphological analyses allowed us to identify three molecules able to rescue the maturation and canalicular localization of two variants. However, due to an inhibitory effect of these molecules on ABCB4 function, only one corrector was able to significantly restore the function of these variants. Combined with ivacaftor (VX 770, Kalydeco®), an approved modulator of activity for cystic fibrosis, an improvement and potentiation of ABCB4 activity was obtained. In silico molecular docking analyses were carried out to explore the mechanism of action of these compounds, suggesting an interaction of the drugs with ABCB4 residues involved in ATP binding/hydrolysis, which could explain the function inhibition effect. Furthermore, in vitro, the newly identified molecules increase the plasma membrane stability of ABCB4-WT and appear to inhibit its lysosomal degradation. Interestingly, the corrective effect of these molecules is conserved for an intracellular variant of the bile acid transporter ABCB11. This suggests the prospect of a consensus treatment for deficiencies of both ABC transporters. In conclusion, we have identified novel corrector compounds for intracellularly-retained ABCB4 variants. These results pave the way for their optimization to provide new drug candidates as potential alternatives to liver transplantation for patients with severe forms of ABCB4-related diseases
Ouellet, Mélissa. « La barrière hémato-encéphalique, les transporteurs ABC et la maladie d'Alzheimer ». Thesis, Université Laval, 2008. http://www.theses.ulaval.ca/2008/25310/25310.pdf.
Texte intégralSchmid, Aline. « ABC transporteurs de Toxoplasma gondii et résistance médicamenteuse. Caractérisation et approche de la fonctionnalité dans les souches de référence, cliniques et traitées expérimentalement par la sulfadiazine ». Reims, 2008. http://www.theses.fr/2008REIMM207.
Texte intégralThe @apicomplexan Toxoplasma gondii, an obligate intracellular parasite, can infect humans and a wide range of vertebrates leading to toxoplasmosis. Treatment of toxoplasmosis usually uses a combination of a sulfamide with pyrimethamine; however, several failures have been reported in spite of a good observance of treatments. Common mechanisms of resistance are variations on the genes sequence encoding to the drug target (DHFR, DHPS) and/or on ABC (ATP Binding Cassette) with Pgp and MRP genes. In order to understand the failure mechanisms in T. Gondii, the objective of this study is to analyse full membrane ABC transporters TgABC. B1 and TgABC. B2: Pgp, TgABC. C1: MRP. The population structure of T. Gondii consists of three principal clonal lineages (types I,II and III) correlated with virulence expression. The three ABC genes are constitutively expressed in the three major T. Gondii genotypes but TgABC. B1 demonstrated a higher expression in virulent type I, at both transcriptional and translational levels. The existence of functional Pgp at T. Gondii is shown with an activity of efflux identical for three genotypes. A recent study on the strain’s sensitivity to treatment identify three strains with a weak sensitivity to sulfadiazine. The study of expression levels of three ABC genes didn’t show significant variation between resistant and sensitive strains. We showed an increase of the efflux activity to Pgp for the resistant strains. We were also interested in the influence of a treatment in utero by pyriméthamine/sulfadoxine on a congenital toxoplasmosis strain. We observed an increase of expression levels of TgABC. B1 and TgABC. C1 after treatment associated with an increase of the efflux activity of the Pgp, implying a modification phénotypic of the strain after toxoplasmosis treatment. We obtained by pressure in increasing doses a resistant RH strain for the sulfadiazine. This result doesn’t come along with a modulation of expression levels on the analysis genes, but with the population individualization which increase of the Pgp efflux activity
Livres sur le sujet "Transporteurs ABC"
Geisler, Markus, dir. Plant ABC Transporters. Cham : Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-06511-3.
Texte intégralProcko, Erik. General mechanisms for ABC transporters revealed by the transporter associated with antigen processing. Cambridge, Mass : Harvard University, 2008.
Trouver le texte intégralBoumendjel, Ahcne, Jean Boutonnat et Jacques Robert, dir. ABC Transporters and Multidrug Resistance. Hoboken, NJ, USA : John Wiley & Sons, Inc., 2009. http://dx.doi.org/10.1002/9780470495131.
Texte intégralGeorge, Anthony M., dir. ABC Transporters - 40 Years on. Cham : Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-23476-2.
Texte intégralAhcène, Boumendjel, Boutonnat Jean et Robert Jacques M. D, dir. ABC transporters and multidrug resistance. Hoboken, N.J : John Wiley & Sons, 2009.
Trouver le texte intégralB, Holland I., dir. ABC proteins : From bacteria to man. Amsterdam : Academic Press, 2003.
Trouver le texte intégralEfferth, Thomas, dir. Resistance to Targeted ABC Transporters in Cancer. Cham : Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-09801-2.
Texte intégralPonte-Sucre, Alicia. ABC transporters in microorganisms : Research, innovation and value as targets against drug resistance. Norfolk, UK : Caister Academic, 2009.
Trouver le texte intégralChapitres de livres sur le sujet "Transporteurs ABC"
Lage, Hermann. « ABC-Transporters ». Dans Encyclopedia of Cancer, 1–5. Berlin, Heidelberg : Springer Berlin Heidelberg, 2014. http://dx.doi.org/10.1007/978-3-642-27841-9_13-5.
Texte intégralScherrmann, Jean-Michel, Kim Wolff, Christine A. Franco, Marc N. Potenza, Tayfun Uzbay, Lisiane Bizarro, David C. S. Roberts et al. « ABC Transporters ». Dans Encyclopedia of Psychopharmacology, 1. Berlin, Heidelberg : Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-540-68706-1_1099.
Texte intégralBates, Susan E., et Tito Fojo. « ABC Transporters ». Dans Handbook of Anticancer Pharmacokinetics and Pharmacodynamics, 267–88. Totowa, NJ : Humana Press, 2004. http://dx.doi.org/10.1007/978-1-59259-734-5_17.
Texte intégralLage, Hermann. « ABC-Transporters ». Dans Encyclopedia of Cancer, 17–21. Berlin, Heidelberg : Springer Berlin Heidelberg, 2014. http://dx.doi.org/10.1007/978-3-662-46875-3_13.
Texte intégralLage, Hermann. « ABC-Transporters ». Dans Encyclopedia of Cancer, 10–13. Berlin, Heidelberg : Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-16483-5_13.
Texte intégralGrube, Markus, et Gabriele Jedlitschky. « ABC Transporters ». Dans Encyclopedia of Molecular Pharmacology, 1–7. Cham : Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-21573-6_174-1.
Texte intégralGrube, Markus, et Gabriele Jedlitschky. « ABC Transporters ». Dans Encyclopedia of Molecular Pharmacology, 1–7. Cham : Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-57401-7_174.
Texte intégralLackner, K. J., et D. Peetz. « ABC-Transporter ». Dans Springer Reference Medizin, 3–4. Berlin, Heidelberg : Springer Berlin Heidelberg, 2019. http://dx.doi.org/10.1007/978-3-662-48986-4_59.
Texte intégralLackner, K. J., et D. Peetz. « ABC-Transporter ». Dans Lexikon der Medizinischen Laboratoriumsdiagnostik, 1. Berlin, Heidelberg : Springer Berlin Heidelberg, 2018. http://dx.doi.org/10.1007/978-3-662-49054-9_59-1.
Texte intégralXu, YanXia, et YanHua Qi. « Monocot ABC Transporters ». Dans Signaling and Communication in Plants, 203–17. Cham : Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-06511-3_11.
Texte intégralActes de conférences sur le sujet "Transporteurs ABC"
LOCHER, KASPAR. « STRUCTURES AND REACTION MECHANISMS OF ABC TRANSPORTERS ». Dans 23rd International Solvay Conference on Chemistry. WORLD SCIENTIFIC, 2014. http://dx.doi.org/10.1142/9789814603836_0030.
Texte intégralEttouati, Laurent, Marie-Emmanuelle Million, Ophélie Arnaud, Géraldine Agusti, Waël Zeinyeh, Lucia Gonzalez-Lobato, Ali Koubeissi et al. « Advances in peptidomimetics as inhibitors of ABC transporters ». Dans 1st International Electronic Conference on Medicinal Chemistry. Basel, Switzerland : MDPI, 2015. http://dx.doi.org/10.3390/ecmc-1-a043.
Texte intégralPecks, U., L. Schmieding, Y. Sawierucha, K. Lüchow, N. Maass et W. Rath. « LXR und ABC-Transporter-Expression im Trophoblast bei IUGR ». Dans 62. Kongress der Deutschen Gesellschaft für Gynäkologie und Geburtshilfe – DGGG'18. Georg Thieme Verlag KG, 2018. http://dx.doi.org/10.1055/s-0038-1671434.
Texte intégralSchmieding, L., Y. Sawierucha, K. Lüchow, L. Segger, N. Maass, W. Rath et U. Pecks. « LXR und ABC-Transporter-Expression im Trophoblast bei IUGR ». Dans 28. Deutscher Kongress für Perinatale Medizin. Georg Thieme Verlag KG, 2017. http://dx.doi.org/10.1055/s-0037-1607686.
Texte intégralHuynh, Tony, Amanda Tivnan, Marcia Munoz, Leanna Cheung, Anasuya Vishvanath, Claudia Flemming, Fujiko Watt et al. « Abstract 1834 : Targeting ABC transporters in cancer through small molecule inhibitors ». Dans Proceedings : AACR 103rd Annual Meeting 2012‐‐ Mar 31‐Apr 4, 2012 ; Chicago, IL. American Association for Cancer Research, 2012. http://dx.doi.org/10.1158/1538-7445.am2012-1834.
Texte intégralMatsui, Hirofumi, et Hiromi Kurokawa. « Abstract 1285A : Erythropoietin can cancelchemo-resistances viadown regulation of ABC transporters ». Dans Proceedings : AACR Annual Meeting 2019 ; March 29-April 3, 2019 ; Atlanta, GA. American Association for Cancer Research, 2019. http://dx.doi.org/10.1158/1538-7445.sabcs18-1285a.
Texte intégralMatsui, Hirofumi, et Hiromi Kurokawa. « Abstract 1285A : Erythropoietin can cancelchemo-resistances viadown regulation of ABC transporters ». Dans Proceedings : AACR Annual Meeting 2019 ; March 29-April 3, 2019 ; Atlanta, GA. American Association for Cancer Research, 2019. http://dx.doi.org/10.1158/1538-7445.am2019-1285a.
Texte intégralKELLY, LIBUSHA, RACHEL KARCHIN et ANDREJ SALI. « PROTEIN INTERACTIONS AND DISEASE PHENOTYPES IN THE ABC TRANSPORTER SUPERFAMILY ». Dans Proceedings of the Pacific Symposium. WORLD SCIENTIFIC, 2006. http://dx.doi.org/10.1142/9789812772435_0006.
Texte intégralDurmus, Selvi, M. A. van der Valk, S. F. Teunissen, Els Wagenaar, Jos Beijnen et Alfred H. Schinkel. « Abstract 4419 : The role of ABC transporters in PhIP-induced colon carcinogenesis ». Dans Proceedings : AACR 103rd Annual Meeting 2012‐‐ Mar 31‐Apr 4, 2012 ; Chicago, IL. American Association for Cancer Research, 2012. http://dx.doi.org/10.1158/1538-7445.am2012-4419.
Texte intégralPiontek, M., L. Quell et F. Grebien. « ABC transporters modulate the response of AML cells to Menin-MLL inhibitors ». Dans 35. Jahrestagung der Kind-Philipp-Stiftung für pädiatrisch onkologische Forschung. Georg Thieme Verlag KG, 2024. http://dx.doi.org/10.1055/s-0044-1786608.
Texte intégralRapports d'organisations sur le sujet "Transporteurs ABC"
Pasinelli, Piera, et Dena Jacob. Rethinking Drug Treatment Approaches in ALS by Targeting ABC Efflux Transporters. Fort Belvoir, VA : Defense Technical Information Center, décembre 2014. http://dx.doi.org/10.21236/ada615391.
Texte intégralJenness, Mark, et Angus Murphy. Analysis of plant ABCB organic acid transporters (Final Report). Office of Scientific and Technical Information (OSTI), novembre 2020. http://dx.doi.org/10.2172/1719140.
Texte intégralYedidia, I., H. Senderowitz et A. O. Charkowski. Small molecule cocktails designed to impair virulence targets in soft rot Erwinias. Israel : United States-Israel Binational Agricultural Research and Development Fund, 2020. http://dx.doi.org/10.32747/2020.8134165.bard.
Texte intégralShani, Uri, Lynn Dudley, Alon Ben-Gal, Menachem Moshelion et Yajun Wu. Root Conductance, Root-soil Interface Water Potential, Water and Ion Channel Function, and Tissue Expression Profile as Affected by Environmental Conditions. United States Department of Agriculture, octobre 2007. http://dx.doi.org/10.32747/2007.7592119.bard.
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