L’équipe CoMiC étudie les communautés microbiennes des écosystèmes continentaux terrestres et aquatiques dans un cadre interdisciplinaire qui allie la microbiologie, la génomique comparative, la métagénomique, la chimie, l’écologie, la santé, les sciences de l’environnement et les sciences sociales.
Plus précisément, nos recherches portent sur (i) la vulnérabilité des communautés microbiennes aux perturbations et polluants induits par l’activité humaine (ii), les flux et la diversité des pathogènes (des humains ou des plantes) dans l’environnement, (iii) le développement de nouveaux outils de surveillance des écosystèmes aquatiques et de nouvelles approches pour assurer une gestion durable de ces écosystèmes.
Notre travail, structuré autour du concept « one health/ecohealth », se développe sur deux axes principaux :
Biodiversité structurelle et fonctionnelle des communautés microbiennes, leurs interactions et leurs rôles dans la fonction des écosystèmes où nous étudions :
- La relation entre la structure et la composition des communautés microbiennes et les flux de carbone organique et d’azote ou de polluants dans les écosystèmes.
- L’impact des changements locaux et globaux sur la dynamique et la structure des communautés microbiennes et sur les processus microbiens impliqués dans la dynamique des cycles C et N.
- Les conséquences de ces changements dans les communautés microbiennes sur les services écosystémiques rendus par les écosystèmes et sur les usages qui en sont faits.
Qualité écologique des écosystèmes continentaux- (dys)-fonctionnement des communautés microbiennes et risques associés pour la santé humaine et la production végétale où nous étudions :
- La relation entre la qualité écologique des écosystèmes continentaux (matière organique, niveau trophique, structure et composition des communautés microbiennes, …) et la survie et/ou le développement de bactéries pathogènes pour les plantes ou les humains.
- Les proliférations de cyanobactéries dans les écosystèmes aquatiques continentaux et la production de toxines, depuis la compréhension des processus (mise en place, synergie avec les micro-organismes hétérotrophes…) jusqu’à la mise au point d’outils de surveillance de ces proliférations et le développement de nouvelles approches pour la gestion des écosystèmes aquatiques.
- Les risques d’exposition humaine aux pathogènes bactériens et aux toxines des cyanobactéries en relation avec les usages des sols et des milieux aquatiques.
- L’adaptation des pathogènes à l’environnement par des approches de génomique comparative
Dans un contexte de changement global et local présent et futur, les chercheurs de CoMiC visent à :
- placer leur travail dans un cadre théorique et conceptuel solide ;
- apporter des réponses ciblées aux besoins spécifiques de la société et des parties prenantes dans les pays développés, émergents et en développement.
Les membres de l’équipe ont tous une forte implication dans les activités d’enseignement, en particulier à Sorbonne Université, mais aussi dans d’autres Universités (UPEC, Université de Paris) ou dans les écoles agronomiques (Agroparistech, ISARA de Lyon) ainsi que dans les pays du Sud (Côte d’Ivoire, Ouganda, Laos, Niger, Sénégal, Vietnam, Thaïlande) et dans la formation continue des chercheurs et personnels scientifiques des pays du Sud.
Quelques exemples de nos recherches
Les maladies liées à l’eau sont un problème de santé publique majeur ainsi qu’un obstacle au développement dans les pays tropicaux. Dans le nord du Laos, l’expansion rapide des plantations de teck (barres brunes, figure de gauche) a considérablement augmenté le ruissellement des eaux chargées de sédiments, entraînant des inondations (image centrale) qui transportent des eaux très turbides sévèrement contaminées par des bactéries pathogènes (graphique de droite).
References
- Rochelle-Newall E, Viguier M, Thammahacksa C., Silvera N., Latsachack K., Dinh R.P., Naporn P, Sy H.T., Soulileuth B, Hmaimum N., Sisouvanh P., Robain H., Janeau J.-L., Valentin C., Boithias L., Pierret A. (2016) Effect of land use and hydrological processes on Escherichia coli concentrations in streams of tropical, humid headwater catchments. Scientific Reports 6:32974. http://dx.doi.org/10.1038/srep32974
- Lacombe G., Ribolzi O., De Rouw A., Pierret A., Latsachack K., Silvera N., Dinh R.P., Orange D., Janeau J.-L., Soulileuth B., Robain H., Taccoen A., Sengphaathith P., Mouche E., Sengtaheuanghoung O., Duc T.T., Valentin C. (2016). Contradictory hydrological impacts of afforestation in the humid tropics evidenced by long-term field monitoring and simulation modeling. Hydrol. Earth Syst. Sci., 20, 2691–2704. http://dx.doi.org/10.5194/hess-20-2691-2016
- Boithias L., Choisy M., Souliyaseng N., Jourdren M., Quet F., Buisson Y, Thammahacksa C., Silvera N., Latsachack K, Sengtaheuanghoung O., Pierret A., Rochelle-Newall E., Becerra S., Ribolzi O. (2017) Hydrological regime and water shortage as drivers of the seasonal incidence of diarrheal diseases in a tropical montane environment. PLOS Neglected Tropical Diseases http://dx.doi.org/10.1371/journal.pntd.0005195
- Ribolzi O., Evrard O., Huon S., De Rouw A., Silvera N., Latsachack K.O., Soulileuth B., Lefevre I., Pierret A., Lacombe G., Sengtaheuanghoung O., Valentin C. (2017) From shifting cultivation to teak plantation: effect on overland flow and sediment yield in a montane tropical catchment. Scientific Reports – Nature, 2017, 7, p. art. 3987 [12 p.]. ISSN 2045-2322. http://dx.doi.org/10.1038/s41598-017-04385-2
- Lacombe G., Valentin C, Sounyafong P., De Rouw A, Soulileuth B., Silvera N, Pierret A, Sengtaheuanghoung O., Ribolzi O (2018). Linking crop structure, throughfall, soil surface conditions, runoff and soil detachment : 10 land uses analyzed in Northern Laos. Science of the Total Environment, 2018, 616, p. 1330-1338. ISSN 0048-9697. http://dx.doi.org/10.1016/j.scitotenv.2017.10.185
Ribolzi O., Lacombe G., Pierret A., Robain H., Sounyafong P., De Rouw A., Soulileuth B., Mouche E., Huon S., Silvera N., Latxachack K.O., Sengtaheuanghoung O., Valentin C. (2018) Interacting land use and soil surface dynamics control groundwater outflow in a montane catchment of the lower Mekong basin. Agriculture, Ecosystems & Environment, 268: 90-102. https://doi.org/10.1016/j.agee.2018.09.005
Song L., Boithias, L., Sengtaheuanghoung, O., Oeurng C., Valentin C., Souksavath B., Sounyafong P., De Rouw A., Soulileuth B., Silvera N., Lattanavongkhot B., PierretA., Ribolzi O. (2020). Understory limits surface runoff and soil loss in teak tree plantations of Northern Lao PDR. Water,12(9), 2327; https://doi.org/10.3390/w12092327
Nakhle P., Ribolzi O., Boithias L., Rattanavong S., Auda Y., Sayavong S., Zimmermann R.E., Soulileuth B., Pando A., Tammahacksa C., Rochelle-Newall E., Santini W., Martinez J.-M., Gratiot N., Pierret A. (2021) Effects of hydrological regime and land use on in-stream Escherichia coli concentration in the Mekong basin, Lao PDR. Accepted.
Burkholderia pseudomallei est un pathogène environnemental endémique dans les sols et les eaux de l’Asie du Sud-Est, responsable de la mélioïdose, une maladie particulièrement grave dont le taux de mortalité varie entre 20 et 50%. La connaissance de la distribution environnementale de B. pseudomallei est le préalable essentiel pour comprendre son écologie et épidémiologie et ainsi permettre des interventions de santé publique. Au Laos, nous développons depuis 2011 un programme multidisciplinaire pour comprendre les facteurs environnementaux qui déterminent l’occurrence et la propagation hydrologique du pathogène.
Ce programme a ainsi révélé la saisonnalité marquée de la contamination du réseau hydrographique au Laos (stations et rivières positives pour B. pseudomallei (points rouges) et négatives (points noirs) pendant la saison sèche (A) et la saison des pluies (B) ; photo de gauche : Dr Sayaphet Rattanavong échantillonnant des sédiments pour la détection environnementale de B. pseudomallei).
Références
- Knappik M., Dance D., Rattanavong S., Pierret A., Ribolzi O., Davong V., Silisouk J., Vongsouvath M. (2015) Evaluation of molecular methods to improve the detection of Burkholderia pseudomallei in soil and water samples from Laos. Applied and Environmental Microbiology (2015). http://aem.asm.org/content/early/2015/03/23/AEM.04204-14.abstract
- Ribolzi O, Rochelle-Newall E, Dittrich S, Auda Y, Newton PN, Rattanavong S, Knappik M, Soulileuth B, Sengtaheuanghoung O, Dance DAB, Pierret A. (2016) Land use and soil type determine the presence of the pathogen Burkholderia pseudomallei in tropical rivers. Environmental Science and Pollution Research. http://dx.doi.org/10.1007/S11356-015-5943-z
- Manivanh L., Pierret A., Rattanavong S., Kounnavongsa O., Buisson Y., Elliott I., Maeght J.-L., Xayyathip K., Silisouk J., Vongsouvath M., Phetsouvanh R., Newton P.N., Lacombe G., Ribolzi O., Rochelle-Newall E, Dance, D.A.B. (2017) Burkholderia pseudomallei in a lowland rice paddy: seasonal changes and influence of soil depth and physico-chemical properties. Scientific Reports – Nature, 2017, 7, p. art. 3031 [11 p.]. http://dx.doi.org/10.1038/s41598-017-02946-z
- Zimmermann R. E., Ribolzi O., Pierret A, Rattanavong S., Robinson M.T., Newton P.N., Davong V., Auda Y., Zopfi J., Dance D.A.B. (2018) Rivers as carriers and potential sentinels for Burkholderia pseudomallei in Laos. Scientific Reports – Nature, 2018, 8, p. art. 8674 [7p.]. ISSN 2045-2322. http://dx.doi.org/10.1038/s41598-018-26684-y
- Dance D.A.B., Knappik M., Dittrich S., Viengmon D., Silisouk J., Vongsouvath M., Rattanavong S., Pierret A., Newton P.N., Langla S., Limmathurotsakul D. (2018) Evaluation of consensus method for the culture of Burkholderia pseudomallei in soil samples from Laos. Wellcome Open Research. http://dx.doi.org/ 10.12688/wellcomeopenres.14851.2
- Liechti N., Zimmermann R.E., Zopfi J., Robinson M., Pierret A., Ribolzi O., Rattanavong S., Davong V., Newton P.N., Wittwer M., Dance D.A.B. (2021) Whole-genome assemblies of 16 Burkholderia pseudomallei isolates from rivers in Laos. Microbiology Resource Announcements, accepted.
Le projet vise à mieux comprendre la synergie entre la qualité de la matière organique (MO) dissoute (MOD) et particulaire (MOP) issue des blooms de cyanobactéries et les communautés microbiennes hétérotrophes (Figure 1). Les expériences conduites en conditions contrôlées (Figure 2) simulaient une fin de bloom de la cyanobactérie Microcystis aeruginosa (M), de la cyanobactérie Aphanizomenon gracile (A) et du mélange des deux (MA), en comparaison à une situation contrôle (C). Nous avons déterminé la contribution des communautés microbiennes hétérotrophes à la dégradation de la MO cyanobactérienne (Figure 3), et si cette contribution pouvait être affectée par (i) le mode de vie de ces microorganismes (libres et attachés), et (ii) la ou les espèce(s) cyanobactérienne(s) majoritaire(s).
Nous avons déterminé la dynamique des microorganismes, en termes de diversité (Figure 4), fonctions et diversité fonctionnelle, en fonction de la nature et de la complexité de la MO. Le suivi des pools de MO dissoute et particulaire nous ont permis d’étudier l’évolution de leurs quantités et qualités chimiques au cours de leur minéralisation (Figure 5).
Références
- Berg, J.S., Jézéquel, D., Duverger, A., Lamy, D., Laberty-Robert, C., Miot, J. (2019) Microbial diversity involved in iron and cryptic sulfur cycling in the ferruginous, low-sulfate waters of Lake Pavin, PLoS One, 14:e0212787
- Vojvoda, J., Lamy, D., Sintes, E., Garcia, J.A.L, Turk, V., Herndl, G.J. (2014) Seasonal variation in marine-snow-associated and ambient-water prokaryotic communities in the northern Adriatic Sea. Aquatic Microbial Ecology, 73:211-224
- Swan, B.K., Martinez-Garcia, M., Preston, C.M., Sczyrba, A., Woyke, T., Lamy, D., Reinthaler, T., Poulton, N.J., Masland, E.D.P., Lluesma Gomez, M., Sieracki, M.E., DeLong, E.F., Herndl, G.J, Stepanauskas, R. (2011). Ubiquitous dark ocean bacteria fix carbon and contain RuBisCO and sulfur oxidation genes. Science, 333:1296-1300.
- Agogué, H.*, Lamy, D.*, , Neal, P., Sogin, M., Herndl, G. (2011) Bacterial assemblage composition in the North Atlantic Ocean revealed by massively parallel tag sequencing. Molecular Ecology, 20:258-274
- Lamy, D., Obernosterer, I., Laghdass, M., Breton, E., Catala, P., Artigas, L.F., Lebaron, P., Christaki, U. (2009) Seasonal changes in bacterial abundance, activity and community composition in the eastern English Channel: a case study during a Phaeocystis globosa bloom. Aquatic Microbial Ecology, 58: 95-107.
Les bactéries soft rot sont responsables de pourriture sur un grand nombre de plante (Figure 1). Historiquement, leur isolement était restreint aux plantes malades avec une forte prépondérance d’isolement sur pomme de terre, plante d’intérêt économique majeur (Figure 2). L’élargissement de l’échantillonnage aux eaux de surface du bassin versant de la Durance (Figure 3) a mis en évidence des espèces circulantes non encore répertoriée en France ainsi que des nouvelles espèces négligées ou absentes des plantes malades. Les espèces pathogènes agressives sur plantes sont rares dans l’eau suggérant une adaptation au biome d’isolement. La génomique comparative des espèces permettra de mieux comprendre l’adaptation des espèces à leur biome d’origine ainsi que l’évolution de ce groupe de bactérie.
Réferences
- Portier P., Pédron J., Taghouti G., Dutrieux C., Barny MA. (2020) Updated taxonomy of Pectobacterium genus in the CIRM-CFBP bacterial collection: when newly described species reveal “old” endemic population. Microorganism 8 :1441 doi:10.3390/microorganisms8091441
- Portier P., Pédron J., Taghouti G., Fisher-Lesaux M., Caullireau E., Bertrand C., Laurent A., Chawki K., Oulgazi S., Moumni M., Adrivon D., Dutrieux C., Faure D., Helias V., Barny MA. (2019) Elevation of three subspecies of Pectobacterium carotovorum to species level: Pectobacterium brasiliense nov., Pectobacterium actinidiae sp. nov, and Pectobacterium odoriferum sp. nov, emended description of Pectobacterium carotovorum and description of Pectobacterium versatile sp. nov. a novel species isolated in various geographic location from water streams and symptoms on diverse plants.. Int . J. Syst. Evol. Microbiol. 69, pp 3207 – 3216. doi: 10.1099/ijsem.0.003611.
- Pédron J., Bertrand C., Taghouti G., Portier P., Barny MA. (2019) Pectobacterium aquaticum nov, isolated from waterways Int. J. Syst. Evol. Microbiol. 69 :745-751. DOI 10.1099/ijsem.0.003229
- Faye P., Pédron J., Bertrand C., Barny MA. (2018) Draft genomes of ‘Pectobacterium peruviense’ strains isolated from fresh water in France. Short genome report. doi: 10.1186/s40793-018-0332-
Les amendements organiques, utilisés pour palier à la diminution des teneurs en C des sols ont un impact sur la croissance des plantes et les apports de C d’origine végétale au sol. Nous avons comparé l’impact d’amendements produits avec et sans minéraux en présence et en l’absence de vers de terre. Le carbone du sol provenant des racines a pu être suivi grâce à des microcosmes où des plantes étaient cultivées sous atmosphère enrichie en 13CO2, dans des mélanges terre plus compost ou lombricompost. Le C des racines était transféré au sol via des microorganismes situés à quelques micromètres des cellules de la racine. Ces microorganismes avaient incorporé plus de carbone dérivé des racines et étaient de plus grande taille dans le traitement avec lombricompost produit en présence de minéraux, ce qui reflète des conditions favorables à la croissance microbienne. Nous avons ainsi montré que la production d’amendement en présence de minéraux (argiles) avec l’action de vers de terre (Eisenia foetida) augmente la biomasse végétale et le transfert de carbone dans le sol.
Référence
- Vidal A., Lenhart T., Dignac M.-F., Biron P., Höschen C., Barthod J., Vedere C., Vaury V., Bariac T., Rumpel C. 2020. Promoting plant growth and carbon transfer to soil with organic amendments produced with mineral additives. Geoderma 374,114454. doi:10.1016/j.geoderma.2020.114454
Actualités de l'équipe
20 minutes – C’est quoi les cyanobactéries, responsables de la fermeture de plans d’eau en Ile-de-France ?
Les cyanobactéries sont de plus en plus contrôlées face au...
Lire la suiteFrance inter – Nouveaux polluants détectés dans l’eau potable : des milliers de captages en sursis
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Lire la suiteVers un traité mondial pour mettre fin à la pollution plastique
Marie-France DIGNAC, DR INRAE de l'équipe CoMiC du département DCFE a apporté...
Lire la suiteIRD – Collecter les urines pour rendre les systèmes urbains des villes subsahariennes plus durables
La mise en place de dispositifs de collecte des urines...
Lire la suiteDes experts réfléchissent sur la question de la sècheresse
Les experts venus de 36 pays du monde cherchent une...
Lire la suiteINRAE – WaSAf, protéger les ressources en eau potable de surface en Afrique
Le Forum mondial de l'eau qui s'est déroulé du 21...
Lire la suiteiEES les femmes !
A l'occasion de la journée internationale des droits des femmes...
Lire la suiteRemise d’équipements à DALaM et MouNoy Dev
Fort de ses partenariats étroits avec les structures laotiennes, l'IRD...
Lire la suitePublications de l'équipe
Ne concerne que les publications de 2017 à aujourd’hui. Pour voir toutes les publications dirigez-vous vers la page Publications.
Référence | Liens | Journal | Equipes et départements |
---|---|---|---|
Colombini G., Rumpel C*., Houot S., Biron P*., Dignac M.–F*. (2022) A long-term field experiment reveals the accumulation of high amounts of microplastics in soils amended with composted waste residues. Environmental Pollution, 315:120369 | 10.1016/j.envpol.2022.120369 🔗 HAL | Environmental Pollution | CoMiC – DCFE ; EMS – DCFE ; FEST – Sols_ZC |
Souliyavongsa, X., Pierret, A., Trelo-ges, V., Ayutthaya, S.I.N., Sayavong, S., Hartmann, C., 2022. Does forest conversion to tree plantations affect properties of subsoil horizons? Findings from mainland Southeast Asia (Lao PDR, Yunnan-China). Geoderma Regional 28, e00457 | 10.1016/j.geodrs.2021.e00457 | Geoderma Regional | BioDIS – DCFE ; CoMiC – DCFE ; EERI – DCFE ; EMS – DCFE |
Erktan, A., Coq, S., Blanchart, E., Chevallier, T., Trap, J., Bernard, L., Nahmani, J., Hartmann, C., Hedde, M., Ganaulat, P., Barot, S., Cortet, J. and, 2022. Biodiversité et structure physique des sols : une vision spatialisée du fonctionnement des sols. Etude et Gestion des Sols 29, 153–167. | Etude et Gestion des Sols | BioDIS – DCFE ; CoMiC – DCFE ; EERI – DCFE ; EMS – DCFE ; EPE – EcoEvo ; F2ZC – Sols_ZC ; FEST – Sols_ZC | |
Le Mer G~, Bottinelli N*, Dignac M-F*, Capowiez Y, Bouquet P, Mazurier A, Baudin F, Caner L, Rumpel C* 2022. Exploring the control of earthworm cast macro- and micro-scale features on soil organic carbon mineralization across species and ecological categories. Geoderma, 427:116151 | 10.1016/j.geoderma.2022.116151 🔗 HAL | Geoderma | CoMiC – DCFE ; FEST – Sols_ZC |
Védère C, Lebrun M, Honvault N, Aubertin M-L, Girardin C, Garnier P, Dignac M-F*, Houben D, Rumpel C* 2022. How does soil water status influence the fate of soil organic matter? A review of processes across scales. Earth Science Reviews, 234:104214 | 10.1016/j.earscirev.2022.104214 🔗 HAL | Earth Science Reviews | CoMiC – DCFE ; FEST – Sols_ZC |
Dignac M.-F*., Maurin C. (2022) La construction d’un collectif scientifique créatif et bienveillant par la mobilisation des émotions et des sens à travers les liens sciences-art : le Réseau Matières Organiques. Etude et Gestion des sols 30, 19-31. | 🔗 HAL | Etude et Gestion des sols | CoMiC – DCFE |
Javati S, Guernier-Cambert V*, Jonduo M, Robby S, Kimopa J, Maure T, McBryde ES, Pomat W, Aplin K, Helgen KM, Abdad MY, Horwood PF. Diversity of Leptospira spp. in bats and rodents from Papua New Guinea. Transbound Emerg Dis. 2022 Oct 5. | 10.1111/tbed.14725 🔗 HAL | Transboundary and Emerging Diseases | CoMiC – DCFE |
Gallet A. Yao E.K., Foucault P., Bernard C., Quiblier C., Humbert J.F., Coulibaly J.K., Troussellier M., Marie M., Duperron S. (2022) Fish gut-associated bacterial communities in a tropical lagoon (Aghien lagoon, Ivory Coast). Frontiers in Microbiology13, 963456 | 10.3389/fmicb.2022.963456 🔗 HAL | Frontiers in Microbiology | CoMiC – DCFE |
Coq S, Ganault P, Le Mer G~, Nahmani J, Capowiez Y, Dignac M-F*, Rumpel C*, Joly F-X 2022. Faeces traits as unifying predictors of detritivore effects on organic matter turnover. Geoderma 422, 115940. | 10.1016/j.geoderma.2022.115940 🔗 HAL | Geoderma | CoMiC – DCFE ; FEST – Sols_ZC |
C.E. Morris, C. Lacroix, C. Chandeysson, C. Guilbaud, C. Monteil, S. Piry, E. Rochelle Newall*, S. Fiorini, F. Van Gijsegem*, M.A. Barny*, O. Berge. Comparative seasonal abundance and diversity of populations of the Pseudomonas syringae and Soft Rot Pectobacteriaceae species complexes throughout the Durance River catchment from its French Alps sources to its delta | 10.1101/2022.09.06.506731 🔗 HAL | BioRxiv | CoMiC – DCFE |
Ben Moussa H*, Bertrand C^, Rochelle-Newall E*, Fiorini S, Pédron J*, Barny MA* (2022) The Diversity and Abundance of Soft Rot Pectobacteriaceae Along the Durance River Stream in the Southeast of France Revealed by Multiple Seasonal Surveys. Phytopathology, 112(8):1676-1685. | 10.1094/phyto-12-21-0515-r 🔗 HAL | Phytopathology | CoMiC – DCFE |
Olokotum M., Humbert J.F.*, Quiblier C., Okello W., Semyalo R., Troussellier M., Marie B., Baumann K., Kurmayer R., Bernard C. (2022) Characterization of Potential Threats from CyanobacterialToxins in Lake Victoria Embayments and during Water Treatment. Toxins 14, 664 | 10.3390/toxins14100664 🔗 HAL | Toxins | CoMiC – DCFE |
Suvannang N`, Hartmann C*, Iwai Chuleemas B`, Jaiarree S`, Daungkamol K`, Polsrakhu P`, Sukchan S`, Sapet A`, Pierret A*, Brauman A, Hammecker C, Robain H* (2022) Soil priorities: Opportunities and challenges in Thailand. Geoderma Regional, 30 (2022) : e00536 | 10.1016/j.geodrs.2022.e00536 🔗 HAL | Geoderma Regional | BioDIS – DCFE ; CoMiC – DCFE ; F2ZC – Sols_ZC |
Boithias, L.; Ribolzi, O.; Rochelle-Newall, E.*; Thammahacksa, C.; Nakhle, P.; Soulileuth, B.; Pando-Bahuchon, A.*; Latsachack, K.; Silvera, N.*; Sounyafong, P.; Xayyathip, K.; Zimmermann, R.; Rattanavong, S.; Oliva, P.; Pommier, T.; Evrard, O.; Huon, S.*; Causse, J.; Henry-des-Tureaux, T.*; Sengtaheuanghoung, O.; Sipaseuth, N.; Pierret, A.* (2022) Escherichia coli concentration, multiscale monitoring over the decade 2011-2021 in the Mekong River basin, Lao PDR. EARTH SYSTEM SCIENCE DATA, 14(6), 2883-2894 | 10.5194/essd-14-2883-2022 🔗 HAL | EARTH SYSTEM SCIENCE DATA | CoMiC – DCFE ; BioDIS – DCFE ; F2ZC – Sols_ZC |
Royer G., Dixit Z., Pédron J.*, Pierrat G., Demontant V., Berçot B., Rodriguez C., Barny MA.*, Jacquier H, Woerther PL (2022) Genetic and Phenotypic Study of the Pectobacterium versatile Beta-Lactamase, the Enzyme Most Similar to the Plasmid-Encoded TEM-1. Applied and Environmental Microbiology, 88(11):e0022022. | 10.1128/aem.00220-22 | APPLIED AND ENVIRONMENTAL MICROBIOLOGY | CoMiC – DCFE |
Ahoutou M.A., Yao E.K., Djeha R., Kone M., Tambosco K., Duval C., Hamlaoui S., Bernard C., Bouvy M., Marie B., Montuelle B., Troussellier M., Konan F.K., Coulibaly J.C., Dosso M., Humbert J.F.*, Quiblier C. (2021) Impacts of nutrient loading and fish grazing on the phytoplankton community and cyanotoxin production in a shallow tropical lake: Results from mesocosm experiments. MicrobiologyOpen 1, e1278 | 10.1002/mbo3.1278 🔗 HAL | MicrobiologyOpen | CoMiC – DCFE |
Mitroi V.^, Deroubaix J.F., Tall Y., Ahi K.C., Humbert J.F.* (2022) Rendre compte de la dégradation des milieux aquatiques. Le rôle des savoirs dans la mise en place des politiques de protection des ressources en eau en Afrique subsaharienne. Geocarrefour 96, 1 | 10.4000/geocarrefour.19353 🔗 HAL | Geocarrefour | CoMiC – DCFE |
Le, N. D.`, T. T. H. Hoang`, V. P. Phung`, T. L. Nguyen`, E. Rochelle-Newall*, T. T. Duong`, T. M. H. Pham`, T. X. B. Phung`, T. D. Nguyen`, P. T. Le`, L. A. Pham`, T. A. H. Nguyen` and T. P. Q. Le` (2022). “Evaluation of heavy metal contamination in the coastal aquaculture zone of the Red River Delta (Vietnam).” Chemosphere 303: 134952 | 10.1016/j.chemosphere.2022.134952 | Chemosphere | CoMiC – DCFE |
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Noémie Pascault, Olivier Rué, Valentin Loux, Jacques Pédron*, Véronique Martin, Jennifer Tambosco, Cécile Bernard, Jean‐François Humbert*, Julie Leloup* (2021) Insights into the cyanosphere: capturing the respective metabolisms of cyanobacteria and chemotrophic bacteria in natural conditions? Env. Mic. Reports. | 10.1111/1758-2229.12944 🔗 HAL | Environmental Microbiology Reports | CoMiC – DCFE ; EMS – DCFE |
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Le H.T.~, Rochelle-Newall E.*, Ribolzi O., Janeau J.L.*, Huon S.*, Latsachack K.`, Pommier T. (2020). Land use strongly influences soil organic carbon and bacterial community loss in runoff in tropical Uplands. Land Degradation Development | 10.1002/ldr.3433 🔗 HAL | Land Degradation & Development | CoMiC – DCFE ; F2ZC – Sols_ZC ; FEST – Sols_ZC |
Pédron J*, Van Gijsegem F* (2019) Diversity in the Bacterial Genus Dickeya Grouping Plant Pathogens and Waterways Isolates. OBM Genetics 2019, Volume 3, Issue 4. | 10.21926/obm.genet.1904098 | OBM Genetics | CoMiC – DCFE |
Duong, T. T.`, T. T. H. Hoang`, T. K. Nguyen`, T. P. Q. Le`, N. D. Le`, D. K. Dang`, X. Lu`, M. H. Bui`, Q. H. Trinh`, T. H. V. Dinh`, T. D. Pham` & E. Rochelle-newall, 2019. Factors structuring phytoplankton community in a large tropical river: Case study in the Red River (Vietnam). Limnologica 76:82-93 | 10.1016/j.limno.2019.04.003 🔗 HAL | Limnologica | CoMiC – DCFE |
Clement, C~., Pierret A*., Maeght JL., Hartmann C*., Xayyathip K’., Soulileuth B’., Sounyafong P.’, Latsachack K’., Thammahacksa C’., Sengtaheuanghoung O’. (2019) Linking tree‐rooting pro les to leaf phenology: a first attempt on Tectona Grandis Linn F. Trees 33, pages 1491–1504 (2019). | 10.1007/s00468-019-01876-9 🔗 HAL | Trees | BioDIS – DCFE ; CoMiC – DCFE |
Zeitoun V., Auetrakulvit P’., Zazzo A., Pierret A*., Frere S., Forestier H. (2019) Discovery of an outstanding Hoabinhian site from the Late Pleistocene at Doi Pha Kan (Lampang province, northern Thailand), Archaeological Research in Asia, 18, 1-16 | 10.1016/j.ara.2019.01.002 🔗 HAL | Archaeological Research in Asia | CoMiC – DCFE |
Daviere A, Sotomski M, Audibert A, Carol P*, Hubert S, Lebreton S*, Louvet-Vallee S, Pedron J, PuyaubertJ, Kraepiel Y, Lacoste J.(2019) Synergistic toxicity between glyphosate and 2,4-dinitrophenol on budding yeast is not due to H2O2-mediated oxidative stress. Matters 5 (4), e201903000030 | 10.19185/matters.201903000030 🔗 HAL | Matters | APCE – IPE ; CoMiC – DCFE ; EMS – DCFE |
Mugler, C., Ribolzi, O., Janeau, J.L.*, Rochelle-Newall, E.*, Latsachack, K.`, Thammahacksa, C.`, Viguier, M., Jarde, E., Henri-Des-Tureaux*, T., Sengtaheuanghoung, O.`, Valentin, C.*, 2019. Experimental and modelling evidence of short-term effect of raindrop impact on hydraulic conductivity and overland flow intensity. Journal of Hydrology 570, 401-410 | 10.1016/j.jhydrol.2018.12.046 🔗 HAL | Journal of Hydrology | CoMiC – DCFE ; F2ZC – Sols_ZC ; FEST – Sols_ZC |
Barot, S*., L. Abbadie*, A. Auclerc, C. Barthélémy, E. Bérille, P. Billet, P. Clergeau, J.-N. Consales, M. Deschamp-Cottin, A. David~, C. Devigne, V. Dham, Y. Dusza~, A. Gaillard, E. Gonzalez, M. Hédont, D. Labarraque, A.-M. Le Bastard, J.-L. Morel, Y. Petit-Berghem, E. Rémy, E. Rochelle-Newall* & M. Veyrières, 2019. Urban ecology, stakeholders and the future of ecology. Science of The Total Environment 667:475-484 | 10.1016/j.scitotenv.2019.02.410 🔗 HAL | Science of the Total Environment | CoMiC – DCFE ; EMS – DCFE |
Lepère C., Domaizon I., Humbert J.F.*, Jardillier L., Hugoni M., Debroas D. (2019) Diversity, spatial distribution and activity of fungi in freshwater ecosystems. PeerJ | 10.7717/peerj.6247 🔗 HAL | PeerJ | CoMiC – DCFE |
Pédron J*, Bertrand C^, Taghouti G, Portier P, Barny MA*. (2019) Pectobacterium aquaticum sp. nov., isolated from waterways. Int J Syst Evol Microbiol. 69(3): 745-751 | 10.1099/ijsem.0.003229 🔗 HAL | International Journal of Systematic and Evolutionary Microbiology | CoMiC – DCFE |
Zeitoun V., Bourdon E., Latsachack K.O.’, Pierret A*, Singthong S’, Baills H., Forestier H. (2019) Discovery of a new open-air Hoabinhian site in Luang Prabang province (Lao PDR). Dating and technological study of the lithic assemblage. Comptes Rendus Palevol, 18, 142-157. | 10.1016/j.crpv.2018.05.003 🔗 HAL | Comptes rendus Palevol | CoMiC – DCFE |
Hmimina G., Hulot F.D., Humbert J.F.*, Quiblier C., Tambosco K., Lemaire B.J., Vinçon-Leite B., Audebert L., Soudani K. (2019) Linking phytoplankton pigment composition and optical properties: A framework for developing remote-sensing metrics for monitoring cyanobacteria. Water Research 148, 504-514 | 10.1016/j.watres.2018.09.055 🔗 HAL | Water Research | CoMiC – DCFE |
Alič Š, Pédron J*, Dreo T, Van Gijsegem F* (2019) Genomic characterisation of the new Dickeya fangzhongdai species regrouping plant pathogens and environmental isolates. BMC Genomics. 20(1): 34 | 10.1186/s12864-018-5332-3 🔗 HAL | BMC Genomics | CoMiC – DCFE |
Essarts YR des, Pédron J*, Blin P, Dijk EV, Faure D, Gijsegem FV* (2019) Common and distinctive adaptive traits expressed in Dickeya dianthicola and Dickeya solani pathogens when exploiting potato plant host. Environmental Microbiology.21(3), 1004–1018 | 10.1111/1462-2920.14519 🔗 HAL | Environmental Microbiology | CoMiC – DCFE |
Watteau F., Dignac M.-F.*, Bouchard A., Revallier A., Houot S. 2018. Microplastic detection in soil amended with municipal solid waste composts as revealed by transmission electronic microscopy and Pyrolysis/GC/MS. Frontiers in Sustainable Food Systems, 2: 81 | 10.3389/fsufs.2018.00081 🔗 HAL | Frontiers in Sustainable Food Systems | CoMiC – DCFE |
Ribolzi, O., Lacombe, G., Pierret, A.*, Robain, H.*, Sounyafong, P.`, de Rouw, A.*, Soulileuth, B.`, Mouche, E., Huon, S.*, Silvera, N.*, Latxachak, K.O.`, Sengtaheuanghoung, O.`, Valentin, C.* Interacting land use and soil surface dynamics control groundwater outflow in a montane catchment of the lower Mekong basin. Agric. Ecosyst. Environ. 268, 90–102 | 10.1016/j.agee.2018.09.005 🔗 HAL | Agriculture Ecosystems & Environment | CoMiC – DCFE ; F2ZC – Sols_ZC |
Dance D.A.B., Knappik M., Dittrich S., Viengmon D., Silisouk J.’, Vongsouvath M.’, Rattanavong S.,’ Pierret A.*, Newton P.N., Amornchai P’, Vanaporn Wuthiekanun’, Langla S., Limmathurotsakul D’. (2018) Evaluation of consensus method for the culture of Burkholderia pseudomallei in soil samples from Laos. Wellcome Open Research. | 10.12688/wellcomeopenres.14851.2 🔗 HAL | Wellcome Open Research | CoMiC – DCFE |
Le, H.T.~`, E. Rochelle-Newall*, Y. Auda, O. Ribolzi, O. Sengtaheuanghoung`, E. Thebault*, B. Soulileuth`, and T. Pommier, Vicinal land use change strongly drives stream bacterial community in a tropical montane catchment. FEMS microbiology ecology, 2018. 94(11). | 10.1093/femsec/fiy155 🔗 HAL | FEMS Microbiology Ecology | CoMiC – DCFE ; EERI – DCFE |
Isidora Echenique-Subiabre I.~, Tenon M., Humbert J.F.*, Quiblier C. (2018) Spatial and Temporal Variability in the Development and Potential Toxicity of Phormidium Biofilms in the Tarn River, France. Toxins 10, 418 | 10.3390/toxins10100418 🔗 HAL | Toxins | CoMiC – DCFE |
Faye P`, Bertrand C^, Pédron J*, Barny MA* (2018) Draft genomes of “Pectobacterium peruviense” strains isolated from fresh water in France. Stand Genomic Sci. 13: 27 | 10.1186/s40793-018-0332-0 🔗 HAL | Standards in Genomic Sciences | CoMiC – DCFE |
Barthod J.~, Rumpel C.*, Calabi-Floody M., Mora M-L., Bolan N., Dignac M-F.* (2018) Adding worms during composting with red mud and fly ash reduces CO2 emissions and increases plant available nutrient contents. Journal of Environmental Management, 222: 207-215 | 10.1016/j.jenvman.2018.05.079 🔗 HAL | Journal of Environmental Management | CoMiC – DCFE ; FEST – Sols_ZC |
Echenique-Subiabre I.~, Zancarini A.^, Heath M.W., Wood S.A., Quiblier C., Humbert J.F.* (2018) Multiple processes acting from local to large geographical scales shape bacterial communities associated with Phormidium (cyanobacteria) biofilms in French and New Zealand rivers. Scientific Reports 8, 14416 | 10.1038/s41598-018-32772-w 🔗 HAL | Scientific reports | CoMiC – DCFE |
Van Gijsegem F*, Bitton F, Laborie A-L, Kraepiel Y*, Pédron J* (2018) Characterization of the early response of Arabidopsis thaliana to Dickeya dadantii infection using expression profiling. bioRxiv 415380; | 10.1101/415380 🔗 HAL | BioRxiv | CoMiC – DCFE ; EMS – DCFE |
Sengtaheuanghoung O., Ribolzi O., Rochelle-Newall E. J.*, Boithias L., Evrard O., Henri-des-Tureaux T.*, Huon S.*, Janeau J.-L*., Latsachack K*., Lefèvre I., Mouche E., Robain H.*, de Rouw A.*, Xayyathip K.*, Silvera N.*, Sisouvanh P~., Soulileuth B.*, Sounyafong P*., Thammahacksa C*., Viguier M., Lacombe G., Valentin C. & Pierret. A.*, Interactions between land use, fluxes of water and sediments, and the spread of bacterial contaminants in the uplands of northern Lao PDR. In: Nations, F. A. O. (ed) Proceedings of the Global Symposium on Soil Pollution 2018, Rome, Italy, 2018. FAO, p 976. | FAO Editions | BioDIS – DCFE ; CoMiC – DCFE ; F2ZC – Sols_ZC ; FEST – Sols_ZC | |
Nkwain Y.F., Demyan M. S., Rasche F., Dignac M.-F.*, Schulz E., Kätterer T., Müller T., Cadisch G. (2018) Coupling pyrolysis with mid-infrared spectroscopy (Py-MIRS) to fingerprint biochemical quality of soil organic matter. Journal of Analytical and Applied Pyrolysis, 133: 176-184 | 10.1016/j.jaap.2018.04.004 🔗 HAL | Journal of Analytical and Applied Pyrolysis | CoMiC – DCFE |
Fouilland, E., A. Trottet, C. Alves-de-Souza, D. Bonnet, T. Bouvier, M. Bouvy, S. Boyer, L. Guillou, E. Hatey, H. Jing, C. Leboulanger, E. Le Floc’h, H. Liu, S. Mas, B. Mostajir, J. Nouguier, D. Pecqueur, E. Rochelle-Newall*, C. Roques, C. Salles, M.-G. Tournoud, C. Vasseur & F. Vidussi, 2017. Significant Change in Marine Plankton Structure and Carbon Production After the Addition of River Water in a Mesocosm Experiment. Microbial Ecology 74(2):289-301 | 10.1007/s00248-017-0962-6 🔗 HAL | Microbial Ecology | CoMiC – DCFE |
Le, T. P. Q., N. D. Le, V. N. Dao, E. Rochelle-Newall*, T. M. H. Nguyen~, C. Marchand, T. T. Duong & T. X. B. Phung, 2018. Change in carbon flux (1960–2015) of the Red River (Vietnam). Environmental Earth Sciences 77(18):658 | 10.1007/s12665-018-7851-2 🔗 HAL | Environmental Earth Sciences | CoMiC – DCFE |
Zimmermann R. E., Ribolzi O., Pierret A,* Rattanavong S.’, Robinson M. T., Newton P. N., Davong V.’, Auda Y., Zopfi J., Dance D. A. B. (2018) Rivers as carriers and potential sentinels for Burkholderia pseudomallei in Laos. Scientific Reports – Nature, 2018, 8, p. art. 8674 [7p.]. ISSN 2045-2322. | 10.1038/s41598-018-26684-y 🔗 HAL | Scientific Reports | CoMiC – DCFE |
Alic S, Van Gijsegem F, Pédron J*, Ravnikar M and Dreo T (2018) Diversity within the novel Dickeya fangzhongdai sp., isolated from infected orchids, water and pears. Plant Pathology 67: 1612-1620. | 10.1111/ppa.12866 🔗 HAL | Plant Pathology | CoMiC – DCFE |
Rochelle-Newall E.*, Niboyet A.*, Jardillier L., Fiorini S., Chollet S., Llavata M., de Santis E., Barot S.*, Lacroix G.* (2018)Impacts of elevated atmospheric CO2 concentration on terrestrial-aquatic carbon transfer and a downstream aquatic microbial community. Aquatic Sciences, 80, Article Number: 27 | 10.1007/s00027-018-0577-0 🔗 HAL | Aquatic Sciences | CoMiC – DCFE ; EERI – DCFE ; EMS – DCFE |
Nguyen, T. M. H.~, G. Billen, J. Garnier, T. P. Q. Le, Q. L. Pham, S. Huon* & E. Rochelle Newall*, 2018. Organic carbon transfers in the subtropical Red River system (Viet Nam): insights on CO2 sources and sinks. Biogeochemistry 138(3):277-295. | 10.1007/s10533-018-0446-x 🔗 HAL | Biogeochemistry | CoMiC – DCFE ; F2ZC – Sols_ZC |
Barthod J.~, Rumpel C.*, Dignac M-F.* (2018) Composting with additives to improve organic amendments. A review. Agronomy for Sustainable Development, 38:17 | 10.1007/s13593-018-0491-9 🔗 HAL | Agronomy for Sustainable Development | CoMiC – DCFE ; FEST – Sols_ZC |
Pédron J*, Chapelle E, Alunni B, Van Gijsegem F* (2018) Transcriptome analysis of the Dickeya dadantii PecS regulon during the early stages of interaction with Arabidopsis thaliana. Mol Plant Pathol. 19(3): 647-663 | 10.1111/mpp.12549 🔗 HAL | Molecular Plant Pathology | CoMiC – DCFE |
Lacombe G., Valentin C*, Sounyafong P.’, De Rouw A*, Soulileuth B.’, Silvera N*, Pierret A*, Sengtaheuanghoung O.’, Ribolzi O (2018). Linking crop structure, throughfall, soil surface conditions, runoff and soil detachment : 10 land uses analyzed in Northern Laos. Science of the Total Environment, 2018, 616, p. 1330-1338. ISSN 0048-9697. | 10.1016/j.scitotenv.2017.10.185 🔗 HAL | Science of the Total Environment | CoMiC – DCFE ; F2ZC – Sols_ZC |
Pierret A.*, Lacombe G. (2018) Hydrologic regulation of plant rooting depth : breakthrough or observational conundrum ?. Proceedings of the National Academy of Sciences of the United States of America, 2018, 115 (12), p. E2669-E2670. ISSN 0027-8424. | 10.1073/pnas.1801721115 | PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA | CoMiC – DCFE |
Toussaint A., Van Gijsegem F.* (2017) Extension of the transposable bacterial virus family: two genomic organisations among phages and prophages with a Tn552-related transposase. Research in Microbiology, 169: 9 | 10.1016/j.resmic.2017.11.002 🔗 HAL | Research in Microbiology | CoMiC – DCFE |
Rochelle Newall, E*., L. Boithias, C. Bouet*, O. Malam-Issa*, A. Pierret*, O. Ribolzi & E. Roberts, 2017. Accès à l’eau, usage des terres et dégradation des sols: un triptyque qui favorise l’émergence des maladies diarrhéiques. In Loireau, M. & N. Ben Khatra (eds) Désertification et Système Terre, de la (re)connaissance à l’action//Liason Energie-Francophonie. vol 106. Institut de la Francophonie pour le Developpement Durable et l’Organisation International de la Francophonie, Quebec, Canada, 83-85. | 🔗 HAL | Liaison Energie-Francophonie | CoMiC – DCFE ; F2ZC – Sols_ZC |
Biscornet L, Dellagi K, Pagès F, Bibi J, de Comarmond J, Mélade J, Govinden G, Tirant M, Gomard Y, Guernier V*, Lagadec E, Mélanie J, Rocamora G, Le Minter G, Jaubert J, Mavingui P, Tortosa P. Human leptospirosis in Seychelles: a prospective study confirms the heavy burden of the disease but suggests that rats are not the main reservoir. PLoS Negl Trop Dis. 2017 Aug 28;11(8):e0005831. | 10.1371/journal.pntd.0005831 🔗 HAL | Plos Neglected Tropical Diseases | CoMiC – DCFE |
Morris C., Barny MA.*, Berge O., Kinkel LL., and Lacroix C.(2017) Frontiers for research on the ecology of plant pathogenic bacteria: Fundamentals for sustainability. Mol plant pathol : 18(2) | 10.1111/mpp.12508 🔗 HAL | Molecular Plant Pathology | CoMiC – DCFE |
Ribolzi O., Evrard O., Huon S.*, de Rouw A.*, Silvera N.*, Latsachack K.O.`, Soulileuth B.`, Lefèvre I., Pierret A.*, Lacombe G., Sengtaheuanghoung O.`, Valentin C.* (2017) From shifting cultivation to teak plantation: effect on overland flow and sediment yield in a montane tropical catchment. Scientific Reports, 7: 3987 | 10.1038/s41598-017-04385-2 🔗 HAL | Scientific Reports | CoMiC – DCFE ; F2ZC – Sols_ZC ; FEST – Sols_ZC |
Zancarini A.^, Echenique-Subiabre I.~, Debroas D., Taïb N., Quiblier C., Humbert J.F.* (2017)Deciphering biodiversity and interactions between bacteria andmicroeukaryotes within epilithic biofilms from the Loue River, France. Scientific Reports 7, 4344 | 10.1038/s41598-017-04016-w 🔗 HAL | Scientific Reports | CoMiC – DCFE |
Kim, M.`, L. Boithias, K. H. Cho`, N. Silvera, C. Thammahacksa, K. Latsachack*, E. Rochelle-Newall*, O. Sengtaheuanghoung, A. Pierret*, Y. A. Pachepsky & O. Ribolzi, 2017. Hydrological modeling of Fecal Indicator Bacteria in a tropical mountain catchment. Water Research 119:102-113 | 10.1016/j.watres.2017.04.038 🔗 HAL | Water Research | CoMiC – DCFE ; F2ZC – Sols_ZC |
Le, T. P. Q., V. N. Dao°, E. Rochelle-Newall*, J. Garnier, X. Lu, G. Billen, T. T. Duong, C. T. Ho, H. Etcheber, T. M. H. Nguyen~, T. B. N. Nguyen, B. T. Nguyen, N. Da Le & Q. L. Pham, 2017. Total organic carbon fluxes of the Red River system (Vietnam). Earth Surface Processes and Landforms 42:1329-1341 | 10.1002/esp.4107 | EARTH SURFACE PROCESSES AND LANDFORMS | CoMiC – DCFE |
Manivanh, L`., A. Pierret*, S. Rattanavong`, O. Kounnavongsa, Y`. Buisson, I. Elliott, J.-L. Maeght*, K. Xayyathip`, J. Silisouk`, M. Vongsouvath`, R. Phetsouvanh`, P. N. Newton, G. Lacombe, O. Ribolzi, E. Rochelle-Newall* & D. A. B. Dance, 2017. Burkholderia pseudomallei in a lowland rice paddy: seasonal changes and influence of soil depth and physico-chemical properties. Scientific Reports 7:3031 | 10.1038/s41598-017-02946-z 🔗 HAL | Scientific Reports | CoMiC – DCFE ; F2ZC – Sols_ZC |
Lerch T.Z.*, Chenu C., Dignac M.-F.*, Barriuso E., Mariotti A. (2017) Biofilm vs planktonic lifestyle: consequences on pesticide 2,4-D biodegradation by Cupriavidus necator JMP134. Frontiers in Microbiology 8 : 90 | 10.3389/fmicb.2017.00904 🔗 HAL | Frontiers in Microbiology | BioDIS – DCFE ; CoMiC – DCFE |
MANIVANH, L.’, PIERRET A.*, RATTANAVONG, S.’, KOUNNAVONGSA, O.’, BUISSON, Y., ELLIOTT, I., MAEGHT, J.-L.*, XAYYATHIP, K., SILISOUK, J.’, VONGSOUVATH, M.’, PHETSOUVANH, R.’, NEWTON, P.N., LACOMBE, G., RIBOLZI, O., ROCHELLE-NEWALL*, E., DANCE, D.A.B. (2017) Burkholderia pseudomallei in a lowland rice paddy: seasonal changes and influence of soil depth and physico-chemical properties. Scientific Reports – Nature, 2017, 7, p. art. 3031 [11 p.]. | 10.1038/s41598-017-02946-z 🔗 HAL | Scientific Reports | CoMiC – DCFE |
IMDIRAKPHOL S.’, ZAZZO A., AUETRAKULVIT P.’, TIAMTINKRIT C.’, PIERRET A.*, FORESTIER H., ZEITOUN V. (2017) The perforated stones of the Doi Pha Kan burials (Northern Thailand): A Mesolithic singularity? Comptes rendus Palevol (2017) Volume 16, Issue 3, April–May 2017, Pages 351-361 | 10.1016/j.crpv.2016.12.003 🔗 HAL | Comptes rendus Palevol | CoMiC – DCFE |
KIM, J.H., FOURCAUD, T., JOURDAN, C., MAEGHT*, J.-L., MAO, Z., METAYER, J., MEYLAN, L., PIERRET A*., RAPIDEL, B., ROUPSARD, O., de ROUW, A.*, VILLATORO SANCHEZ, M., WANG, Y., STOKES, A. (2017) Vegetation drives slope stability and its variability through hydrological impacts. Geophys. Res. Lett., 44: 4897-4907. | 10.1002/2017gl073174 🔗 HAL | Geophysical Research Letters | CoMiC – DCFE ; F2ZC – Sols_ZC |
Dignac, M.-F.*, Derrien, D., Barré, P., Barot, S.*, Cécillon, L., Chenu, C., Chevallier, T., Freschet, G.T., Garnier, P., Guenet, B., Hedde, M., Klumpp, K., Lashermes, G., Maron, P.-A., Nunan, N.*, Roumet, C., Basile-Doelsch, I., 2017. Increasing soil carbon storage: mechanisms, effects of agricultural practices and proxies. A review.Agronomy for Sustainable Development 37 | 10.1007/s13593-017-0421-2 🔗 HAL | Agronomy for Sustainable Development | BioDIS – DCFE ; CoMiC – DCFE ; EMS – DCFE |
Van Gijsegem F.*, Pédron J.*, Patrit O., Simond-Côte E., Maia-Grondard A., Pétriacq P., Gonzalez R., Blottière L.^, Kraepiel Y.* (2017) Manipulation of ABA content in Arabidopsis thaliana modifies sensitivity and oxidative stress response to Dickeya dadantii and influences peroxidase activity. Front. Plant Sci.: 8 : 456 | 10.3389/fpls.2017.00456 🔗 HAL | Frontiers in Plant Science | CoMiC – DCFE ; EMS – DCFE |
Guellati F.Z., Touati H., Tambosco K., Quiblier C., Humbert J.F.*, Bensouilah M. (2017) Unusual cohabitation and competition between Planktothrix rubescens and Microcystis sp. (cyanobacteria) in a subtropical reservoir (Hammam Debagh) located in Algeria. Plos One 12(8): e0183540 | 10.1371/journal.pone.0183540 🔗 HAL | Plos one | CoMiC – DCFE |
Debroas D., Domaizon I., Humbert J.F.*,Jardillier L., Lepère C., Oudart A. and Taïb X. (2017) Overview of freshwater microbial eukaryotesdiversity: a first analysis of publicly available metabarcoding data. FEMS Microbiology Ecology, 93, 4 | 10.1093/femsec/fix023 🔗 HAL | FEMS Microbiology Ecology | CoMiC – DCFE |
Panettieri, M.; Rumpel, C.*; Dignac, M. -F.*; Chabbi, A. (2017) Does grassland introduction into cropping cycles affect carbon dynamics through changes of allocation of soil organic matter within aggregate fractions? SCIENCE OF THE TOTAL ENVIRONMENT, 576, 251-263 | 10.1016/j.scitotenv.2016.10.073 🔗 HAL | SCIENCE OF THE TOTAL ENVIRONMENT | CoMiC – DCFE ; FEST – Sols_ZC |
Pancrace P., Barny MA.*, Ueoka R., Calteau A., Scalvenzi T., Pédron J.*, Barbe V., Piel J., Humbert JF.*, Gugger M (2017) Insights into the Planktothrix genus: Genomic and metabolic comparison of benthic and planktic strains. Scientific reports.7, 41181 | 10.1038/srep41181 🔗 HAL | Scientific Reports | CoMiC – DCFE |
Membres de l'équipe
Nom Prénom | Corps | Employeur | Département et Équipe | Adresse | Téléphone | Mél |
---|---|---|---|---|---|---|
BAKHOS Melissa | Doctorante | S-U | Équipe CoMiC du Département DCFE ; Équipe FEST du Département Sols_ZC | Campus Pierre et Marie Curie – Paris 5e Tour 44-34 – 5e étage – bureau : 512 | melissa.bakhos@sorbonne-universite.fr | |
BARNY Marie-Anne | DR | INRAE | Équipe CoMiC du Département DCFE | Campus Pierre et Marie Curie – Paris 5e Tour 44-45 – 4e étage – bureau : 408 | (+33) 01-44-27-32-94 | marie-anne.barny@upmc.fr |
CANTO Pierre-Yves | AI | CNRS | Équipe CoMiC du Département DCFE | Campus Pierre et Marie Curie – Paris 5e Tour 44-45 – 4e étage – bureau : 414 | (+33) 01-44-27-31-45 | pierre-yves.canto@upmc.fr |
COLOMBINI Gabin | Post-doctorant | IRD | Équipe CoMiC du Département DCFE ; Équipe FEST du Département Sols_ZC | Campus Pierre et Marie Curie – Paris 5e Tour 44-34 – 5e étage – bureau : 510 | (+33) 01-44-27-34-03 | gabin.colombini@sorbonne-universite.fr |
DIGNAC Marie-France | DR | INRAE | Équipe CoMiC du Département DCFE | Campus Pierre et Marie Curie – Paris 5e Tour 44-34 – 5e étage – bureau : 504 | (+33) 01-44-27-51-71 | marie-france.dignac@inrae.fr |
GASQUE Mégane | Doctorante | S-U | Équipe CoMiC du Département DCFE | Campus Pierre et Marie Curie – Paris 5e Tour 44-45 – 4e étage – bureau : 0 | megane.gasque@ird.fr | |
GUERNIER Vanina | CR | IRD | Équipe CoMiC du Département DCFE | Campus Pierre et Marie Curie – Paris 5e Tour 44-45 – 4e étage – bureau : 408 | (+33) 01-44-27-32-94 | vanina.guernier@ird.fr |
HUMBERT Jean-François | DR | INRAE | Équipe CoMiC du Département DCFE | Campus Pierre et Marie Curie – Paris 5e Tour 44-45 – 4e étage – bureau : 511 | (+33) 01-44-27-41-67 | jean-francois.humbert@upmc.fr |
LAMY Dominique | MC | S-U | Équipe CoMiC du Département DCFE | Campus Pierre et Marie Curie – Paris 5e Tour 44-45 – 4e étage – bureau : 408 | (+33) 01-44-27-41-67 | dominique.lamy@sorbonne-universite.fr |
PÉDRON Jacques | MC | S-U | Équipe CoMiC du Département DCFE | Campus Pierre et Marie Curie – Paris 5e Tour 44-45 – 4e étage – bureau : 410 | (+33) 01-44-27-41-67 | jacques.pedron@upmc.fr |
ROCHELLE-NEWALL Emma | DR | IRD | Équipe CoMiC du Département DCFE | Campus Pierre et Marie Curie – Paris 5e Tour 44-45 – 4e étage – bureau : 404 | (+33) 01-44-27-38-26 | emma.rochelle-newall@ird.fr |
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