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kw.\*:("Calyptogena magnifica")

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ETAPES DE L'ORGANISATION MICROSTRUCTURALE CHEZ CALYPTOGENA MAGNIFICA BOSS ET TURNER, BIVALVE A CROISSANCE RAPIDE DES SOURCES HYDROTHERMALES OCEANIQUESFATTON E; ROUX M.1981; C.R. SEANCES ACAD. SCI., SER. 3, SCI. VIE; ISSN 0249-6313; FRA; DA. 1981; VOL. 293; NO 1; PP. 63-68; ABS. ENG; BIBL. 8 REF.Article

Metabolic adaptations of hydrothermal vent animalsFELBECK, H; POWELL, M. A; HAND, S. C et al.Bulletin of the Biological Society of Washington. 1985, Num 6, pp 261-272, issn 0097-0298Article

THE GIANT WHITE CLAM FROM THE GALAPAGOS RIFT, CALYPTOGENA MAGNIFICA SPECIES NOUUMBOSS KJ; TURNER RD.1980; MALACOLOGIA; USA; DA. 1980; VOL. 20; NO 1; PP. 161-194; BIBL. 4 P.Article

Amino acid compositions of periostracal proteins from molluscs living in the vicinity of deep sea hydrothermal vents: an unusual methioine-rich structural proteinHUNT, S.Comparative biochemistry and physiology. B. Comparative biochemistry. 1987, Vol 88, Num 3, pp 1013-1021, issn 0305-0491Article

Reproductive strategies of mollusks from abyssal hydrothermal vent communitiesBERG, C. J. JR.Bulletin of the Biological Society of Washington. 1985, Num 6, pp 185-197, issn 0097-0298Article

Molluscan growth at deep-sea hydrothermal ventsLUTZ, R. A; FRITZ, L. W; RHOADS, D. C et al.Bulletin of the Biological Society of Washington. 1985, Num 6, pp 199-210, issn 0097-0298Article

Distribution of trace metals in the hydrothermal vent clam, Calyptogena magnificaROESIJADI, G; YOUNG, J. S; CRECELIUS, E. A et al.Bulletin of the Biological Society of Washington. 1985, Num 6, pp 311-324, issn 0097-0298Article

La chimiosynthèse apprivoisée : des modèles venus de l'océan profond : EndosymbiosesLALLIER, Francois H; BOUTET, Isabelle; HALARY, Sébastien et al.Biofutur (Puteaux). 2009, Num 299, pp 45-48, issn 0294-3506, 4 p.Article

The Calyptogena magnifica chemoautotrophic symbiont genomeNEWTON, I. L. G; WOYKE, T; BARRY, K. W et al.Science (Washington, D.C.). 2007, Vol 315, Num 5814, pp 998-1000, issn 0036-8075, 3 p.Article

Mise en évidence par microscopie électronique à transmission de l'abondance de bactéries symbiotiques dans la branchie de Mollusques bivalves de sources hydrothermales profondes = Ultrastructural evidence of abundance of intracellular symbiotic bacteria in the gill of bivalve molluscs of deep hydrothermal ventsFIALA-MEDIONI, A.Comptes rendus des séances de l'Académie des sciences. Série 3, Sciences de la vie. 1984, Vol 298, Num 17, pp 487-492, issn 0249-6313Article

FLUCTUATIONS DE L'ACTIVITE DES SOURCES HYDROTHERMALES OCEANIQUES (PACIFIQUE EST, 21ON) ENREGISTREES LORS DE LA CROISSANCE DES COQUILLES DE CALYPTOGENA MAGNIFICA (LAMELLIBRANCHE, VESICOMYIDAE) PAR LES ISOTOPES STABLES DU CARBONE ET DE L'OXYGENEFATTON E; MARIEN G; PACHIAUDI C et al.1981; C.R. SEANCES ACAD. SCI., SER. 3, SCI. VIE; ISSN 0249-6313; FRA; DA. 1981; VOL. 293; NO 13; PP. 701-706; ABS. ENG; BIBL. 13 REF.Article

HYDROTHERMAL VENT CLAM AND TUBE WORM 13C/12C: FURTHER EVIDENCE OF NON PHOTOSYNTHETIC FOOD SOURCESRAU GH.1981; SCIENCE; ISSN 0036-8075; USA; DA. 1981; VOL. 209; NO 4505; PP. 338-340; BIBL. 25 REF.Article

Sulfide and carbon dioxide uptake by the hydrothermal vent clam, Calyptogena magnifica, and its chemoautotrophic symbiontsCHILDRESS, J. J; FISHER, C. R; FAVUZZI, J. A et al.Physiological zoology. 1991, Vol 64, Num 6, pp 1444-1470, issn 0031-935XArticle

Ultrastructure of the gill of the hydrothermal vent bivalve Calyptogena magnifica, with a discussion of its nutritionFIALA-MEDIONI, A; METIVIER, C.Marine biology (Berlin). 1986, Vol 90, Num 2, pp 215-222, issn 0025-3162Article

Fatty acid composition in deep hydrothermal vent symbiotic bivalvesBEN-MLIH, F; MARTY, J.-C; FIALA-MEDIONI, A et al.Journal of lipid research. 1992, Vol 33, Num 12, pp 1797-1806, issn 0022-2275Article

Elemental composition of the hydrothermal vent clam Calyptogena magnifica from the East Pacific RiseROESIJADI, G; CRECELIUS, E. A.Marine biology (Berlin). 1984, Vol 83, Num 2, pp 155-161, issn 0025-3162Article

Trophosome ultrastructure and the characterization of isolated bacteriocytes from invertebrate-sulfur bacteria symbiosesHAND, S. C.The Biological bulletin (Lancaster). 1987, Vol 173, Num 1, pp 260-276, issn 0006-3185Article

Adaptations to sulfide by hydrothermal vent animals: sites and mechanisms of detoxification and metabolismPOWELL, M. A; SOMERO, G. N.The Biological bulletin (Lancaster). 1986, Vol 171, Num 1, pp 274-290, issn 0006-3185Article

Clams as recorders of ocean ridge volcanism and hydrothermal vent field activityHART, S. R; BLUSZTAJN, J.Science (Washington, D.C.). 1998, Vol 280, Num 5365, pp 883-886, issn 0036-8075Article

Hydrogen sulfide oxidation by abundant nonhemoglobin heme compounds in marine invertebrates from sulfide-rich habitatsPOWELL, M. A; ARP, A. J.The Journal of experimental zoology. 1989, Vol 249, Num 2, pp 121-132, issn 0022-104XArticle

Shell microstructure of the vesicomyid clam, Calyptogena magnificaLUTZ, R. A; KENNISH, M. J; TAN, A. S et al.Malacological review. 1994, Vol 27, Num 1-2, pp 75-85, issn 0076-3004Article

The functional morphology of the organs of feeding and digestion of the hydrothermal vent bivalve Calyptogena magnifica (Vesicomyidae)MORTON, B.Journal of zoology. Series A. 1986, Vol 208, Num 1, pp 83-98Article

Symbioses of chemoautotrophic bacteria and marine invertebrates from hydrothermal vents and reducing sedimentsCAVANAUGH, C. M.Bulletin of the Biological Society of Washington. 1985, Num 6, pp 373-388, issn 0097-0298Article

Lysosomic and lysozyme activities in the gill of bivalves from deep hydrothermal ventsFIALA-MEDIONI, A; MICHALSKI, J.-C; JOLLES, J et al.Comptes rendus de l'Académie des sciences. Série 3, Sciences de la vie. 1994, Vol 317, Num 3, pp 239-244, issn 0764-4469Article

Respiratory proteins of hydrothermal vent animalsTERWILLIGER, R. C; TERWILLIGER, N. B.Bulletin of the Biological Society of Washington. 1985, Num 6, pp 273-287, issn 0097-0298Article

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