Engelse naam: Laboratory of Biology of Marine Organisms and Biomimetics
Overkoepelend instituut: Université de Mons; Faculté des Sciences; Département de Biologie (Umons), meer
MOG-kernwoorden (4) : Aquacultuur; Biochemie; Bioluminescentie; Moleculaire biologie
Adres: Laboratoire de Biologie des Organismes Marins et Biomimétisme
6 Avenue du champ de Mars Bâtiment Pentagone 7000 Mons België
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Type: Wetenschappelijk
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1 Directeur: Hoofd van de onderzoeksgroep/afdeling 2 Mariene onderzoeker: Is werkzaam in deze groep en treedt op als (co)auteur in minstens één mariene publicatie in de laatste 5 jaar. 3 Gespecialiseerd personeel: Levert administratieve of technische ondersteuning aan het zeewetenschappelijk onderzoek.
Voormalig geassocieerde personen (29) |
- Algrain, Morgane
- Bonneel, Marie
- Brasseur, Lola 2
- Claereboudt, Emily
- Cohen, Mishal 2
- Decro, Corentin 2
- Demeuldre, Mélanie 2
- Demeyer, Marie 2
- Devile, Gery 3
- Dewille, Géry
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- Gosselin, Pol 3
- Gregorowicz, Edwicka
- Gress, Erika
- Hennebert, Elise 2
- Koudad, Dunia
- Lambert, Aurélie 2
- Lanterbecq, Deborah 2, 3
- Lengerer, Birgit
- Pête, Julien
- Plotieau, Thomas 2
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Abstract: |
Het onderzoek binnen het laboratoire de Biologie des Organismes Marins et Biomimétisme, die deel uitmaakt deel uit van het Interuniversitair Centrum voor Mariene Biologie (CIBIM), richt zich op vier onderzoeksthema's:
- socio-ecologische aquacultuur;
- symbiose en ziekten;
- biologische materialen en biomimetica;
- fotobiologie.
Het onderzoek binnen de tak 'socio-ecologische aquacultuur' concentreert zich op de aquacultuur van voornamelijk zeekomkommers, algen en koralen, waarvan bepaalde stappen beheerd kunnen worden door arme kustgemeenschappen. In het verleden heeft de groep veel succes geboekt met de ontwikkeling van de zeekomkommeraquacultuur en de meeste van hun aquacultuurgerelateerde publicaties gaan over dit onderwerp. Bijzondere aandacht ging uit naar de ontwikkeling van een methode om het hele jaar door zeekomkommers te kunnen kweken in lokaal beheerde kwekerijen. Deze methode is sinds 2002 gepatenteerd, wat in 2008 heeft geleid tot de oprichting van Madagaskar Holothurie SA, het eerste handelsbedrijf op basis van zeekomkommeraquacultuur in Madagaskar. In 2013 opende de groep de Polyaquaculture Research Unit (PRU) in Madagaskar, in samenwerking met het Halieutic Institute and Marine Science van de Universiteit van Toliara. PRU werd het Mariene Station van Belaza dat mede wordt geleid door UMons, ULg en UTuléar. Het laboratorium houdt zich ook bezig met zeewieren (algocultuur) en koralen (koraalcultuur).
De onderzoekstak 'symbiose en ziekten' is gespecialiseerd in mariene organismen betrokken in parasitische, commensalistisch of mutualistische relaties. De levenscyclus, etiologie en fylogenie van symbiotische prokaryoten en verschillende symbiotische eukaryoten (o.a. Ctenaria, platwormen, borstelwormen, Myzostomida, mollusken, stekelhuidigen en vissen) worden bestudeerd om de factoren die de symbiotische interacties affecteren of reguleren beter te begrijpen, inclusief deze bij ziekten. Er worden diverse analytische methodes gebruikt, zoals elektronenmicroscopie (TEM en SEM), DNA-fylogenie en massaspectometrie.
De 'biomimetisme'-tak richt zich op de verschillende proteïne-gebaseerde adhesie-mechanismen ontwikkeld door mariene invertebraten. Het doel van dit onderzoek is een gedetailleerd inzicht te verwerven in biologische adhesia om synthetische varianten te ontwikkelen. Alle adhesie-systemen bij mariene organismen verschillen in werking, structuur en kenmerken van hun adhesieve proteïnen. Deze vormen daarom complementaire biologische modellen voor de studie van bioadhesie in het mariene milieu.
De tak 'mariene fotobiologie' ten slotte beoogt een beter begrip van de wijze waarop mariene organismen licht kunnen waarnemen met behulp van op opsine gebaseerde fotoreceptatie. Tegelijkertijd wordt de functionele interactie onderzocht die mogelijk optreedt tussen extraoculaire fotoreceptie en bioluminescentie bij zeedieren. |
Publicaties (141) |
Top | Personen | Project |
( 123 peer reviewed ) opsplitsen filter
- Flandroit, F.; Simon, L.; Caulier, G. (2024). Description of limb anomalies resulting from molt irregularities in Ammothea hilgendorfi (Pycnogonida: Ammotheidae). Arthropoda 2(2): 156-168. https://dx.doi.org/10.3390/arthropoda2020012, meer
- Parey, E.; Ortega-Martinez, O.; Delroisse, J.; Piovani, L.; Czarkwiani, A.; Dylus, D.; Arya, S.; Dupont, S.; Thorndyke, M.; Larsson, T.; Johannesson, K.; Buckley, K.M.; Martinez, P.; Oliveri, P.; Marlétaz, F. (2024). The brittle star genome illuminates the genetic basis of animal appendage regeneration. Nature Ecology & Evolution 8(8): 1505-1521. https://dx.doi.org/10.1038/s41559-024-02456-y, meer
- Terrana, L.; Rouzé, H.; Opresko, D.M.; Eeckhaut, I.; Dubois, P.; Hedouin, L.; Godefroid, M. (2024). Whip black corals (Antipatharia: Antipathidae: Stichopathes) of the Mesophotic Coral Ecosystem of Mo’orea (French Polynesia), with the description of a new species. Zootaxa 5486(2): 182-212. https://dx.doi.org/10.11646/zootaxa.5486.2.2, meer
- Caulier, G.; Terrana, L.; Jossart, Q.; Eeckhaut, I.; Préat, A.; Motreuil, S.; David, B.; De Ridder, C. (2023). Exploring chemical stimuli guiding the pea crab Dissodactylus primitivus towards its echinoid host Meoma ventricosa. J. Exp. Mar. Biol. Ecol. 566: 151922. https://dx.doi.org/10.1016/j.jembe.2023.151922, meer
- Claereboudt, E.J.S.; Claereboudt, M.R.; Savarino, P.; Caulier, G.; Gaumez, L.; Deleu, M.; Gerbaux, P.; Eeckhaut, I. (2023). A distinct saponin profile drives an olfactory-mediated aggregation in the aquacultivated sea cucumber Holothuria scabra. Mar. Drugs 21(3): 184. https://dx.doi.org/10.3390/md21030184, meer
- Duchatelet, L.; Nuyt, C.; Puozzo, N.; Mallefet, J.; Delroisse, J. (2023). Evolutionary conservation of photophore ultrastructure in sharks: the case of dalatiid squalomorph. Fishes 8(2): 87. https://dx.doi.org/10.3390/fishes8020087, meer
- Lepoint, G.; Tsiresy, G.; Deydier, M.; Pascal, F.; Frédérich, B.; Eeckhaut, I. (2023). Functional effects of Polysiphonia sp. epiphytism on the farmed Kappaphycus alvarezii (Doty) Liao: Competition for the resource, parasitism or both? J. Appl. Phycol. 35(4): 1821-1830. https://dx.doi.org/10.1007/s10811-023-03009-9, meer
- Lourtie, A.; Eeckhaut, I.; Mallefet, J.; Savarino, P.; Isorez, M.; Mussoi, L.; Bischoff, H.; Delroisse, J.; Hedouin, L.; Gerbaux, P.; Caulier, G. (2023). Species-specific metabolites mediate host selection and larval recruitment of the symbiotic seastar shrimp. NPG Scientific Reports 13(1): 12674. https://dx.doi.org/10.1038/s41598-023-39527-2, meer
- Algrain, M.; Hennebert, E.; Bertemes, P.; Wattiez, R.; Flammang, P.; Lengerer, B. (2022). In the footsteps of sea stars: deciphering the catalogue of proteins involved in underwater temporary adhesion. Open Biology 12(8): 220103. https://dx.doi.org/10.1098/rsob.220103, meer
- Bonneel, M.; Hennebert, E.; Aranko, A.S.; Hwang, D.S.; Lefevre, M.; Pommier, V.; Wattiez, R.; Delroisse, J.; Flammang, P. (2022). Molecular mechanisms mediating stiffening in the mechanically adaptable connective tissues of sea cucumbers. Matrix Biology 108: 39-54. https://dx.doi.org/10.1016/j.matbio.2022.02.006, meer
- Caulier, G.; Lourtie, A.; Brasseur, L.; Mallefet, J.; Gerbaux, P.; Flammang, P.; Eeckhaut, I. (2022). Crinoid anthraquinones as kairomones allowing host selection for the symbiotic snapping shrimp Synalpheus stimpsonii. Chemoecology (Print. ed.) 32(3): 95-104. https://dx.doi.org/10.1007/s00049-022-00368-6, meer
- Lourtie, A.; Duchatelet, L.; Straube, N.; Puozzo, N.; Grace, M.A.; Naylor, G.J.P.; Delroisse, J. (2022). Placoid scales in bioluminescent sharks: scaling their evolution using morphology and elemental composition. Front. Mar. Sci. 9: 908237. https://dx.doi.org/10.3389/fmars.2022.908237, meer
- Pierrat, J.; Bédier, A.; Eeckhaut, I.; Magalon, H.; Frouin, P. (2022). Sophistication in a seemingly simple creature: a review of wild holothurian nutrition in marine ecosystems. Biol. Rev. 97(1): 273-298. https://dx.doi.org/10.1111/brv.12799, meer
- Renner-Rao, M.; Jehle, F.; Priemel, T.; Duthoo, E.; Fratzl, P.; Bertinetti, L.; Harrington, M.J. (2022). Mussels fabricate porous glues via multiphase liquid–liquid phase separation of multiprotein condensates. ACS Nano 16(12): 20877-20890. https://dx.doi.org/10.1021/acsnano.2c08410, meer
- Savarino, P.; Colson, E.; Caulier, G.; Eeckhaut, I.; Flammang, P.; Gerbaux, P. (2022). Microwave-assisted desulfation of the hemolytic saponins extracted from Holothuria scabra viscera. Molecules 27(2): 537. https://dx.doi.org/10.3390/molecules27020537, meer
- Cauchie, G.; Delfau-Bonnet, G.; Caulier, G.; Hantson, A.-L.; Renault, J.-H.; Gerbaux, P. (2021). Comprehensive lipid profiling of Microchloropsis gaditana by liquid chromatography - (tandem) mass spectrometry: bead milling and extraction solvent effects. Algal Research 58: 102388. https://dx.doi.org/10.1016/j.algal.2021.102388, meer
- Davey, P.A.; Power, A.M.; Santos, R.; Bertemes, P.; Ladurner, P.; Palmowski, P.; Clarke, J.; Flammang, P.; Lengerer, B.; Hennebert, E.; Rothbächer, U.; Pjeta, R.; Wunderer, J.; Zurovec, M.; Aldred, N. (2021). Omics-based molecular analyses of adhesion by aquatic invertebrates. Biol. Rev. 96(3): 1051-1075. https://hdl.handle.net/10.1111/brv.12691, meer
- Delroisse, J.; Léonet, A.; Alexandre, H.; Eeckhaut, I. (2021). Intracellular pathways of holothuroid oocyte maturation induced by the thioredoxin Trx-REES. Antioxidants 10(8): 1201. https://dx.doi.org/10.3390/antiox10081201, meer
- Delroisse, J.; Duchatelet, L.; Flammang, P.; Mallefet, J. (2021). Leaving the dark side? Insights into the evolution of luciferases. Front. Mar. Sci. 8: 673620. https://dx.doi.org/10.3389/fmars.2021.673620, meer
- Delroisse, J.; Duchatelet, L.; Flammang, P.; Mallefet, J. (2021). Photophore distribution and enzymatic diversity within the photogenic integument of the cookie-cutter shark Isistius brasiliensis (Chondrichthyes: Dalatiidae). Front. Mar. Sci. 8: 627045. https://dx.doi.org/10.3389/fmars.2021.627045, meer
- Duchatelet, L.; Claes, J.M.; Delroisse, J.; Flammang, P.; Mallefet, J. (2021). Glow on sharks: state of the art on bioluminescence research. Oceans 2(4): 822-842. https://dx.doi.org/10.3390/oceans2040047, meer
- Dugauquier, J.-M.; Godefroid, M.; M'Zoudi, S.; Terrana, L.; Todinanahary, G.; Eeckhaut, I.; Dubois, P. (2021). Ecomechanics of black corals (Cnidaria: Anthozoa: Hexacorallia: Antipatharia): a comparative approach. Invertebr. Biol. 140(4): e12347. https://dx.doi.org/10.1111/ivb.12347, meer
- Gaspar, L.; Flammang, P.; José, R.; Luis, R.; Ramalhosa, P.; Monteiro, J.; Nogueira, N.; Canning-Clode, J.; Santos, R. (2021). Interspecific analysis of sea urchin adhesive composition emphasizes variability of glycans conjugated with putative adhesive proteins. Front. Mar. Sci. 8: 737886. https://dx.doi.org/10.3389/fmars.2021.737886, meer
- Godefroid, M.; Todinanahary, G.G.B.; Dubois, P.; Eeckhaut, I.; Sturaro, N.; Lepoint, G.; Terrana, L. (2021). Perspectives on working underwater with black coral nubbins (Cnidaria: Antipatharia): the case of Cirrhipathes anguina (Dana, 1846). J. Exp. Mar. Biol. Ecol. 545: 151645. https://dx.doi.org/10.1016/j.jembe.2021.151645, meer
- Gress, E.; Eeckhaut, I.; Godefroid, M.; Dubois, P.; Richir, J.; Terrana, L. (2021). Investigation into the presence of Symbiodiniaceae in antipatharians (black corals). Oceans 2(4): 772-784. https://dx.doi.org/10.3390/oceans2040044, meer
- Lefevre, M.; Tran, T.Q.; De Muijlder, T.; Pittenger, B.; Flammang, P.; Hennebert, E.; Leclère, P. (2021). On the nanomechanical and viscoelastic properties of coatings made of recombinant sea star adhesive proteins. Frontiers of Mechanical Engineering 7: 667491. https://dx.doi.org/10.3389/fmech.2021.667491, meer
- Lefevre, M.; Ederth, T.; Masai, T.; Wattiez, R.; Leclère, P.; Flammang, P.; Hennebert, E. (2021). Disentangling the roles of functional domains in the aggregation and adsorption of the multimodular sea star adhesive protein Sfp1. Mar. Biotechnol. 23(5): 724-735. https://dx.doi.org/10.1007/s10126-021-10059-y, meer
- Penney, H.D.; Baillon, S.; Hamel, J.-F.; Pête, J.; Mercier, A. (2021). Morphology and biology of the endoparasitic copepod Lamippe bouligandi from the bathyal sea pen Anthoptilum grandiflorum. Symbiosis 85(2): 233-248. https://dx.doi.org/10.1007/s13199-021-00811-2, meer
- Terrana, L.; Flot, J.-F.; Eeckhaut, I. (2021). ITS1 variation among Stichopathes cf. maldivensis (Hexacorallia: Antipatharia) whip black corals unveils conspecificity and population connectivity at local and global scales across the Indo-Pacific. Coral Reefs 40(2): 521-533. https://hdl.handle.net/10.1007/s00338-020-02049-8, meer
- Bouanati, T.; Colson, E.; Moins, S.; Cabrera, J.-C.; Eeckhaut, I.; Raquez, J.-M.; Gerbaux, P. (2020). Microwave-assisted depolymerization of carrageenans from Kappaphycus alvarezii and Eucheuma spinosum: controlled and green production of oligosaccharides from the algae biomass. Algal Research 51: 102054. https://hdl.handle.net/10.1016/j.algal.2020.102054, meer
- Choi, J.; Hennebert, E.; Flammang, P.; Hwang, D.S. (2020). A sugar-lectin rich interface between soft tissue and the stiff byssus of Atrina pectinata. Biomaterials Science 8(13): 3751-3759. https://hdl.handle.net/10.1039/c9bm01932d, meer
- Claes, J.M.; Delroisse, J.; Grace, M.A.; Doosey, M.H.; Duchatelet, L.; Mallefet, J. (2020). Histological evidence for secretory bioluminescence from pectoral pockets of the American Pocket Shark (Mollisquama mississippiensis). NPG Scientific Reports 10(1): 18762. https://dx.doi.org/10.1038/s41598-020-75656-8, meer
- Delroisse, J.; Van Wayneberghe, K.; Flammang, P.; Gillan, D.; Gerbaux, P.; Opinã, N.; Todinanahary, G.G.B.; Eeckhaut, I. (2020). Epidemiology of a SKin Ulceration Disease (SKUD) in the sea cucumber Holothuria scabra with a review on the SKUDs in Holothuroidea (Echinodermata). NPG Scientific Reports 10(1): 22150. https://dx.doi.org/10.1038/s41598-020-78876-0, meer
- Duchatelet, L.; Sugihara, T.; Delroisse, J.; Koyanagi, M.; Rezsohazy, R.; Terakita, A.; Mallefet, J. (2020). From extraocular photoreception to pigment movement regulation: a new control mechanism of the lanternshark luminescence. NPG Scientific Reports 10(1): 10195. https://hdl.handle.net/10.1038/s41598-020-67287-w, meer
- Duchatelet, L.; Delroisse, J.; Pinte, N.; Sato, K.; Ho, H.-C.; Mallefet, J. (2020). Adrenocorticotropic hormone and cyclic adenosine monophosphate are involved in the control of shark bioluminescence. Photochemistry and Photobiology 96(1): 37-45. https://hdl.handle.net/10.1111/php.13154, meer
- Duchatelet, L.; Delroisse, J.; Mallefet, J. (2020). Bioluminescence in lanternsharks: insight from hormone receptor localization. Gen. Comp. Endocrinol. 294: 113488. https://hdl.handle.net/10.1016/j.ygcen.2020.113488, meer
- Eeckhaut, I.; Février, J.; Todinanahary, G.; Delroisse, J. (2020). Impact of Thalamita crenata (Decapoda; Portunidae) predation on Holothuria scabra juvenile survival in sea farming pens. SPC Beche-de-mer Information Bulletin 40: 11-16, meer
- Hsu, T.-H.T.; Carlu, L.; Hsieh, Y.E.; Lai, T.-Y.A.; Wang, C.-W.; Huang, C.-Y.; Yang, S.-H.; Wang, P.-L.; Sturaro, N.; Denis, V. (2020). Stranger things: organismal traits of two octocorals associated with singular Symbiodiniaceae in a high-latitude coral community from Northern Taiwan. Front. Mar. Sci. 7: 606601. https://hdl.handle.net/10.3389/fmars.2020.606601, meer
- Jossart, Q.; Terrana, L.; De Ridder, C.; Eeckhaut, I.; Monteyne, D.; Caulier, G. (2020). To see or to smell: the role of vision in host-recognition by an ectoparasitic crab. Symbiosis 80(1): 97-101. https://dx.doi.org/10.1007/s13199-019-00657-9, meer
- Kang, V.; Lengerer, B.; Wattiez, R.; Flammang, P. (2020). Molecular insights into the powerful mucus-based adhesion of limpets (Patella vulgata L.). Open Biology 10(6): 200019. https://dx.doi.org/10.1098/rsob.200019, meer
- Lefevre, M.; Flammang, P.; Aranko, A.S.; Linder, M.B.; Scheibel, T.; Humenik, M.; Leclercq, M.; Surin, M.; Tafforeau, L.; Wattiez, R.; Leclère, P.; Hennebert, E. (2020). Sea star-inspired recombinant adhesive proteins self-assemble and adsorb on surfaces in aqueous environments to form cytocompatible coatings. Acta Biomaterialia 112: 62-74. https://dx.doi.org/10.1016/j.actbio.2020.05.036, meer
- Song, G.; Delroisse, J.; Schoenaers, D.; Kim, H.; Nguyen, T.C.; Horbelt, N.; Leclère, P.; Hwang, D.S.; Harrington, M.J.; Flammang, P. (2020). Structure and composition of the tunic in the sea pineapple Halocynthia roretzi: a complex cellulosic composite biomaterial. Acta Biomaterialia 111: 290-301. https://hdl.handle.net/10.1016/j.actbio.2020.04.038, meer
- Terrana, L.; Bo, M.; Opresko, D.M.; Eeckhaut, I. (2020). Shallow-water black corals (Cnidaria: Anthozoa: Hexacorallia: Antipatharia) from SW Madagascar. Zootaxa, 4826(1). Magnolia Press: Auckland. ISBN 978-1-77688-006-5. 62 pp. https://dx.doi.org/10.11646/zootaxa.4826.1.1, meer
- Claereboudt, E.J.S.; Caulier, G.; Decroo, C.; Colson, E.; Gerbaux, P.; Claereboudt, M.R.; Schaller, H.; Flammang, P.; Deleu, M.; Eeckhaut, I. (2019). Triterpenoids in echinoderms: fundamental differences in diversity and biosynthetic pathways. Mar. Drugs 17(6): 352. https://dx.doi.org/10.3390/md17060352, meer
- Cohen-Rengifo, M.; Agüera, A.; Bouma, T.J.; M'Zoudi, S.; Flammang, P.; Dubois, P. (2019). Ocean warming and acidification alter the behavioral response to flow of the sea urchin Paracentrotus lividus. Ecol. Evol. 9(21): 12128-12143. https://doi.org/10.1002/ece3.5678, meer
- Duchatelet, L.; Delroisse, J.; Flammang, P.; Mahillon, J.; Mallefet, J. (2019). Etmopterus spinax, the velvet belly lanternshark, does not use bacterial luminescence. Acta Histochemica 121(4): 516-521. https://dx.doi.org/10.1016/j.acthis.2019.04.010, meer
- Duchatelet, L.; Delroisse, J.; Mallefet, J. (2019). Melanin-concentrating hormone is not involved in luminescence emission in the velvet belly lanternshark, Etmopterus spinax. Mar. Biol. (Berl.) 166(11): 140. https://dx.doi.org/10.1007/s00227-019-3590-5, meer
- Eeckhaut, I.; Van Wayenberghe, K.; Nicolas, F.; Delroisse, J. (2019). Skin ulcerations in Holothuria scabra can be induced by various types of food. SPC Beche-de-mer Information Bulletin 39: 31-35, meer
- Lengerer, B.; Algrain, M.; Lefevre, M.; Delroisse, J.; Hennebert, E.; Flammang, P. (2019). Interspecies comparison of sea star adhesive proteins. Phil. Trans. R. Soc. Lond. (B Biol. Sci.) 374(1784): 20190195. https://dx.doi.org/10.1098/rstb.2019.0195, meer
- Léonet, A.; Delroisse, J.; Schuddinck, C.; Wattiez, R.; Jangoux, M.; Eeckhaut, I. (2019). Thioredoxins induce oocyte maturation in holothuroids (Echinodermata). Aquaculture 510: 293-301. https://dx.doi.org/10.1016/j.aquaculture.2018.12.090, meer
- Odekunle, E.A.; Semmens, D.C.; Martynyuk, N.; Tinoco, A.B.; Garewal, A.K.; Patel, R.R.; Blowes, L.M.; Zandawala, M.; Delroisse, J.; Slade, S.E.; Scrivens, J.H.; Egertová, M.; Elphick, M.R. (2019). Ancient role of vasopressin/oxytocin-type neuropeptides as regulators of feeding revealed in an echinoderm. BMC Biology 17: 60. https://dx.doi.org/10.1186/s12915-019-0680-2, meer
- Pjeta, R.; Wunderer, J.; Bertemes, P.; Hofer, T.; Salvenmoser, W.; Lengerer, B.; Coassin, S.; Erhart, G.; Beisel, C.; Sobral, D.; Kremser, L.; Lindner, H.; Curini-Galletti, M.; Stelzer, C.-P.; Hess, M.W.; Ladurner, P. (2019). Temporary adhesion of the proseriate flatworm Minona ileanae. Phil. Trans. R. Soc. Lond. (B Biol. Sci.) 374(1784): 20190194. https://dx.doi.org/10.1098/rstb.2019.0194, meer
- Terrana, L.; Eeckhaut, I. (2019). Sexual reproduction of the shallow-water black coral Cirrhipathes anguina (Dana, 1846) from Madagascar. Mar. Biol. Res. 15(7): 410-423. https://dx.doi.org/10.1080/17451000.2019.1662444, meer
- Terrana, L.; Lepoint, G.; Eeckhaut, I. (2019). Assessing trophic relationships between shallow-water black corals (Antipatharia) and their symbionts using stable isotopes. Belg. J. Zool. 149(1): 107-121. https://dx.doi.org/10.26496/bjz.2019.33, meer
- Wunderer, J.; Lengerer, B.; Pjeta, R.; Bertemes, P.; Kremser, L.; Lindner, H.; Ederth, T.; Hess, M.W.; Stock, D.; Salvenmoser, W.; Ladurner, P. (2019). A mechanism for temporary bioadhesion. Proc. Natl. Acad. Sci. U.S.A. 116(10): 4297-4306. https://dx.doi.org/10.1073/pnas.1814230116, meer
- Brasseur, L.; Caulier, G.; Lepoint, G.; Gerbaux, P.; Eeckhaut, I. (2018). Echinometra mathaei and its ectocommensal shrimps: the role of sea urchin spinochrome pigments in the symbiotic association. NPG Scientific Reports 8(1): 17540. https://dx.doi.org/10.1038/s41598-018-36079-8, meer
- Brasseur, L.; Caulier, G.; Flammang, P.; Gerbaux, P.; Eeckhaut, I. (2018). Mapping of spinochromes in the body of three tropical shallow water sea urchins. Nat. Prod. Commun. 13(12): 1659-1665, meer
- Brasseur, L.; Demeyer, M.; Decroo, C.; Caulier, G.; Flammang, P.; Gerbaux, P.; Eeckhaut, I. (2018). Identification and quantification of spinochromes in body compartments of Echinometra mathaei's coloured types. Royal Society Open Science 5(8): 15. https://dx.doi.org/10.1098/rsos.171213, meer
- Claereboudt, E.J.S.; Eeckhaut, I.; Lins, L.; Deleu, M. (2018). How different sterols contribute to saponin tolerant plasma membranes in sea cucumbers. NPG Scientific Reports 8(1): 11 pp. https://dx.doi.org/10.1038/s41598-018-29223-x, meer
- Cohen-Rengifo, M.; Agüera, A.; Detrain, C.; Bouma, T.J.; Dubois, P.; Flammang, P. (2018). Biomechanics and behaviour in the sea urchin Paracentrotus lividus (Lamarck, 1816) when facing gradually increasing water flows. J. Exp. Mar. Biol. Ecol. 506: 61-71. https://doi.org/10.1016/j.jembe.2018.05.010, meer
- Delroisse, J.; Duchatelet, L.; Flammang, P.; Mallefet, J. (2018). De novo transcriptome analyses provide insights into opsin-based photoreception in the lanternshark Etmopterus spinax. PLoS One 13(12): e0209767. https://dx.doi.org/10.1371/journal.pone.0209767, meer
- Hennebert, E.; Gregorowicz, E.; Flammang, P. (2018). Involvement of sulfated biopolymers in adhesive secretions produced by marine invertebrates. Biology Open 7(11): bio037358. https://dx.doi.org/10.1242/bio.037358, meer
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