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All animals on Earth form associations with microorganisms, including protists, bacteria, archaea, fungi, and viruses. In the ocean, animal–microbial relationships were historically explored in single host–symbiont systems. However, new explorations into the diversity of marine microorganisms associating with diverse marine animal hosts is moving the field into studies that address interactions between the animal host and a more multi-member microbiome. The potential for microbiomes to influence the health, physiology, behavior, and ecology of marine animals could alter current understandings of how marine animals adapt to change, and especially the growing climate-related and anthropogenic-induced changes already impacting the ocean environment.

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  • Microbioma marino (it)
  • Marine microbiome (en)
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  • All animals on Earth form associations with microorganisms, including protists, bacteria, archaea, fungi, and viruses. In the ocean, animal–microbial relationships were historically explored in single host–symbiont systems. However, new explorations into the diversity of marine microorganisms associating with diverse marine animal hosts is moving the field into studies that address interactions between the animal host and a more multi-member microbiome. The potential for microbiomes to influence the health, physiology, behavior, and ecology of marine animals could alter current understandings of how marine animals adapt to change, and especially the growing climate-related and anthropogenic-induced changes already impacting the ocean environment. (en)
  • Tutti gli animali sulla Terra formano associazioni con microrganismi, inclusi protisti, batteri, archaea, funghi e virus. Nell'oceano, le relazioni animale-microbico sono state storicamente esplorate in singoli sistemi ospite-simbionte. Tuttavia, nuove esplorazioni sulla diversità dei microrganismi marini associati a diversi ospiti di animali marini stanno spostando il campo degli studi che affrontano le interazioni tra l'ospite animale e un microbioma con più membri multipli. Il potenziale dei microbiomi di influenzare la salute, la fisiologia, il comportamento e l'ecologia degli animali marini potrebbe alterare le attuali conoscenze su come gli animali marini si adattano al cambiamento, e in particolare i crescenti cambiamenti legati al clima e indotti dall'uomo che già hanno un impatto (it)
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  • http://commons.wikimedia.org/wiki/Special:FilePath/Bacterial_OTUs_from_clone_libraries_and_next-generation_sequencing.png
  • http://commons.wikimedia.org/wiki/Special:FilePath/Relationships_between_corals_and_their_microbial_symbionts.jpg
  • http://commons.wikimedia.org/wiki/Special:FilePath/Trophic_connections_of_the_coral_holobiont_in_the_planktonic_food_web.jpg
  • http://commons.wikimedia.org/wiki/Special:FilePath/Bathymodiolus_childressi.jpg
  • http://commons.wikimedia.org/wiki/Special:FilePath/Dynamics_in_symbiosis_with_aquatic_ciliates_as_host.jpg
  • http://commons.wikimedia.org/wiki/Special:FilePath/Marine_animals_and_their_associated_microbiomes.jpg
  • http://commons.wikimedia.org/wiki/Special:FilePath/Riftia_tube_worm_colony_Galapagos_2011.jpg
  • http://commons.wikimedia.org/wiki/Special:FilePath/Olavius_algarvensis_from_Elba,_Italy.jpg
  • http://commons.wikimedia.org/wiki/Special:FilePath/Cetacean_blow's_bacteria.png
  • http://commons.wikimedia.org/wiki/Special:FilePath/Marine_animal_host-microbiome_relationships.jpg
  • http://commons.wikimedia.org/wiki/Special:FilePath/Whale_blow_sampling_with_drone.png
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