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      Harnessing the Power of Model Organisms To Unravel Microbial Functions in the Coral Holobiont

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          Abstract

          Stony corals build the framework of coral reefs, ecosystems of immense ecological and economic importance. The existence of these ecosystems is threatened by climate change and other anthropogenic stressors that manifest in microbial dysbiosis such as coral bleaching and disease, often leading to coral mortality.

          SUMMARY

          Stony corals build the framework of coral reefs, ecosystems of immense ecological and economic importance. The existence of these ecosystems is threatened by climate change and other anthropogenic stressors that manifest in microbial dysbiosis such as coral bleaching and disease, often leading to coral mortality. Despite a significant amount of research, the mechanisms ultimately underlying these destructive phenomena, and what could prevent or mitigate them, remain to be resolved. This is mostly due to practical challenges in experimentation on corals and the highly complex nature of the coral holobiont that also includes bacteria, archaea, protists, and viruses. While the overall importance of these partners is well recognized, their specific contributions to holobiont functioning and their interspecific dynamics remain largely unexplored. Here, we review the potential of adopting model organisms as more tractable systems to address these knowledge gaps. We draw on parallels from the broader biological and biomedical fields to guide the establishment, implementation, and integration of new and emerging model organisms with the aim of addressing the specific needs of coral research. We evaluate the cnidarian models Hydra, Aiptasia, Cassiopea, and Astrangia poculata ; review the fast-evolving field of coral tissue and cell cultures; and propose a framework for the establishment of “true” tropical reef-building coral models. Based on this assessment, we also suggest future research to address key aspects limiting our ability to understand and hence improve the response of reef-building corals to future ocean conditions.

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          Changes in the global value of ecosystem services

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            Global warming and recurrent mass bleaching of corals

            During 2015–2016, record temperatures triggered a pan-tropical episode of coral bleaching, the third global-scale event since mass bleaching was first documented in the 1980s. Here we examine how and why the severity of recurrent major bleaching events has varied at multiple scales, using aerial and
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              The Chemical Basis of Morphogenesis

              A Turing (1952)
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                Author and article information

                Contributors
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                Journal
                Microbiology and Molecular Biology Reviews
                Microbiol Mol Biol Rev
                American Society for Microbiology
                1092-2172
                1098-5557
                December 21 2022
                December 21 2022
                : 86
                : 4
                Affiliations
                [1 ]Department of Animal Ecology and Systematics, Marine Holobiomics Lab, Justus Liebig University Giessen, Giessen, Germany
                [2 ]Aquatic Research Facility, Environmental Sustainability Research Centre, University of Derby, Derby, United Kingdom
                [3 ]Institute for Zoology and Organismic Interactions, Heinrich-Heine University Düsseldorf, Düsseldorf, Germany
                [4 ]Department of Biology, Pennsylvania State University, State College, Pennsylvania, USA
                [5 ]Department of Biology, Marine Biology, and Environmental Science, Roger Williams University, Bristol, Rhode Island, USA
                [6 ]Department of Integrative Biology, Oregon State University, Corvallis, Oregon, USA
                Article
                10.1128/mmbr.00053-22
                36287022
                25e0c3c9-4e8a-4e9c-a688-a918af633cee
                © 2022

                https://doi.org/10.1128/ASMCopyrightv2

                https://journals.asm.org/non-commercial-tdm-license

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