Publications
Found 40 results
Author Title [ Type] Year Filters: First Letter Of Last Name is M [Clear All Filters]
A view from both ends: shifts in herbivore assemblages impact top-down and bottom-up processes on coral reefs. Ecosystems. :1–14.
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2021. Unprecedented evidence for high viral abundance and lytic activity in coral reef waters of the South Pacific Ocean. Frontiers in Microbiology. 5:493.
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2014. Thermal Stress Interacts With Surgeonfish Feces to Increase Coral Susceptibility to Dysbiosis and Reduce Tissue Regeneration. Frontiers in Microbiology. 12:620458.
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2021. Thermal Stress Interacts With Surgeonfish Feces to Increase Coral Susceptibility to Dysbiosis and Reduce Tissue Regeneration. Frontiers in Microbiology. 12:620458.
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2021. Susceptibility of five nontarget organisms to aqueous diazinon exposure. Bulletin of environmental contamination and toxicology. 64:114–121.
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2000. Surgeonfish feces increase microbial opportunism in reef-building corals. Marine Ecology Progress Series. 631:81–97.
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2019. Surgeonfish feces increase microbial opportunism in reef-building corals. Marine Ecology Progress Series. 631:81–97.
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2019. Species-specific patterns in corallivory and spongivory among Caribbean parrotfishes. Coral Reefs. 38:417–423.
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2019. Sediment associated with algal turfs inhibits the settlement of two endangered coral species. Marine pollution bulletin. 144:189–195.
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2019. Responses to fire differ between South African and North American grassland communities. Journal of Vegetation Science. 25:793–804. kirkman_et_al_j_veg_sci_2014.pdf (446.27 KB)
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2014. Responses of coastal ecosystems to climate change: Insights from long-term ecological research. BioScience. 72:871–888.
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2022. Responses of coastal ecosystems to climate change: Insights from long-term ecological research. BioScience. 72:871–888.
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2022. Responses of coastal ecosystems to climate change: Insights from long-term ecological research. BioScience. 72:871–888.
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2022. Reefscapes of fear: predation risk and reef hetero-geneity interact to shape herbivore foraging behaviour. Journal of Animal Ecology. 85:146–156. catano_et_al_journal_of_animal_ecology_2015.pdf (597.88 KB)
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2016. Predictive functional profiling of microbial communities using 16S rRNA marker gene sequences. Nature biotechnology. 31:814–821.
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2013. Plant community response to loss of large herbivores differs between North American and South African savanna grasslands. Ecology. 95:808–816. koerner_etal_2014_ecology.pdf (4.55 MB)
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2014. Phylogenetic, genomic, and biogeographic characterization of a novel and ubiquitous marine invertebrate-associated Rickettsiales parasite, Candidatus Aquarickettsia rohweri, gen. nov., sp. nov. The ISME journal. 13:2938–2953.
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2019. Phylogenetic conservatism drives nutrient dynamics of coral reef fishes. Nature Communications. 12:5432.
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2021. Parrotfish predation drives distinct microbial communities in reef-building corals. Animal Microbiome. 2:5.
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2020. Parrotfish predation drives distinct microbial communities in reef-building corals. Animal Microbiome. 2:5.
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2020. Overfishing and nutrient pollution interact with temperature to disrupt coral reefs down to microbial scales. Nature communications. 7 zaneveld_et_al_natcomms_2016.pdf (1.69 MB)
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2016. Nutrient limitation, bioenergetics, and stoichiometry: a new model to predict elemental fluxes mediated by fishes. Functional Ecology.
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2020. Nutrient limitation, bioenergetics, and stoichiometry: a new model to predict elemental fluxes mediated by fishes. Functional Ecology.
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2020. Nutrient limitation, bioenergetics, and stoichiometry: a new model to predict elemental fluxes mediated by fishes. Functional Ecology.
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2020. Nitrogen pollution interacts with heat stress to increase coral bleaching across the seascape. Proceedings of the National Academy of Sciences. 117:5351–5357.
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2020.