Microscale sampling of the coral gastric cavity reveals a gut-like microbial community
Bollati, E.; Hughes, D. J.; Suggett, D. J.; Raina, J.-B.; Kühl, M.
Show abstract
Animal guts contain numerous microbes, which are critical for nutrient assimilation and pathogen defence. While corals and other Cnidaria lack a true differentiated gut, they possess gastrovascular cavities (GVCs), semi-enclosed compartments where vital processes such as digestion, reproduction and symbiotic exchanges take place. The microbiome harboured in GVCs is therefore likely key to holobiont fitness, but remains severely understudied due to challenges of working in these small compartments. Here, we developed minimally invasive methodologies to sample the GVC of coral polyps and characterise the microbial communities harboured within. We used glass capillaries, low dead volume microneedles, or nylon microswabs to sample the gastric microbiome of individual polyps from six species of corals, then applied low-input DNA extraction to characterise the microbial communities from these microliter volume samples. Microsensor measurements of GVCs revealed anoxic or hypoxic micro-niches, which persist even under prolonged illumination with saturating irradiance. These niches harboured microbial communities enriched in putatively microaerophilic or facultatively anaerobic taxa, such as Epsilonproteobacteria. Some core taxa found in the GVC of Lobophyllia hemprichii from the Great Barrier Reef were also detected in conspecific colonies held in aquaria, indicating that these associations are unlikely to be transient. Our findings suggest that the coral GVC is chemically and microbiologically similar to the gut of higher Metazoa. Given the importance of gut microbiomes in mediating animal health, harnessing the coral "gut microbiome" may foster novel active interventions aimed at increasing the resilience of coral reefs to the climate crisis.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Time-series transcriptomics from cold, oxic subseafloor crustal fluids reveals a motile, mixotrophic microbial community 95%
- Anaerobic microbial degradation of protein and lipid macromolecules in subarctic marine sediment 95%
- Benchmarking metagenomic marine microbial growth prediction from codon usage bias and peak-to-trough ratios 95%
Similar papers in this journal
- Time-series metagenomics reveals changing protistan ecology of a temperate dimictic lake 96%
- Targeted single-cell genomics reveals novel host adaptation strategies of the symbiotic bacteria Endozoicomonas in Acropora tenuis coral 95%
- Dissecting the factors shaping fish skin microbiomes in a heterogeneous inland water system 95%
Similar papers in this journal
- A meta-analysis of the stony coral tissue loss disease microbiome finds key bacteria in lesions and unaffected tissue of diseased colonies 97%
- Beyond the limits of the unassigned protist microbiome: inferring large-scale spatio-temporal patterns of marine parasites 96%
- Ocean-wide comparisons of mesopelagic planktonic community structures 95%
Similar papers in this journal
- Resolving Symbiodiniaceae diversity across coral microhabitats and reef niches 96%
- Stony Coral Tissue Loss Disease biomarker bacteria identified in corals and overlying waters using a rapid field-based sequencing approach 96%
- The hemolymph of Biomphalaria snail vectors of schistosomiasis supports a diverse microbiome 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.