Microbiome restructuring: dominant coral bacterium Endozoicomonas species display differential adaptive capabilities to environmental changes
Tandon, K.; Chiou, Y.-J.; Yu, S.-P.; Hsieh, H. J.; Lu, C.-Y.; Hsu, M.-T.; Chiang, P.-W.; Chen, H.-J.; Wada, N.; Tang, S.-L.
Show abstract
Bacteria in the coral microbiome play a crucial role in determining coral health and fitness, and the coral host often restructures its microbiome composition in response to external factors. An important but often neglected factor determining this microbiome restructuring is the capacity of microbiome members to adapt to a new environment. To address this issue, we examined how the microbiome structure of Acropora muricata corals changed over 9 months following a reciprocal transplant experiment. Using a combination of metabarcoding, genomics, and comparative genomics approaches, we found that coral colonies separated by a small distance harbored different dominant Endozoicomonas related phylotypes belonging to two different species, including a novel species, Candidatus Endozoicomonas penghunesis 4G, whose chromosome level (complete) genome was also sequenced in this study. Furthermore, the two dominant Endozoicomonas species showed varied adaptation capabilities when coral colonies were transplanted in a new environment. The differential adaptation capabilities of dominant members of the microbiome can a) provide distinct advantages to coral hosts when subjected to changing environmental conditions and b) have positive implications for future reefs.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Comparative genomics: Dominant coral bacterium Endozoicomonas acroporae metabolizes Dimethylsulfoniopropionate (DMSP) 96%
- Genomic and kinetic analysis of novel Nitrospinae enriched by cell sorting 96%
- Benchmarking metagenomic marine microbial growth prediction from codon usage bias and peak-to-trough ratios 96%
Similar papers in this journal
Similar papers in this journal
- Short-term exposure to high-water temperature causes a shift in the microbiome of the common aquarium sponge Lendenfeldia chondrodes 96%
- North American fireflies host low bacterial diversity 96%
- Niche-aware metagenomic screening for enzyme methioninase illuminates its contribution to metabolic syntrophy 95%
Similar papers in this journal
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 97%
- New isolates refine the ecophysiology of the Roseobacter CHAB-I-5 lineage 96%
"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.