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Mesophotic corals in Hawai'i maintain autotrophy to survive low-light conditions. | LitMetric

AI Article Synopsis

  • - In mesophotic coral ecosystems (65-125 m deep), corals can survive with very low light, yet it’s unclear how they and their algal partners obtain energy.
  • - Researchers studied the carbon and nitrogen isotope values of different coral species and their symbiotic algae in Maui to explore their energy sources and feeding strategies.
  • - Findings indicated that both autotrophy (using photosynthesis) and heterotrophy (feeding) are crucial for the corals' survival, with a notable efficiency in nitrogen sharing between hosts and symbionts at deeper depths, highlighting the importance of photosynthesis even in low light conditions.

Article Abstract

In mesophotic coral ecosystems, reef-building corals and their photosynthetic symbionts can survive with less than 1% of surface irradiance. How depth-specialist corals rely upon autotrophically and heterotrophically derived energy sources across the mesophotic zone remains unclear. We analysed the stable carbon (C) and nitrogen (N) isotope values of a community from the 'Au'au Channel, Maui, Hawai'i (65-125 m) including four coral host species living symbiotically with three algal haplotypes. We characterized the isotope values of hosts and symbionts across species and depth to compare trophic strategies. Symbiont C was consistently 0.5‰ higher than host C at all depths. Mean colony host and symbiont N differed by up to 3.7‰ at shallow depths and converged at deeper depths. These results suggest that both heterotrophy and autotrophy remained integral to colony survival across depth. The increasing similarity between host and symbiont N at deeper depths suggests that nitrogen is more efficiently shared between mesophotic coral hosts and their algal symbionts to sustain autotrophy. Isotopic trends across depth did not generally vary by host species or algal haplotype, suggesting that photosynthesis remains essential to survival and growth despite low light availability in the mesophotic zone.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10878818PMC
http://dx.doi.org/10.1098/rspb.2023.1534DOI Listing

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