Enhanced photoprotection pathways in symbiotic dinoflagellates of shallow-water corals and other cnidarians.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 18757737.
- Also identified by DOI 10.1073/pnas.0805187105 and PMC identifier 2527352.
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Abstract
Photoinhibition, exacerbated by elevated temperatures, underlies coral bleaching, but sensitivity to photosynthetic loss differs among various phylotypes of Symbiodinium, their dinoflagellate symbionts. Symbiodinium is a common symbiont in many cnidarian species including corals, jellyfish, anemones, and giant clams. Here, we provide evidence that most members of clade A Symbiodinium, but not clades B-D or F, exhibit enhanced capabilities for alternative photosynthetic electron-transport pathways including cyclic electron transport (CET). Unlike other clades, clade A Symbiodinium also undergo pronounced light-induced dissociation of antenna complexes from photosystem II (PSII) reaction centers. We propose these attributes promote survival of most cnidarians with clade A symbionts at high light intensities and confer resistance to bleaching conditions that conspicuously impact deeper dwelling corals that harbor non-clade A Symbiodinium.
Medical subject headings
- Cnidaria
- Dinoflagellida
- Symbiosis
- Water