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- W2883006003 abstract "Abstract Studying carbon dynamics in the coral holobiont provides essential knowledge of nutritional strategies and is thus central to understanding coral ecophysiology. In this study, the first aim was to investigate the effect of daily feeding and thermal stress on oxygen (O2) rates measured at polyp-scale with microsensors and at whole fragment scale using incubation methods. The second aim was to assess the carbon budget of the symbiotic association using H 13 CO 3 , under the different conditions. Micro- and macro-scale measurements revealed enhanced O 2 evolution rates for fed compared to unfed corals. However, gross O 2 production in fed corals was increased at high temperature on a macroscale but not on a microscale basis, likely due to a heterogeneous distribution of photosynthesis over the coral surface. Starved corals always exhibited reduced photosynthetic activity at high temperature, which suggests that the nutritional status of the coral host is a key limiting factor for coral productivity under thermal stress. Quantification of photosynthate translocation and carbon budgets showed very low incorporation rates, for both symbionts and host (0.03 - 0.6 μg C cm -2 h -1 ) equivalent to only 0.008 - 0.6 %, of the photosynthetically fixed carbon for P. damicornis , in all treatments. Carbon loss (via respiration and/or mucus release) was about 41 - 47 % and 52 - 76% of the fixed carbon for starved and fed corals, respectively. Such high loss of translocated carbon suggests that P. damicornis is nitrogen and/or phosphorus limited. Heterotrophy might thus cover a larger portion of the nutritional demand for P. damicornis than previously assumed. Our results suggest that active feeding plays a fundamental role in metabolic dynamics and bleaching susceptibility of corals." @default.
- W2883006003 created "2018-08-03" @default.
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- W2883006003 date "2018-07-26" @default.
- W2883006003 modified "2023-10-18" @default.
- W2883006003 title "Effect of feeding and thermal stress on photosynthesis, respiration and the carbon budget of the scleractinian coral <i>Pocillopora damicornis</i>" @default.
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- W2883006003 doi "https://doi.org/10.1101/378059" @default.
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