Functional significance of dinitrogen fixation in sustaining coral productivity under oligotrophic conditions
Ulisse Cardini
Vanessa N. Bednarz
Malik S. Naumann
Nanne van Hoytema
Laura Rix
Rachel A. Foster
Mamoon M. D. Al-Rshaidat
Christian Wild
Abstract
Functional traits define species by their ecological role in the ecosystem. Animals themselves are host–microbe ecosystems (holobionts), and the application of ecophysiological approaches can help to understand their functioning. In hard coral holobionts, communities of dinitrogen (N2)-fixing prokaryotes (diazotrophs) may contribute a functional trait by providing bioavailable nitrogen (N) that could sustain coral productivity under oligotrophic conditions. This study quantified N2 fixation by diazotrophs associated with four genera of hermatypic corals on a northern Red Sea fringing reef exposed to high seasonality. We found N2 fixation activity to be 5- to 10-fold higher in summer, when inorganic nutrient concentrations were lowest and water temperature and light availability highest. Concurrently, coral gross primary productivity remained stable despite lower Symbiodinium densities and tissue chlorophyll a contents. In contrast, chlorophyll a content per Symbiodinium cell increased from spring to summer, suggesting that algal cells overcame limitation of N, an essential element for chlorophyll synthesis. In fact, N2 fixation was positively correlated with coral productivity in summer, when its contribution was estimated to meet 11% of the Symbiodinium N requirements. These results provide evidence of an important functional role of diazotrophs in sustaining coral productivity when alternative external N sources are scarce.
Cardini U., Bednarz V.N., Naumann M.S., van Hoytema N., Rix L., Foster R.A., Al-Rshaidat M.M.D. and Wild C. (2015) Functional significance of dinitrogen fixation in sustaining coral productivity under oligotrophic conditions. Proceedings of the Royal Society B Biological Sciences 282: 20152257. 10.1098/rspb.2015.2257
@article{Cardini2015,
Title = {Functional significance of dinitrogen fixation in sustaining coral productivity under oligotrophic conditions},
Author = {Cardini, Ulisse and Bednarz, Vanessa N. and Naumann, Malik S. and van Hoytema, Nanne and Rix, Laura and Foster, Rachel A. and Al-Rshaidat, Mamoon M. D. and Wild, Christian},
Editor = {},
Journal = {Proceedings of the Royal Society B Biological Sciences},
Year = {2015},
Pages = {20152257},
Volume = {282},
Doi = {10.1098/rspb.2015.2257},
Abstract = {Functional traits define species by their ecological role in the ecosystem. Animals themselves are host–microbe ecosystems (holobionts), and the application of ecophysiological approaches can help to understand their functioning. In hard coral holobionts, communities of dinitrogen (N2)-fixing prokaryotes (diazotrophs) may contribute a functional trait by providing bioavailable nitrogen (N) that could sustain coral productivity under oligotrophic conditions. This study quantified N2 fixation by diazotrophs associated with four genera of hermatypic corals on a northern Red Sea fringing reef exposed to high seasonality. We found N2 fixation activity to be 5- to 10-fold higher in summer, when inorganic nutrient concentrations were lowest and water temperature and light availability highest. Concurrently, coral gross primary productivity remained stable despite lower Symbiodinium densities and tissue chlorophyll a contents. In contrast, chlorophyll a content per Symbiodinium cell increased from spring to summer, suggesting that algal cells overcame limitation of N, an essential element for chlorophyll synthesis. In fact, N2 fixation was positively correlated with coral productivity in summer, when its contribution was estimated to meet 11% of the Symbiodinium N requirements. These results provide evidence of an important functional role of diazotrophs in sustaining coral productivity when alternative external N sources are scarce.},
}
TY - JOUR
AU - Cardini, Ulisse
AU - Bednarz, Vanessa N.
AU - Naumann, Malik S.
AU - van Hoytema, Nanne
AU - Rix, Laura
AU - Foster, Rachel A.
AU - Al-Rshaidat, Mamoon M. D.
AU - Wild, Christian
TI - Functional significance of dinitrogen fixation in sustaining coral productivity under oligotrophic conditions
T2 - Proceedings of the Royal Society B Biological Sciences
PY - 2015
SP - 20152257
VL - 282
DO - 10.1098/rspb.2015.2257
AB - Functional traits define species by their ecological role in the ecosystem. Animals themselves are host–microbe ecosystems (holobionts), and the application of ecophysiological approaches can help to understand their functioning. In hard coral holobionts, communities of dinitrogen (N2)-fixing prokaryotes (diazotrophs) may contribute a functional trait by providing bioavailable nitrogen (N) that could sustain coral productivity under oligotrophic conditions. This study quantified N2 fixation by diazotrophs associated with four genera of hermatypic corals on a northern Red Sea fringing reef exposed to high seasonality. We found N2 fixation activity to be 5- to 10-fold higher in summer, when inorganic nutrient concentrations were lowest and water temperature and light availability highest. Concurrently, coral gross primary productivity remained stable despite lower Symbiodinium densities and tissue chlorophyll a contents. In contrast, chlorophyll a content per Symbiodinium cell increased from spring to summer, suggesting that algal cells overcame limitation of N, an essential element for chlorophyll synthesis. In fact, N2 fixation was positively correlated with coral productivity in summer, when its contribution was estimated to meet 11% of the Symbiodinium N requirements. These results provide evidence of an important functional role of diazotrophs in sustaining coral productivity when alternative external N sources are scarce.
ER -
Details
Date07.11.2015
JournalProceedings of the Royal Society B Biological Sciences