参考文献
1. Al-Moghrabi, S., C. Goiran, D. Allemand, N. Speziale, and J. Jaubert, 1996. Inorganic carbon uptake for photosynthesis by the symbiotic coral-dinoflagellate association. II. Mechanisms for bicarbonate uptake. J. Exp. Mar. Biol. Ecol., 199(2):227-248.
2. Brading, P., M. Warner, D. Smith and D. Suggett, 2013. Contrasting modes of inorganic carbon acquisition amongst Symbiodinium (Dinophyceae) phylotypes. New Phytologist, 200(2):432-442.
3. Comeau, S., P. J. Edmunds, N. B. Spindel, and R. C. Carpenter 2013b. The responses of eight coral reef calciers to increasing partial pressure of CO2 do not exhibit a tipping point. Limnol. Oceanogr. 58: 388-398.
4. Finelli, C., B. Helmuth, N. Pentcheff, and D. Wethey, 2006. Water flow influences oxygen transport and photosynthetic efficiency in corals. Coral Reefs, 25: 47-57.
5. Herfort, L., B. Thake, and I. Taubner. 2008. Bicarbonate stimulation of calcication and photosynthesis in two hermatypic corals. J. Phycol. 44: 91-98.
6. Jury, C., R. Whitehead, and A. Szmant. 2010. Effects of variations in carbonate chemistry on the calcication rates of Madracis auretenra (Madracis mirabilis sensu Wells, 1973): Bicarbonate concentrations best predict calcication rates. Glob. Chang. Biol. 16: 1632-1644.
7. Marubini, F. and B. Thake, 1999. Bicarbonate addition promotes coral growth. Limnol. Oceanogr., 44(3):716-720.
8. Marubini, F. and M.J. Atkinson, 1999. Effects of lowered pH and elevated nitrate on coral calcification. Mar. Ecol. Prog. Ser., 188:117-121.
9. Wall, C. and P. Edmunds, 2013. In situ effects of low pH and elevated HCO3- on juvenile massive Porites spp. in Moorea, French Polynesia. Biol. Bull. 225: 92-101.
10. Zoccola, D., P. Ganot, A. Betucci, N. Caminiti-Segonds, N. Techer, C. Voolstra, M. Aranda, E. Tambutté, D. Allemand, J. Casey, and S. Tambutté, 2015. Bicarbonate transporters in corals point towards a key step in the evolution of cnidarian calcification. Scientific Reports 5, Article number: 9983.