Crustose coralline algae buffer shallow reef environments from dissolution

Ocean acidification threatens coral reefs by reducing seawater pH and carbonate saturation state. Crustose coralline algae are particularly vulnerable because their high-magnesium calcite skeletons dissolve more readily than coral aragonite skeletons. However, this dissolution may increase alkalinity and buffer reef-water chemistry. Here we show, using repeated low-tide observations and in situ incubations in a shallow reef system in the southern Great Barrier Reef, that reef-water pH varies by more than one unit over the day (7.47 – 8.61), reaching levels comparable to those projected for the end of this century. Nighttime respiration promotes dissolution of high-magnesium calcite produced by crustose coralline algae, increasing alkalinity and helping maintain seawater supersaturated with respect to aragonite. At the same time, isolated coral incubations experience a greater decline in pH and aragonite saturation state in the absence of this buffering effect. These findings suggest that high-magnesium calcite-producing communities may help partially buffer reefs against future acidification.

Sun Y., Branson O., Cornwall C., Eggins S. M., Maher W., Holland K., Goodarzi P. & Ellwood M. J., in press. Crustose coralline algae buffer shallow reef environments from dissolution. Communications Earth & Environment. Article.

0 Responses to “Crustose coralline algae buffer shallow reef environments from dissolution”



  1. Leave a Comment

Leave a Reply




Subscribe

Search

  • Reset

OA-ICC Highlights

Resources


Discover more from Ocean Acidification

Subscribe now to keep reading and get access to the full archive.

Continue reading