Microbes that are key indicators of Puget Sound’s health in decline

A variety of foraminifera (or forams) — single-celled, marine organisms that live on the sea floor. UW Burke Museum researchers have found forams in Washington’s Bremerton and Bellingham Bay waters have declined in health and numbers, even when chemical testing of the waters fall within healthy limits. Credit: Burke Museum of Natural History and Culture

Paleontologists with the University of Washington’s Burke Museum of Natural History and Culture find that tiny organisms called foraminifera have a big story to tell about the health of Puget Sound.

Two recent studies about the health of Bellingham Bay and inlets in the Bremerton area found the diversity and number of foraminifera—single-celled marine organisms that live on the sea floor—deteriorated significantly. The decline of these microscopic organisms is consistent with the deterioration of snails and other larger marine animals, even though analysis showed a reduction of chemical pollutants in Bellingham Bay and Bremerton over the same period of time.

Liz Nesbitt, Burke Museum curator of invertebrate and micropaleontology and UW associate professor of Earth and space sciences, and postdoctoral researcher Ruth Martin, who leads the Burke’s Puget Sound Foraminifera Lab, conducted independent studies using Washington Department of Ecology sediment samples and associated water and environmental data. The Bellingham Bay study, published in June in Marine Pollution Bulletin, analyzed 73 samples from 1987, 1997, 2006 and 2010. In a study published in early November in Marine Micropaleontology, Martin and Nesbitt analyzed 47 samples from the Sinclair and Dyes inlets in Bremerton that were collected in 1974, 1998/1999 and 2008/2009.

There are two major groups of foraminifera: one produces shells of calcium carbonate; the other has shells consisting of tiny grains of sediment stuck together. Both types of shells readily preserve in the sediment and document the environments in which the organisms lived. Some species of foraminifera are highly sensitive to environmental stress, and disappear rapidly when trouble arrives. Others are extremely tolerant, thriving where others do not and acting as opportunistic colonizers of places such as sewage or industrial waste outfalls. Many sites in Bellingham Bay and Bremerton are now dominated by particularly pollution-tolerant species of foraminifera. In addition, very few foraminifera were found in 2008 samples from Bremerton’s Sinclair Inlet.

However, in a finding surprising to researchers, no correlation was found between foraminifera and individual pollutants, such as mercury, or classes of pollutants analyzed in this study. In addition, the decline in the diversity of foraminifera and rise of pollutant-tolerant species continues despite cleanup efforts that have been ongoing in both Bellingham and Bremerton since the mid-1980s. A 2010 study indicated Bellingham Bay fell within established acceptable limits for pollution. In the Bremerton area, biologists studying macro-organisms like snails found these animals were also on the decline. Thus, researchers are investigating whether the decline of foraminifera is due to an alternative environmental factor.

While additional data is required to identify the cause of foraminifera populations’ decline, their shells contain a valuable clue. Nesbitt and Martin found many individuals with calcium-based shells showed physical signs of deterioration. In both the Bellingham Bay and Bremerton samples, researchers found holes and missing sections in the shells—both of which suggest high acidity in the water.

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