December 13, 2016-
Atmospheric rivers contributed to a mass die-off of wild Olympia oysters in north San Francisco Bay in 2011, according to a study led by the University of California, Davis and the San Francisco Bay National Estuarine Research Reserve, or NERR.
The study, published in the journal Proceedings of the Royal Society B, is the first to document biological impacts of atmospheric rivers, which are predicted to increase in frequency and intensity under future climate change.
“This shows us one way in which extreme events might affect coastal ecosystems,” said lead author Brian Cheng, a UC Davis doctoral candidate and NERR graduate research fellow at the time of the study. “Oysters can help buffer shorelines and enhance biodiversity, but this is one facet of climate change that might be a hurdle for oyster restoration efforts in San Francisco Bay.”
Rivers In The Sky
Atmospheric rivers, or “rivers in the sky,” are technically long, narrow corridors of concentrated moisture that travel the lower atmosphere. They can transport in the air seven to 15 times as much water flow as the Mississippi River. In California, atmospheric rivers have been known to deliver up to half of the state’s annual precipitation in just 10 to 15 days. They have also been linked to all seven declared floods on California’s Russian River between 1996 and 2007.
While atmospheric rivers are expected to increase, their unpredictable nature makes it difficult for researchers to collect ecological data before and after such extreme events.
Prepared For Extremes
For this research team, it was a matter of being ready for these extreme events.
When Cheng was working on his Ph.D. at the UC Davis Bodega Marine Laboratory, he and his colleagues experimented with how oysters respond to changes in temperature, salinity and dissolved oxygen. They learned that oysters have a specific threshold for low salinity.
In March 2011, their efforts paid off. A series of atmospheric rivers made landfall in California, contributing intense rainfall that led to an extreme discharge of freshwater into San Francisco Bay. The discharge caused low salinities that almost perfectly matched the low salinity threshold for oysters that Cheng and his colleagues had earlier seen in the lab.
Mass Mortality At China Camp
The research team found that the die-off was likely a result of low salinity from the freshwater discharge into the bay, which they traced to rainfall over the Sierra Nevada. They learned that there were 20 atmospheric rivers between October 2010 and September 2011, and three of them happened in March, right before the mass mortality of oysters.
Hitting Oysters When They’re Down
Even before the mass mortality, wild oysters were struggling to return to their historical abundance. Cheng said it’s likely that the population at China Camp was providing much of the San Francisco Bay with oyster offspring. While the population is beginning to come back, their future is uncertain, and repeated hits from atmospheric rivers could knock back their progress.
“On the one hand, it’s good news that despite the mass die-off, a few years later, they came back,” Cheng said. “But it’s not as simple as that. These new oysters are smaller and less fertile, and that may have consequences for restoring oysters in San Francisco Bay.”
To deal with the expected influence of atmospheric rivers and other extreme weather events, Cheng thinks strengthening the entire oyster population across the bay is the best way to help them recover and be more resilient to future changes.
Explore further: Climate change may benefit native oysters, but there’s a catch
More information: Atmospheric rivers and the mass mortality of wild oysters: insight into an extreme future? Proceedings of the Royal Society B, rspb.royalsocietypublishing.org/lookup/doi/10.1098/rspb.2016.1462
Related Stories
Climate change may benefit native oysters, but there’s a catch
October 10, 2016
Amid efforts to restore native oyster populations on the West Coast, how are oysters expected to fair under climate change in the decades and centuries to come? Not too badly, according to a study from the University of California, …
Atmospheric rivers linked to severe precipitation in Western Europe
July 30, 2013
Atmospheric rivers, narrow bands of enhanced water vapor transport in the atmosphere, have been associated with extreme rainfall and flooding in some areas, especially western North America. Lavers and Villarini now show …
Promising progress for pilot shellfish reef restoration program
November 14, 2016
A Western Australian first trial to return oysters to an Albany estuary is exceeding scientists’ expectations, a year into the ambitious project.
Acidification, predators pose double threat to oysters
January 15, 2014
The once-booming, now struggling Olympia oyster native to the West Coast could face a double threat from ocean acidification and invasive predators, according to new research from the University of California, Davis’ Bodega …
New York to grow oysters on recycled toilets (Update)
September 6, 2016
Toilets might not immediately conjure up thoughts of marine life but New York is growing 50,000 oysters on beds of recycled lavatory porcelain near one of the world’s busiest airports.
Toxins from freshwater algae found in San Francisco Bay shellfish
October 27, 2016
Scientists have detected high levels of a toxin produced by freshwater algae in mussels from San Francisco Bay. Although shellfish harvested from California’s coastal waters are monitored for toxins produced by marine algae, …
Recommended for you
Vaccination increases family wealth, girls’ education
December 14, 2016
A Washington State University-led research team found households in rural Africa that vaccinate their cattle for East Coast fever increased their income and spent the additional money on food and education. Researchers also …
Why the whitefly is such a formidable threat to food security
December 14, 2016
Researchers have sequenced the genome of the whitefly (Bemisia tabici), an invasive insect responsible for spreading plant viruses worldwide, causing billions of dollars in crop losses each year.
New Zealand glowworms’ sticky ‘fishing lines’ use moist, urea droplets to trap prey
December 14, 2016
The sticky fishing lines produced by New Zealand glowworms to trap their insect prey are spaced with water-absorbent droplets containing urea, according to a study published December 14, 2016 in the open-access journal PLOS …
Insectivorous long-fingered bats may also be capable of catching fish
December 14, 2016
While most long-fingered bats eat only insects, they may all be instinctively able to also catch fish, according to a study published December 14, 2016 in the open-access journal PLOS ONE by Ostaizka Aizpurua and colleagues …
Deer study shows bigger brains in females lead to longer lives and more offspring
December 14, 2016
(Phys.org)—A team of researchers working on the Scottish Isle of Rum has found evidence of larger brains in female red deer conferring longer lifespans and more offspring raised to adulthood. In their paper published in …
Researchers sequence entire genome of seahorse, investigate essential mechanisms of evolution
December 14, 2016
Without a doubt, the seahorse belongs to Darwin’s “endless forms most beautiful”. Its body form is one of a kind. It has neither a tail nor pelvic fin, it swims vertically, bony plates reinforce its entire body and it has …
User comments
Sign in to get notified via email when new comments are made.
Please sign in to add a comment. Registration is free, and takes less than a minute. Read more