7.29.2010

Marine Phytoplankton Declining: What this means for you


ScienceDaily — A new article published in the 29 July issue of the journal Nature reveals for the first time that microscopic marine algae known as "phytoplankton" have been declining globally over the 20th century. Phytoplankton forms the basis of the marine food chain and sustains diverse assemblages of species ranging from tiny zooplankton to large marine mammals, seabirds, and fish. Says lead author Daniel Boyce, "Phytoplankton is the fuel on which marine ecosystems run. A decline of phytoplankton affects everything up the food chain, including humans."

Using an unprecedented collection of historical and recent oceanographic data, a team from Canada's Dalhousie University documented phytoplankton declines of about 1% of the global average per year. This trend is particularly well documented in the Northern Hemisphere and after 1950, and would translate into a decline of approximately 40% since 1950. The scientists found that long-term phytoplankton declines were negatively correlated with rising sea surface temperatures and changing oceanographic conditions.

The goal of the three-year analysis was to resolve one of the most pressing issues in oceanography, namely to answer the seemingly simple question of whether the ocean is becoming more (or less) „green' with algae. Previous analyses had been limited to more recent satellite data (consistently available since 1997) and have yielded variable results. To extend the record into the past, the authors analysed a unique compilation of historical measurements of ocean transparency going back to the very beginning of quantitative oceanography in the late 1800s, and combined these with additional samples of phytoplankton pigment (chlorophyll) from ocean-going research vessels. The end result was a database of just under half a million observations which enabled the scientists to estimate phytoplankton trends over the entire globe going back to the year 1899.

The scientists report that most phytoplankton declines occurred in polar and tropical regions and in the open oceans where most phytoplankton production occurs. Rising sea surface temperatures were negatively correlated with phytoplankton growth over most of the globe, especially close to the equator. Phytoplankton need both sunlight and nutrients to grow; warm oceans are strongly stratified, which limits the amount of nutrients that are delivered from deeper waters to the surface ocean. Rising temperatures may contribute to making the tropical oceans even more stratified, leading to increasing nutrient limitation and phytoplankton declines. The scientists also found that large-scale climate fluctuations, such as the El-NiƱo Southern Oscillation (ENSO), affect phytoplankton on a year-to-year basis, by changing short-term oceanographic conditions.

The findings contribute to a growing body of scientific evidence indicating that global warming is altering the fundamentals of marine ecosystems. Says co-author Marlon Lewis, "Climate-driven phytoplankton declines are another important dimension of global change in the oceans, which are already stressed by the effects of fishing and pollution. Better observational tools and scientific understanding are needed to enable accurate forecasts of the future health of the ocean." Explains co-author Boris Worm, "Phytoplankton are a critical part of our planetary life support system. They produce half of the oxygen we breathe, draw down surface CO2, and ultimately support all of our fisheries. An ocean with less phytoplankton will function differently, and this has to be accounted for in our management efforts."

Source: http://www.sciencedaily.com/releases/2010/07/100728131705.htm


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7.21.2010

For Oysters, a ‘Remedy’ Turned Catastrophe

In late April, just days into what has turned out to be the largest oil spill in American history, Gov. Bobby Jindal of Louisiana, with the support of local parish officials, ordered the opening of giant valves on the Mississippi River, releasing torrents of freshwater that they hoped would push oil back out to sea.

Now, reports indicate that the freshwater diversions have had a catastrophic impact on southeastern Louisiana’s oyster beds that is far in excess of the damage done by oil from the spill.

The Associated Press broke the story of the oyster deaths last week, and local news outlets along the coast are following it as well. On Tuesday, The Wall Street Journal chimed in with its own in-depth report.

Oysters require saltwater to live, and massive infusions of freshwater can quickly kill them. Once dead, the beds can take two to five years to become commercially viable again.

Now, some oyster fishermen along the coast are reporting mortality rates as high as 80 percent along thousands of acres of oyster beds. In Barataria Bay, one of Louisiana’s most productive oyster fisheries, some beds are 60 percent dead, largely because of the freshwater influx, The Wall Street Journal quoted Louisiana’s top state oyster biologist as saying.

Many oyster beds in gulf waters have been shut down as a precaution because oil contamination was considered likely, but widespread die-offs caused by the oil have not yet been found.

Heavy damage to the oyster beds from the freshwater diversions could prove embarrassing to the Jindal administration, which already finds itself under scrutiny for its ambitious plans to build massive sand and rock structures along the coast to block the oil. Both the sand and rock barriers drew criticism from scientists and federal officials that they would have negative environmental consequences that outweighed their potential benefit in stemming the flow of oil.

Such criticisms deep-sixed a plan by the governor to build rock dikes across tidal inlets leading into Barataria Bay, but did not stand in the way of the construction of massive sand barriers, a project which is still under way in the gulf.

The Jindal administration may already be preparing to deflect criticism over the oyster deaths.

In its article, the Wall Street Journal quotes an unnamed spokesman with the state’s coastal protection authority saying that “rain and the natural flow of the river” were also factors in the decrease in salinity. Attributing specific numbers of oyster deaths to the freshwater diversions would be “difficult,” the spokesman said.

Yet oyster fisheries in nearby Mississippi appear to have been unscathed. “We are finding no major mortalities,” an official with the Mississippi Department of Marine Resources recently told the AP.

In statements to the AP and the Journal, Garrett Graves, chairman of Louisiana’s Coastal Protection and Restoration Authority, and a lead official in the state’s oil spill response, indicated that BP would be held responsible for the damage to the oyster beds caused by the freshwater releases.

Source: New York Times


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Antidepressants Make Shrimps See the Light


ScienceDaily — Rising levels of antidepressants in coastal waters could change sea-life behaviour and potentially damage the food-chain, according to a new study.

Research into the behaviour of shrimps exposed to the antidepressant fluoxetine, showed that their behaviour is dramatically affected. The shrimps are five times more likely to swim toward the light instead of away from it -- making them more likely to be eaten by fish or birds, which could have devastating effects on the shrimp population.

"Crustaceans are crucial to the food chain and if shrimps' natural behaviour is being changed because of antidepressant levels in the sea this could seriously upset the natural balance of the ecosystem," said Dr Alex Ford from the University of Portsmouth's Institute of Marine Sciences.

"Much of what humans consume you can detect in the water in some concentration. We're a nation of coffee drinkers and there is a huge amount of caffeine found in waste water, for example. It's no surprise that what we get from the pharmacy will also be contaminating the country's waterways."

The research is published in the journal Aquatic Toxicology. The study found that the shrimps' behaviour changes when they are exposed to the same levels of fluoxetine found in the waste water that flows to rivers and estuaries as a result of the drugs humans excrete in sewage.

Dr Ford's research was motivated by a species of parasite which can alter the behaviour of aquatic creatures through changing serotonin levels within the brains of the organisms. Serotonin is a neuro-hormone found in many animals, including humans, known to control types of behaviour, such as modulating mood and decreasing anxiety.

Drugs to combat depression in humans are often designed to target levels of serotonin which led to the question of whether they could also alter the behaviour of marine organisms.

Dr Ford said: "Effluent is concentrated in river estuaries and coastal areas, which is where shrimps and other marine life live -- this means that the shrimps are taking on the excreted drugs of whole towns."

Prescriptions for antidepressants have risen rapidly in recent years, according to the Office for National Statistics. In 2002, there were 26.3 million antidepressant prescriptions handed out by doctors in England and Wales -- yet the environmental effect of pharmaceuticals in sewage has been largely unexplored.

Dr Ford is hoping to carry out future research on a number of other prescribed drugs on the market known to affect serotonin.

Head of the School of Biological Sciences, Professor Matt Guille, said: "Dr Ford has conducted some beautifully simple research, which potentially shows huge ecological consequences. I hope it will lead the way for further study of prescribed drugs and other substances impacting on the country's marine-life."

Source: http://www.sciencedaily.com/releases/2010/07/100706204430.htm


About Oceanic Defense
We are an international non-profit organization with members in over 60 countries, spanning 6 continents with 1 mission; healthy aquatic ecosystems free from human abuse and neglect. Oceanic Defense teaches people to protect our oceans by acting responsibly as consumers and by making smart decisions in our daily lives. Whether we are buying groceries, commuting to work, planning a vacation or advocating within our own communities; each action we take or decision we make either helps or hurts our oceans. We empower people to be part of the solution rather than part of the problem and work together to protect our blue planet.

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