The long-term effects of the Exxon Valdez oil spill

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For 25 years, methodical research by scientists has investigated the effects of the Exxon Valdez oil spill in 1989 on Alaskan communities and ecosystems. A new study released today into the effects of the 1989 Exxon Valdez oil spill in Alaska shows that embryonic salmon and herring exposed to very low levels of crude oil can develop hidden heart defects that compromise their later survival, indicating that the spill may have had much greater impacts on spawning fish than previously recognized.

The herring population crashed four years after the spill in Prince William Sound and pink salmon stocks also declined, but the link to the oil spill has remained controversial. The new findings published in the online journal Scientific Reports suggest that the delayed effects of the spill may have been important contributors to the declines.

For 25 years, methodical research by scientists has investigated the effects of the Exxon Valdez oil spill in 1989 on Alaskan communities and ecosystems. A new study released today into the effects of the 1989 Exxon Valdez oil spill in Alaska shows that embryonic salmon and herring exposed to very low levels of crude oil can develop hidden heart defects that compromise their later survival, indicating that the spill may have had much greater impacts on spawning fish than previously recognized.

The herring population crashed four years after the spill in Prince William Sound and pink salmon stocks also declined, but the link to the oil spill has remained controversial. The new findings published in the online journal Scientific Reports suggest that the delayed effects of the spill may have been important contributors to the declines.

"These juvenile fish on the outside look completely normal, but their hearts are not functioning properly and that translates directly into reduced swimming ability and reduced survival," said John Incardona, a research toxicologist at NOAA Fisheries' Northwest Fisheries Science Center in Seattle. "In terms of impacts to shore-spawning fish, the oil spill likely had a much bigger footprint than anyone realized."

The research builds on earlier work by the Auke Bay Laboratories, part of NOAA Fisheries' Alaska Fisheries Science Center, which found much reduced survival of pink salmon exposed as embryos to polycyclic aromatic hydrocarbons (PAH) from crude oil.

IMAGE SHOWS TRANSIENT EMBRYONIC EXPOSURES TO CRUDE OIL CAUSE LASTING REDUCTIONS IN THE SWIMMING SPEED OF SALMON AND HERRING, MONTHS AFTER ADDITIONAL JUVENILE GROWTH IN CLEAN SEAWATER.   CREDIT: NOAA FISHERIES/NWFSC

Read more at EurekAlert.