[MARINE_BIOLOGY_INTERNATIONAL] Rare whale rescued off Maui dies after 2 weeks

 

Rare whale rescued off Maui dies after 2 weeks

Aug 31, 2010 7:54 AM EDT



By AUDREY McAVOY
Associated Press Writer

HONOLULU (AP) - A rare deep diving whale rescued from a Maui beach earlier this month has died after spending two weeks at a dolphin and whale hospital on Hawaii's Big Island, federal officials said Monday.

A necropsy showed the male Blainville's beaked whale had moderate pneumonia, a severe gastrointestinal problem, and kidney disease, said David Schofield, a marine mammal response coordinator for the National Oceanic and Atmospheric Administration.

Each of these diseases could have killed the animal, Schofield said. It's not clear how the whale contracted the illnesses, though a viral infection is one possibility.

"We're sending tissues out for analysis to learn why it perished so quickly," Schofield told reporters.

The Coast Guard flew the whale to Hilo from Maui so it could be cared for at the Hawaii Cetacean Rehabilitation Facility. The 11 1/2-foot-long, 1,800-pound animal was found stranded at a Kihei beach on Aug. 16.

Scientists haven't had a chance to study beaked whales very much because they're frequently diving in deep waters hunting for squid. Schofield says the whales spend only about 3 percent of their time at the surface.

Few beaked whales have survived more than a few days after being rescued from a stranding. The longest a beaked whale one has lived after being rescued is four weeks, Schofield said.

"If you have a deep diving animal that's coming in from far off shore, it's spending a lot of time deteriorating. By the time we get it, it's in really bad shape," Schofield said.

Beaked whales have been known to be more vulnerable to the harmful effects of Navy active sonar than other whales. Scientists aren't sure why, but one theory is that sonar may startle the deep diving whales, causing them to surface too rapidly and suffer ear damage.

But Schofield says there's no sign this animal was affected by sonar.

A hearing test conducted in Hilo showed the whale was hearing normally. Officials also plan to conduct a CT scan on the whale's head to learn more.

The whale was the second animal taken to the marine mammal hospital at the University of Hawaii at Hilo since it opened in February.

Earlier this year, a striped dolphin died after just 18 hours at the facility. Veterinarians believe it suffered from an acute viral infection.

The facility takes care of sick or injured whales and dolphins that might otherwise have to be destroyed.

According to NOAA, there are an estimated 1,200 to 2,200 Blainville's beaked whales in Hawaiian waters. The Northern Gulf of Mexico stock is about 100 animals. There is no current estimate for the Western North Atlantic Stock. The species is protected under the Marine Mammal Protection Act.

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[MARINE_BIOLOGY_INTERNATIONAL] Acidifying Oceans Spell Bleak Marine Biological Future

 

Naples, ITALY — A unique 'natural laboratory' in the Mediterranean Sea is revealing the effects of rising carbon dioxide levels on life in the oceans. The results show a bleak future for marine life as ocean acidity rises, and suggest that similar lowering of ocean pH levels may have been responsible for massive extinctions in the past.

The scientists, from the University of Plymouth and the University of Santa Catarina, Brazil, studied a single celled organisms called Foraminifera around volcanic carbon dioxide vents off Naples in Italy. The study, published in the September issue of the Journal of the Geological Society, found that increasing CO2 levels caused foram diversity to fall from 24 species to only 4.

'Previous studies have shown a reduction in diversity of 30%, but this is even bigger for forams', said Dr Jason Hall-Spencer, one of the study's co-authors. 'A tipping point occurs at mean pH 7.8. This is the pH level predicted for the end of this century'.

Rising carbon dioxide levels acidify the ocean, which has a particularly devastating effect on organisms that have calcium carbonate shells, like Foraminifera.

'Forams are well preserved in the fossil record, which is why we chose to study them', says Dr Hall-Spencer. 'We knew the results were likely to show a decline in foram diversity but we weren't expecting such a seismic shift'.

Forams record past events in the geological record -- in particular, the effect of the Palaeocene-Eocene Thermal Maximum (PETM), a period of massive carbon release and rapid warming, 55 million years ago, accompanied by extinctions in marine life. It is also thought to have seen a period of ocean acidification.

'That was a period when massive changes in marine ecology happened' says Dr Hall-Spencer. 'Our natural laboratory provides a glimpse into the future of our oceans'.

'These are the first CO2 vents to be used to study ocean acidification. They allow us to observe how ecosystems react to changes in ocean acidity. We can see for our own eyes what increasing CO2 levels do to marine communities'.

'At a mean pH level of 7.8, calcified organisms begin to disappear, and non calcifying ones take over. We are headed towards that being the case in this century. The big concern for me is that unless we curb carbon emissions we risk mass extinctions, degrading coastal waters and encouraging outbreaks of toxic jellyfish and algae.'

Co-author Professor Malcolm Hart are presenting the research to the 2010 FORAMS meeting in Bonn on Friday 6 September. This weekend, Deborah Wall-Palmer will present the work being done at Plymouth on the last 250,000 years of ocean acidification at the International Palaeoceanography Conference in San Diego, being held on 29 August -- 3 September.

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