Showing posts with label news. Show all posts
Showing posts with label news. Show all posts

17 May 2008

Coral reefs and climate change: Microbes could be the key to coral death


/ecosystems/article/33998
Coral reefs could be dying out because of changes to the microbes that live in them just as much as from the direct rise in temperature caused by global warming, according to scientists speaking today (Wednesday 2 April 2008) at the Society for General Microbiology’s 162nd meeting being held this week at the Edinburgh International Conference Centre.
Tropical ecosystems are currently balanced on a climate change knife edge. Corals in coral reefs, which are made up of animals called polyps that secrete hard external skeletons of calcium carbonate, are living perilously close to their upper temperature limits. This makes them very vulnerable to even small temperature rises of 1-2oC above the normal summer maximum.
“Many of the deaths we see in the coral reefs, which occur following coral bleaching events, when huge areas of reef die off like in 1998 when 17% of the world’s reefs were killed, can be put down to changes in the microbes which live in and around the reefs,”� says Dr John Bythell, a biologist from Newcastle University. “These microbes can be thought of as being similar to the bacteria that normally live in our guts and help us digest our food.”
Changes in sea temperature caused by climate change and global warming affect corals, but they also affect the types of bacteria and other microflora that live with them. When the water warms up, some disease-causing bacteria are more successful and can attack the corals. The corals themselves suffer from heat, which reduces their defences. Also, some of the friendly bacteria that normally live in the corals’ guts become weakened, allowing other harmful bacteria to multiply and cause diseases or other problems.
For many communities in developing countries, which rely on coral reefs for their fisheries and tourism income, the loss of coral reefs has major impacts on their economies. They also lose valuable coastal defences and land to coastal erosion, affecting human welfare in the communities.
“We need a better understanding of the processes and mechanisms that impact on corals and the reefs when sea temperatures rise to confirm the ultimate causes of their decline,” says Dr Bythell. “Although local actions to reverse the overall decline in reef health are probably not feasible, we need this better understanding to try to reduce or eliminate contributing causes. Some of the changes in the microbes’ environment could be locally managed, for example by reducing general pollution, cutting soil erosion into the sea which chokes the reefs, and avoiding harmful run-off from farming practices.”
A key factor newly identified by the Newcastle team is the role of surface mucus secreted by corals. This seems to act as a shield, preventing disease-causing pathogens such as bacteria and some viruses from penetrating their tissues.
“The reefs’ defensive mucus or slime is also at risk from stresses brought on by climate change. This seems to happen just at a time when some of the key functional microbe groups are changing, reducing the corals’ other defences and boosting some disease-causing bacteria, making them more virulent,” says Dr Bythell.
“If we want to protect and conserve these reefs for the future, we need to start acting now. And before we can do that we need a better understanding of the processes,”� says Dr John Bythell. “The mass mortality of two of the dominant coral species in the Caribbean due to disease has been unprecedented in the last 3,000 years, which suggests a strong link to man-made activities.”
The Newcastle scientists are concerned that despite the clear relationship to underlying factors affecting the reefs which cause the diseases and bleaching, and the important role played by the microbes, microbiology and coral cellular biology are investigated largely independently by different groups of researchers using different approaches. According to Dr Bythell, scientists’ attempts to identify the underlying problems would be improved by combining molecular microbial techniques with coral cell and molecular approaches.

Coral reefs and climate change: Microbes could be the key to coral death

26 Aug 2007

Zooplankton move to the moon's tune - life - 08 July 2007 - New Scientist

NewScientist.com news service

How do ocean animals that live below the depth to which moonlight penetrates migrate in phase with the moon?

Hans van Haren of the Royal Netherlands Institute for Sea Research in Den Burg used sonar to track zooplankton movement over 18 months. They migrate up and down the water column on daily and seasonal cycles, and van Haren also identified a strong monthly movement that coincided with lunar cycles (Geophysical Research Letters, vol 34, p L12603). But the zooplankton remain at or below 800 metres, while moonlight penetrates no deeper than 150 metres. "This has nothing to do with physical processes," say van Haren, "but a biochemical clock could explain it."

Other studies have shown that zooplankton kept in the dark can retain light-induced biorhythms for several weeks. Van Haren's work suggests that biorhythms can be preserved for far longer.

Zooplankton move to the moon's tune - life - 08 July 2007 - New Scientist

25 May 2007

Wind shifts devastate ocean life

By Jonathan Fildes, Science and technology reporter, BBC News, San Francisco

The delicate interplay between the oceans and atmosphere is changing with catastrophic consequences.

That is the conclusion of researchers investigating 'dead zones' off the coast of the US, where populations of marine life were suddenly wiped out.

These vast graveyards occur where there are disturbances to currents driven by coastal winds, they say.

Dead zones have been recorded off the coast of California and Oregon every year for the last five years.

The most intense event, which left the ocean floor littered with the carcasses of crabs, happened in 2006.

'It was unlike anything that we've measured along the Oregon coast in the past five decades,' said Dr Francis Chan of Oregon State University (OSU).

Dead zones have also been seen in the waters off Chile, Namibia and South Africa."

Read more at BBC News...

http://news.bbc.co.uk/1/hi/sci/tech/6370905.stm

9 May 2007

Tags follow 'Nemo' fish to home

Scuba Diving Fiji



The remarkable homing instincts of some coral reef fish have been revealed.

A team tagged two species of reef fish larvae to see where the juveniles were going after spending weeks and even months maturing in open sea.

It found most of the orange clownfish - made famous by the Finding Nemo movie - and vagabond butterflyfish returned to the reef where they had first hatched.

Writing in the journal Science, the team said the discovery could have implications for marine protection.

"Marine fish lay very small eggs, and when they do, they are released into the water column," explained co-author Professor Geoff Jones from James Cook University in Queensland, Australia.

"They develop into a really tiny little larvae that we think drift around in the water currents, sometimes for months.

"The missing link in our understanding of coral reef fish has always been: where do the larvae go?"

Help from Mum

But until now, finding this out has been extremely tricky - attaching tags to miniscule larvae is not an easy task.

So the international team of researchers tackled the problem by getting the mother to help.

Satellite image of the Kimbe Island  (Science)
The study took place on a small reef in Kimbe Bay
They did this by collecting female coral reef fish from a small 0.3 sq km reef in Kimbe Bay, Papua New Guinea, and injecting them with a rare, stable barium isotope.

The females pass this isotope to their developing offspring where it accumulates in their bones, giving the baby fish unique chemical signatures.

A few weeks later, the team returned to the reef and collected young fish to test them to see if they carried the "tag".

"We found that 60% - well over half - were coming back to the small island reserve, which was an unexpected result," Professor Jones told the BBC.

Navigational feat

The scientists are uncertain how the vividly coloured orange clownfish and vagabond butterflyfish perform this feat but hope to find out with further research.

An adult butterflyfish (Science and R. Patzner)
"Perhaps they are somehow remaining in sensory contact with their home island and are able to maintain their position and not end up drifting too far away," said Professor Jones.

"Or maybe they are getting carried away, but they have a homing mechanism to swim back to their home reef."

Although the study was carried out on two species, Professor Jones believes the finding may apply to other coral reef fish too, and if this is the case, it could have consequences for marine conservation.

It shows that small no-take marine reserves are a good way to protect over-fished species, he said, because there should be enough juveniles returning to the area to sustain numbers over time.

Story from BBC NEWS:
http://news.bbc.co.uk/go/pr/fr/-/2/hi/science/nature/6623981.stm


Published: 2007/05/04 15:14:23 GMT

© BBC MMVII

30 Oct 2006

Scuba Diving Fiji: Scientists go hi-tech to save coral

Scuba Diving Fiji: Scientists go hi-tech to save coral:

Scientists go hi-tech to save coral
Cold coral (TVE)
At cold depths, the rate of growth is very slow
Less is known about the floor of the world's oceans than the surface of the Moon.

It is only in the past few decades that technology allowing humans to peer into the previously uncharted depths has become available to scientists.

Remote Operated Vehicles (ROVs) and manned submersible craft have opened up to exploration a whole new world of deep marine ecosystems.

One of the most startling discoveries has been the number of coral reefs living hundreds of metres beneath the surface, in temperatures ranging from 4-13C (39-55F).

The existence of cold-water corals has been known since the 18th Century, but the vast number of reefs found in the deeper reaches of the world's waters has amazed researchers.

Yet just as scientists are beginning to understand the significance of the coral to the surrounding environment, they are also witnessing destruction.

'Glacial' growth

Environmentalists point the finger of blame at the fishing industry and the practice of bottom-trawling with drag nets.

This method of fishing involves scouring the sea bed with huge nets that are some 60m-wide; they are held apart by two huge metal plates weighing up to five tonnes.

Submersible (TVE)
Submersibles have brought a revolution in understanding

"It's heavy gear, and the reefs and the coral colonies are very fragile and easily damaged," Jan Helge Fossa, chief scientist at the Norwegian Institute of Marine Research, tells TVE's Earth Report programme for BBC World.

"So it was quite obvious that this was an activity that couldn't go on," he adds.

Cold corals are very slow growing. Some individuals are estimated to be up to 1,800 years old, and many reefs began forming at the end of the last Ice Age.

Damage inflicted by bottom-trawling can result in catastrophic consequences for the species living amid the reefs.

Onboard the institute's research vessel, Dr Helge Fossa is leading a survey for cold corals off the northern coast of Norway.

Robot eyes

The Institute provides advice on the marine environment to the Norwegian government, which is one of the few nations that have introduced laws to protect cold-water corals.

After performing a multibeam sonar sweep that provides a real-time map of the search area, the team launches a ROV through the side of the ship.

Shrimp (TVE)
I have never heard a person in Norway, after looking at the videos, who objects to protection
Dr Jan Helge Fossa,
Norwegian marine scientist
Once the vehicle reaches the site 200m below the surface, its four powerful lights allow the onboard camera to beam pictures back to the scientists on the surface.

"What we see here is only coral rubble, and it's trawled out to small pieces," Dr Helge Fossa observes. "We have so far seen no live coral."

It is not long before the prime suspect is located: discarded trawling equipment. Closer inspection reveals that the nets and gear are likely to be about 20 years old.

Norway's Coral Act 1999 protects all coral reefs in the nation's waters from intentional damage, and bottom-trawling has been completely banned in areas surrounding five specific reefs.

However, the country has the longest coastline in Europe, making monitoring and policing the region a tough task.

Video campaign

To date, there have been no prosecutions from data gathered by the space-borne Vessel Monitoring System (VMS), but Dr Helge Fossa's team hopes images obtained by its high-definition submersible-camera system will help change that.

Discarded gear (TVE)
The Norwegian expedition finds evidence of discarded gear
"We know that it is important to get our results out, not only to the government but also to the public," he says. "That's why we use a lot of videos, it tells more than a thousand words."

He said it made people understand why the complex ecosystems needed protecting: "I have never heard a person in Norway, after looking at the videos, who objects to protection."

Some scientists believe that other nations should adopt similar protection measures as Norway, otherwise many more deep cold-water reefs will resemble a lunar surface.

The Television Trust for the Environment's (TVE) Earth Report - Cold Corals Deep will be broadcast on BBC World on 21 and 23 October 2006. Please check schedules for further details

Diagram showing how bottom trawling works (BBC)

Story from BBC NEWS:
http://news.bbc.co.uk/go/pr/fr/-/2/hi/science/nature/6067806.stm

Published: 2006/10/20 12:17:05 GMT

© BBC MMVII