7.03.2009

How Crabs That Live In Hydrothermal Vents Reproduce



Bythograea laubieri. New observations of the reproductive biology of crabs living around hydrothermal vents help explain their distribution and provide clues about the selection pressures prevalent in these hostile environments. (Credit: Copyright P Briand, Ifremer)


ScienceDaily — New observations of the reproductive biology of crabs living around hydrothermal vents help explain their distribution and provide clues about the selection pressures prevalent in these hostile environments.

Hydrothermal vents were first discovered along the Galapagos Rift in 1977 and are home to at least 500 animal species about whose biology much remains to be learnt. One such animal group is the family Bythograeidae - the only family of crabs truly endemic to deep-sea hydrothermal vents. The first bythograeid vent crab to be described was Bythograea thermydron in 1980. This is the dominant crab species on most vent sites along the East Pacific Rise and on the Galapagos Rift. More recently, two other species, B. laubieri and B. vrijenhoeki, have been discovered. In addition to alvinellid tube worms, these two crab species dominate the hydrothermal vent faunas of the Pacific-Antarctic Ridge.

Professor Paul Tyler of the National Oceanography Centre, Southampton (NOCS), together with Dr Ana Hilário of both NOCS and the University of Aveiro and other Portuguese colleagues have been studying the reproductive biology of vent organisms for many years. They have studied ovary development in females of B. laubieri and B. vrijenhoeki collected on the Sebastian’s Steamer vent site (37° 47.48’ S, 110° 54.85’W; 2204 m depth) - the southernmost vent area known on the Pacific-Antarctic Ridge. The specimens were collected during an expedition aboard the American ship the RV Atlantis in 2005. The crabs were lured into a baited trap moored in position using the deep-sea submersible Alvin, which is operated by the Woods Hole Oceanographic Institution, Massachusetts.

The researchers tested the hypothesis that B. laubieri and B. vrijenhoeki would have reproductive patterns generally similar to those of B. thermydron because of their close evolutionary relationship. And indeed, as in B. thermydron, the ovarian microstructures in B. laubieri and B. vrijenhoeki were similar to those of shallow water brachyuran crabs. The paired ovaries were found beneath the carapace and overlying the hepatopancreas, an organ that provides functions similar to those of the mammalian liver and pancreas.

The researchers also show how immature eggs (oogonia) proliferate and develop into mature yolk-containing eggs. The general process of gamete formation in the two species studied was similar to that reported for B. thermydron, with some minor differences. No egg-bearing females were found in the samples. This is consistent with previous suggestions for B. thermydron that egg-bearing females retreat to less hostile places away from the active vent chimneys - hydrothermal fluids are rich in sulphide and heavy metals that may be toxic to the embryos and larvae.

But there were also some crucial differences in the reproductive patterns of B. laubieri and B. vrijenhoeki as compared to B. thermydron. The last species shows reproductive synchrony and seasonality linked to the formation of phytoplankton blooms in surface waters. However, females of B. laubieri and B. vrijenhoeki collected simultaneously from the Pacific-Antarctic Ridge contained oocytes (egg cells) in all stages of development, suggesting a lack of synchrony in reproduction for the population as a whole.

The researchers point out that the geographical distribution of B. laubieri and B. vrijenhoeki falls within the boundaries of the South Pacific Subtropical Gyre, the most uniform and seasonally stable region of the open oceans. They suspect that the absence of phytoplankton blooms and constant low concentration of dissolved nutrients may preclude environmental cues for seasonal reproduction, and that this oceanographic feature may also function as a dispersal barrier. Thus, they suggest, the biogeography of vent crabs may be determined by “contrasting oceanographic regimes that influence the reproductive patterns observed in different species.”

Source: http://www.sciencedaily.com/releases/2009/05/090519111550.htm

Furry-clawed Asian Crabs Found In Delaware And Chesapeake Bays



The "furry-looking" claws distinguish the Chinese mitten crab from native crabs. This Chinese mitten crab was caught by a waterman fishing for Blue crabs in the Upper Chesapeake Bay on May 18. (Credit: Greg Ruiz, Smithsonian)

ScienceDaily — Chinese mitten crabs, first reported in the Chesapeake Bay, are more widespread than initially thought. Four crabs have now been caught in Delaware Bay during May 2007, and may occur in other waters of the U.S. east coast.

In total, seven adult male mitten crabs have been documented from the two bays since 2005. Prior to this, the potentially invasive species had never been recorded from coastal waters of the eastern United States.

The mitten crab is native to eastern Asia and has already invaded Europe and the western United States, where it has established reproductive populations. The crab occurs in both freshwater and saltwater. Young crabs spend their lives in freshwater and migrate to saltwater estuaries for reproduction.

Named for the unusual thick fur-like coating on its claws, the mitten crab looks very different than native crabs and is easily recognized. It is listed as injurious wildlife under the Federal Lacey Act, due to its potential to cause ecological and economic damage.

"We don't know the present status of this crab along the eastern U.S. coast" said Gregory Ruiz, senior scientist at the Smithsonian Environmental Research Center. "At the moment, it is not clear whether these crabs are reproducing or established in the Mid-Atlantic region, or whether the captured crabs are just a few individuals that originated elsewhere." These crabs may have arrived in the ballast water of ships or through live trade.

A Mitten Crab Network has been established to examine the abundance, distribution, and reproductive status of crabs in Chesapeake Bay, Delaware Bay and other estuaries along the eastern United States. The initial partnership between the Smithsonian lab, Maryland Department of Natural Resources, U.S. Fish and Wildlife Service, National Oceanic and Atmospheric Administration and Delaware Division of Fish and Wildlife, is now being expanded to include resource managers, commercial fishermen, research organizations and citizens along the east coast.

Source: http://www.sciencedaily.com/releases/2007/06/070604123727.htm

7.02.2009

New Additions to the UNESCO World Heritage List


MADRID - The Tubbataha Reefs Marine Park, an existing World Heritage Site in the Philippines and which includes a number of endangered species, has been significantly extended by the International Union for the Conservation of Nature (IUCN) on Friday.

A press release on the IUCN website said the Tubbataha Reefs Marine Park, which was inscribed on the World Heritage List in 1993, is now three times bigger than the original, increasing from 33,000 to 97,000 hectares to include the Tubbataha Reefs National Park.

The National Park harbors more than 350 species of coral and almost 500 species of fish.

“Tubbataha Reef Marine Park, composed of two atolls and one reef, is home to a number of threatened and endangered species, such as the iconic Napoleon wrasse,” said Josephine Langley, IUCN’s World Heritage Monitoring Officer.

“It’s in a unique position in the middle of the Sulu Sea and is the perfect site to study the response of a natural reef system to the impacts of climate change.”

The IUCN also announced that the tidal flats and wetlands of the Wadden Sea, off the coast of Germany and the Netherlands, and Italy's Dolomite mountains have been added to UNESCO's World Heritage List. The announcements were made on the fifth day of a meeting of UNESCO's World Heritage Committee in Seville, in southern Spain.

"The Wadden Sea is the largest unbroken system of inter-tidal sand and mud flats in the world," it said.

"It is one of the most important areas for migratory birds, with up to 6.1 million birds present at any one time more than 400,000 breeding pairs and an average of 10-12 million birds which pass through every year."

It said the Dolomites in Italy were chosen "due to their outstanding natural beauty and the geological significance of their limestone formations.

"Some of the rock cliffs rise more than 1,500 metres (1,640 yards) and are among the highest vertical limestone walls in the world.

"The fossil record of the Dolomites provides an insight into the recovery of marine life after near extinction more than 200 million years ago."

Source: http://www.abs-cbnnews.com/nation/regions/06/26/09/tubbataha-reefs-extended-world-conservation-body