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Showing posts with label Dolphins. Show all posts
Showing posts with label Dolphins. Show all posts

Dolphins of Perdido Bay -- Escaping the Oil

Perdido Bay, on the boarder of Alabama and Florida has been breached by the oil. Booms failed, again. Booms aren't manned, again. And the tides bring more and more oil deeper and deeper into the bay. And we will soon be inundated with images of more habitats coated in brown, smothering, toxic oil. It would seem this scene is becoming all too familiar. But in this case there is an added, pending tragedy. Reports are coming in that dolphins are seeking refuge in the bay; a bay where they are known to calve. And one report says more animals arrive daily.

NBC News - Dolphins Beached at Gulf Shores


Robin Vircsik, a local teacher, reached out to the on-line community with the following information:

"My kindergarten class and I are following the dolphins of Perdido Bay for our science project. I have been speaking with Capt. Lori DeAngelis in Orange Beach, AL about these dolphins. According to Lori as the oil comes further into the bay, the dolphins retreat north. Soon, they will have nowhere to go. Today, Saturday, June 12, oil is visible to the human eye in Perdido Bay. Also, 20-30 new dolphins appear each day.

Booms have been placed along the Bay, but they have not been changed out for 2 weeks and are no longer holding oil like they should. Boats are allowed in and out of Perdido Pass; all of the boats are carrying oil contamination on them. Local government officials will not close the pass; according to Lori there is another waterway and all the boats could simply "go around the pass" and Perdido Bay could be closed with the hopes of saving the dolphins.



Local government officials have asked Lori to "stand down" in regards to saving the dolphins. Perdido Bay is known as the "nursery of the gulf." Dolphins that live in the area come to the Bay to give birth to their babies.

Certainly some type of evacuation plan is needed for the dolphins or some type of machine should be placed at Perdido Pass to clean the oily water. Also, with all those dolphins retreating to the safest area they know, the nursery, the food supply is not going to be sufficient. Any help is much appreciated."

Please help Captain Lori, Robin Vircsik and her students and the dolphins they care about. Contact these officials to ask for a timely response -- close the pass, man the booms, and relocate any threatened dolphins if necessary. Thank you.

Mayor, Orange Beach AL: Tony Kennon at tkennon@cityoforangebeach.com
Unified Command Wildlife Distress Hotline: 866-557-1401
NOAA's Alabama Stranding Hotline: 888-767-3657
Your Congressional Representative: https://writerep.house.gov/
AL Congressman Jo Bonner: 251-943-2073
FL Congressman Jeff Miller: 850-479-1183

Information about this situation kindly provided by Kirk Krack 
of Performance Free-Diving and OPS.

Molecular data and satellite images applied to imperiled coastal dolphins studies

Using DNA samples and images from Earth-orbiting satellites, conservationists from Columbia University, the Wildlife Conservation Society, the American Museum of Natural History, and Fundación AquaMarina, are gathering new insights about the franciscana -- a poorly known coastal dolphin species of eastern South America -- in an effort to understand populations and conserve them.

The study, one of the first to combine molecular data along with range-wide environmental information for a marine species, is helping researchers to understand how seemingly monotonous marine environments actually contain significant habitat differences that are shaping populations of this threatened species, which averages between 5-6 feet in length and around 80-90 pounds in weight. According to findings published in the most recent edition of Molecular Ecology, genetic differences between dolphins from different sites correlate to measurable differences in water temperature, turbidity and chlorophyll levels, a tantalizing indication of how largely hidden oceanographic variables could drive population structure of marine animals.

The authors of the study are: Martin Mendez of Columbia University, the American Museum of Natural History (AMNH), and the Wildlife Conservation Society; Howard Rosenbaum of the Wildlife Conservation Society; Ajit Subramaniam of Lamont Doherty Earth Observatory at Columbia University; Charles Yackulic of Columbia University; and Pablo Bordino of Fundación AquaMarina and the Wildlife Trust Alliance.

"The availability of both genetic and environmental data provided us with a rare opportunity to examine how ecological factors affect population structure in a marine species," said Martin Mendez, the study's lead author. "In this instance, the study subject is possibly the most endangered cetacean in South America, so delineating populations and the factors that create them certainly plays an important role in conservation measures."

As a result of the study, the researchers recommend that the genetically distinct population of franciscanas to the north of Buenos Aires -- probably created in part by oceanographic conditions -- should be protected as part of a larger effort to save the species.

The research team started its investigation on the molecular level, one of the most efficient ways of determining the structure of marine animal populations. Working at the American Museum of Natural History's Sackler Institute for Comparative Genomics, researchers compared 275 genetic samples from dolphins that had been stranded, entangled in fishing gear, or captured and released in six locations along coastal Argentina (the southern portion of the animal's full range). Using genetic markers to statistically gauge the geneflow between dolphin groups at different sites, the scientists discovered that there are two -- and possibly three -- distinct populations of franciscanas in Argentina's coastal waters.

What really sets the study apart is the use of region-wide satellite data that shows how environmental differences -- temperature, turbidity, and chlorophyll levels -- are probably involved in creating those genetically distinct populations. The oceanographic data was provided by NASA's SeaWiFS and MODIS, two satellites designed to gather information on oceanic conditions.

The combination of genetic and environmental information allowed the scientists to examine the effects of detectable habitat differences on population structure in franciscanas. Specifically, researchers were able to test the role of two biological hypotheses on population formation, one based on the assumption that geneflow between two groups decreases with distance, and one based on decreased geneflow as a result of environmental barriers (the latter of which is easy to detect with terrestrial species separated by mountains, and usually undetectable in marine environments over wide areas).

In comparing both data sets, researchers were surprised to discover that dolphins in closely located sites in the northern portion of the study area were most genetically different; in particular, two closely located groups of dolphins near the mouth of the La Plata Estuary (some 35 kilometers--about 22 miles--apart) were the most genetically dissimilar in the study, a finding that coincided with detectable environmental discontinuities. By contrast, two sites separated by hundreds of kilometers to the south were found to be the most similar.

Other correlations hint at the possible role of behavioral patterns in population structure. An examination of both mitochondrial DNA (inherited through maternal lines) and nuclear DNA seems to reinforce current knowledge of cetacean behavior, with females remaining faithful to their natal location and males ranging more widely (except when oceanographic barriers impede their movement). More research on franciscana behavior could further illuminate the role of behavior in population structure.

"We're only beginning to understand the interactions between environmental factors and population patterns in marine environments," said Dr. Howard Rosenbaum, director of the Wildlife Conservation Society's Ocean Giants Program. "What this study shows is that marine systems are not homogeneous environments, but full of variations that could play important roles in shaping and reinforcing how animal populations use their habitat; these types of information are essential for developing strategies on how best to protect these coastal dolphins and broader marine spatial planning."

                                 photo: Regina Zanelatto - IUCN

The franciscana, or La Plata dolphin, is found along the Atlantic coastal waters of South America, from southern Brazil to Península Valdes in Argentina. Although a member of the river dolphin family, the franciscana -- one of the world's smallest cetaceans -- actually lives in coastal waters and estuaries. The species is listed as "Vulnerable" by the World Conservation Union (IUCN), and is threatened by accidental capture in gill nets and other fishing gear.

Source: Molecular data and images from space used to study imperiled coastal dolphins
ScienceDaily (May 10, 2010)