Showing posts with label new species. Show all posts
Showing posts with label new species. Show all posts

Monday, 1 April 2019

How new species arise in the sea


Study sheds new light on a fundamental question in evolutionary biology
Date:  March 4, 2019
Source:  Helmholtz Centre for Ocean Research Kiel (GEOMAR)
For a new species to evolve, two things are essential: a characteristic -- such as a colour -- unique to one species and a mating preference for this characteristic. For example, individuals from a blue fish species prefer blue mates and individuals from a red fish species prefer red mates. If the two species interbreed, the process of sexual recombination is expected to destroy the coupling between colour and mate preferences and form red individuals with a preference for blue mates and vice versa. This will prevent the two species from diverging, and this is one of the reasons why it has been thought for a long time that new species can only evolve in absolute isolation, without interbreeding.
However, the dynamics of this process depend on the exact number and location of genes underlying species characteristics and mate preferences, the strength of natural selection acting on these genes, and the amount of interbreeding between species. In a new study, Professor Oscar Puebla from GEOMAR Helmholtz Centre for Ocean Research Kiel in Germany together with colleagues from the Smithsonian Tropical Research Institute in Panama have found that natural selection can couple the evolution of genes for colour pattern and mate preferences when species still interbreed. The study has been published today in the international journal Nature Ecology and Evolution.
"To address this question, the first challenge was to identify an animal group in which species are still young and interbreed, with clear species characteristics, and in which the bases of reproductive isolation are well understood," Oscar Puebla explains. The hamlets, a group of closely related reef fishes from the wider Caribbean, constitute exactly such a group. The hamlets are extremely close genetically, differ essentially in terms of colour pattern, and are reproductively isolated through strong visually-based mate preferences.


Monday, 10 July 2017

The sixth mass genesis? New species are coming into existence faster than ever thanks to humans




July 10, 2017 by Chris D Thomas, The Conversation


Animals and plants are seemingly disappearing faster than at any time since the dinosaurs died out, 66m years ago. The death knell tolls for life on Earth. Rhinos will soon be gone unless we defend them, Mexico's final few Vaquita porpoises are drowning in fishing nets, and in America, Franklin trees survive only in parks and gardens. 

Yet the survivors are taking advantage of new opportunities created by humans. Many are spreading into new parts of the world, adapting to new conditions, and even evolving into new species. In some respects, diversity is actually increasing in the human epoch, the Anthropocene. It is these biological gains that I contemplate in a new book, Inheritors of the Earth: How Nature is Thriving in and Age of Extinction, in which I argue that it is no longer credible for us to take a loss-only view of the world's biodiversity.

The beneficiaries surround us all. Glancing out of my study window, I see poppies and camomile plants sprouting in the margins of the adjacent barley field. These plants are southern European "weeds" taking advantage of a new human-created habitat. When I visit London, I see pigeons nesting on human-built cliffs (their ancestors nested on sea cliffs) and I listen out for the cries of skyscraper-dwelling peregrine falcons which hunt them.

Climate change has brought tree bumblebees from continental Europe to my Yorkshire garden in recent years. They are joined by an influx of world travellers, moved by humans as ornamental garden plants, pets, crops, and livestock, or simply by accident, before they escaped into the wild. Neither the hares nor the rabbits in my field are "native" to Britain.












Sunday, 3 July 2016

Humans artificially drive evolution of new species


Date:June 28, 2016
Source:Faculty of Science - University of Copenhagen

Species across the world are rapidly going extinct due to human activities, but humans are also causing rapid evolution and the emergence of new species. A new study published today summarises the causes of humanmade speciation, and discusses why newly evolved species cannot simply replace extinct wild species. The study was led by the Center for Macroecology, Evolution and Climate at the University of Copenhagen.

A growing number of examples show that humans not only contribute to the extinction of species but also drive evolution, and in some cases the emergence of entirely new species. This can take place through mechanisms such as accidental introductions, domestication of animals and crops, unnatural selection due to hunting, or the emergence of novel ecosystems such as the urban environment.

Although tempting to conclude that human activities thus benefit as well as deplete global biodiversity, the authors stress that extinct wild species cannot simply be replaced with newly evolved ones, and that nature conservation remains just as urgent.

"The prospect of 'artificially' gaining novel species through human activities is unlikely to elicit the feeling that it can offset losses of 'natural' species. Indeed, many people might find the prospect of an artificially biodiverse world just as daunting as an artificially impoverished one" says lead author and Postdoc Joseph Bull from the Center for Macroecology, Evolution and Climate at the University of Copenhagen.

Wednesday, 24 December 2014

Over two hundred interesting new species in 2014

Date:
December 22, 2014

Source:
California Academy of Sciences

Summary:
In 2014, researchers at the California Academy of Sciences added 221 new plant and animal species to our family tree. The new species include 110 ants, 16 beetles, three spiders, 28 fishes, 24 sea slugs, two marine worms, 9 barnacles, two octocorals, 25 plants, one waterbear, and one tiny mammal.


Friday, 22 February 2013

New Genus of Crustacean and Five New Species


Feb. 15, 2013 — On recent expeditions to Madagascar and the French Polynesia, two Spanish researchers have discovered five new species of crustacean and a new genus named Triodonthea .

Experts from the Centre for Advanced Studies of Blanes and the University of Barcelona (UB) collected and studied different crustacean specimens during recent expeditions to Madagascar, New Caledonia, Vanuatu, the Philippines and French Polynesia.
Enrique Marcpherson

Using morphological and molecular data they have discovered five new species of crustaceans in the waters of these regions. They are genetically different but morphologically very similar and they also found a new genus, named Triodonthea. The five new species documented in the study belong to the Lauriea genus of the Galatheidae family, which is differentiated easily from other species of the group as it has very long setae and their legs end in a double spine.

"The Triodonthea is a new genus that it genetically very different from the Lauriea species despite being very morphologically similar. The morphological differences are small to our eyes but reflect great inequalities on a species level," as explained  by Enrique Macpherson, researcher at the Centre for Advanced Studies of Blanes and co-author of the study along with Aymee Robainas-Barcia from the UB.


Sunday, 2 December 2012

Killer whale researchers make case for declaring new species, name, for mammal-eating orcas – via Chad Arment


Dan Joling, The Associated Press
Nov 25, 2012

ANCHORAGE, Alaska - If whale expert John K.B. Ford has his way, school children one day will study a kind of North Pacific killer whale that preys on warm-blooded creatures — mostly harbour seals and sea lions, but also grey whales and seabirds.

They roam as far north as the Arctic Ocean and are now known as "transients" to distinguish them from fish-eating "resident" killer whales.

Ford and colleagues from Alaska to California want transient killer whales to be declared their own species, and they want them to have a new name: Bigg's killer whales, in honour of Michael Bigg, the researcher whose observations off British Columbia and Washington state led to the identification of transients and whose mentoring inspired a generation of researchers still uncovering the mysteries of the animal at the top of the marine food chain.

"He was really very much the founding father of modern scientific studies regarding killer whales," Ford said from his office at the Pacific Biological Station in Nanaimo, B.C., where he heads West Coast cetacean research for Canada's Department of Fisheries and Oceans.

Paul Wade, a U.S. killer whale expert at the National Marine Mammal Laboratory in Seattle, said colleagues have begun using Bigg's killer whales as the common name for transients in research papers.

"It seems to be catching on," Wade said.

Work demonstrating that Bigg's killer whales are a separate species also is progressing, he said, and that could lead to honouring Bigg with a formal scientific name for transients.

Michael Andrew Bigg was born in London in 1939. He moved to British Columbia with his family nine years later. He had a lifelong fascination with predators, Ford said, and for a time was a falconer.

"He was kind of a rare generalist as a biologist," Ford said. "He was broadly interested in natural history."

Just out of graduate school in 1970, Bigg was hired as a marine mammal biologist at the Pacific Biological Station. One assignment was an investigation of the status of killer whales, considered dangerous to humans and pests by salmon fishermen. By 1973, aquariums were paying $70,000 for a live killer whale and 48 had been captured for display.

Bigg and colleagues distributed sighting forms to fishermen and other coast residents. His report in 1976 concluded that just 200 to 350 orcas remained along the B.C. and Washington coasts, far fewer than thought, and too few to sustain additional live captures.

He also made a breakthrough that would create the framework for decades of additional research: He determined that individual whales could be identified by pigmentation patterns on the saddle patch at the base of their dorsal fins. That meant researchers could track whales to figure out their diets, family dynamics and communications with other whales.

"It was Mike's realization that with a good-enough photograph, you could identify even the plainest looking fin without any obvious markings," Ford said.

Bigg's formal association with killer whales ended by early 1977. He was reassigned to other marine mammals, including northern fur seals, Ford said, but kept at killer whale research on the side. He had started to distinguish families of resident orcas that he suspected were targeting salmon. More rarely seen were killer whales that Bigg at first suspected were pod outcasts.

They turned out instead to be mammal-eaters. Genetic work on transients followed. Wade collaborated with National Marine Fisheries Service geneticist Phillip Morin and 14 other researchers on a 2011 paper that indicated resident and transient killer whales don't eat or behave the same ways. They also don't interbreed.

"The evidence suggests that the transients in particular are quite different than everybody else and probably shared an ancestor about 700,000 years ago," Morin said from the Southwest Fisheries Science Center in La Jolla, Calif.

The scientists say at least three killer whale species likely roam the North Pacific, including offshore orcas that may feed on sleeper sharks, and three in the Antarctic. Killer whales are found in every ocean and DNA samples have been studied from the extreme north and south parts of the globe. Researchers are preparing to analyze samples from tropical and temperate waters, Morin said, to piece together the pattern of evolutionary divergence between types.

"The goal is to then try to compile the genetic data with all of other data — the behavioural, the acoustic, other molecular data, distribution — and come up with a description of killer whales globally, along with our recommendations for which should be species and which should be subspecies, if the data hold up those categories," Morin said.

Bigg's influence on other scientists may have been as meaningful as his research. He shared his work and often his home with newly graduated marine biologists from the United States, France, Sweden, Norway, Mexico and Argentina, inviting them to unlock additional secrets about killer whales in their parts of the world, Ford said.

Ford was one of them. Bigg helped him find a boat for his first field work. Ford went on to study underwater acoustic signals in social communication of killer whales for identification and description of dialects from whale groups.

Bigg was diagnosed with leukemia in 1984 and died in 1990 at the age of 51.

The idea for naming transients, Ford said, came from the Vancouver Aquarium researcher Lance Barrett-Lennard and John Durban of the Southwest Fisheries Science Center as they studied killer whale predation on grey whales at False Pass in Alaska's Aleutian Islands.

"Mike would be incredibly fascinated with the information that's still coming to light," Ford said.

http://www.570news.com/news/world/article/425287--killer-whale-researchers-make-case-for-declaring-new-species-name-for-mammal-eating-orcas

Saturday, 24 November 2012

New Species Sit on Museum Shelves for 21 Years


Discovering a new species must be a heady experience — the collection in the field, the "eureka" moment when you realize you've got something new, the jubilant announcement to the rest of the scientific community.

Well, not quite.

In fact, an average of 21 years pass from the time a new specimen is discovered until the time it's identified and reported to the world, a new study finds. The individual steps may still be very exciting, but they're often incredibly slow. And at this rate, species may go extinct in the wild while the specimens that might have identified them languish unstudied on museum shelves.

Continued:  http://www.livescience.com/24881-new-species-museum-shelves.html

Thursday, 9 August 2012

3000 new species of amphibians discovered in 25 years - via Herp Digest


mongabay.com, July 31, 2012

The number of amphibians described by scientists now exceeds 7,000, or roughly 3,000 more than were known just 25 years ago, report researchers in Berkeley. 

David Wake, an emeritus biology professor at the University of California, this week announced the 7,000th amphibian cataloged on AmphibiaWeb, a project which since 2000 has sought to document every one of Earth's living frogs, salamanders, newts, and caecilians. The 3,000 'new' species means that scientists have described a previously unknown amphibian every two-and-a-half days since 1987. And the rate of new species descriptions may be accelerating: 100 species have been described so far in 2012. 

The 7000th amphibian added to AmphibiaWeb was Centrolene sabini, a glass frog from Manu National Park in the Peruvian Amazon. Photo by Alessandro Catenazzi, the researcher who was the lead author of the paper that described the species.
But the discoveries mask bad news: global amphibian populations are in sharp decline due to the effects of climate change, habitat destruction, pollution, invasive species, overharvesting as food and for the pet trade, and the spread of chytridiomycosis, a deadly fungal disease. The IUCN Red List estimates that more than 40 percent of amphibians are at risk, while more than 150 species are known to have gone extinct since the early 1980s. 

AmphibiaWeb documents the known status of each and every species. Beyond photos, maps, and information, the site also collects audio clips of frog calls. Wake said AmphibiaWeb had become the global authority for amphibian information. 

“We are the place for accurate, vetted information on amphibians,” he said in a statement, noting the site is queried 15,000 and 20,000 times per day. 


CITATION: Catenazzi, A., Von May, R., Lehr, E., Gagliardi-Urrutia, G., Guayasamin, J.M. (2012). ''A new, high-elevation glassfrog (Anura: Centrolenidae) from Manu National Park, southern Peru.'' Zootaxa, 3388, 56-68. 


Read more: http://news.mongabay.com/2012/0731-7000-amphibians.html#ixzz22ZZ1Zkop

Friday, 15 June 2012

Is it possible to predict the formation of new species? - Probably

Predicting the formation of new species
June 2012. Why do some groups of species diversify - in just a few thousand years - to the point of forming a wide variety of new species, while others remain essentially unchanged for millions of years? This is one of the key questions for scientists investigating the emergence and decline of biodiversity.
From various studies, it is known that speciation is influenced both by environmental factors (e.g. habitat diversity, climate) and by species-specific traits (e.g. coloration, behaviour patterns). However, little is known about how the extrinsic and intrinsic factors interact.
Cichlid diversification
These interactions have now been explored in more detail by a team of researchers led by Eawag and the University of Bern. In a study published in the latest issue of Nature, they demonstrate for cichlids from 46 African lakes that the probability of diversification, or "adaptive radiation", depends on a combination of environmental factors and sexual selection. African cichlids are particularly suitable for this type of study because of the extremely high species richness that developed over time from what was originally a small number of species in large African lakes. For Lakes Victoria and Malawi alone, more than 800 endemic cichlid species have been identified.

Wednesday, 14 December 2011

New dinosaur species found from museum vaults

Researchers have discovered what they say are the remains of a new horned dinosaur species which has been lying in the vaults of a British museum for nearly a century.


The remains of Spinops sternbergorum, which belongs to the same family as the Triceratops, were excavated from a quarry alongside a large group of fossils in a so-called “bone bed” in Alberta, Canada in 1916.

But the bones were described as “rubbish” by the Natural History Museum’s keeper of Geology at that time, and lay unnoticed for almost 100 years before experts realised they belonged to an undescribed species.

They were rediscovered by a current group of researchers who decided to take another look at the fossils and realised that they were unlike any others known to science.

Dr Andrew Farke, who led the research team, said: “I knew right away that these fossils were something unusual, and it was very exciting to learn about their convoluted history.

“Here we have not just one, but multiple individuals of the same species, so we are confident that it’s not just an odd example of a previously known species,” Dr Farke was quoted as saying a newspaper.

The find means that paleontologists will have to redefine how the horned dinosaur group, plant-eating dinosaurs sporting large horns and bony frills on their necks, are classified.

Dr Paul Barrett, the Natural History Museum’s resident researcher, said: “This discovery is of particular importance as it has implications on the way we use the spines that extend from the bony neck frill, which may have been used for identification between individuals, in our classifications of these animals.

“These embellishments are central to determining relationships between the groups of horned dinosaurs and are a sign of evolutionary relatedness.”

http://www.discoveryon.info/2011/12/new-dinosaur-species-found-from-museum-vaults.html?utm_source=feedburner&utm_medium=email&utm_campaign=Feed:+Discoveryon+%28Discoveryon%29

Thursday, 15 September 2011

Mummy Crocs Aid in Nile Crocodile Split (via Chad Arment)

Nile crocodile is two species
Discovery has implications for conservation and management of the iconic species.
Ed Yong

The iconic Nile crocodile actually comprises two different species — and they are only distantly related. The large east African Nile crocodile (Crocodylus niloticus) is in fact more closely related to four species of Caribbean crocodile than to its small west African neighbour, which has been named Crocodylus suchus.

Evon Hekkala of Fordham University in New York and her colleagues revealed evidence for the existence of the second species by sequencing the genes of 123 living Nile crocodiles and 57 museum specimens, including several 2,000-year-old crocodile mummies.

The results1 resolve a centuries-old debate about the classification of the Nile crocodile, and have important implications for the conservation of both species. "The paper has generated a great deal of interest and support," says Grahame Webb, head of the specialist crocodile group of the International Union for Conservation of Nature.

Croc-infested watersHekkala's work began when she received a sample from herpetologist Michael Klemens of the Wildlife Conservation Society. In Chad, Klemens had stumbled across six crocodiles in a small oasis and, at his guide's recommendation, jumped in with them. Puzzled by their docile behaviour, Klemens took tissue from a dead one. He sent the sample to the American Museum of Natural History in New York, where Hekkala and her co-workers sequenced it.

"I kept on sequencing it because I was convinced I was 100% wrong," says Hekkala. "It wasn't even remotely related to the Nile crocodile samples I had been working on."

Hekkala's group collected as many Nile crocodile samples as they could find, including several from ancient mummified animals. All of the mummies were of C. suchus, indicating that the ancient Egyptians had recognized the differences between the two reptiles. Indeed, the ancient Greek historian Herodotus wrote that the Egyptians selectively used a smaller, tamer crocodile in ceremonies and regarded it as sacred.

The name C. suchus was coined in 1807 by the French naturalist Geoffroy Saint-Hilaire, who singled it out as a subspecies of Nile crocodile. However, his ideas were not widely accepted. "He called it the sacred crocodile in one of his papers," says Hekkala. "We've talked about proposing that as a common name."

Hekkala is now working to formally describe the new species. "Crocodiles are generally very hard to tell apart from their exterior features," she says. Even so, unpublished preliminary work suggests that C. suchus and C. niloticus have distinct skulls, and research in the 1970s by the leather industry suggested that they have different scale patterns.

Hekkala says that her results refute the idea of crocodiles as "living fossils" that have remained unchanged for millions of years. "Our paper shows that the true Nile crocs in east Africa are as young as humans are. C. suchus is only slightly older."
Shrinking range

Analysis of the mummified DNA suggests that both species used to overlap throughout Africa. This is no longer the case. " C. suchus seems to have recently gone extinct from suitable habitats in the Nile, perhaps because C. niloticus grows bigger and is far more aggressive," says Dietrich Jelden at the German Federal Agency for Nature Conservation in Bonn.

While C. suchus was retreating into the dry interior of western Africa, C. niloticus spread across the Atlantic to the Caribbean. From eastern Africa, the crocodiles could have ridden currents that flow around the cape and into the Caribbean. "Traders used these during the slave trade, so transoceanic dispersal isn't unrealistic," says Hekkala, "especially since crocodiles can store sperm and go without eating for up to 10 months."

The shrinking size of C. suchus ' range has immediate implications for conservation. The newly confirmed species is already declining and is under threat from industries such as oil extraction, as well as from unregulated trading of skin and bushmeat.

Meanwhile, the group's finding halves the range of the traditional Nile crocodile. "It's going to shake things up," says Hekkala. The Nile crocodile has long been viewed as a model for the sustainable use of wildlife and several nations had plans to increase their harvest of the species for its skin. Hekkala's discovery could put paid to that. "Some people are going to be very unhappy," she says.

http://www.nature.com/news/2011/110914/full/news.2011.535.html
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Tuesday, 28 June 2011

Scientists thrill to a thousand new animal species in PNG

A FROG with fangs, a blind snake and a round-headed dolphin are among more than 1000 new species that have been recently found in Papua New Guinea, the environment group WWF said yesterday.

A frog with fangs, a blind snake and a round-headed dolphin are among more than 1000 new species that have been recently found in Papua New Guinea, the environment group WWF said yesterday.

Scientists made the astounding discoveries, which included a river shark and dozens of butterflies, at a rate of two a week from 1998 to 2008, WWF said in a report on the island's natural habitat.

"This report shows that New Guinea's forests and rivers are among the richest and most biodiverse in the world," WWF Western Melanesia program representative Neil Stronach said.

PNG's rainforests are the third-biggest in the world after the Amazon and the Congo, and, while the island covers just 0.5 per cent of Earth's land mass, it contains up to 8 per cent of the world's species, according to WWF.

Thursday, 3 February 2011

New mosquito type raises concern

New mosquito type raises concern

Close-up image of a mosquito Anopheles gambiae is responsible for the vast majority of malaria cases in Africa

Scientists have identified a new type of mosquito.

It is a subgroup of Anopheles gambiae, the insect species responsible for most of the malaria transmission in Africa.

Researchers tell Science magazine that this new mosquito appears to be very susceptible to the parasite that causes the disease - which raises concern.

The type may have evaded classification until now because it rests away from human dwellings where most scientific collections tend to be made.

Dr Michelle Riehle, from the Pasteur Institute in Paris, France, and colleagues made their discovery in Burkina Faso, where they gathered mosquitoes from ponds and puddles near villages over a period of four years.

When they examined these insects in the lab, they found many to be genetically distinct from any A. gambiae insects previously recorded.

The team grew generations of the unique subtype in the lab to assess their susceptibility to the malaria parasite and this revealed them to be especially vulnerable, more so than indoor-resting insect types.

But Pasteur team-member Dr Ken Vernick cautioned that these mosquitoes' significance for malaria transmission had yet to be established.

"We are in a zone where we need to do some footwork in the field to identify a means to capture the wild adults of the outdoor-resting sub-group," he told BBC News.

Larvae are collected from natural pools Larvae are collected from pools of water for study

"Then we can test them and measure their level of infection with malaria, and then we can put a number on how much - if any - of the actual malaria transmission this outdoor-resting subgroup is responsible for."

The researchers report in Science magazine that the new subgroup could be quite a recent development in mosquito evolution and urge further investigation to understand better the consequences for malaria control.

They also emphasise the need for more diverse collection strategies. The subtype is likely to have been missed, they say, because of the widespread practice of collecting mosquitoes for study inside houses. In one sense this has made sense - after biting, mosquitoes need to rest up and if they do this inside dwellings, the confined area will make them an easier target for trapping. However, the method is also likely to introduce a bias into the populations under study.

Commenting on the study, Dr Gareth Lycett, a malaria researcher from the Liverpool School of Tropical Medicine in the UK, said it was an interesting advance that might have important implications for tackling malaria.

"To control malaria in an area you need to know what mosquitoes are passing on the disease in that district, and to do that you need sampling methods that record all significant disease vectors," he told BBC News.

"You need to determine what they feed on, when and where, and whether they are infectious. And where non-house-resting mosquitoes are contributing to disease transmission, devise effective control methods that will complement bed-net usage and house spraying. A recent 12m-euro multinational project (AvecNET), funded by the European Union, and led by the Liverpool School of Tropical Medicine has the specific aims of doing just this."

According to the World Health Organization (WHO), there are more than 200 million cases of malaria worldwide each year, resulting in hundreds of thousands of deaths, most of them in Africa.

Malaria is caused by Plasmodium parasites. The parasites are spread to people through the bites of infected female Anopheles mosquitoes.

Thursday, 6 January 2011

New Caddisfly species to the UK discovered

A caddisfly species has been found for the first time in the UK


January 2011. The insect, discovered by Stuart Crofts, was found near a small stream flowing through woodland near Masham, North Yorkshire. The last time a new species of caddisfly was found in the UK was in 1965.

Pollution sensitive insects
Caddisflies are fascinating, spending the majority of their life as larvae in freshwater before emerging as adult flies. They are pollution sensitive insects and commonly used as a litmus test for the health of the environment. They help support healthy bird and fish populations as they provide an important food source and they are often imitated by fly-fishermen in their artificial flies to catch fish.

Synagapetus dubitans, is a small caddisfly of around 5mm. "I couldn't believe what I was seeing when I identified it" said Stuart Crofts, a former international fly fisherman and Coordinator of the Adult Caddisfly Occurrence Scheme. "To find a species new to the UK is amazing, a great honour and very humbling experience".

"The discovery of a new species of caddisfly in the UK is fantastic news." said Craig Macadam, Conservation Officer with Buglife. "Springs and seepages in woodlands can be very important habitats. Now that we know this species is here we can help to protect its habitat."

Synagapetus dubitans is more commonly found in central Europe

Courtesy of The Riverfly Partnership, Riverfly Recording Schemes and Buglife - The Invertebrate Conservation Trust

http://www.wildlifeextra.com/go/news/caddisfly.html

Monday, 3 January 2011

A menagerie under the sea

A 10-year ‘census’ of the world’s oceans has brought over a thousand previously unknown species to light, with hints that there are many more.

God told Adam in the Garden of Eden to name all the fowl of the air and beasts of the field – but not the fishes, which he couldn’t see. That was left to the just-completed, decade-long first Census of Marine Life, in which 2,700 researchers from more than 80 countries – including Israel – participated.


The $650 million census spanned oceans from the North Pole to Antarctica and smaller seas such as our own Mediterranean, from the surfaces to the depths. It used divers, submersible vehicles, nets, sonar, electronic and acoustic tagging, genetic identification, listening posts and communications satellites to count some 250,000 species, including 1,200 newly discovered ones, from microscopic to large mammals. They also took 5,000 specimens in glass jars awaiting taxonomic description.

The researchers discovered cold-water corals extending off Mauritania in North Africa for over 400 kilometers and half a kilometer deep that comprised one of the world’s longest reefs. They tested a Caribbean clam species found to have thrived for at least 65 million years even though it had been thought extinct in the early 1800s. And off the coast of Chile are newly discovered microbial mats covering an area the size of Greece.

But it is only the beginning, as according to Jesse Ausubel – a co-founder of the global project who works for Rockefeller University and the Alfred P. Sloan Foundation that helped fund the census – an estimated one billion marine species actually exist.

BUT THE census not only counted the known species and discovered new ones; it also assessed the movements of species and – using historical databases – learned whether they have grown increased or are disappearing due to environmental factors.

A vast amount of information, videos and photos is available at its official Web site at www.coml.org.

Ausubel and Prof. Roberto Danovaro of the Polytechnic University of Marché (who focused on the Mediterranean) came to Israel recently to discuss the census and brief marine scientists at the Israel Academy of Sciences and Humanities in Jerusalem.

Among the local experts who took part in the census were Prof. Yossi Loya, a marine ecologist at Tel Aviv University’s zoology department and a member of the prestigious academy; Prof. Alex Keynan, an academy senior adviser who was the director of the Biological Institute in Nes Ziona in the 1950s and 1960s; Aahron Kaplan of the Eilat InterUniversity Marine Station; Ruthy Gertwagen of the University of Haifa; and Barak Herut, director-general of Haifa’s Oceanographic and Limnological Research Institute.

The all-day session discussing the findings and impact of the census was chaired by academy president Prof. Ruth Arnon.

KEYNAN TOLD the audience that Ausubel, with whom he has cooperated for 20 years, was the “first scientist to identify the phenomenon of global warming” and the man in charge of many ambitious marine study projects.

The New York expert noted that 70 percent of the Earth’s surface is covered by water; when continents are left black on a world map and the water given color, it is an unusual image indeed.

“The oceans are getting crowded and being used more, even though much remains unexplored. The number of large ships weighing over 100 gross tons has tripled since 1960,” he said.

“There are oil drillers, fishing trawlers, wind propellers to produce electric power and undersea wave machines. Ships travel such a large variety of routes that a depiction of them looks like a railroad map. Undersea telecommunications cables have been laid everywhere.

“There are offshore gas and oil fields in the Mediterranean, in the Gulf of Mexico, the North Sea, off Indonesia and in other locations.” Ausubel added that there has always been natural noise in the seas from underground earthquakes and the presence of whales and other creatures. But with shipping and other human interventions, the level of noise now doubles every decade and affects marine creatures. “Soon, there will be more human noise in the oceans than natural noise.”

COMPARING THE new data on marine species’ numbers, habitats and behaviors with those obtained from documents going back millennia – Greek philosopher Aristotle in the Fourth Century BCE identified crustaceans, echinoderms, mollusks and fish, and is often referred to as the father of marine biology – has now produced much information on changes, said Ausubel. During the project, participants have written many books, some of them put online. The census also produced a documentary film titled Oceans that has had $83 million in box office income so far, making it the fourth most successful documentary ever.

“The public took huge interest in the discoveries,” Ausubel said. Even sculptures were made based on the images, and songs were written about the creatures.

“There are also thousands of new technical papers. We looked at the diversity, kinds, distribution and abundance of marine creatures and where they travel, and we found that life in the oceans is richer than we imagined. The species are more connected and more scattered since earlier in human history,” he said. But many of the larger species are endangered compared to the smaller and microscopic species. Certain kinds of fish have declined in number by 90%. There is clearly a decline in the abundance of many species; it is very worrisome and saddening. But at the same time, seals and some whales, as well as sea birds, have recovered a lot. Chinese researchers found a lot of jellyfish species.”

According to Ausubel, new habitats are created even when a whale dies and sinks to the sea floor.

“A whole community can form around it. Even an empty dollhouse suspended under the surface can, over time, develop into a home for a variety of marine species,” he noted.

“Mud volcanoes near Spain and Portugal have produced new varieties of creatures.” One creature with rasta-like hair was named for the late reggae singer Bob Marley, while a new deepwater lobster discovered by Ausubel himself in 2007 in the Philippine Sea was called Dinochelus ausubeli; “my mother had a T-shirt with its image on it.”

The scientists discovered sea worms in the Gulf of Mexico with a lifespan of 500 to 600 years.

“Israelis have discovered plenty of worms that can actually find oil,” Ausubel said in his lecture.

“We prepared maps and found that many creatures lived where the Gulf of Mexico oil spill took place. Comparisons can be made of before and after.”

There are also “alien species” that, when geographical changes occurred, arrived in oceans and seas where they were not native. “The digging of the Suez Canal made the Mediterranean Sea the capital of 800 alien species. Some animals such as southern elephant seals and bluefin tuna swim great distances and are very cosmopolitan,” said Ausubel.

“Some are making incredible journeys – both vertical and horizontal. There are shrimp that can climb 400 meters up and down, as if they were on the Eiffel Tower.”

Census scientists developed ways to use graphic images to depict characteristics of species. For example, “hot spots” containing a large number of a certain certain type of creature; on a map, they appear as squares of a certain color.

Many creatures underwent analysis of their mitochondrial DNA, with each getting a barcode.

Ausubel noted that high school pupils in New York “bought a lot of sushi, extracted DNA and then persuaded scientists to identify the types of fish. It turned out that half of the sushi sold in NY is mislabelled. Cheap tilapia was presented as pricey albacore tuna.”
The Italian researcher Danovaro said that the Mediterranean Sea will not become more salty due to the proliferation of desalination plants that leave salt residue behind.


Instead, the melting of Arctic glaciers due to global warming will make the Mediterranean and oceans less saline, he suggested.

Danovaro, on his first visit to Israel, said the Israeli scientists had been very valuable to the project. Although the body of water on Israel’s west coast comprises only 0.8%of the world’s seas, it contains 6% of its marine life, said Danovaro.

But larger species such as sharks have been nearly wiped out by pollution, fishing and other causes, allowing smaller creatures, such as nematode worms, to thrive.

At the beginning of the census, Danovaro discovered a multi-celled sea creature near Crete that was the first known to live in an environment totally lacking oxygen. It is found in salt pockets at a depth of 3.5 kilometers – a very hostile environment, and as salty as the Dead Sea. It receives its energy, he said, by bonding with sulfates and sulfides in the water.

He worked with a team of researchers to retreive sediment samples from a deep salty basin that lacked oxygen bubbles in the water.

He studied them for signs of life.

“These extreme envirionments have been thought to be exclusively inhabited by viruses, bacteria and archaea.

The bodies of multicellular animals were previously discovered, but were thought to have sunk there from upper – oxygenated – waters. Our results indicate that the animals we recovered were alive. Some, in fact, also contained eggs.”

The creatures his team found were new members of the group Loricifera that were active and apparently reproducing despite a complete absense of oxygen. After Danovaro’s discovery, it is believed that more like it will be found.

The eastern Mediterranean is considerably warmer than the waters at the other end, near Spain and Portugal, said Danovaro, thus very different species live in each spot.

“But some important species have decreased so much that they don’t have an ecological role anymore. This is a threat to biodiversity, with more pollution, acidification and temperature changes affecting species.

“But at least the marine life maps of the Mediterranean are much better now than they were before.”


By JUDY SIEGEL-ITZKOVICH

http://www.jpost.com/Sci-Tech/Article.aspx?id=201805

Wednesday, 29 December 2010

New species abound in Peru, but so do threats

By Roberto Cortijo (AFP)


LIMA — Each year, a new bird is found and every four years a new mammal discovered in the Peruvian Amazon, a haven for biodiversity where conservation and danger often go hand in hand.

Although Peru is known for its Andes mountain range, the Amazon actually covers 60 percent of the country's territory. It is a hotbed of bio-activity and is home to 25,000 species of plants -- 10 percent of the world's stock.

Thanks to the Amazon, Peru has the world's second-largest bird population (1,800 species) and is among the top five countries for mammals (515 species) and reptiles (418 species).

This year alone, scientists stumbled upon a previously unknown leech and a new type of mosquito.

The animal population has grown in recent years, namely adding a mini poison dart frog with a fire-red head and blue legs (Ranitomeya amazonica), a purple-throated Sunangel hummingbird (Heliangelus viola) and a "tyrannosaurus leech" with eight teeth (Tyrannobdella reina).

More than 1,200 new species of plants or animals have been discovered in 10 years in the Amazon, according to the Worldwide Fund for Nature. But paradoxically, the novel species are often discovered during the very activities that threaten the Amazon the most.

"Most of these discoveries don't happen during scientific expeditions, which are often costly. They most often come when workers are digging exploration sites for oil, mining or lumber companies," said WWF Peru's Amazon program director Michael Valqui.

"This type of discovery is also simultaneously endangering the species that is being discovered in its one and only habitat."

Peru, home to one of the biggest forest lands -- 700,000 square kilometers (270,270 square miles) -- is also a magnet for resource extraction.

The number of concessions granted has doubled since 2006 to cover 16 percent of the territory, according to the Observatory of Mining Conflicts in Latin America.

At the same time, Peru boasts of being on the cutting edge of conservation, with 15 percent of its territory under protected status.

"And we're aiming for 30 percent," said Environment Minister Antonio Brack.

Environmentalists, though, worry about the future of biodiversity and the species living outside these protected zones.

"There are no clear signals as to what the country intends to do to protect biodiversity," said Ivan Lanegra, representative of the influential government-funded Peruvian ombudsman office.

Gerard Herail of France's IRD research and development institute in Lima noted that "a mining or hydrocarbons firm is not innately destructive. The key is whether or not it is 'clean'," or uses cleaner methods and technologies.

More species are disappearing than are being discovered around the world, noted Ernesto Raez, who heads the Sustainable Development Center at Cayetano Heredia University in Lima.

"In other words, species are disappearing before we discover them," he added.

But the IRD says the very context of their disappearance allows the group to "develop biodiversity conservation strategies," such as those deployed successfully for the huge arapaima or paiche fish (Arapaima gigas), one of the largest freshwater fish in the world.

Twenty-one species remain in "critical danger" of extinction in Peru, according to 2004 numbers, including the short-tailed chinchilla (Chinchilla brevicaudata) and the sharp-eared bat (Tompoeas ravus). The leaf-eared mouse (phyllotis andinum) is believed to have already disappeared.

The Lima gecko (Phyllodactylus sentosus), a minuscule nocturnal lizard also in critical danger, illustrates the sometimes complex relationship between threat and conservation.

The gecko finds its habitat in the darkest corners of the huacas, pre-Hispanic burial grounds or ritual sites that dot Lima and the coast.

"But archeologists' maintenance work, crucial for conservation, is exactly what's destroying the gecko's habitat" and triggering its downfall, said Valqui.

http://www.google.com/hostednews/afp/article/ALeqM5g_3zOtgQRjjeXOrm-Ds2PlylB39Q?docId=CNG.081ed8ef951580bf2ea69716935b211d.441
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