Showing posts with label white-nose syndrome. Show all posts
Showing posts with label white-nose syndrome. Show all posts

Thursday, 11 January 2018

Lethal fungus that causes white-nose syndrome may have an Achilles' heel


Date:  January 2, 2018
Source:  USDA Forest Service - Northern Research Station

Summary:
In the course of genomic analyses of the fungus behind white-nose-syndrome, a devastating disease that has killed millions of bats in North America, US Forest Service scientists discovered something very surprising: brief exposure to UV-light kills Pseudogymnoascus destructans.


Wednesday, 19 July 2017

Hot imagery of wintering bats suggests group behavior for battling white-nose syndrome


Date:  July 5, 2017
Source:  US Geological Survey

Summary:  Hot new imagery from temperature-sensing cameras suggests that bats who warm up from hibernation together throughout the winter may be better at surviving white nose syndrome, a disease caused by a cold-loving fungus ravaging insect-eating bat populations in the United States and Canada.


Monday, 4 April 2016

Concern as US bat-killing disease jumps to west coast

By Mark KinverEnvironment reporter, BBC News
31 March 2016

Wildlife officials say they are extremely concerned after a disease that has killed millions of bats has arrived on the Pacific coast of the US.

Until now, white-nose syndrome has only been recorded in the eastern US but the latest case means the fungal infection has jumped 1,300 miles (2,100km).

The killer pathogen, first recorded in New York in 2006, is now present in 28 states and five Canadian provinces.

It has been described as the worst US wildlife health crisis in recent years.

On 11 March, a hiker discovered a sick little brown bat (Myotis lucifugus) while walking in Washington state and handed it in to a local animal welfare centre. Two days later, the bat died.

While carrying out an examination, the centre's vet noticed visual symptoms consistent with the disease and it was decided to run tests on the dead bat.

David Blehert, from the US Geological Survey's (USGS) National Wildlife Center, said samples returned "strongly positive" results.

He added: "We have also cultured the fungus... from tissues of the bat, and work that we are continuing to pursue is genetic characterisations of this fungus to see if it is most closely related to strains... that are known to exist in North America or whether it is perhaps more closely related to strains found elsewhere in the world."



Monday, 14 March 2016

Bats in Asia found to have resistance to white-nose syndrome fungus

New findings suggest at least some declining North American bat species could eventually evolve resistance to the devastating disease

Date: March 9, 2016
Source: University of California - Santa Cruz

As the deadly bat disease called white-nose syndrome continues to spread across North America, scientists are studying bats in China to understand how they are able to survive infections with the same fungus that has wiped out millions of North American bats.

By comparing disease dynamics in North American and Asian bat populations, researchers have found evidence that Asian bat species have much lower levels of infection than North American species and therefore are resistant to the fungus. The study, published March 9, 2016 in Proceedings of the Royal Society B, also suggests that some declining North American bat species may be able to evolve enough resistance to the disease to persist, while other species appear less likely to do so.

Led by researchers at the University of California, Santa Cruz, an international team sampled hibernating bats at five sites in China and five sites in the United States, using a standardized swabbing technique to detect and quantify the amount of fungus on each bat.
"Uniformly, across all the species we sampled in China, we found much lower levels of infection--both the fraction of bats infected and the amount of fungus on infected bats were lower than in North America," said first author Joseph Hoyt, a graduate student at UC Santa Cruz.




Wednesday, 4 November 2015

Bat disease fungus found to be widespread in northeast China

Discovery greatly expands the known distribution of the fungus that causes white-nose syndrome, which has decimated bat populations in North America

Date: November 2, 2015
Source: University of California - Santa Cruz

Bats in northeast China are infected with the fungus that causes white-nose syndrome, a deadly disease that has decimated bat populations in North America since it first appeared in upstate New York in 2006. A team of American and Chinese researchers found the fungus in caves where bats hibernate and found bats infected with the fungus.

Although infected bats had lesions characteristic of the disease and similar to lesions seen in North American bats, the researchers do not know the extent to which Chinese bat species are affected by the disease.

"We don't have historic population counts for bats in China, but there is no obvious evidence of the kind of population collapses that we've seen in North America," said Joseph Hoyt, a graduate student at the University of California, Santa Cruz, who led the study. Hoyt is first author of a paper on the new findings published November 2 in Emerging Infectious Diseases.

Scientists have known since 2010 that the fungus that causes white-nose syndrome is present in Europe. As in China, there is no evidence of the fungus causing mass mortality in European bat populations. Bat species in areas where the fungus has existed for a long time may have evolved resistance to or tolerance of the disease, but may still suffer appreciable mortality, according to coauthor Marm Kilpatrick, associate professor of ecology and evolutionary biology at UC Santa Cruz.




Monday, 22 June 2015

Snake fungal disease parallels white-nose syndrome in bats

Date: June 18, 2015

Source: University of Illinois at Urbana-Champaign

Summary: A deadly fungal infection afflicting snakes is eerily similar to the fungus that causes white-nose syndrome in bats, researchers report. Although the snake fungus and the bat fungus inhabit different ecological niches and thrive at different temperature and humidity ranges, the fungi share basic traits that allow them to persist across a range of habitats and infect multiple species, the researchers say.

Thursday, 9 April 2015

Bacteria inhibit bat-killing fungus, could combat white-nose syndrome

Date:
April 8, 2015

Source:
University of California - Santa Cruz

Summary:
Bacteria found naturally on some bats may prove useful in controlling the deadly fungal disease known as white-nose syndrome, which has devastated bat populations throughout eastern North America and continues to spread across the continent. Scientists isolated bacteria that strongly inhibited the growth of the white-nose syndrome fungus in laboratory tests.


Thursday, 4 December 2014

Study of deadly bat disease finds surprising seasonal pattern of infections

Date:
December 3, 2014

Source:
University of California - Santa Cruz

Summary:
The deadly fungal disease known as white-nose syndrome has spread to bat colonies throughout eastern North America over the past seven years, causing bat populations to crash, with several species now at risk of extinction. The devastating impact of this disease is due in part to the seasonal dynamics of infection and transmission, according to a new study.


Sunday, 1 June 2014

Glow-in-the-dark tool lets scientists find diseased bats

Date:
May 29, 2014

Source:
United States Geological Survey

Summary:
Scientists working to understand the devastating bat disease known as white-nose syndrome now have a new, non-lethal tool to identify bats with WNS lesions -- ultraviolet, or UV, light. Millions of bats have died from this rapidly spreading disease and this new method allows for accurate detection of the disease without killing any more bats.


Sunday, 4 August 2013

Bat killing WNS fungus confirmed in Arkansas

A fungus that leads to a deadly disease that has killed almost seven million bats in the US is continuing its spread westwards, results have shown.

Officials said the disease had been confirmed in Arkansas after samples tested positive for the fungus known to cause white-nose syndrome (WNS).

To date, there is no known vaccine or antidote against the disease.

WNS was first detected in New York State in 2006 and has since spread to 22 states and five Canadian provinces.

The latest positive results came from swab samples taken from hibernating bats in two cave in Arkansas.

The testing was part of a national study, funded by the US National Science Foundation, being carried out by researchers from the University of California Santa Cruz and North Arizona University.

Thursday, 27 December 2012

Bad news for America’s bats: Deadly fungus persists in caves

December 2012. Researchers have found that the organism that causes deadly white-nose syndrome persists in caves long after it has killed the bats in those caves. A study just published in Applied and Environmental Microbiology shows that the fungus can survive in soil for months, even years, after the bats have departed.

Caves and mines are reservoirs for the fungus
This is not good news for the bat population, says lead author Jeff Lorch, a research associate in the Department of Forest and Wildlife Ecology at the University of Wisconsin-Madison. "We have found that caves and mines, which remain cool year-round, can serve as reservoirs for the fungus, so bats entering previously infected sites may contract white-nose syndrome from that environment. This represents an important and adverse transmission route."

"This certainly presents additional challenges," adds David Blehert, a microbiologist at the U.S. Geological Survey National Wildlife Health Center in Madison, who also led the study. "It's important that we have completed this foundational work that further implicates the environment in the ecology of this infectious disease. We can now collectively move forward to address this problem."

Fungus cannot survive in warm temperatures
The fungus cannot grow at warm temperatures, so scientists have long wondered how it survived over the summer. The new study sheds light on this mystery, proving that the fungus can survive over the summer in the cool soil of the caves and mines where bats hibernate.

The researchers analysed soil samples collected during the summer (when bats were absent) from 14 caves and mines in which bats had been observed with white-nose syndrome, and they found viable samples of the fungus, called Geomyces destructans.
Continued: http://www.wildlifeextra.com/go/news/bat-fungus.html

Tuesday, 18 September 2012

Manmade Bat Cave Designed To Prevent White-Nose Syndrome


An artificial cave, designed to help protect bats from a fungal ailment that to date has killed more than six million of the creatures throughout North America, has been constructed by conservationists in the woods of Tennessee, according to various media outlets published Friday.

The project, which Randall Dickerson of the Associated Press (AP) reports cost an estimated $300,000 and was built by The Nature Conservancy, is believed to be the first manmade hibernating facility ever built for bats in the wild. The facility can be cleaned each year, which members of the organization hope will be able to keep the flying rodents from contracting white-nose syndrome from Geomyces destructans spores.

Thursday, 31 May 2012

Devastating Disease Found in Endangered Gray Bats


The deadly disease white-nose syndrome has been confirmed in endangered gray bats in Tennessee, the U.S. Fish and Wildlife Service announced today (May 29).

The disease, caused by the fungus Geomyces destructans, has decimated some bat populations in eastern North America after first being documented in a New York cave in 2006. White-nose syndrome (WNS) was named for the powdery, white fungal growth that develops on infected bats' snouts.  

"The documented spread of WNS on gray bats is devastating news. This species was well on the road to recovery, and confirmation of the disease is great cause for concern," Paul McKenzie, Missouri Endangered Species Coordinator for the USFWS, said in a statement. "Because gray bats hibernate together in colonies that number in the hundreds of thousands, WNS could expand exponentially across the range of the species."

Gray bats' preference for living together in large numbers in only a few caves in the southeastern U.S. has made them particularly vulnerable to human disturbances. However, conservation measures, such as restricting human access to their hibernation and roosting sites, have helped gray bat populations recover in many areas, according to the USFWS.

Sunday, 18 March 2012

Biodiversity: Bat-killing disease spreading south

SUMMIT COUNTY — A bat-killing disease that has wiped out nearly 7 million bats across the eastern United States is spreading southward, wildlife officials said this week after detecting white-nose syndrome in Alabama.
The state hosts the country’s biggest colony of federally endangered gray bats, and conservation biologists said they’re concerned, because the species roosts in just a handful of caves. If the species is susceptible to the disease, the population could devastated in a short time.
“This is the southernmost appearance of white-nose syndrome so far — the disease is clearly moving down into warmer parts of the country,” said Mollie Matteson, a bat specialist with the Center for Biological Diversity. “America’s bats are in the throes of an unprecedented crisis that, without help from us, threatens to wipe some bat species off the face of the Earth.”
Bats bearing the telltale signs of the disease — fuzzy white smudges on their muzzles — were discovered at Russell Cave, in Jackson County, in early March by biologists from Alabama A&M University and the National Park Service. Definitive diagnosis was made via lab analysis at the University of Georgia. The Russell Cave complex features several miles of passages, with entrances on both private land and theRussell Cave National Monument, operated by the National Park Service.
All of Alabama, but particularly northeast Alabama where the bat disease was discovered, is rich in caves and in bats. All of the six species affected by white-nose syndrome thus far are found in the state, including the federally endangered Indiana bat.
Alabama joins 19 other states and four provinces as sites of the bat disease being either confirmed or suspected. While Alabama is the first new state this winter to document white-nose syndrome, the disease has been showing up in new locations in the South and Midwest over the last couple of months, including new counties in Kentucky, Ohio and Indiana. White-nose syndrome was discovered for the first time in all three states last year.
“White-nose syndrome has now infiltrated one of the most outstanding cave regions in the world, which historically has harbored amazing numbers of bats,” said Matteson. “We probably have not seen the worst of this tragedy, and the famous caves of Alabama, Kentucky, Indiana and other parts of the central and southern areas of the country may never be the same again.”
Before the bat disease showed up in Alabama, the spread of white-nose syndrome in Indiana and Kentucky was already deeply disturbing to biologists because the largest colonies of the Indiana bat are found in these states, as well as neighboring Missouri (where the disease-causing fungus was found on bats in 2010) and in southern Illinois.
White-nose syndrome was first documented in late winter 2006, in upstate New York. The disease rapidly spread throughout the Northeast. Bat mortality rates in affected caves and mines in that region have ranged from 70 percent to nearly 100 percent. This winter, biologists are finding that bats in West Virginia, where the disease struck in 2009, are also experiencing mortality rates greater than 90 percent.
Scientists have determined that the disease is caused by a previously unknown fungus, likely introduced by cave visitors from Europe. In Europe the fungus has been discovered on bats from France to Hungary, but it appears to do little to no harm to them.
“This disease is not slowing down, and it’s not likely to be any less catastrophic for hibernating bats in Alabama and the Midwest than it has been for bats in the northeastern states,” said Matteson. “White-nose syndrome has been an emergency from the beginning, but it’s now a Category 5. Our government needs to put serious money and science into solving this disease storm before it’s too late — not only for bats but for our crops and our farmers, who depend on bats for insect control.”
For more information, visit SaveOurBats.org.

Sunday, 26 December 2010

Bat cull 'will not stop white-nose syndrome spreading'

Culling will not halt the spread of a disease that has killed a million bats in the US since 2006, a study says.

Researchers reached their conclusion by modelling how white-nose syndrome (WNS) is passed from bat to bat.

Writing in Conservation Biology, they add that a cull would not work because the source of the fungal pathogen is believed to occur in the environment.

Earlier studies have warned that WNS could wipe out bat populations in the north-east of the US within 20 years.

Carrying out a cull of bats in areas where the disease is known to be present is one of the options available in an attempt to contain the spread of the killer fungus.

"We developed a model taking into account the complexity of the bat life history, looking at the roosts and the areas where there are large contacts between the bats," said co-author Thomas Hallam from the Department of Ecology and Evolutionary Biology at the University of Tennessee.


"Given the dispersal aspect of the problem and the complexity of hibernating bat ecology, it was a case that these things together certainly meant that culling would not work in the case of bats."

WNS, described by some as the worst wildlife health crisis in the US in living memory, is named after a white fungus that appears on the muzzle and/or wings of infected animals.

However, bats with WNS do not always have the characteristic visual symptoms, but may display abnormal behaviour around their hibernacula (caves and mines where bats hibernate during winter months).

These behaviours include flying outside during the day (when their insect prey is not available) in sub-zero temperatures, or clustering near the entrance to the hibernaculum.

Professor Hallam explained that there was a high degree of bat-to-bat interaction, which has been identified as the main way the disease is transmitted, during the course of a year.

In autumn, the mating season brings together large numbers of males and females.

This occurs shortly before colonies enter hibernacula, some of which are large enough to house in the region of half-a-million bats.

In the spring, females head to a maternity roost to have their young. Again, this brings bats into contact with members of different colonies.

Since WNS was first recorded in February 2006 in a commercial cave in New York, it has spread to at least 14 states. Cases have also been recorded in a number of Canadian provinces.

Researchers say the fungus associated with the disease, Geomyces destructans, thrives in the dark, damp conditions - such as caves and mines.

Out of control
In their paper, Professor Hallam and co-author Gary McCracken write: "Because the disease is highly virulent, our model results support the hypothesis that transmission occurs in all contact arenas."

They add: "Our simulations indicated culling will not control WNS in bats primarily because contact rates are high among colonial bats, contact occurs in multiple arenas, and periodic movement between arenas occurs."


Jeremy Coleman, the national white-nose syndrome co-ordinator for the US Fish and Wildlife Service (FWS), said that culling was a potential tool available to agencies attempting to curb the spread of the disease.

"The spread has been very rapid and very alarming," he told BBC News.

"The initial comment that spawned all of the ideas of culling was that if we had known what would happen, then we would have gone in and killed every bat and we would not be facing this problem.

"That had a real resonance among researchers and land managers," Dr Coleman recalled. But he added: "Most people, I would say, feel it is too late for any culling to be effective."

He explained that the final decision on whether to cull would rest with state or federal agencies.

It is believed that the fungus associated with WNS arrived in the US after it was somehow transported from Europe or possibly Asia.

"It was possibly brought over via 'human-assisted spread' of some sort - like on somebody's boots," Dr Coleman suggested.


"Another possibility is that a bat was somehow transported to North America, perhaps by a cargo plane or freight container, and mixed with bats in New York State."

A team of European researchers followed up unconfirmed reports in Europe that bats had white fungal growths appearing to match the symptoms of WNS.

In a paper in the Emerging Infectious Diseases journal, they suggested that the Geomyces destructans fungus was present throughout Europe.

However, they added, it seemed as if species of bats in Europe were possibly more immunologically or behaviourally resistant to the fungus than North American species, as it did not increase mortality.

No magic bullet
European bats may be resistant to the disease because they are generally bigger than comparable species in the US. Also, European colonies tend to be not as large as ones found on the other side of the Atlantic.

"What we hope to learn, through genetic means, is the similarities and differences between the North American strains and the European strains," explained Dr Coleman, who is overseeing the formation of a national management plan that hopes to bring together the efforts of state and federal agencies under one umbrella.

US researchers based at MIT recently sequenced the genome of the US strain of G. destructans and made the data publicly available in a hope that it would "jumpstart work on this problem, to help devise ways to track and combat this fungus".

"There are a lot of questions where some answers could potentially could give us some hope," observed Dr Coleman.

Professor Hallam said it was difficult to know if anything could be done to prevent the current outbreak from spreading further and wiping out millions more US bats.

"We have a lot of chemical agents that will get rid of the fungus," he told BBC News.

"The difficulty is the complexity of bats' life histories; it is almost impossible to treat enough bats to make it worthwhile.

"I don't see any easy solution on the horizon."

By Mark Kinver

Science and environment reporter, BBC News

http://www.bbc.co.uk/news/science-environment-11878001
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