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Updated in 2025: Disease suspected in mass die-offs of starfish (sea star wasting syndrome), along North American coastlines, now found off Florida

Re: Disease suspected in mass die-offs of starfish (sea star wasting syndrome), along North American coastlines

Re: Disease suspected in mass die-offs of starfish (sea star wasting syndrome), along North American coastlines

http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4024922/
Proc Natl Acad Sci U S A. May 13, 2014; 111(19): 6855.
Published online May 13, 2014. doi: 10.1073/pnas.1404650111
PMCID: PMC4024922
Sea star wasting
Mark Schrope, Science Writer

In June of last year, researchers got the first report that sea stars in Washington?s Olympic National Park were succumbing to a new disease outbreak. By August, stars were falling off the rocks?dead by the thousands?at Vancouver Island. ?That?s the point at which we started getting samples and alerting people,? says Drew Harvell, a marine epidemiologist at Cornell University in Ithaca, New York, who is part of a team now sleuthing the outbreak?s cause. ?We?re looking, but it?s hard to figure out what?s going on.?
The still-mysterious condition effectively deflates the animals, causing growing lesions that break their bodies apart. Reports of further losses from the disease, which has all but eradicated multiple sea star species in certain spots, now stretch from Alaska to Mexico. It has been called ?sea star wasting syndrome? because some of the signs resemble those of conditions seen before on both North American coasts. However, this may be a misnomer, as the ongoing event has a number of characteristics distinguishing it from past known outbreaks.

Rather than a wasting them away, the condition can progress quite rapidly, even in very healthy animals. Although typical outbreaks affect a single species and end with the onset of winter, the current outbreak is hammering at least a dozen species and still going strong as spring approaches.

Harvell is currently on sabbatical at the University of Washington?s Friday Harbor Laboratories. She is working with Ian Hewson, a microbiologist at Cornell, and other colleagues, to collect and process samples in hopes of understanding what is happening. The condition is likely infectious, but they can?t yet identify the transmission route. This identification is always a challenge, but particularly in marine research, where resources are more limited than for human epidemiology.
...
Harvell says it?s too soon to say what the ecological implications of such a large loss will be. However, she points out that one of the species hit hardest, the ochre star, was the focus of the seminal paper that introduced the term ?keystone species,? a species whose populations keeps others in check. The ochres are especially important in keeping mussel populations from overtaking rocky habitats, and all of the species affected are predatory. ?There?s just no question there?s going to be a huge impacts for the subtidal seascape,? says Harvell, ?An event this large will probably have a big impact on their population biology.?...

And it seems to already be happening...

http://patriotadventures.blogspot.com/2014/07/chuckanut-island.html
Sunday, July 13, 2014
Chuckanut Island

...We landed on a nice little sandbar of the south end of the island, but the the whole place felt felt a bit "off". On all of our past visits, it had felt very inviting and full of life, but this time there seemed to be much less biodiversity and the island felt a bit foreboding. Our best guess as to what might have changed is that the island could have been hit with sea-star wasting disease. There were far fewer sea stars than we had remembered (we could only find about 12 on the whole island) and areas that had previously been bare rock and algae were covered in mats of young mussels and barnacles. We thought that this could indicate a huge reduction in sea star population due to disease, and a subsequent ecosystem destabilization. Hopefully we're wrong and I was just mis-remembering....

http://www.pbs.org/newshour/updates/scientists-zero-whats-causing-starfish-die-offs/
Scientists zero in on what?s causing starfish die-offs

BY Ashley Ahearn, EarthFix and Katie Campbell, Earthfix June 17, 2014 at 4:43 PM EDT
...
Scientists believe the pathogen spread through the water, as well as via physical contact (starfish often clump together). Another hypothesis is that the pathogen could also be concentrating in the mussels and clams that starfish like to eat.
...
At the University of California Santa Barbara Aquarium, captive sea stars started showing signs of the syndrome at the same time as their wild counterparts who live on the rocks several hundred feet from the tanks. The captive sea stars are kept in tanks of filtered seawater. In one tank they were fed mussels harvested from the rocks outside. In another tank the sea stars were fed frozen squid.

The animals that ate frozen squid stayed healthy, while the sea stars that ate the wild-harvested mussels contracted the syndrome.
Blanchette cautions that these observations are purely anecdotal and the sample size is very small, but she believes this hypothesis merits further study....
 
Re: Disease suspected in mass die-offs of starfish (sea star wasting syndrome), along North American coastlines

Re: Disease suspected in mass die-offs of starfish (sea star wasting syndrome), along North American coastlines

http://www.southwhidbeyrecord.com/news/268673092.html
Dying starfish stump experts

by JANIS REID, South Whidbey Record Whidbey Crosswind
Jul 26, 2014 at 8:00AM updated Jul 27, 2014 at 8:49AM

...
This year is the first year Seablom has seen any of the ?wasted? sea stars on Whidbey. But he?s been on the lookout since the first symptoms were reported in June 2013 by researchers from Olympic National Park. Since then, sea stars along much of the North American Pacific coast are dying in great numbers from this mysterious ?star wasting? syndrome.
...
?The scientists are really stumped,? Bennett said. ?We?re hearing people say there?s piles of them. Here we?re not seeing the usual population.?

Bennett said the disease interferes with their hydraulic system and in some cases, limbs have been known to fall off and crawl away on their own.

?It?s kind of an alien thing,? Bennett said.

The disease is also highly contagious and residents are discouraged from touching or moving any of the sea stars...
 
Re: Disease suspected in mass die-offs of starfish (sea star wasting syndrome), along North American coastlines

Re: Disease suspected in mass die-offs of starfish (sea star wasting syndrome), along North American coastlines

http://www.king5.com/news/local/Seattle-Aquarium-injecting-sea-stars-269620711.html
Seattle Aquarium injecting sea stars in fight against wasting disease
by GARY CHITTIM / KING 5 News
Posted on August 1, 2014 at 7:41 PM
Updated Friday, Aug 1 at 8:37 PM

...
Dr. Lesanna Lahner at the Seattle Aquarium said they have separated a group of 50 sea stars showing signs of the wasting disease into two tubs. They are treating one group with antibiotic injections and the other with a saline solution.

She said they don?t expect to cure wasting disease; the antibiotics may have no affect at all on the disease itself. But she said it could be that the disease only weakens the stars to the point they cannot defend themselves against bacteria. If the bacteria is what?s consuming the stars? bodies, the antibiotics can help the stars fight it off...
 
Re: Disease suspected in mass die-offs of starfish (sea star wasting syndrome), along North American coastlines

Re: Disease suspected in mass die-offs of starfish (sea star wasting syndrome), along North American coastlines

Source: http://www.thestar.com/news/canada/..._off_pacific_coast_solved_scientists_say.html


Mystery of sea-star deaths off Pacific coast solved, scientists say
Millions of sea stars from B.C. to Mexico dissolved into piles of goo after a virus hit about 18 months ago.
By: Camille Bains The Canadian Press, Published on Mon Nov 17 2014

VANCOUVER ? Scientists have cracked the mystery of what has killed millions of sea stars in waters off the Pacific coast, from British Columbia to Mexico.

Microbiology Prof. Ian Hewson of Cornell University in Ithaca, N.Y., said the culprit is densovirus, commonly found in invertebrates.

He said the virus literally made what are commonly called star fish dissolve within two to 10 days after infection, leaving them in a pile of goo on the ocean floor.

Hewson is the lead author of a study along with Ben Miner of Western Washington University that was published Monday in the Proceedings of the National Academy of Sciences.

He said the wasting disease hit about 18 months ago, at a time when the number of sea stars inexplicably exploded...
 
Re: Disease suspected in mass die-offs of starfish (sea star wasting syndrome), along North American coastlines

Re: Disease suspected in mass die-offs of starfish (sea star wasting syndrome), along North American coastlines

http://phenomena.nationalgeographic.com/2014/11/17/the-fault-in-our-stars-might-be-a-virus/
The Fault in Our Stars Might be a Virus
by Ed Yong
...
?The authors present persuasive evidence that they have identified an agent associated with SSWS,? says Ian Lipkin, a virus hunter from the Mailman School of Public Health. ?Nonetheless, as they note themselves, there is much more work to be done before we will know whether the densovirus they describe is necessary and sufficient to cause disease.?
...
There?s also another mystery: why is the current outbreak of SSWS so dramatic when the newly discovered virus is actually an old presence? The team found its DNA within starfish that had been collected from the Pacific coast as far back as 1942, and that have been sitting in museum jars ever since. So why weren?t North America?s starfish melting away while World War II was raging?...

A copy of the research paper can be read here:

http://www.docstoc.com/docs/173128364/starfishbinder
 
Re: Disease suspected in mass die-offs of starfish (sea star wasting syndrome), along North American coastlines

Re: Disease suspected in mass die-offs of starfish (sea star wasting syndrome), along North American coastlines

https://digital.lib.washington.edu/researchworks/handle/1773/27255
Effects of diet, temperature, salinity and season on wasting disease in ecologically important predatory sea stars
Ni, Zhongran; Dethier, Megan; Eisenlord, Morgan
URI: http://hdl.handle.net/1773/27255
Date: 2014-06
 
[h=1]Bend student earns trip to international science fair[/h]
By Abby Spegman / The Bulletin / @AbbySpegman
Published Jun 10, 2015 at 12:01AM / Updated Jun 10, 2015 at 05:47AM
...

In 2012 Fuller counted about 2,600 sea stars; in 2014 he counted 1,120, a drop most likely due to the disease. He found that areas with higher density of sea stars in 2012 had higher rates of infections and greater declines in the healthy sea star population two years later.
Sea stars come in orange, brown and purple, and Fuller also found a greater decline in the purple sea stars compared with other colors..
http://www.bendbulletin.com/localst...research-earns-trip-to-international-science#
 
http://www.upi.com/Science_News/201...aging-ecological-domino-effect/6761466689877/
[h=1]Sea star death triggers damaging ecological domino effect[/h] "Howe Sound lost nearly 90 percent of its sunflower stars in a matter of weeks," said researcher Jessica Schultz.

By Brooks Hays | June 23, 2016 at 11:27 AM BURNABY, British Columbia, June 23 (UPI) -- Researchers are just now understanding the ecological consequences of the massive 2013 die-off of sea stars along North America's Pacific Coast, and the findings aren't good.
The loss of sea stars along the West Coast as a result of wasting disease was one of the largest die-offs in recent decades. A new study by marine scientists at Simon Fraser University suggests the mortality event had an ecological domino effect, affecting biodiversity and abundance in local ecosystems...
 
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0163190
Montecino-Latorre D, Eisenlord ME, Turner M, Yoshioka R, Harvell CD, Pattengill-Semmens CV, et al. (2016) Devastating Transboundary Impacts of Sea Star Wasting Disease on Subtidal Asteroids. PLoS ONE 11(10): e0163190. doi:10.1371/journal.pone.0163190 [h=2]Abstract[/h] Sea star wasting disease devastated intertidal sea star populations from Mexico to Alaska between 2013?15, but little detail is known about its impacts to subtidal species. We assessed the impacts of sea star wasting disease in the Salish Sea, a Canadian / United States transboundary marine ecosystem, and world-wide hotspot for temperate asteroid species diversity with a high degree of endemism. We analyzed roving diver survey data for the three most common subtidal sea star species collected by trained volunteer scuba divers between 2006?15 in 5 basins and on the outer coast of Washington, as well as scientific strip transect data for 11 common subtidal asteroid taxa collected by scientific divers in the San Juan Islands during the spring/summer of 2014 and 2015. Our findings highlight differential susceptibility and impact of sea star wasting disease among asteroid species populations and lack of differences between basins or on Washington?s outer coast. Specifically, severe depletion of sunflower sea stars (Pycnopodia helianthoides) in the Salish Sea support reports of major declines in this species from California to Alaska, raising concern for the conservation of this ecologically important subtidal predator.

Full text at link.
 
https://marine.ucsc.edu/data-products/sea-star-wasting/updates.html
UPDATE - SEPT 28, 2021

We have received a few reports of sick Evasterias near Juneau and Kachemack Bay, Alaska, but
the majority of sea stars observed were healthy. The worst of the new outbreak appears to be
concentrated in southern British Columbia and within the Salish Sea and Puget Sound regions of
Washington, where numerous reports of sick Pisaster ochraceus and Evasterias have been
received from divers and tide poolers via our online sea star tracking log. Permanent plots at
MARINe sites in WA were resurveyed following the heatwave event, and only low levels of
diseased stars were observed at most sites; however, at one site on the Olympic Coast
approximately 30% of individuals counted within plots had mild to severe signs of SSW. The
Oregon coast appears to have been spared thus far from a re-emergence of SSW—only very
low levels of disease were observed during MARINe site surveys in July/August. The same is
true for California, where sea stars showing signs of SSW continue to be observed at only very
low numbers. Although we have not yet had a chance to look at data from our temperature
loggers, it is striking that the current re-emergence of SSW appears to be concentrated in areas
of the Pacific Northwest where some of the lowest tides of the year occurred at mid-day, during
one of the most extreme heatwaves on record. Further south, peak low tides occurred in the
morning, and air temperatures were not as extreme.


https://marinedb.ucsc.edu/seastar/seastardisease.html
 
Nine-armed Sea Stars dying in Atlantic waters: UF/IFAS scientists document first case of disease in Florida

IMG_0893-_772-169x300.jpg


Nine-armed Sea Star exhibiting clinical signs of SSWD during Lake Worth Cove outbreak.
Credit by Alex Romer

A disturbing scene met snorkelers in Palm Beach County’s coastal waters – sea stars (also known as starfish) with missing limbs, open wounds and bodies falling apart on the ocean floor.

The condition known as Sea Star Wasting Disease has scientists concerned, suggesting its persistence and widespread nature requires further monitoring.

University of Florida scientists in Fort Lauderdale now confirm the cause as Sea Star Wasting Disease (SSWD), marking the first documented case in Florida’s Atlantic coastal waters and in the Nine-armed Sea Star in a study just published in Southeastern Naturalist.

The discovery, made by researchers with the UF’s Institute of Food and Agricultural Sciences (UF/IFAS), represents a major expansion of the disease into the Atlantic Ocean. The disease has devastated starfish populations along the North American Pacific coast, from Mexico to Alaska, with significant die-offs in the Channel Islands and Gulf of Alaska and has also been reported in Antarctica’s McMurdo Sound in 2019 and 2022; however, it has not been recorded in Florida’s marine ecosystem until now.

The disease has devastated sea star populations along the Pacific coast for over a decade, yet it has not been recorded in Florida’s marine ecosystem until now.

“Documenting when and where marine life are being impacted by disease is a critical first step to understanding the negative impacts and environmental stressors that threaten ecosystem health,” said Melissa Miller, a wildlife ecologist at UF/IFAS Fort Lauderdale Research and Education Center (FLREC).

Alex Romer, a quantitative ecologist at the FLREC, was snorkeling recreationally on July 6, 2024, when he spotted the outbreak along the waters of Lake Worth Cove in Palm Beach County.

He encountered dozens of Nine-armed Sea Stars, normally common and healthy in these waters, showing signs of a fast-acting and fatal condition. The signs included curling limbs, dead tissue and, in many cases, bodies disintegrating into the sand.

“My area of expertise isn’t marine biology, and any observant snorkeler in Lake Worth Cove could have been in my shoes that day. I simply felt a responsibility to ensure this outbreak didn’t go unreported,” said Romer.

Nine-armed Sea Stars are more than just favorites among beachgoers, divers and snorkeling enthusiasts. As predators and scavengers, they play a vital role in ocean waters by turning over sediment and cycling nutrients. A decline in their numbers could ripple across the seafloor community, affecting the health of other marine species.

Romer returned the next day to document the outbreak and collect tissue samples. While some live sea stars survived, those that didn’t left behind only black, powdery imprints of their former shape.

DNA lab analysis revealed no trace of another sea star-associated disease known as densovirus, which was once suspected as a major cause of SSWD.

“This finding strengthens the scientific consensus that SSWD cannot be attributed to the densovirus alone,” said Romer. “If a pathogen is involved, it may be an entirely different agent. Alternatively, environmental stressors, such as extreme heat, salinity changes or pollutants, may be contributing factors.”
Sea surface temperatures in the area were more than 1°C (1.8°F) above average during the time of the event. Researchers also noted unusually low tides and nearby stormwater runoff, which may have intensified stress on shallow-water fish populations.

“When Nine-armed Sea Stars forage, they churn the sand for worms and shellfish. If their numbers drop, that sediment-mixing slows, giving algae a chance to overgrow meadows. Thinner seagrass means fewer nursery spots for young sportfish,” said Romer.

Though Nine-armed Sea Stars can grow back lost limbs, the rapid disintegration and high mortality observed are not typical behaviors for the species and are consistent with wasting disease pathology, said Romer.

“This event is now the southernmost confirmed case of SSWD in the Atlantic Ocean and expands the list of known affected species,” he said. “The findings raise new concerns about the vulnerability of Florida’s marine invertebrates and the need for continued monitoring.”

Romer encourages the public to report unusual wildlife sightings to the Florida Fish and Wildlife Conservation Commission at 888-404-FWCC (3922) or record them on community science platforms such as iNaturalist.

“Community reports give researchers an early warning for invasive species, wildlife disease, and threats to vulnerable species. The more people participate, the better scientists can spot opportunities for action. If you’re spending time in natural areas, bring a camera and a keen eye. Your observations matter,” said Romer.



https://blogs.ifas.ufl.edu/news/2025/06/18/nine-armed-sea-stars-dying-in-atlantic-waters-uf-ifas-scientists-document-first-case-of-disease-in-florida/#:~:text=University%20of%20Florida%20scientists%20 in,just%20published%20in%20Southeastern%20Naturali st.

-------------------------------------------------------------

First Observation of Sea Stars (Luidia senegalensis) in Florida with Sea Star Wasting Disease


Alexander S. Romer[SUP]1,[/SUP]*, Ericka E. Helmick[SUP]2[/SUP], Brian W. Bahder[SUP]2[/SUP], Alex Grimsley[SUP]1[/SUP], Eric Suarez[SUP]1[/SUP], Melissa A. Miller[SUP]1[/SUP], and Frank J. Mazzotti[SUP]1[/SUP]


[SUP]1[/SUP]University of Florida, Department of Wildlife Ecology and Conservation, Fort Lauderdale Research and Education Center, 3205 College Avenue, Davie, FL 33314. [SUP]2[/SUP]University of Florida, Department of Entomology and Nematology, Fort Lauderdale Research and Education Center, 3205 College Avenue, Davie, FL 33314. *Corresponding author.

Southeastern Naturalist, Volume 24, Issue 2 (2025): N23–N27

First published early online: 16 June 2025

Abstract
We observed a sea-star mortality event with gross signs diagnostic of sea star wasting disease (SSWD) on 6–7 July 2024 at John D. MacArthur Beach State Park. The event affected Luidia senegalensis (Nine-Armed Sea Star), which displayed gross pathological signs associated with SSWD: lesions, limb curling, and body fragmentation. While limb autotomy is relatively common in Luidia spp., its co-occurrence with necrotic lesions, deflation, and rapid disintegration meets the typical morphological criteria for SSWD. To our knowledge, this is the first documented case of SSWD in Nine-Armed Sea Star and the first in Florida. Environmental stressors, such as elevated sea-surface temperatures (+1.1°C anomaly), low tides, and stormwater runoff, may have contributed to the event. Nine-Armed Sea Stars play a critical role in sediment turnover and benthic trophic dynamics, and population declines could disrupt these processes. This outbreak expands the known host and geographic range of SSWD and underscores the importance of population health monitoring in subtropical marine invertebrates.

https://www.eaglehill.us/SENAonline/articles/SENA-24-2/52-Romer.shtml
 
The mystery of melting sea stars may finally be solved

A bacterium called Vibrio pectenicida is causing the mass marine die-offs


By Siddhant Pusdekar
21 hours ago​

A mysterious disease has been turning sea stars into goo since 2013. Now, there’s a leading suspect behind the killings — a bacterium called Vibrio pectenicida, researchers report August 4 in Nature Ecology & Evolution. Knowing the identity of the killer could help scientists protect both captive and wild populations of sea stars.

The disease, known as sea star wasting disease, is characterized by twisted arms, lesions and rapid death. One of the worst hit species is the sunflower sea star (Pycnopodia helianthoides), which lost almost 91 percent of its population — over a billion individuals — to repeated outbreaks in 2015, 2018 and 2023. This decline has consequences for ocean ecosystems, as sunflower sea stars are predators that keep sea urchin populations in check. In their absence, sea urchins have mowed down kelp forests, which absorb atmospheric carbon dioxide and support fish, otters, sea lions and other animals.
...
https://www.sciencenews.org/article/sea-star-wasting-mystery-solved-melting

----------------------------------------------------------------------------
  • Article
  • Published: 04 August 2025
Vibrio pectenicida strain FHCF-3 is a causative agent of sea star wasting disease
Nature Ecology & Evolution (2025)Cite this article

Abstract


More than 10 years following the onset of the sea star wasting disease (SSWD) epidemic, affecting over 20 asteroid species from Mexico to Alaska, the causative agent has been elusive. SSWD killed billions of the most susceptible species, sunflower sea stars (Pycnopodia helianthoides), initiating a trophic cascade involving unchecked urchin population growth and the widespread loss of kelp forests. Identifying the causative agent underpins the development of recovery strategies. Here we induced disease and subsequent mortality in exposure experiments using tissue extracts, coelomic fluid and effluent water from wasting sunflower sea stars, with no mortality in controls. Deep sequencing of diseased sea star coelomic fluid samples from experiments and field outbreaks revealed a dominant proportion of reads assigned to the bacterium Vibrio pectenicida. Fulfilling Koch’s postulates, V. pectenicida strain FHCF-3, cultured from the coelomic fluid of a diseased sunflower sea star, caused disease and mortality in exposed sunflower sea stars, demonstrating that it is a causative agent of SSWD. This discovery will enable recovery efforts for sea stars and the ecosystems affected by their decline by facilitating culture-based experimental research and broad-scale screening for pathogen presence and abundance in the laboratory and field.

...
https://www.nature.com/articles/s41559-025-02797-2
 
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