Click
here to close Hello! We notice that
you are using Internet Explorer, which is not supported by Echinobase
and may cause the site to display incorrectly. We suggest using a
current version of Chrome,
FireFox,
or Safari.
PLoS One
2023 Jan 01;187:e0282550. doi: 10.1371/journal.pone.0282550.
Show Gene links
Show Anatomy links
Sea star wasting syndrome reaches the high Antarctic: Two recent outbreaks in McMurdo Sound.
Moran AL
,
McLachlan RH
,
Thurber AR
.
???displayArticle.abstract???
Sea star wasting syndrome (SSWS) can cause widespread mortality in starfish populations as well as long-lasting changes to benthic community structure and dynamics. SSWS symptoms have been documented in numerous species and locations around the world, but to date there is only one record of SSWS from the Antarctic and this outbreak was associated with volcanically-driven high temperature anomalies. Here we report outbreaks of SSWS-like symptoms that affected ~30% of individuals of Odontaster validus at two different sites in McMurdo Sound, Antarctica in 2019 and 2022. Unlike many SSWS events in other parts of the world, these outbreaks were not associated with anomalously warm temperatures. Instead, we suggest they may have been triggered by high nutrient input events on a local scale. Although the exact cause of these outbreaks is not known, these findings are of great concern because of the keystone role of O. validus and the slow recovery rate of Antarctic benthic ecosystems to environmental stressors.
???displayArticle.pubmedLink???
37498849
???displayArticle.link???PLoS One
Aquino,
Evidence That Microorganisms at the Animal-Water Interface Drive Sea Star Wasting Disease.
2020, Pubmed,
Echinobase
Aquino,
Evidence That Microorganisms at the Animal-Water Interface Drive Sea Star Wasting Disease.
2020,
Pubmed
,
Echinobase
Bucci,
Sea Star Wasting Disease in Asterias forbesi along the Atlantic Coast of North America.
2017,
Pubmed
,
Echinobase
Burge,
Climate change influences on marine infectious diseases: implications for management and society.
2014,
Pubmed
Burt,
Sudden collapse of a mesopredator reveals its complementary role in mediating rocky reef regime shifts.
2018,
Pubmed
,
Echinobase
Byers,
Marine Parasites and Disease in the Era of Global Climate Change.
2021,
Pubmed
,
Echinobase
Conlan,
Delta13C and delta15N shifts in benthic invertebrates exposed to sewage from McMurdo Station, Antarctica.
2006,
Pubmed
,
Echinobase
Convey,
Antarctic environmental change and biological responses.
2019,
Pubmed
Eisenlord,
Ochre star mortality during the 2014 wasting disease epizootic: role of population size structure and temperature.
2016,
Pubmed
,
Echinobase
Gravem,
Shifts in intertidal zonation and refuge use by prey after mass mortalities of two predators.
2017,
Pubmed
,
Echinobase
Harvell,
Disease epidemic and a marine heat wave are associated with the continental-scale collapse of a pivotal predator (Pycnopodia helianthoides).
2019,
Pubmed
,
Echinobase
Janosik,
Unrecognized Antarctic biodiversity: a case study of the genus Odontaster (Odontasteridae; Asteroidea).
2010,
Pubmed
,
Echinobase
Kay,
Reciprocal abundance shifts of the intertidal sea stars, Evasterias troschelii and Pisaster ochraceus, following sea star wasting disease.
2019,
Pubmed
,
Echinobase
Menge,
Sea Star Wasting Disease in the Keystone Predator Pisaster ochraceus in Oregon: Insights into Differential Population Impacts, Recovery, Predation Rate, and Temperature Effects from Long-Term Research.
2016,
Pubmed
,
Echinobase
Miner,
Large-scale impacts of sea star wasting disease (SSWD) on intertidal sea stars and implications for recovery.
2018,
Pubmed
,
Echinobase
Moritsch,
Reduction and recovery of keystone predation pressure after disease-related mass mortality.
2018,
Pubmed
,
Echinobase
Núñez-Pons,
Exploring the pathology of an epidermal disease affecting a circum-Antarctic sea star.
2018,
Pubmed
,
Echinobase
Peck,
Environmental constraints on life histories in Antarctic ecosystems: tempos, timings and predictability.
2006,
Pubmed
Schiebelhut,
Decimation by sea star wasting disease and rapid genetic change in a keystone species, Pisaster ochraceus.
2018,
Pubmed
,
Echinobase
Shilling,
Energy Metabolism and Amino Acid Transport During Early Development of Antarctic and Temperate Echinoderms.
1994,
Pubmed
,
Echinobase
Smith,
The first records of sea star wasting disease in Crossaster papposus in Europe.
2022,
Pubmed
,
Echinobase
Thurber,
Riddles in the cold: Antarctic endemism and microbial succession impact methane cycling in the Southern Ocean.
2020,
Pubmed
Ward,
The elusive baseline of marine disease: are diseases in ocean ecosystems increasing?
2004,
Pubmed