Preserving Asian horseshoe crab populations through targeted conservation strategies
Biologists from the National University of Singapore conduct the first comprehensive population study of all three Asian horseshoe crab species, mapping their population distribution, evolutionary histories and vulnerabilities to climate change to propose customised conservation strategies
Among the four species, only the Atlantic horseshoe crab (Limulus polyphemus), found along the Atlantic coast of
Understanding our planet's living fossils
To help fill in these knowledge gaps, a research team led by Associate Professor
The study underscores the importance of
The researchers have also established the first-ever genomic baseline dataset for these species, which lay the groundwork for targeted conservation planning. Their findings, which propose different conservation strategies for each species, were published in Conservation Letters on
Back to the basics: Filling data gaps to advance conservation efforts
"To protect and conserve these species, it is crucial that we first cover the basics — understanding their population structure, evolutionary histories and climate-change-driven vulnerabilities," said Assoc Prof Rheindt. "This foundational knowledge will enable us to develop targeted conservation strategies and prioritise habitats critical for their survival."
Tracking and monitoring Asian horseshoe crabs is in and of itself a challenging feat. They spend most of their lives on the seabed, making them difficult to observe, and they take 14 years to mature — too long to assess population changes effectively through traditional surveys. To overcome these challenges, the researchers turned to population genomic approaches, where they analysed DNA from 251 horseshoe crabs collected across 52 sites in 11 countries.
Using this data, NUS researchers created the first genomic baseline dataset for Asian horseshoe crabs. This dataset enabled the team to map population structures and delineate genetic boundaries among the three species. "Such distinctions are important, as they highlight populations that harbour unique genetic traits essential for adapting to specific local environments," said Dr
The study also revealed how horseshoe crabs have responded to environmental fluctuations over time. The Sunda Shelf emerged as a vital refuge for horseshoe crabs during periods of past climate change. By reconstructing the species' evolutionary histories, the researchers found that the region has not only preserved genetic diversity but also served as a migratory corridor, which allowed populations to remain connected despite environmental changes.
Tailored conservation strategies needed
The study highlighted that future climate change poses varying levels of risk to the three species of Asian horseshoe crabs. While all are vulnerable, their ability to adapt differs. For instance, the mangrove horseshoe crab, with its limited dispersal capacity, faces higher threats of local extinction compared to the more mobile coastal and tri-spine horseshoe crabs.
Based on these findings, the researchers have proposed tailored conservation strategies to support each species in adapting to climate change:
- Mangrove horseshoe crabs
- Protect and restore mangrove habitats, which are essential for the species' survival and ability to migrate southward in response to rising temperatures.
- Prioritise the conservation of populations in the Gulf of Tonkin and
South China as they face the highest evolutionary pressures from climate change.
- Coastal horseshoe crabs
- Protect the Sunda Shelf region, which serves as a critical refugial habitat, particularly around the Bay of Bengal, the
Malacca Strait andSouthern Vietnam . - Maintain connectivity between populations by safeguarding coastal corridors to mitigate the species' vulnerability to habitat fragmentation.
- Protect the Sunda Shelf region, which serves as a critical refugial habitat, particularly around the Bay of Bengal, the
- Tri-spine horseshoe crabs
- Implement sustainable fishery regulations and restore coastal habitats, especially in areas with a history of intensive development, such as
Japan ,Taiwan andChina . - Focus conservation efforts on reducing human-driven threats like harvesting and habitat loss as these currently pose greater risks than climate change.
- Implement sustainable fishery regulations and restore coastal habitats, especially in areas with a history of intensive development, such as
Next steps
"Our study provides an important impetus and the necessary baseline data for the preservation of key habitats for horseshoe crabs' future survival," said
Looking ahead, the researchers plan to further explore the evolutionary potential of Asian horseshoe crabs. This includes studying how specific functional genes contribute to their ability to adapt to local environments and changing climates.
"We have established the Horseshoe Crab Global Biorepository, with its physical collection located at the Lee Kong Chian Natural History Museum at NUS, to support ongoing and future research," added Assoc Prof Rheindt. "Through this resource, we hope to foster collaborations and secure funding to advance genomic research on horseshoe crabs. We are currently working with the Chinese University of Hong Kong on genomic research specifically focused on the tri-spine horseshoe crab."
Read more at: https://news.nus.edu.sg/preserving-asian-horseshoe-crab-populations-through-targeted-conservation-strategies/
View original content to download multimedia:https://www.prnewswire.com/news-releases/preserving-asian-horseshoe-crab-populations-through-targeted-conservation-strategies-302360464.html
SOURCE National University of Singapore
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