Extreme longevity revealed by 24-year genetic mark–recapture challenges conservation of endangered sea cucumbers

Coral reef sea cucumbers are heavily exploited despite the precarious conservation status of many species, yet limited life-history knowledge constrains effective management. We used genetic mark–recapture to estimate longevity, mortality, and growth in the endangered, CITES-listed black teatfish Holothuria ( Microthele ) whitmaei by resampling a population after 24 years. Most individuals (60%) in 2024 were genetically identical to those sampled in 2000, indicating extremely low adult mortality (∼0.04 per year), a conservative mean lifespan of ∼24–27 years, and longevity exceeding 100 years. Most recaptured individuals showed negligible or negative growth. Current harvest models for tropical sea cucumbers do not account for such extreme longevity and likely overestimate sustainable yields. Our results suggest that exploitation of long-lived reef invertebrates is unsustainable under prevailing harvest rates and environmental stress, highlighting the need to reassess productivity-based fisheries frameworks more broadly.

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Publication Details

Journal
iScience
Published
2026-09-15
DOI
https://doi.org/10.1016/j.isci.2026.117505
Primary Topic
Echinoderm biology and ecology
Type
article
Field-Weighted Citation Impact
0.00

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article

Extreme longevity revealed by 24-year genetic mark–recapture challenges conservation of endangered sea cucumbers

María del Carmen Gómez Cabrera, Steven W. Purcell, Sven Uthicke, Maria Byrne
iScience
Echinoderm biology and ecology
article

Extreme longevity revealed by 24-year genetic mark–recapture challenges conservation of endangered sea cucumbers

María del Carmen Gómez Cabrera, Steven W. Purcell, Sven Uthicke, Maria Byrne
article en

Abstract

Coral reef sea cucumbers are heavily exploited despite the precarious conservation status of many species, yet limited life-history knowledge constrains effective management. We used genetic mark–recapture to estimate longevity, mortality, and growth in the endangered, CITES-listed black teatfish Holothuria ( Microthele ) whitmaei by resampling a population after 24 years. Most individuals (60%) in 2024 were genetically identical to those sampled in 2000, indicating extremely low adult mortality (∼0.04 per year), a conservative mean lifespan of ∼24–27 years, and longevity exceeding 100 years. Most recaptured individuals showed negligible or negative growth. Current harvest models for tropical sea cucumbers do not account for such extreme longevity and likely overestimate sustainable yields. Our results suggest that exploitation of long-lived reef invertebrates is unsustainable under prevailing harvest rates and environmental stress, highlighting the need to reassess productivity-based fisheries frameworks more broadly.

iScienceVol. 29(10)
The University of Sydney (AU), Australian Institute of Marine Science (AU), Sydney Institute of Marine Science (AU), Southern Cross University (AU)
Australian Institute of Marine Science
Openalex Percentile: Top 7%
Echinoderm biology and ecology
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