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Extinction risk in extant marine species integrating palaeontological and biodistributional data
Author(s) -
Katie S. Collins,
Stewart M. Edie,
Gene Hunt,
Karine Olu,
David Jablonski
Publication year - 2018
Publication title -
proceedings of the royal society b biological sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.342
H-Index - 253
eISSN - 1471-2954
pISSN - 0962-8452
DOI - 10.1098/rspb.2018.1698
Subject(s) - extinction (optical mineralogy) , biodiversity , ecology , extant taxon , marine invertebrates , extinction event , invertebrate , range (aeronautics) , geography , biology , paleontology , biological dispersal , population , materials science , demography , evolutionary biology , sociology , composite material
Extinction risk assessments of marine invertebrate species remain scarce, which hinders effective management of marine biodiversity in the face of anthropogenic impacts. To help close this information gap, in this paper we provide a metric of relative extinction risk that combines palaeontological data, in the form of extinction rates calculated from the fossil record, with two known correlates of risk in the modern day: geographical range size and realized thermal niche. We test the performance of this metric-Palaeontological Extinction Risk In Lineages (PERIL)-using survivorship analyses of Pliocene bivalve faunas from California and New Zealand, and then use it to identify present-day hotspots of extinction vulnerability for extant shallow-marine Bivalvia. Areas of the ocean where concentrations of bivalve species with higher PERIL scores overlap with high levels of climatic or anthropogenic stressors should be considered of most immediate concern for both conservation and management.

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