TY - JOUR
T1 - Energetic connectivity of diverse elasmobranch populations – implications for ecological resilience
AU - Shipley, Oliver N.
AU - Matich, Philip
AU - Hussey, Nigel E.
AU - Brooks, Annabelle M.L.
AU - Chapman, Demian
AU - Frisk, Michael G.
AU - Guttridge, Annie E.
AU - Guttridge, Tristan L.
AU - Howey, Lucy A.
AU - Kattan, Sami
AU - Madigan, Daniel J.
AU - O’Shea, Owen
AU - Polunin, Nicholas V.
AU - Power, Michael
AU - Smukall, Matthew J.
AU - Schneider, Eric V.C.
AU - Shea, Brendan D.
AU - Talwar, Brendan S.
AU - Winchester, Maggie
AU - Brooks, Edward J.
AU - Gallagher, Austin J.
N1 - Publisher Copyright:
© 2023 The Author(s) Published by the Royal Society. All rights reserved.
PY - 2023/4/12
Y1 - 2023/4/12
N2 - Understanding the factors shaping patterns of ecological resilience is critical for mitigating the loss of global biodiversity. Throughout aquatic environments, highly mobile predators are thought to serve as important vectors of energy between ecosystems thereby promoting stability and resilience. However, the role these predators play in connecting food webs and promoting energy flow remains poorly understood in most contexts. Using carbon and nitrogen isotopes, we quantified the use of several prey resource pools (small oceanic forage, large oceanics, coral reef, and seagrass) by 17 species of elasmobranch fishes (n = 351 individuals) in The Bahamas to determine their functional diversity and roles as ecosystem links. We observed remarkable functional diversity across species and identified four major groups responsible for connecting discrete regions of the seascape. Elasmobranchs were responsible for promoting energetic connectivity between neritic, oceanic and deep-sea ecosystems. Our findings illustrate how mobile predators promote ecosystem connectivity, underscoring their functional significance and role in supporting ecological resilience. More broadly, strong predator conservation efforts in developing island nations, such as The Bahamas, are likely to yield ecological benefits that enhance the resilience of marine ecosystems to combat imminent threats such as habitat degradation and climate change.
AB - Understanding the factors shaping patterns of ecological resilience is critical for mitigating the loss of global biodiversity. Throughout aquatic environments, highly mobile predators are thought to serve as important vectors of energy between ecosystems thereby promoting stability and resilience. However, the role these predators play in connecting food webs and promoting energy flow remains poorly understood in most contexts. Using carbon and nitrogen isotopes, we quantified the use of several prey resource pools (small oceanic forage, large oceanics, coral reef, and seagrass) by 17 species of elasmobranch fishes (n = 351 individuals) in The Bahamas to determine their functional diversity and roles as ecosystem links. We observed remarkable functional diversity across species and identified four major groups responsible for connecting discrete regions of the seascape. Elasmobranchs were responsible for promoting energetic connectivity between neritic, oceanic and deep-sea ecosystems. Our findings illustrate how mobile predators promote ecosystem connectivity, underscoring their functional significance and role in supporting ecological resilience. More broadly, strong predator conservation efforts in developing island nations, such as The Bahamas, are likely to yield ecological benefits that enhance the resilience of marine ecosystems to combat imminent threats such as habitat degradation and climate change.
KW - ecosystem connectivity
KW - ecosystem function
KW - food-web
KW - functional diversity
KW - seascape
KW - stable isotope analysis
UR - https://www.scopus.com/pages/publications/85152268794
U2 - 10.1098/rspb.2023.0262
DO - 10.1098/rspb.2023.0262
M3 - Article
C2 - 37040803
AN - SCOPUS:85152268794
SN - 0962-8452
VL - 290
JO - Proceedings of the Royal Society B: Biological Sciences
JF - Proceedings of the Royal Society B: Biological Sciences
IS - 1996
M1 - 20230262
ER -