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Intraspecific differences in short- and long-term foraging strategies of reef manta ray (Mobula alfredi) in the Chagos Archipelago. / Harris, Joanna; Embling, Clare B.; Alexander, Genevieve et al.
In: Global Ecology and Conservation, 01.10.2023.

Research output: Contribution to journalArticlepeer-review

HarvardHarvard

Harris, J, Embling, CB, Alexander, G, Curnick, D, Roche, R, Froman, N, Stuhr, M, Fileman, ES, Hilbourne, S, Carter, R, Murray, A, Savage, J & Stevens, GMW 2023, 'Intraspecific differences in short- and long-term foraging strategies of reef manta ray (Mobula alfredi) in the Chagos Archipelago', Global Ecology and Conservation. https://doi.org/10.1016/j.gecco.2023.e02636

APA

Harris, J., Embling, C. B., Alexander, G., Curnick, D., Roche, R., Froman, N., Stuhr, M., Fileman, E. S., Hilbourne, S., Carter, R., Murray, A., Savage, J., & Stevens, G. M. W. (2023). Intraspecific differences in short- and long-term foraging strategies of reef manta ray (Mobula alfredi) in the Chagos Archipelago. Global Ecology and Conservation, Article e02636. https://doi.org/10.1016/j.gecco.2023.e02636

CBE

Harris J, Embling CB, Alexander G, Curnick D, Roche R, Froman N, Stuhr M, Fileman ES, Hilbourne S, Carter R, et al. 2023. Intraspecific differences in short- and long-term foraging strategies of reef manta ray (Mobula alfredi) in the Chagos Archipelago. Global Ecology and Conservation. Article e02636. https://doi.org/10.1016/j.gecco.2023.e02636

MLA

VancouverVancouver

Harris J, Embling CB, Alexander G, Curnick D, Roche R, Froman N et al. Intraspecific differences in short- and long-term foraging strategies of reef manta ray (Mobula alfredi) in the Chagos Archipelago. Global Ecology and Conservation. 2023 Oct 1;e02636. Epub 2023 Sept 14. doi: https://doi.org/10.1016/j.gecco.2023.e02636

Author

Harris, Joanna ; Embling, Clare B. ; Alexander, Genevieve et al. / Intraspecific differences in short- and long-term foraging strategies of reef manta ray (Mobula alfredi) in the Chagos Archipelago. In: Global Ecology and Conservation. 2023.

RIS

TY - JOUR

T1 - Intraspecific differences in short- and long-term foraging strategies of reef manta ray (Mobula alfredi) in the Chagos Archipelago

AU - Harris, Joanna

AU - Embling, Clare B.

AU - Alexander, Genevieve

AU - Curnick, David

AU - Roche, Ronan

AU - Froman, Niv

AU - Stuhr, Marleen

AU - Fileman, Elaine S.

AU - Hilbourne, Simon

AU - Carter, Rebecca

AU - Murray, Annie

AU - Savage, Jessica

AU - Stevens, Guy M.W.

PY - 2023/10/1

Y1 - 2023/10/1

N2 - Assessing the foraging ecology of a threatened species is necessary to understand their movement behaviour and habitat use patterns, which are essential for developing effective protection strategies. Here, the foraging ecology of reef manta rays (Mobula alfredi) in the Chagos Archipelago, a region encompassed by a vast no-take marine protected area (MPA), was investigated using stable isotope analysis of skin and muscle tissue. Enriched δ13C values suggest the population predominantly forages in nearshore environments. Skin δ13C values increased with increased rainfall, likely associated with the boosts in primary production and zooplankton biomass due to the coastal advection of seabird guano. Annual variations in δ13C values of skin and muscle were observed and are consistent with reduced nutrient transport associated with the effects of Indian Ocean Dipole oscillations, including a deepening of the thermocline, a suppression of cold-water upwelling, and reduced rainfall. Short- and long-term foraging strategies and locations were identified by applying hierarchical clustering, isotopic niche analysis, and Bayesian stable isotope mixing models to δ13C and δ15N of paired skin and muscle tissue samples. Two isotopically distinct groups of M. alfredi were identified, employing either local foraging strategies restricted to specific locations or wide-ranging strategies that likely mean they engage in regular migrations throughout the archipelago. Ninety-eight percent of M. alfredi were estimated to switch between strategies utilising and connecting multiple discrete nearshore habitats, emphasising their role in ecosystem functioning by facilitating the transport of nutrients across ecosystem boundaries. However, illegal, unreported, and unregulated fishing and lost or abandoned fishing gear commonly occur within the MPA. Locations of particular concern are Egmont Atoll as it is a highly active aggregation location and Peros Banhos Atoll where IUU frequently occurs and M. alfredi are estimated to be heavily reliant upon for foraging. Frequent migrations between atolls by M. alfredi also raises concern over their vulnerability to these activities along migration corridors. This research bridges current knowledge gaps in this population's foraging ecology and concomitant movement patterns, which should inform conservation strategies in the region.

AB - Assessing the foraging ecology of a threatened species is necessary to understand their movement behaviour and habitat use patterns, which are essential for developing effective protection strategies. Here, the foraging ecology of reef manta rays (Mobula alfredi) in the Chagos Archipelago, a region encompassed by a vast no-take marine protected area (MPA), was investigated using stable isotope analysis of skin and muscle tissue. Enriched δ13C values suggest the population predominantly forages in nearshore environments. Skin δ13C values increased with increased rainfall, likely associated with the boosts in primary production and zooplankton biomass due to the coastal advection of seabird guano. Annual variations in δ13C values of skin and muscle were observed and are consistent with reduced nutrient transport associated with the effects of Indian Ocean Dipole oscillations, including a deepening of the thermocline, a suppression of cold-water upwelling, and reduced rainfall. Short- and long-term foraging strategies and locations were identified by applying hierarchical clustering, isotopic niche analysis, and Bayesian stable isotope mixing models to δ13C and δ15N of paired skin and muscle tissue samples. Two isotopically distinct groups of M. alfredi were identified, employing either local foraging strategies restricted to specific locations or wide-ranging strategies that likely mean they engage in regular migrations throughout the archipelago. Ninety-eight percent of M. alfredi were estimated to switch between strategies utilising and connecting multiple discrete nearshore habitats, emphasising their role in ecosystem functioning by facilitating the transport of nutrients across ecosystem boundaries. However, illegal, unreported, and unregulated fishing and lost or abandoned fishing gear commonly occur within the MPA. Locations of particular concern are Egmont Atoll as it is a highly active aggregation location and Peros Banhos Atoll where IUU frequently occurs and M. alfredi are estimated to be heavily reliant upon for foraging. Frequent migrations between atolls by M. alfredi also raises concern over their vulnerability to these activities along migration corridors. This research bridges current knowledge gaps in this population's foraging ecology and concomitant movement patterns, which should inform conservation strategies in the region.

U2 - https://doi.org/10.1016/j.gecco.2023.e02636

DO - https://doi.org/10.1016/j.gecco.2023.e02636

M3 - Article

JO - Global Ecology and Conservation

JF - Global Ecology and Conservation

SN - 2351-9894

M1 - e02636

ER -