The role of allochrony in influencing interspecific differences in foraging distribution during the non-breeding season between two congeneric crested penguin species

Author:

Green Cara-PaigeORCID,Ratcliffe Norman,Mattern Thomas,Thompson David,Lea Mary-Anne,Wotherspoon Simon,Borboroglu Pablo Garcia,Ellenberg Ursula,Morrison Kyle W.,Pütz Klemens,Sagar Paul M.,Seddon Philip J.,Torres Leigh G.,Hindell Mark A.ORCID

Abstract

Mechanisms promoting coexistence between closely related species are fundamental for maintaining species diversity. Mechanisms of niche differentiation include allochrony which offsets the peak timing of resource utilisation between species. Many studies focus on spatial and temporal niche partitioning during the breeding season, few have investigated the role allochrony plays in influencing interspecific segregation of foraging distribution and ecology between congeneric species during the non-breeding season. We investigated the non-breeding migrations of Snares (Eudyptes robustus) and Fiordland penguins (Eudyptes pachyrhynchus), closely related species breeding between 100–350 km apart whose migration phenology differs by two months. Using light geolocation tracking, we examined the degree of overlap given the observed allochrony and a hypothetical scenario where the species commence migration simultaneously. We found that Fiordland penguins migrated to the Sub-Antarctic Frontal Zone and Polar Frontal Zone in the austral autumn whereas Snares penguins disperse westwards staying north of the Sub-Tropical Front in the austral winter. Our results suggest that allochrony is likely to be at the root of segregation because the relative profitability of the different water masses that the penguins forage in changes seasonally which results in the two species utilising different areas over their core non-breeding periods. Furthermore, allochrony reduces relatively higher levels of spatiotemporal overlap during the departure and arrival periods, when the close proximity of the two species’ colonies would cause the birds to congregate in similar areas, resulting in high interspecific competition just before the breeding season. Available evidence from other studies suggests that the shift in phenology between these species has arisen from adaptive radiation and phenological matching to the seasonality of local resource availability during the breeding season and reduced competitive overlap over the non-breeding season is likely to be an incidental outcome.

Funder

British Ornithologists’ Union

Antarctic Research Trust

Global Penguin Society

National Geographic Society

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference72 articles.

1. Species Interactions, Local and Regional Processes, and Limits to the Richness of Ecological Communities: A Theoretical Perspective;HV Cornell;J Anim Ecol,1992

2. Transients: The key to long-term ecological understanding?;A. Hastings;Trends Ecol Evol,2004

3. Bringing the Hutchinsonian niche into the 21st century: Ecological and evolutionary perspectives;RD Holt;Proc Natl Acad Sci U S A,2009

4. Resource partitioning among avian predators of the Arctic tundra;Y Seyer;J Anim Ecol,2020

5. Space use variation in Co-occurring sister species: Response to environmental variation or competition?;CMS Dufour;PLoS One,2015

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