Trophic position structures physiological trade-offs between metabolic and detoxification pathways in sympatric passerines

Abstract Resource use links ecological context to organismal performance, yet whether dietary breadth or trophic position is more closely associated with physiological state in wild birds remains unclear. We used a natural trophic gradient in a sympatric passerine assemblage to test whether trophic position and isotopic niche breadth are associated with integrated physiological phenotypes. We studied three co-occurring passerine species in central Chile spanning a trophic spectrum (granivorous, omnivorous, insectivorous). Using blood δ13C and δ15N, we quantified isotopic niche width and estimated trophic position, then compared these metrics with physiological variables measured in free-living birds (n = 60), including differential leukocyte counts, antioxidant capacity, and enzymatic markers of oxidative metabolism, glutathione-related physiology, and plasma esterase activity. Isotopic niche width differed among species but was weakly associated with physiological variation. By contrast, estimated trophic position showed stronger species-level correspondence with multivariate physiological organization. Metabolic and enzyme-based variables contributed most to interspecific physiological differentiation, whereas baseline non-enzymatic antioxidant buffering was conserved. Overall, estimated trophic position showed a stronger correspondence with coordinated physiological variation than isotopic niche breadth. These findings highlight species-level physiological differences associated with trophic position and provide a basis for broader comparative analyses of ecological and evolutionary influences on avian physiology.

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Publication Details

Journal
Royal Society Open Science
Published
2026-10-07
DOI
https://doi.org/10.1098/rsos.261499
Primary Topic
Isotope Analysis in Ecology
Type
article
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article

Trophic position structures physiological trade-offs between metabolic and detoxification pathways in sympatric passerines

Karin Maldonado, Juan Carlos Sanchez-Hernandez, Pablo Sabat, Roberto Nespolo et al.
Royal Society Open Science
Isotope Analysis in Ecology
article

Trophic position structures physiological trade-offs between metabolic and detoxification pathways in sympatric passerines

Karin Maldonado, Juan Carlos Sanchez-Hernandez, Pablo Sabat, Roberto Nespolo, Seth D. Newsome, Natalia Ramírez‐Otarola, Francisco del Basto, Felipe Alvarez, Diego Landaeta, Antonia Beltran, Benjamin Corvalán
article en

Abstract

Abstract Resource use links ecological context to organismal performance, yet whether dietary breadth or trophic position is more closely associated with physiological state in wild birds remains unclear. We used a natural trophic gradient in a sympatric passerine assemblage to test whether trophic position and isotopic niche breadth are associated with integrated physiological phenotypes. We studied three co-occurring passerine species in central Chile spanning a trophic spectrum (granivorous, omnivorous, insectivorous). Using blood δ13C and δ15N, we quantified isotopic niche width and estimated trophic position, then compared these metrics with physiological variables measured in free-living birds (n = 60), including differential leukocyte counts, antioxidant capacity, and enzymatic markers of oxidative metabolism, glutathione-related physiology, and plasma esterase activity. Isotopic niche width differed among species but was weakly associated with physiological variation. By contrast, estimated trophic position showed stronger species-level correspondence with multivariate physiological organization. Metabolic and enzyme-based variables contributed most to interspecific physiological differentiation, whereas baseline non-enzymatic antioxidant buffering was conserved. Overall, estimated trophic position showed a stronger correspondence with coordinated physiological variation than isotopic niche breadth. These findings highlight species-level physiological differences associated with trophic position and provide a basis for broader comparative analyses of ecological and evolutionary influences on avian physiology.

Royal Society Open ScienceVol. 13(10)
Universidad Mayor (CL), Austral University of Chile (CL), University of New Mexico (US), Adolfo Ibáñez University (CL), New Mexico Consortium (US), Millennium Nucleus of Ion Channel Associated Diseases (CL), Servicio de Salud de Castilla La Mancha (ES), University of Chile (CL), University of Castilla-La Mancha (ES)
Openalex Percentile: Top 15%
Isotope Analysis in Ecology
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