Nutritional Stress Causes Heterogeneous Relationships with Multi-Trait FA in Lesser Black-Backed Gull Chicks: An Aviary Experiment

Environmental stressors have the potential to induce perturbations in the development of young individuals, leading to aberrant and unstable development. This may manifest as fluctuating asymmetry (FA; small, non-directional changes in the bilateral symmetry of morphological traits). Although widely...

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Published in:Symmetry
Main Authors: Trisha Gupta, Cátia Santos, Alejandro Sotillo, Liesbeth De Neve, Eric Stienen, Wendt Müller, Luc Lens
Format: Text
Language:English
Published: Multidisciplinary Digital Publishing Institute 2016
Subjects:
Online Access:https://doi.org/10.3390/sym8110133
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spelling ftmdpi:oai:mdpi.com:/2073-8994/8/11/133/ 2023-08-20T04:07:52+02:00 Nutritional Stress Causes Heterogeneous Relationships with Multi-Trait FA in Lesser Black-Backed Gull Chicks: An Aviary Experiment Trisha Gupta Cátia Santos Alejandro Sotillo Liesbeth De Neve Eric Stienen Wendt Müller Luc Lens 2016-11-17 application/pdf https://doi.org/10.3390/sym8110133 EN eng Multidisciplinary Digital Publishing Institute https://dx.doi.org/10.3390/sym8110133 https://creativecommons.org/licenses/by/4.0/ Symmetry; Volume 8; Issue 11; Pages: 133 fluctuating asymmetry Larus fuscus nutritional stress energetic constraints biomarkers Text 2016 ftmdpi https://doi.org/10.3390/sym8110133 2023-07-31T20:59:31Z Environmental stressors have the potential to induce perturbations in the development of young individuals, leading to aberrant and unstable development. This may manifest as fluctuating asymmetry (FA; small, non-directional changes in the bilateral symmetry of morphological traits). Although widely regarded as a proxy for stress effects, the use of FA as a biomarker is still a topic of much debate. We investigated the applicability of FA as an indicator of nutritional stress (brought about by energetic constraints) by experimental manipulation of the diet composition and quantity during the growth of Lesser Black-backed Gull (Larus fuscus) chicks. FA as an endpoint was measured across the tarsus, wing and 10th primary feather when chicks reached 30 days of age. Although levels of asymmetry were found to increase with stress in the feather, relationships with tarsus and wing FA were mixed and mostly non-significant. Furthermore, we did not find any correlations in unsigned FA between traits, indicating the absence of organism-wide asymmetry. Our study was therefore unable to find unequivocal evidence in support of the application of FA as a reliable estimator of nutritional stress. Text Lesser black-backed gull MDPI Open Access Publishing Symmetry 8 11 133
institution Open Polar
collection MDPI Open Access Publishing
op_collection_id ftmdpi
language English
topic fluctuating asymmetry
Larus fuscus
nutritional stress
energetic constraints
biomarkers
spellingShingle fluctuating asymmetry
Larus fuscus
nutritional stress
energetic constraints
biomarkers
Trisha Gupta
Cátia Santos
Alejandro Sotillo
Liesbeth De Neve
Eric Stienen
Wendt Müller
Luc Lens
Nutritional Stress Causes Heterogeneous Relationships with Multi-Trait FA in Lesser Black-Backed Gull Chicks: An Aviary Experiment
topic_facet fluctuating asymmetry
Larus fuscus
nutritional stress
energetic constraints
biomarkers
description Environmental stressors have the potential to induce perturbations in the development of young individuals, leading to aberrant and unstable development. This may manifest as fluctuating asymmetry (FA; small, non-directional changes in the bilateral symmetry of morphological traits). Although widely regarded as a proxy for stress effects, the use of FA as a biomarker is still a topic of much debate. We investigated the applicability of FA as an indicator of nutritional stress (brought about by energetic constraints) by experimental manipulation of the diet composition and quantity during the growth of Lesser Black-backed Gull (Larus fuscus) chicks. FA as an endpoint was measured across the tarsus, wing and 10th primary feather when chicks reached 30 days of age. Although levels of asymmetry were found to increase with stress in the feather, relationships with tarsus and wing FA were mixed and mostly non-significant. Furthermore, we did not find any correlations in unsigned FA between traits, indicating the absence of organism-wide asymmetry. Our study was therefore unable to find unequivocal evidence in support of the application of FA as a reliable estimator of nutritional stress.
format Text
author Trisha Gupta
Cátia Santos
Alejandro Sotillo
Liesbeth De Neve
Eric Stienen
Wendt Müller
Luc Lens
author_facet Trisha Gupta
Cátia Santos
Alejandro Sotillo
Liesbeth De Neve
Eric Stienen
Wendt Müller
Luc Lens
author_sort Trisha Gupta
title Nutritional Stress Causes Heterogeneous Relationships with Multi-Trait FA in Lesser Black-Backed Gull Chicks: An Aviary Experiment
title_short Nutritional Stress Causes Heterogeneous Relationships with Multi-Trait FA in Lesser Black-Backed Gull Chicks: An Aviary Experiment
title_full Nutritional Stress Causes Heterogeneous Relationships with Multi-Trait FA in Lesser Black-Backed Gull Chicks: An Aviary Experiment
title_fullStr Nutritional Stress Causes Heterogeneous Relationships with Multi-Trait FA in Lesser Black-Backed Gull Chicks: An Aviary Experiment
title_full_unstemmed Nutritional Stress Causes Heterogeneous Relationships with Multi-Trait FA in Lesser Black-Backed Gull Chicks: An Aviary Experiment
title_sort nutritional stress causes heterogeneous relationships with multi-trait fa in lesser black-backed gull chicks: an aviary experiment
publisher Multidisciplinary Digital Publishing Institute
publishDate 2016
url https://doi.org/10.3390/sym8110133
genre Lesser black-backed gull
genre_facet Lesser black-backed gull
op_source Symmetry; Volume 8; Issue 11; Pages: 133
op_relation https://dx.doi.org/10.3390/sym8110133
op_rights https://creativecommons.org/licenses/by/4.0/
op_doi https://doi.org/10.3390/sym8110133
container_title Symmetry
container_volume 8
container_issue 11
container_start_page 133
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