Anthropogenic disturbance in a changing environment: modelling lifetime reproductive success to predict the consequences of multiple stressors on a migratory population

Animals make behavioural and reproductive decisions that maximise their lifetime reproductive success, and thus their fitness, in light of periodic and stochastic variability of the environment. Modelling the variation of an individual's energy levels formalises this tradeoff and helps to quant...

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Published in:Oikos
Main Authors: Pirotta, Enrico, Mangel, Marc, Costa, Daniel P., Goldbogen, Jeremy, Harwood, John, Hin, Vincent, Irvine, Ladd M., Mate, Bruce R., McHuron, Elizabeth A., Palacios, Daniel M., Schwarz, Lisa K., New, Leslie
Format: Article in Journal/Newspaper
Language:English
Published: Wiley 2019
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Online Access:http://dx.doi.org/10.1111/oik.06146
https://onlinelibrary.wiley.com/doi/pdf/10.1111/oik.06146
https://onlinelibrary.wiley.com/doi/full-xml/10.1111/oik.06146
id crwiley:10.1111/oik.06146
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spelling crwiley:10.1111/oik.06146 2024-09-30T14:32:43+00:00 Anthropogenic disturbance in a changing environment: modelling lifetime reproductive success to predict the consequences of multiple stressors on a migratory population Pirotta, Enrico Mangel, Marc Costa, Daniel P. Goldbogen, Jeremy Harwood, John Hin, Vincent Irvine, Ladd M. Mate, Bruce R. McHuron, Elizabeth A. Palacios, Daniel M. Schwarz, Lisa K. New, Leslie 2019 http://dx.doi.org/10.1111/oik.06146 https://onlinelibrary.wiley.com/doi/pdf/10.1111/oik.06146 https://onlinelibrary.wiley.com/doi/full-xml/10.1111/oik.06146 en eng Wiley http://creativecommons.org/licenses/by/3.0/ Oikos volume 128, issue 9, page 1340-1357 ISSN 0030-1299 1600-0706 journal-article 2019 crwiley https://doi.org/10.1111/oik.06146 2024-09-03T04:24:36Z Animals make behavioural and reproductive decisions that maximise their lifetime reproductive success, and thus their fitness, in light of periodic and stochastic variability of the environment. Modelling the variation of an individual's energy levels formalises this tradeoff and helps to quantify the population‐level consequences of stressors (e.g. disturbance from human activities and environmental change) that can affect behaviour or physiology. In this study, we develop a dynamic state variable model for the spatially explicit behaviour, physiology and reproduction of a female, long‐lived, migratory marine vertebrate. The model can be used to investigate the spatio‐temporal patterns of behaviour and reproduction that allow an individual to maximise its overall reproductive output. We parametrised the model for eastern North Pacific blue whales Balaenoptera musculus , and used it to predict the effects of changing environmental conditions and increasing human disturbance on the population's vital rates. In baseline conditions, the model output had high fidelity to observed energy dynamics, movement patterns and reproductive strategies. Simulated scenarios suggested that environmental changes could have severe consequences on the population's vital rates, but that individuals could tolerate high levels of anthropogenic disturbance. However, this ability depended on where, when and how often disturbance occurred. In scenarios with both environmental change and anthropogenic disturbance, synergistic interactions caused stronger effects than in isolation. In general, larger body size offered a buffer against stochasticity and disturbance, and, consequently, we predicted juveniles to be more susceptible to disturbance. We also predicted that females prioritise their own survival at the expense of the current reproductive attempt, presumably the result of their long lifespan. Our approach provides a general framework to make predictions of the cumulative and synergistic effects of human disturbance and climate ... Article in Journal/Newspaper Balaenoptera musculus Wiley Online Library Pacific Oikos 128 9 1340 1357
institution Open Polar
collection Wiley Online Library
op_collection_id crwiley
language English
description Animals make behavioural and reproductive decisions that maximise their lifetime reproductive success, and thus their fitness, in light of periodic and stochastic variability of the environment. Modelling the variation of an individual's energy levels formalises this tradeoff and helps to quantify the population‐level consequences of stressors (e.g. disturbance from human activities and environmental change) that can affect behaviour or physiology. In this study, we develop a dynamic state variable model for the spatially explicit behaviour, physiology and reproduction of a female, long‐lived, migratory marine vertebrate. The model can be used to investigate the spatio‐temporal patterns of behaviour and reproduction that allow an individual to maximise its overall reproductive output. We parametrised the model for eastern North Pacific blue whales Balaenoptera musculus , and used it to predict the effects of changing environmental conditions and increasing human disturbance on the population's vital rates. In baseline conditions, the model output had high fidelity to observed energy dynamics, movement patterns and reproductive strategies. Simulated scenarios suggested that environmental changes could have severe consequences on the population's vital rates, but that individuals could tolerate high levels of anthropogenic disturbance. However, this ability depended on where, when and how often disturbance occurred. In scenarios with both environmental change and anthropogenic disturbance, synergistic interactions caused stronger effects than in isolation. In general, larger body size offered a buffer against stochasticity and disturbance, and, consequently, we predicted juveniles to be more susceptible to disturbance. We also predicted that females prioritise their own survival at the expense of the current reproductive attempt, presumably the result of their long lifespan. Our approach provides a general framework to make predictions of the cumulative and synergistic effects of human disturbance and climate ...
format Article in Journal/Newspaper
author Pirotta, Enrico
Mangel, Marc
Costa, Daniel P.
Goldbogen, Jeremy
Harwood, John
Hin, Vincent
Irvine, Ladd M.
Mate, Bruce R.
McHuron, Elizabeth A.
Palacios, Daniel M.
Schwarz, Lisa K.
New, Leslie
spellingShingle Pirotta, Enrico
Mangel, Marc
Costa, Daniel P.
Goldbogen, Jeremy
Harwood, John
Hin, Vincent
Irvine, Ladd M.
Mate, Bruce R.
McHuron, Elizabeth A.
Palacios, Daniel M.
Schwarz, Lisa K.
New, Leslie
Anthropogenic disturbance in a changing environment: modelling lifetime reproductive success to predict the consequences of multiple stressors on a migratory population
author_facet Pirotta, Enrico
Mangel, Marc
Costa, Daniel P.
Goldbogen, Jeremy
Harwood, John
Hin, Vincent
Irvine, Ladd M.
Mate, Bruce R.
McHuron, Elizabeth A.
Palacios, Daniel M.
Schwarz, Lisa K.
New, Leslie
author_sort Pirotta, Enrico
title Anthropogenic disturbance in a changing environment: modelling lifetime reproductive success to predict the consequences of multiple stressors on a migratory population
title_short Anthropogenic disturbance in a changing environment: modelling lifetime reproductive success to predict the consequences of multiple stressors on a migratory population
title_full Anthropogenic disturbance in a changing environment: modelling lifetime reproductive success to predict the consequences of multiple stressors on a migratory population
title_fullStr Anthropogenic disturbance in a changing environment: modelling lifetime reproductive success to predict the consequences of multiple stressors on a migratory population
title_full_unstemmed Anthropogenic disturbance in a changing environment: modelling lifetime reproductive success to predict the consequences of multiple stressors on a migratory population
title_sort anthropogenic disturbance in a changing environment: modelling lifetime reproductive success to predict the consequences of multiple stressors on a migratory population
publisher Wiley
publishDate 2019
url http://dx.doi.org/10.1111/oik.06146
https://onlinelibrary.wiley.com/doi/pdf/10.1111/oik.06146
https://onlinelibrary.wiley.com/doi/full-xml/10.1111/oik.06146
geographic Pacific
geographic_facet Pacific
genre Balaenoptera musculus
genre_facet Balaenoptera musculus
op_source Oikos
volume 128, issue 9, page 1340-1357
ISSN 0030-1299 1600-0706
op_rights http://creativecommons.org/licenses/by/3.0/
op_doi https://doi.org/10.1111/oik.06146
container_title Oikos
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