Animal habitat quality and ecosystem functioning: Exploring seasonal patterns using NDVI

Many animal species have developed specific evolutionary adaptations to survive prolonged periods of low energy availability that characterize seasonal environments. The seasonal course of primary production, a major aspect of ecosystem functioning, should therefore be an important factor determinin...

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Published in:Ecological Monographs
Main Authors: Wiegand, Thorsten, Naves, Javier, Garbulsky, M. F., Fernández, Néstor
Format: Article in Journal/Newspaper
Language:English
Published: Ecological Society of America 2008
Subjects:
Online Access:http://hdl.handle.net/10261/60034
https://doi.org/10.1890/06-1870.1
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spelling ftcsic:oai:digital.csic.es:10261/60034 2024-02-11T10:09:20+01:00 Animal habitat quality and ecosystem functioning: Exploring seasonal patterns using NDVI Wiegand, Thorsten Naves, Javier Garbulsky, M. F. Fernández, Néstor 2008 http://hdl.handle.net/10261/60034 https://doi.org/10.1890/06-1870.1 en eng Ecological Society of America doi:10.1890/06-1870.1 issn: 0012-9615 Ecological Monographs 78: 87- 103 (2008) http://hdl.handle.net/10261/60034 open artículo http://purl.org/coar/resource_type/c_6501 2008 ftcsic https://doi.org/10.1890/06-1870.1 2024-01-16T09:42:22Z Many animal species have developed specific evolutionary adaptations to survive prolonged periods of low energy availability that characterize seasonal environments. The seasonal course of primary production, a major aspect of ecosystem functioning, should therefore be an important factor determining the habitat quality of such species. We tested this hypothesis by analyzing the relationship between habitat quality and ecosystem functioning for brown bears (Ursus arctos), a species showing hyperphagia and hibernation as evolutionary adaptation to seasonal peaks and bottlenecks in ecosystem productivity, respectively. Our unique long-term data set comprised data from two brown bear populations in northern Spain on historical presence, current presence, and reproduction. The data were classified on a grid of 5 x 5 km pixels into five classes: frequent reproduction, sporadic reproduction, frequent presence, sporadic presence, and recent extinction. We used the long-term average of the seasonal course of NDVI (normalized difference vegetation index) as a proxy for ecosystem functioning and investigated the relationship between habitat quality and ecosystem functioning with methods borrowed from statistical point-pattern analysis. We found that brown bears indeed selected habitat with specific ecosystem functioning (i.e., the variance in all habitat classes was smaller than in the landscape overall) and the relationship between habitat quality and ecosystem functioning was ordered. First, the average distance in ecosystem functioning between two habitat classes was larger if the difference in habitat quality was larger. Second, habitat for which there was the greatest need (i.e., breeding habitat) occupied the narrowest niche regarding ecosystem functioning and showed the most pronounced seasonality. Progressively poorer classes occupied wider niches that partly overlapped those of better classes. This indicated that nonbreeding animals are less selective. Our methodology provided new insight into the relationship ... Article in Journal/Newspaper Ursus arctos Digital.CSIC (Spanish National Research Council) Ecological Monographs 78 1 87 103
institution Open Polar
collection Digital.CSIC (Spanish National Research Council)
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language English
description Many animal species have developed specific evolutionary adaptations to survive prolonged periods of low energy availability that characterize seasonal environments. The seasonal course of primary production, a major aspect of ecosystem functioning, should therefore be an important factor determining the habitat quality of such species. We tested this hypothesis by analyzing the relationship between habitat quality and ecosystem functioning for brown bears (Ursus arctos), a species showing hyperphagia and hibernation as evolutionary adaptation to seasonal peaks and bottlenecks in ecosystem productivity, respectively. Our unique long-term data set comprised data from two brown bear populations in northern Spain on historical presence, current presence, and reproduction. The data were classified on a grid of 5 x 5 km pixels into five classes: frequent reproduction, sporadic reproduction, frequent presence, sporadic presence, and recent extinction. We used the long-term average of the seasonal course of NDVI (normalized difference vegetation index) as a proxy for ecosystem functioning and investigated the relationship between habitat quality and ecosystem functioning with methods borrowed from statistical point-pattern analysis. We found that brown bears indeed selected habitat with specific ecosystem functioning (i.e., the variance in all habitat classes was smaller than in the landscape overall) and the relationship between habitat quality and ecosystem functioning was ordered. First, the average distance in ecosystem functioning between two habitat classes was larger if the difference in habitat quality was larger. Second, habitat for which there was the greatest need (i.e., breeding habitat) occupied the narrowest niche regarding ecosystem functioning and showed the most pronounced seasonality. Progressively poorer classes occupied wider niches that partly overlapped those of better classes. This indicated that nonbreeding animals are less selective. Our methodology provided new insight into the relationship ...
format Article in Journal/Newspaper
author Wiegand, Thorsten
Naves, Javier
Garbulsky, M. F.
Fernández, Néstor
spellingShingle Wiegand, Thorsten
Naves, Javier
Garbulsky, M. F.
Fernández, Néstor
Animal habitat quality and ecosystem functioning: Exploring seasonal patterns using NDVI
author_facet Wiegand, Thorsten
Naves, Javier
Garbulsky, M. F.
Fernández, Néstor
author_sort Wiegand, Thorsten
title Animal habitat quality and ecosystem functioning: Exploring seasonal patterns using NDVI
title_short Animal habitat quality and ecosystem functioning: Exploring seasonal patterns using NDVI
title_full Animal habitat quality and ecosystem functioning: Exploring seasonal patterns using NDVI
title_fullStr Animal habitat quality and ecosystem functioning: Exploring seasonal patterns using NDVI
title_full_unstemmed Animal habitat quality and ecosystem functioning: Exploring seasonal patterns using NDVI
title_sort animal habitat quality and ecosystem functioning: exploring seasonal patterns using ndvi
publisher Ecological Society of America
publishDate 2008
url http://hdl.handle.net/10261/60034
https://doi.org/10.1890/06-1870.1
genre Ursus arctos
genre_facet Ursus arctos
op_relation doi:10.1890/06-1870.1
issn: 0012-9615
Ecological Monographs 78: 87- 103 (2008)
http://hdl.handle.net/10261/60034
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op_doi https://doi.org/10.1890/06-1870.1
container_title Ecological Monographs
container_volume 78
container_issue 1
container_start_page 87
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