Spatial and taxonomic biases in bat records: Drivers and conservation implications in a megadiverse country

Abstract Biases in data availability have serious consequences on scientific inferences that can be derived. The potential consequences of these biases could be more detrimental in the less‐studied megadiverse regions, often characterized by high biodiversity and serious risks of human threats, as c...

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Main Authors: Veronica Zamora‐Gutierrez, Tatsuya Amano, Kate E. Jones
Format: Article
Language:English
Published: Wiley 2019-12-01
Series:Ecology and Evolution
Subjects:
Online Access:https://doi.org/10.1002/ece3.5848
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spelling doaj-ec8583ff68d44447afe3e26e63065b852021-04-02T13:58:25ZengWileyEcology and Evolution2045-77582019-12-01924141301414110.1002/ece3.5848Spatial and taxonomic biases in bat records: Drivers and conservation implications in a megadiverse countryVeronica Zamora‐Gutierrez0Tatsuya Amano1Kate E. Jones2CONACYT – Centro Interdisciplinario de Investigación para el Desarrollo Integral Regional (CIIDIR) Unidad Durango Instituto Politécnico Nacional Durango MexicoConservation Science Group Department of Zoology University of Cambridge Cambridge UKDepartment of Genetics, Evolution and Environment Centre for Biodiversity and Environment Research University College London London UKAbstract Biases in data availability have serious consequences on scientific inferences that can be derived. The potential consequences of these biases could be more detrimental in the less‐studied megadiverse regions, often characterized by high biodiversity and serious risks of human threats, as conservation and management actions could be misdirected. Here, focusing on 134 bat species in Mexico, we analyze spatial and taxonomic biases and their drivers in occurrence data; and identify priority areas for further data collection which are currently under‐sampled or at future environmental risk. We collated a comprehensive database of 26,192 presence‐only bat records in Mexico to characterize taxonomic and spatial biases and relate them to species' characteristics (range size and foraging behavior). Next, we examined variables related to accessibility, species richness and security to explain the spatial patterns in occurrence records. Finally, we compared the spatial distributions of existing data and future threats to these species to highlight those regions that are likely to experience an increased level of threats but are currently under‐surveyed. We found taxonomic biases, where species with wider geographical ranges and narrow‐space foragers (species easily captured with traditional methods), had more occurrence data. There was a significant oversampling toward tropical regions, and the presence and number of records was positively associated with areas of high topographic heterogeneity, road density, urban, and protected areas, and negatively associated with areas which were predicted to have future increases in temperature and precipitation. Sampling efforts for Mexican bats appear to have focused disproportionately on easily captured species, tropical regions, areas of high species richness and security; leading to under‐sampling in areas of high future threats. These biases could substantially influence the assessment of current status of, and future anthropogenic impacts on, this diverse species group in a tropical megadiverse country.https://doi.org/10.1002/ece3.5848anthropogenic threatschiropteradata gapsMexicorisk hotspots
collection DOAJ
language English
format Article
sources DOAJ
author Veronica Zamora‐Gutierrez
Tatsuya Amano
Kate E. Jones
spellingShingle Veronica Zamora‐Gutierrez
Tatsuya Amano
Kate E. Jones
Spatial and taxonomic biases in bat records: Drivers and conservation implications in a megadiverse country
Ecology and Evolution
anthropogenic threats
chiroptera
data gaps
Mexico
risk hotspots
author_facet Veronica Zamora‐Gutierrez
Tatsuya Amano
Kate E. Jones
author_sort Veronica Zamora‐Gutierrez
title Spatial and taxonomic biases in bat records: Drivers and conservation implications in a megadiverse country
title_short Spatial and taxonomic biases in bat records: Drivers and conservation implications in a megadiverse country
title_full Spatial and taxonomic biases in bat records: Drivers and conservation implications in a megadiverse country
title_fullStr Spatial and taxonomic biases in bat records: Drivers and conservation implications in a megadiverse country
title_full_unstemmed Spatial and taxonomic biases in bat records: Drivers and conservation implications in a megadiverse country
title_sort spatial and taxonomic biases in bat records: drivers and conservation implications in a megadiverse country
publisher Wiley
series Ecology and Evolution
issn 2045-7758
publishDate 2019-12-01
description Abstract Biases in data availability have serious consequences on scientific inferences that can be derived. The potential consequences of these biases could be more detrimental in the less‐studied megadiverse regions, often characterized by high biodiversity and serious risks of human threats, as conservation and management actions could be misdirected. Here, focusing on 134 bat species in Mexico, we analyze spatial and taxonomic biases and their drivers in occurrence data; and identify priority areas for further data collection which are currently under‐sampled or at future environmental risk. We collated a comprehensive database of 26,192 presence‐only bat records in Mexico to characterize taxonomic and spatial biases and relate them to species' characteristics (range size and foraging behavior). Next, we examined variables related to accessibility, species richness and security to explain the spatial patterns in occurrence records. Finally, we compared the spatial distributions of existing data and future threats to these species to highlight those regions that are likely to experience an increased level of threats but are currently under‐surveyed. We found taxonomic biases, where species with wider geographical ranges and narrow‐space foragers (species easily captured with traditional methods), had more occurrence data. There was a significant oversampling toward tropical regions, and the presence and number of records was positively associated with areas of high topographic heterogeneity, road density, urban, and protected areas, and negatively associated with areas which were predicted to have future increases in temperature and precipitation. Sampling efforts for Mexican bats appear to have focused disproportionately on easily captured species, tropical regions, areas of high species richness and security; leading to under‐sampling in areas of high future threats. These biases could substantially influence the assessment of current status of, and future anthropogenic impacts on, this diverse species group in a tropical megadiverse country.
topic anthropogenic threats
chiroptera
data gaps
Mexico
risk hotspots
url https://doi.org/10.1002/ece3.5848
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