Tourinho, Ana Lúcia, Benchimol, Maíra, Porto, Willians, Peres, Carlos A. ORCID: https://orcid.org/0000-0002-1588-8765 and Storck-Tonon, Danielle (2020) Marked compositional changes in harvestmen assemblages in Amazonian forest islands induced by a mega dam. Insect Conservation and Diversity, 13 (5). pp. 432-444. ISSN 1752-458X
Full text not available from this repository. (Request a copy)Abstract
Mega hydroelectric dams have become one of the main drivers of habitat loss in tropical forests, converting large tracts of pristine forests into isolated forest islands. Understanding how biodiversity cope with landscape modification in these archipelagic landscapes is of paramount importance to assess the environmental consequences of dam infrastructure and propose mitigation actions for biodiversity conservation. In this context, harvestmen (Opiliones, Arachnida) comprise an excellent indicator taxon of habitat quality, given their high sensitivity to desiccation and microclimatic change. We investigate the effects of landscape change induced by a mega hydropower dam on forest harvestmen species richness, abundance and composition within the Balbina Hydroelectric Dam, Central Brazilian Amazon. We sampled 20 islands and 5 mainland continuous forests, relating our biological response variables to local, patch and landscape scale metrics. Although unexpectedly species richness was unaffected by any local, patch and landscape variables, species composition and abundance were differentially affected by a set of predictor variables at different scales. Forest cover and fallen woody stems were significant predictors of species composition, whereas vegetation density, forest cover, island area, abundance of palm trees, and fallen woody stems best explained harvestmen abundance. Our results indicate that both islands embedded within greater and lower amount of forest cover are important to ensure high diversity of harvestmen. We recommend retaining large forest habitat patches surrounded by a large amount of forest cover to minimise forest disturbance effects and enhance long-term persistence of harvestmen sensitive species in large hydroelectric dams.
Item Type: | Article |
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Uncontrolled Keywords: | conservation biology,environmental quality,habitat fragmentation,hydroelectric dams,indicator species,landscape ecology,ecology, evolution, behavior and systematics,insect science ,/dk/atira/pure/subjectarea/asjc/1100/1105 |
Faculty \ School: | Faculty of Science > School of Environmental Sciences University of East Anglia Research Groups/Centres > Theme - ClimateUEA |
UEA Research Groups: | Faculty of Science > Research Groups > Environmental Biology Faculty of Science > Research Centres > Centre for Ecology, Evolution and Conservation |
Related URLs: | |
Depositing User: | LivePure Connector |
Date Deposited: | 19 May 2020 00:18 |
Last Modified: | 09 Oct 2024 13:35 |
URI: | https://ueaeprints.uea.ac.uk/id/eprint/75207 |
DOI: | 10.1111/icad.12398 |
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