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Environmental DNA allows upscaling spatial patterns of biodiversity in freshwater ecosystems
by
Carraro, Luca
, Altermatt, Florian
, Mächler, Elvira
, Wüthrich, Remo
in
49/23
/ 631/158/2459
/ 631/158/672
/ 704/158/2452
/ 704/242
/ Animals
/ Aquatic ecosystems
/ Aquatic insects
/ Balances (scales)
/ Biodiversity
/ Biodiversity hot spots
/ Biomonitoring
/ Conservation
/ Deoxyribonucleic acid
/ DNA
/ DNA, Environmental - chemistry
/ DNA, Environmental - genetics
/ Ecosystem
/ Environmental DNA
/ First principles
/ Fresh water
/ Freshwater ecosystems
/ Grain size
/ High resolution
/ Humanities and Social Sciences
/ Hydrology
/ Insecta - classification
/ Insecta - genetics
/ Insects
/ Model accuracy
/ multidisciplinary
/ Rivers - chemistry
/ Science
/ Science (multidisciplinary)
/ Spatial discrimination
/ Spatial resolution
/ Water analysis
/ Water sampling
/ Wildlife conservation
2020
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Environmental DNA allows upscaling spatial patterns of biodiversity in freshwater ecosystems
by
Carraro, Luca
, Altermatt, Florian
, Mächler, Elvira
, Wüthrich, Remo
in
49/23
/ 631/158/2459
/ 631/158/672
/ 704/158/2452
/ 704/242
/ Animals
/ Aquatic ecosystems
/ Aquatic insects
/ Balances (scales)
/ Biodiversity
/ Biodiversity hot spots
/ Biomonitoring
/ Conservation
/ Deoxyribonucleic acid
/ DNA
/ DNA, Environmental - chemistry
/ DNA, Environmental - genetics
/ Ecosystem
/ Environmental DNA
/ First principles
/ Fresh water
/ Freshwater ecosystems
/ Grain size
/ High resolution
/ Humanities and Social Sciences
/ Hydrology
/ Insecta - classification
/ Insecta - genetics
/ Insects
/ Model accuracy
/ multidisciplinary
/ Rivers - chemistry
/ Science
/ Science (multidisciplinary)
/ Spatial discrimination
/ Spatial resolution
/ Water analysis
/ Water sampling
/ Wildlife conservation
2020
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Environmental DNA allows upscaling spatial patterns of biodiversity in freshwater ecosystems
by
Carraro, Luca
, Altermatt, Florian
, Mächler, Elvira
, Wüthrich, Remo
in
49/23
/ 631/158/2459
/ 631/158/672
/ 704/158/2452
/ 704/242
/ Animals
/ Aquatic ecosystems
/ Aquatic insects
/ Balances (scales)
/ Biodiversity
/ Biodiversity hot spots
/ Biomonitoring
/ Conservation
/ Deoxyribonucleic acid
/ DNA
/ DNA, Environmental - chemistry
/ DNA, Environmental - genetics
/ Ecosystem
/ Environmental DNA
/ First principles
/ Fresh water
/ Freshwater ecosystems
/ Grain size
/ High resolution
/ Humanities and Social Sciences
/ Hydrology
/ Insecta - classification
/ Insecta - genetics
/ Insects
/ Model accuracy
/ multidisciplinary
/ Rivers - chemistry
/ Science
/ Science (multidisciplinary)
/ Spatial discrimination
/ Spatial resolution
/ Water analysis
/ Water sampling
/ Wildlife conservation
2020
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Environmental DNA allows upscaling spatial patterns of biodiversity in freshwater ecosystems
Journal Article
Environmental DNA allows upscaling spatial patterns of biodiversity in freshwater ecosystems
2020
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Overview
The alarming declines of freshwater biodiversity call for efficient biomonitoring at fine spatiotemporal scales, such that conservation measures be grounded upon accurate biodiversity data. Here, we show that combining environmental DNA (eDNA) extracted from stream water samples with models based on hydrological first principles allows upscaling biodiversity estimates for aquatic insects at very high spatial resolution. Our model decouples the diverse upstream contributions to the eDNA data, enabling the reconstruction of taxa distribution patterns. Across a 740-km
2
basin, we obtain a space-filling biodiversity prediction at a grain size resolution of 1-km long stream sections. The model’s accuracy in matching direct observations of aquatic insects’ local occurrence ranges between 57–100%. Our results demonstrate how eDNA can be used for high-resolution biodiversity assessments in rivers with minimal prior knowledge of the system. Our approach allows identification of biodiversity hotspots that could be otherwise overlooked, enabling implementation of focused conservation strategies.
Biomonitoring via environmental DNA (eDNA) is an important conservation tool for freshwater ecosystems, but this is complicated by eDNA movement downstream. Here, Carraro et al. develop and test an approach to reconstruct high-resolution spatial biodiversity patterns from freshwater eDNA.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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