Identifying error and accurately interpreting environmental DNA metabarcoding results: A case study to detect vertebrates at arid zone waterholes

被引:32
|
作者
Furlan, Elise M. [1 ]
Davis, Jenny [2 ]
Duncan, Richard P. [1 ]
机构
[1] Univ Canberra, Inst Appl Ecol, Bruce, ACT, Australia
[2] Charles Darwin Univ, Res Inst Environm & Livelihoods, Coll Engn IT & Environm, Casuarina, NT, Australia
关键词
arid zone biodiversity; eDNA metabarcoding; false detection; false positive; terrestrial fauna; type I error; BIODIVERSITY ASSESSMENT; BUFFER ZONES; PCR; SENSITIVITY; DIVERSITY; INSIGHTS; BARCODES; HOLOCENE; SPACE;
D O I
10.1111/1755-0998.13170
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Environmental DNA (eDNA) metabarcoding surveys enable rapid, noninvasive identification of taxa from trace samples with wide-ranging applications from characterizing local biodiversity to identifying food-web interactions. However, the technique is prone to error from two major sources: (a) contamination through foreign DNA entering the workflow, and (b) misidentification of DNA within the workflow. Both types of error have the potential to obscure true taxon presence or to increase taxonomic richness by incorrectly identifying taxa as present at sample sites, but multiple error sources can remain unaccounted for in metabarcoding studies. Here, we use data from an eDNA metabarcoding study designed to detect vertebrate species at waterholes in Australia's arid zone to illustrate where and how in the workflow errors can arise, and how to mitigate those errors. We detected the DNA of 36 taxa spanning 34 families, 19 orders and five vertebrate classes in water samples from waterholes, demonstrating the potential for eDNA metabarcoding surveys to provide rapid, noninvasive detection in remote locations, and to widely sample taxonomic diversity from aquatic through to terrestrial taxa. However, we initially identified 152 taxa in the samples, meaning there were many false positive detections. We identified the sources of these errors, allowing us to design a stepwise process to detect and remove error, and provide a template to minimize similar errors that are likely to arise in other metabarcoding studies. Our findings suggest eDNA metabarcoding surveys need to be carefully conducted and screened for errors to ensure their accuracy.
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页码:1259 / 1276
页数:18
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