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Fine-tuning for the tropics: Application of eDNA technology for invasive fish detection in tropical freshwater ecosystems

journal contribution
posted on 2022-04-12, 01:00 authored by Heather LA Robson, Tansyn H Noble, Richard J Saunders, Simon RobsonSimon Robson, Damien W Burrows, Dean R Jerry
Invasive species pose a major threat to aquatic ecosystems. Their impact can be particularly severe in tropical regions, like those in northern Australia, where >20 invasive fish species are recorded. In temperate regions, environmental DNA (eDNA) technology is gaining momentum as a tool to detect aquatic pests, but the technology's effectiveness has not been fully explored in tropical systems with their unique climatic challenges (i.e. high turbidity, temperatures and ultraviolet light). In this study, we modified conventional eDNA protocols for use in tropical environments using the invasive fish, Mozambique tilapia (Oreochromis mossambicus) as a detection model. We evaluated the effects of high water temperatures and fish density on the detection of tilapia eDNA, using filters with larger pores to facilitate filtration. Large-pore filters (20 μm) were effective in filtering turbid waters and retaining sufficient eDNA, whilst achieving filtration times of 2-3 min per 2-L sample. High water temperatures, often experienced in the tropics (23, 29, 35 °C), did not affect eDNA degradation rates, although high temperatures (35 °C) did significantly increase fish eDNA shedding rates. We established a minimum detection limit for tilapia (1 fish/0.4 megalitres/after 4 days) and found that low water flow (3.17 L/s) into ponds with high fish density (>16 fish/0.4 megalitres) did not affect eDNA detection. These results demonstrate that eDNA technology can be effectively used in tropical ecosystems to detect invasive fish species.

Funding

Category 4 - CRC Research Income

History

Volume

16

Issue

4

Start Page

922

End Page

932

Number of Pages

11

eISSN

1755-0998

ISSN

1755-098X

Location

England

Publisher

Wiley

Language

eng

Peer Reviewed

  • Yes

Open Access

  • No

Acceptance Date

2016-01-16

External Author Affiliations

James Cook University

Era Eligible

  • Yes

Medium

Print-Electronic

Journal

Molecular Ecology Resources