Using environmental DNA for detection of Batrachochytrium salamandrivorans in natural water

Publication date

2020-10

Authors

Spitzen ‐ van der Sluijs, Annemarieke
Stark, Tariq
DeJean, Tony
Verbrugghe, Elin
Herder, Jelger
Gilbert, Maarten JISNI 0000000506008123
Janse, Jöran
Martel, An
Pasmans, Frank
Valentini, Alice

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Article
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Abstract

Rapid, early, and reliable detection of invasive pathogenic microorganisms is essential in order to either predict or delineate an outbreak, and monitor appropriate mitigation measures. The chytrid fungus Batrachochytrium salamandrivorans is expanding in Europe, and infection with this fungus may cause massive mortality in urodelans (salamanders and newts). In this study, we designed and validated species‐specific primers and a probe for detection of B. salamandrivorans in water. In a garden pond in close proximity to the B. salamandrivorans index site in the Netherlands, B. salamandrivorans‐infected newts had been detected in 2015 and have been monitored since. In 2016 and 2017, no B. salamandrivorans was detected at this site, but in 2018 B. salamandrivorans flared up in this isolated pond which allowed validation of the technique in situ. We here present the development of an environmental DNA technique that successfully detects B. salamandrivorans DNA in natural waterbodies even at low concentrations. This technique may be further validated to play a role in B. salamandrivorans range delineation and surveillance in both natural waterbodies and in captive collections.

Keywords

amphibians, Batrachochytrium salamandrivorans, early detection, emerging infectious diseases, environmental DNA, SDG 3 - Good Health and Well-being

Citation

Spitzen ‐ van der Sluijs, A, Stark, T, DeJean, T, Verbrugghe, E, Herder, J, Gilbert, M, Janse, J, Martel, A, Pasmans, F & Valentini, A 2020, 'Using environmental DNA for detection of Batrachochytrium salamandrivorans in natural water', Environmental DNA, vol. 2, no. 4, pp. 565-571. https://doi.org/10.1002/edn3.86