Projection range of eDNA analysis in marshes: a suggestion from the Siberian salamander (Salamandrella keyserlingii) inhabiting the Kushiro marsh, Japan

Author:

Takeshita Daiki1,Terui Shigeharu2,Ikeda Kousuke3,Mitsuzuka Takashi3ORCID,Osathanunkul Maslin45ORCID,Minamoto Toshifumi1ORCID

Affiliation:

1. Graduate School of Human Development and Environment, Kobe University, Kobe, Hyogo, Japan

2. NPO PEG, Kushiro, Hokkaido, Japan

3. Pacific Consultants Co., LTD., Chiyoda, Tokyo, Japan

4. Department of Biology, Faculty of Science, Chiang Mai University, Amphur Muang, Chiang Mai, Thailand

5. Research Center in Bioresources for Agriculture, Industry and Medicine, Chiang Mai University, Amphur Muang, Chiang Mai, Thailand

Abstract

Background Freshwater ecosystems are rapidly declining. The Siberian salamander (Salamandrella keyserlingii) which inhabits the Kushiro marsh in Hokkaido, Japan has lost some habitat due to human activity. There are many challenges associated with conventional monitoring methods, including cost, the need for specialist personnel, environmental impact, and ability to detect the presence of this species; thus, we investigated the feasibility of using environmental DNA (eDNA) analysis to detect its presence and identify its breeding grounds. Methods We performed tank experiments to confirm eDNA emission from egg sacs, larvae, and adult Siberian salamanders in the water. We also performed water sampling and visual observation of egg sacs in the Kushiro marsh during the end of the breeding season and the larval season. Results The tank experiments found eDNA emission from all growth stages. It also implied concentrated emissions just after spawning and after hatching, and limited emissions during the incubation phase in egg sacs. We also detected eDNA in the field, likely reflecting the distribution of egg sacs or larvae. Combining this data with visual observations, it was determined that the eDNA results from the field were best explained by the number of egg sacs within 7–10 m of the sampling point. Conclusions The results of this investigation show that the breeding sites and habitats of marshland species can successfully be monitored using eDNA analysis. They also suggest that the eDNA results from the marshes may reflect the biomass that is in close range to the sampling point. These results support the increased use of eDNA analysis in marshes and provide knowledge that could improve the interpretation of future results.

Funder

JSPS KAKENHI

Environment Research and Technology Development Fund

Chiang Mai University

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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