Fieldable Environmental DNA Sequencing to Assess Jellyfish Biodiversity in Nearshore Waters of the Florida Keys, United States
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Published:2021-04-13
Issue:
Volume:8
Page:
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ISSN:2296-7745
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Container-title:Frontiers in Marine Science
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language:
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Short-container-title:Front. Mar. Sci.
Author:
Ames Cheryl Lewis,Ohdera Aki H.,Colston Sophie M.,Collins Allen G.,Fitt William K.,Morandini André C.,Erickson Jeffrey S.,Vora Gary J.
Abstract
Recent advances in molecular sequencing technology and the increased availability of fieldable laboratory equipment have provided researchers with the opportunity to conduct real-time or near real-time gene-based biodiversity assessments of aquatic ecosystems. In this study, we developed a workflow and portable kit for fieldable environmental DNA sequencing (FeDS) and tested its efficacy by characterizing the breadth of jellyfish (Medusozoa) taxa in the coastal waters of the Upper and Lower Florida Keys. Environmental DNA was isolated from seawater collection events at eight sites and samples were subjected to medusozoan 16S rRNA gene and metazoan mitochondrial cytochrome oxidase 1 gene profiling via metabarcoding onsite. In total, FeDS yielded 175,326 processed sequence reads providing evidence for 53 medusozoan taxa. Our most salient findings revealed eDNA from: (1) two venomous box jellyfish (Cubozoa) species, including taxa whose stings cause the notorious Irukandji envenomation syndrome; (2) two species of potentially introduced stalked jellyfish (Staurozoa); and (3) a likely cryptic species of upside-down jellyfish (Scyphozoa). Taken together, the results of this study highlight the merits of FeDS in conducting biodiversity surveys of endemic and introduced species, and as a potential tool for assessing envenomation and/or conservation-related threats.
Funder
National Academies of Sciences, Engineering, and Medicine
Publisher
Frontiers Media SA
Subject
Ocean Engineering,Water Science and Technology,Aquatic Science,Global and Planetary Change,Oceanography
Reference93 articles.
1. Cassiosomes are stinging-cell structures in the mucus of the upside-down jellyfish Cassiopea xamachana.;Ames;Commun. Biol.,2020
2. High accuracy base calls in Nanopore sequencing;Balachandran;Proceedings of the 2017 6th International Conference on Bioinformatics and Biomedical Science, ICBBS 2017 Association for Computing Machinery,2017
3. Cause and efects of Irukandji stingings.;Barnes;Med. J. Aust.,1964
4. Nonindigenous marine jellyfish: invasiveness, invasibility and impacts;Bayha;Jellyfish Blooms,2013
5. Marine environmental DNA biomonitoring reveals seasonal patterns in biodiversity and identifies ecosystem responses to anomalous climatic events.;Berry;PLoS Genet,2019
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