Environmental DNA sequencing data from algal blooms in Lake Erie using Oxford Nanopore MinION

bioRxiv(2022)

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摘要
Harmful Algal Blooms (HABs) pose a significant and increasing risk, both to human health and to the Blue Economy. Genomics approaches to early detection promise to help mitigate these risks. We have developed and prototyped HABSSED (HAB Surveillance by Sequencing of Environmental DNA), a portable, reliable, rapid, low-cost pipeline for detecting HABs in the field using 3rd generation sequencing with the Oxford Nanopore MinION device. We demonstrated the efficacy of our approach by sequencing existing samples collected from a National Oceanic and Atmospheric Administration (NOAA) Great Lakes Environmental Research Laboratory (GLERL) on Lake Erie. We sequenced environmental DNA (eDNA) from samples drawn before, during, and after a Microcystis bloom, and estimate the abundanced of HAB-associated taxa. While sequencing results showed some evidence of human and E. coli contamination, we find that the abundance of Mycrocystis and other HAB-associated orgnisms significantly differs between pre- and post-bloom environments. Here we describe the publicly available sequencing data that was generated as part of this research, which is available in the Sequence Read Archive (SRA) under accession number PRJNA812770. ### Competing Interest Statement The authors have declared no competing interest.
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environmental dna,lake erie,algal blooms
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