Monitoring marine pollution effects through targeted environmental DNA (eDNA) testing in the Pacific northwest.
作者:Neha Acharya-Patel, Karen Cram, Emma T. Groenwold, Hajeong Lee, Abigail G. Keller, Breanna M. Bomback, Shirley Lyons, René L. Warren, Lauren Coombe, C. Lowe, Lauren C. Bergman, Farida Bishay, I. Birol, T. Macdonald, C. Helbing · 发表于:Marine Pollution Bulletin · 年份:2025 · DOI:10.1016/j.marpolbul.2025.118036 · 被引用次数:7 · 研究领域:Medicine
Globally, coastal waters experience degradation from pollution associated with multiple discharges, including industrial and agricultural runoff, and municipal wastewater. Certain benthic infaunal taxa are tolerant of high nutrient input and anoxic conditions, while others are sensitive to these conditions. Using these indicator taxa as proxies for assessing organic enrichment is well established to characterize subsequent pollution impacts. Conventional assessment of macroinfauna involves the detailed analysis of each individual specimen within a sample by taxonomic experts, a resource intensive process. As an alternative, we developed sensitive quantitative polymerase chain reaction (qPCR) assays to detect these indicator taxa in a scalable and reliable way. Using whole genome shotgun sequencing, we generated full mitogenome sequences of selected indicator macroinfaunal polychaetes routinely used for monitoring programs in Pacific Northwest marine environments. These sequences were used to design five new, rigorously validated environmental DNA (eDNA) assays capable of detecting low levels of DNA that can be isolated from environmental samples. For nine sites at a wastewater treatment plant outfall in Vancouver, British Columbia, we tested three eDNA sample collection types: active filtration, a passive dip filter from water containing collected macroinfauna, and active filtration from water collected near the sea floor. Generalized linear models indicated that eDNA signal ...