Patrick K. Nichols, Cécile M. Vimond, Peter B. Marko
{"title":"在资源有限的项目中用于海洋生物监测的简单被动环境DNA采样器","authors":"Patrick K. Nichols, Cécile M. Vimond, Peter B. Marko","doi":"10.1002/cpz1.70186","DOIUrl":null,"url":null,"abstract":"<p>The analysis of environmental DNA (eDNA) is a powerful tool for rapidly assessing biodiversity across aquatic ecosystems. Its implementation remains limited, however, by the logistical complexity of standard eDNA workflows, which often require specialized equipment and expertise. This protocol presents passive environmental DNA samplers (PEDS) as a simplified, low-cost alternative to conventional active water filtration methods. PEDS are designed for ease of use, enabling ambient eDNA capture without pumps or filtration systems, and allowing for rapid deployment and retrieval with short field exposures (∼15 min). We detail procedures for construction, deployment, and retrieval, alongside recommendations for minimizing contamination and optimizing DNA recovery. DNA is extracted from cotton membranes housed within the PEDS unit using a modified Qiagen DNeasy Blood & Tissue protocol. The protocol was validated at the Papahānaumokuākea Marine National Monument, Hawaiʻi, where PEDS were used to detect <i>Chondria tumulosa</i>, a cryptogenic nuisance alga, as part of ongoing conservation efforts. The use of simplistic PEDS and cotton membranes provides a cost-effective and scalable method for researchers seeking to implement eDNA-based monitoring in marine and other aquatic environments. © 2025 Wiley Periodicals LLC.</p><p><b>Basic Protocol 1</b>: Assembly and deployment of PEDS on stationary buoys</p><p><b>Alternate Protocol</b>: Assembly and deployment of PEDS on roving surveyors</p><p><b>Basic Protocol 2</b>: Processing and storage of sample membranes</p><p><b>Support Protocol 1</b>: Extraction of DNA from PEDS membranes</p><p><b>Support Protocol 2</b>: Amplification of extracted DNA by PCR</p>","PeriodicalId":93970,"journal":{"name":"Current protocols","volume":"5 8","pages":""},"PeriodicalIF":2.2000,"publicationDate":"2025-08-12","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Simple Passive Environmental DNA Samplers for Marine Biomonitoring in Resource-Limited Programs\",\"authors\":\"Patrick K. 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DNA is extracted from cotton membranes housed within the PEDS unit using a modified Qiagen DNeasy Blood & Tissue protocol. The protocol was validated at the Papahānaumokuākea Marine National Monument, Hawaiʻi, where PEDS were used to detect <i>Chondria tumulosa</i>, a cryptogenic nuisance alga, as part of ongoing conservation efforts. 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引用次数: 0
Simple Passive Environmental DNA Samplers for Marine Biomonitoring in Resource-Limited Programs
The analysis of environmental DNA (eDNA) is a powerful tool for rapidly assessing biodiversity across aquatic ecosystems. Its implementation remains limited, however, by the logistical complexity of standard eDNA workflows, which often require specialized equipment and expertise. This protocol presents passive environmental DNA samplers (PEDS) as a simplified, low-cost alternative to conventional active water filtration methods. PEDS are designed for ease of use, enabling ambient eDNA capture without pumps or filtration systems, and allowing for rapid deployment and retrieval with short field exposures (∼15 min). We detail procedures for construction, deployment, and retrieval, alongside recommendations for minimizing contamination and optimizing DNA recovery. DNA is extracted from cotton membranes housed within the PEDS unit using a modified Qiagen DNeasy Blood & Tissue protocol. The protocol was validated at the Papahānaumokuākea Marine National Monument, Hawaiʻi, where PEDS were used to detect Chondria tumulosa, a cryptogenic nuisance alga, as part of ongoing conservation efforts. The use of simplistic PEDS and cotton membranes provides a cost-effective and scalable method for researchers seeking to implement eDNA-based monitoring in marine and other aquatic environments. © 2025 Wiley Periodicals LLC.
Basic Protocol 1: Assembly and deployment of PEDS on stationary buoys
Alternate Protocol: Assembly and deployment of PEDS on roving surveyors
Basic Protocol 2: Processing and storage of sample membranes
Support Protocol 1: Extraction of DNA from PEDS membranes
Support Protocol 2: Amplification of extracted DNA by PCR