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Plewnia, A.

Publications and source records attributed to Plewnia, A..

2 recordsLinked to original sources

A field-deployable eDNA metabarcoding workflow including de novo reference assembly for characterizing understudied biodiversity hotspots

Field-deployable DNA metabarcoding offers a transformative approach to biodiversity research and monitoring, yet its application remains limited due to technical constraints and a lack of reference data in poorly studied ecosystems. Combining isothermal Recombinase Polymerase Amplification (RPA) and Oxford Nanopore sequencing, we introduce a two-step approach that uses non-invasive species barcoding to directly generate reference sequences for use in environmental DNA (eDNA) metabarcoding, and enable real-time, PCR-free, and cost-effective molecular assessment of ecological communities in the field. Using an endemic and understudied tropical amphibian assemblage as a model, we demonstrate the practicality and versatility of this novel workflow. De novo generation of a reference sequence library significantly improved the accuracy and taxonomic resolution of sequence assignments from eDNA samples, particularly on the species level, in turn allowing a characterization of fine-scale patterns in community composition. Beyond generating new RPA-compatible amphibian metabarcoding primers, our results show that combining field-based eDNA metabarcoding with the offline assembly of a local reference database can bridge data gaps in molecular biodiversity monitoring, providing a scalable solution for real-time biodiversity assessments in data-deficient ecosystems. This workflow paves the way for broader deployment of molecular tools in global biodiversity hotspots - particularly in remote and resource-limited tropical regions - to directly contribute critical baseline data, and support conservation efforts in regions where they are most urgently needed.

ecology↗

Using FINDeM for rapid, CRISPR-based detection of the emerging salamandrid fungal pathogen, Batrachochytrium salamandrivorans.

AbstractThe fungal pathogen Batrachochytrium salamandrivorans (Bsal) is one of two species (the other, B. dendrobatidis/Bd) that cause amphibian chytridiomycosis, an emerging infectious disease that has been indicated in the declines of hundreds of amphibian species worldwide. While Bd has been near-globally distributed for well over a century, Bsal is a more recently emerged pathogen, having been identified just over a decade ago with current impacts localized to salamandrids in parts of Europe. However, because there is concern that Bsal will cause widespread declines if introduced to naive regions - such as the Americas where the greatest diversity of salamandrids exist - it is imperative that widespread testing and monitoring strategies be implemented to mitigate the spread of Bsal. As standard diagnostic approaches tend to be expensive, time-consuming, or require specialized instrumentation and training, we have developed a simplified, rapid, CRISPR-based approach for Bsal-DNA identification and provide suggestions for its future application.

ecology↗