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Plewnia, A.

Publications and source records attributed to Plewnia, A..

4 recordsLinked to original sources

Imminent invasion of the chytrid fungus threatens the last naive amphibian biodiversity hotspots

While the amphibian chytrid fungus Batrachochytrium dendrobatidis (Bd) is driving catastrophic biodiversity loss worldwide, some amphibian communities persist seemingly unaffected despite occurring in climates conducive to pathogen establishment. These amphibian communities may remain epidemiologically naive. As mitigation of Bd is rarely successful after establishment, identifying remaining Bd-free refuges is imperative. Presently, the only known large-scale Bd-free refuge is the island of New Guinea (NG), safeguarding Australasias amphibian phylogenetic diversity otherwise devastated by Bd. Following extensive multi-year disease surveillance, we here uncover a second large-scale Bd-free refuge in the Sierra Nevada de Santa Marta (SNSM), a Neotropical biodiversity hotspot in northern Colombia. We detected no evidence of Bd in SNSM-wide screening, while we uncovered the presence of hypervirulent Bd-GPL in adjacent areas of the tropical Andes. Population genomic analyses in an SNSM-endemic anuran found no evidence for demographic bottlenecks indicative of cryptic epizootic decline. Niche modelling highlights the high risk for Bd establishment and Bd-induced declines in both the SNSM and NG, and the important role of lowland environmental barriers in restricting Bd invasion. Infection trials using three SNSM-endemic amphibians reveal varying disease susceptibility. Together, these data identify the SNSM as an epidemiologically naive refuge likely facing imminent Bd invasion, which could result in the loss of at least 25 endemic amphibian species. We highlight the urgent need for proactive conservation action and strict implementation of biosecurity to safeguard the unique and vast amphibian diversity of the worlds last major Bd-free refuges. Significance StatementAmphibian chytridiomycosis caused by Batrachochytrium dendrobatidis (Bd) has driven unprecedented global biodiversity loss. The Neotropics and Australasia comprise epicenters of declines. Identifying remaining Bd-free refuges is crucial to curb further amphibian extinctions, but so far contemporary absence of Bd has only been demonstrated for New Guinea. Here we identify the last known major Bd-free biodiversity hotspot in the Neotropics: the Sierra Nevada de Santa Marta (SNSM) in Colombia. Our results show that amphibian communities in this hotspot are immunologically naive despite occurrence of hypervirulent Bd lineages nearby and climatic conditions within the SNSM conducive to Bd-induced declines. This creates an imminent risk for Bd-driven declines and highlights the urgent need for preventive actions to avert another wave of biodiversity loss.

ecology↗

Metabarcoding and microtomography reveal new insights into the dietary niche of near-extinct amphibians

Harlequin toads (Atelopus) are among the most threatened vertebrates, yet their trophic ecology remains poorly understood due to the virtual disappearance of most populations and non-invasive sampling constraints. Here, we combine DNA metabarcoding of faecal samples from six surviving harlequin toad species from Ecuador with synchrotron-based microtomography of historic, fluid-preserved material of seven species across all major clades of the genus to assess dietary composition. Metabarcoding revealed a diverse invertebrate diet with marked ecological segregation between habitats, suggesting specialization on Hymenoptera in species inhabiting low to mid elevation forests and broader prey spectra in high-Andean taxa. Synchrotron scanning for the first time allowed non-destructive recovery of 3D-images of arthropod exoskeletons from the intestinal system of amphibians, confirming hymenopterans as key prey for forest-associated Atelopus in historical specimens. This dual approach overcomes the limitations of traditional and single-method studies, offering a scalable, non-invasive framework for dietary analyses. By providing curated step-by-step commands for sequence processing, we further aim to make dietary metabarcoding more accessible to zoologists. Our study substantially expands dietary data for near-extinct harlequin toads and supports conservation efforts with urgently needed ecological insights as a baseline for adapted conservation breeding and integrative conservation of trophic webs.

zoology↗

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↗