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Biology subjects

Zavodna, M.

Publications and source records attributed to Zavodna, M..

2 recordsLinked to original sources

Recovering historical fish eDNA from museum-preserved Antarctic filter feeders via non-destructive metabarcoding.

O_LIRecent technical advances have significantly enhanced the value of museum specimens for molecular research, with metagenomic and metabarcoding approaches expanding further the utility of museum collections. However, given the finite number of specimens, there is a critical need to move past destructive DNA extraction approaches and to explore non-destructive techniques. C_LIO_LIIn this study, we evaluated the feasibility of extracting historical fish eDNA from the ethanol preservative used to store Antarctic museum specimens. We compared a variety of extraction methods - centrifugation, evaporation, filtration, and precipitation - using ten replicate samples per treatment for statistical analyses. To assess potential differences in preservative-derived eDNA recovery across different filter-feeding taxonomic groups, we included a Bryozoa and two Porifera, i.e., Demospongiae and Hexactinellida. C_LIO_LIComparative analyses with tissue biopsies revealed that the total genomic DNA was significantly reduced for non-destructive approaches. However, 10 ml ethanol filtration performed equal to, or in some instances, outperformed tissue biopsies when investigating the historical eDNA of Antarctic fish using a 16S rRNA metabarcoding approach, both for the number of species detected (-diversity) and community characterisation ({beta}-diversity). C_LIO_LIOur findings demonstrate the potential of ethanol preservative as a valuable, non-destructive source of historical fish eDNA from museum-stored filter-feeding specimens. These results highlight the viability of non-destructive sampling for molecular research on museum collections, preserving specimen integrity while enabling biodiversity assessments. Further refinement of non-destructive eDNA extraction could expand its applicability across taxa, collection types, and preservation methods, ensuring the long-term sustainability of museum-based genomic research. C_LI

ecology↗

Unlocking Antarctic molecular time-capsules - recovering historical environmental DNA from museum-preserved sponges

Marine sponges have recently emerged as efficient natural environmental DNA (eDNA) samplers. The ability of sponges to accumulate eDNA provides an exciting opportunity to reconstruct contemporary communities and ecosystems with high temporal and spatial precision. However, the use of historical eDNA (heDNA), trapped within the vast number of specimens stored in scientific collections, opens up the opportunity to begin to reconstruct the communities and ecosystems of the past. Here, using a variety of Antarctic sponge specimens stored in an extensive marine invertebrate collection, we were able to recover information on Antarctic fish biodiversity from specimens up to 20 years old. We successfully recovered 64 fish heDNA signals from 27 sponge specimens. Alpha diversity measures did not differ among preservation methods, but sponges stored frozen had a significantly different fish community composition compared to those stored dry or in ethanol. Our results show that we were consistently and reliably able to extract the heDNA trapped within marine sponge specimens, thereby enabling the reconstruction and investigation of communities and ecosystems of the recent past with a spatial and temporal resolution previously unattainable. Future research into heDNA extraction from other preservation methods, as well as the impact of specimen age and collection method will strengthen and expand the opportunities for this novel resource to access new knowledge on ecological change during the last century.

molecular biology↗