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Finn, L.

Publications and source records attributed to Finn, L..

2 recordsLinked to original sources

Divergent coronaviruses discovered in the virome of lamprey with reddening syndrome

Lamprey reddening syndrome (LRS) is an emerging disease affecting pouched lamprey (Geotria australis; kanakana/piharau), a culturally and ecologically significant species in Aotearoa New Zealand. Characterised by skin haemorrhaging and elevated mortality, the aetiology of LRS has remained unresolved despite previous investigations. We used a metatranscriptomic approach to characterise viral communities in 28 lamprey from New Zealand and Tasmania, Australia, comparing diseased and presumably healthy individuals. This analysis revealed eight fish-infecting RNA viruses, seven of which were novel, including two highly divergent coronaviruses. One of these coronaviruses possessed a bi-segmented genome structure, and three lamprey were co-infected with both coronaviruses. While these coronaviruses were detected in both healthy and diseased individuals, lamprey with reddening exhibited markedly higher viral abundance, driven by elevated RNA transcripts of both viruses. This pattern suggests that increased coronavirus replication in diseased individuals may be influenced by host stress to environmental factors or co-infection with other pathogens, rather than acting as a sole causative agent of disease. Beyond identifying candidate viral associations, this study expands the known virosphere of an ancient vertebrate lineage and demonstrates the utility of genomics-informed diagnostics for investigating disease in threatened wildlife.

microbiology↗

AusAMF: database of arbuscular mycorrhizal fungal communities in Australia

MotivationArbuscular mycorrhizal (AM) fungi are integral to plant nutrient acquisition, carbon cycling, and ecosystem resilience, yet our knowledge of their biogeography is severely limited, especially in the Southern Hemisphere. Australia, despite its landmass and unique geoecological characteristics, has been vastly undersampled, leaving a significant gap in our understanding of AM fungal diversity and distribution. The AusAMF database was created to address this deficiency, the first release comprises AM fungal community data from 610 sampling locations across mainland Australia and Tasmania, collected between 2011 and 2023. Using standardised sampling, DNA extraction, sequencing methods and platforms, this database provides a robust resource for exploring spatial patterns in AM fungal diversity, community composition, and the ecological drivers shaping AM fungal biogeography. The AusAMF database will continue to be updated and maintain standardised approaches to facilitate future research into plant-mycorrhizal interactions, nutrient cycling, and to understand the broader role of AM fungi in ecosystem processes. The data here will provide the foundation for more informed management and conservation efforts in Australia while providing valuable data for global-scale analyses. Main types of variables containedGeoreferenced occurrence and abundance of high-throughput amplicon sequences of arbuscular mycorrhizal (AM) fungi. Spatial location and grainAustralia. Decimal degrees between 0.000001 - 0.1 resolution. Time period and grain2011-2023. Month and year of sampling. Major taxa and level of measurementArbuscular mycorrhizal fungi identified to family, genus, and virtual taxon (VT). Geographic occurrence and amplicon sequence abundance. Software formatInteract with data via online application. Dataset available as .csv files and raw sequencing data as .fastq files.

ecology↗