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Rose, K. C.

Publications and source records attributed to Rose, K. C..

2 recordsLinked to original sources

Metagenomic identification of novel Hepaciviridae in Australian birds reveals pegivirus recombination

The Hepaciviridae family of RNA viruses have a wide range of hosts including arthropods, fish, birds and mammals. Birds are well documented reservoirs of these viruses, owing to their physiological and ecological characteristics that facilitates rapid transmission through populations. To expand our understanding of the avian virome, with a particular focus on the identification of novel hepaciviruses, we performed metatranscriptomic sequencing on tissues taken from Australian endemic birds such as emus, pelicans as well as migratory birds (shearwater and albatross sp., egrets, herons and cuckoos) found deceased in New South Wales, Australia between 2021 and 2025. From these data we identified two novel pegiviruses -- shearwater and Australian pelican pegivirus (denoted SWPgV and APPgV) -- that provided phylogenetic evidence of a putative recombination event, reflected in incongruent tree topologies. SWPgV and APPgV form a sister clade with previously described avian-associated pegiviruses in NS3 phylogenetic trees, yet fell as a unique basal group in phylogenies based on NS5B. The lack of a clear parental lineage in NS5B domains suggests that additional divergent avian-associated pegiviruses have yet to be identified. In addition, we discovered two novel orthohepaciviruses herein named short-tailed shearwater and emu orthohepacivirus (STSHpV and EHpV) that are related to other avian-associated orthohepaciviruses, indicative of a long avian association, as well as a confirmed case of pegivirus and orthohepacivirus co-infection. Combined, these avian hepacivirus findings demonstrate the importance of tissue-based viral discovery studies in uncovering novel virus species and understanding their complex evolutionary histories.

microbiology↗

Persistence of florpyrauxifen-benzyl in sediments following application to a large oligotrophic lake to control Eurasian watermilfoil

Florpyrauxifen-benzyl (FPB) is a recently registered arylpicolinate herbicide used to control dicots including Eurasian watermilfoil (EWM). Laboratory studies indicate rapid degradation of FPB in water, but sediment persistence in aquatic systems remains poorly understood, creating uncertainty in ecological risk assessments. We evaluated the environmental fate and transport of FPB and its degradants in water, plants, and sediment following application of the herbicide to two bays of Lake George, NY. FPB was rapidly lost from the water column within 72 hours, consistent with prior studies, but persisted in sediments for at least one year. Sediment cores revealed vertical migration of FPB, which may contribute to frequent non-detects in surface sediments and potentially explain why US EPA was unable to establish sediment half-lives in aquatic systems. Measured concentrations exceeded the 28-day no observable adverse effect concentration (NOAEC) for chironomids for at least a year, highlighting the potential for long-term chronic exposure to benthic organisms. Modeled sorption and dilution scenarios aligned with field observations and indicated that circulation dynamics expanded the affected area beyond the direct treatment zones. These results demonstrate that FPB and its degradants persist longer in sediments than suggested by laboratory studies, raising important questions about long-term ecological risks, effects of repeated applications, and underestimation of sediment persistence. Long-term studies such as this are essential for understanding the fate of these compounds and for guiding informed decisions about future herbicide applications.

pharmacology and toxicology↗