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Kohl, R.

Publications and source records attributed to Kohl, R..

2 recordsLinked to original sources

Emergence and Dynamics of Usutu and West Nile Viruses in the Netherlands, 2016-2022

BackgroundMosquito-borne arboviruses, including Usutu virus (USUV) and West Nile virus (WNV), are emerging threats in Europe, with changes in climate, land use, and increased travel and trade influencing their dynamics. Understanding the emergence and establishment of these viruses in new regions is critical for informing targeted mitigation of drivers of emergence and enhancing public and wildlife health preparedness. MethodsSeven years (2016-2022) of interconnected studies were conducted in the Netherlands. Live birds were sampled by volunteer bird ringers, dead birds were referred for sampling by citizen-scientists and zoological institutions, and mosquitoes were trapped. Samples were tested for USUV and WNV using RT-PCR and screened for Orthoflavivirus antibodies using protein microarray and neutralization assays. Sequencing and phylogenetic analyses were performed. FindingsUSUV was first detected in the Netherlands in 2016, caused large outbreaks in birds until 2018, and resurged in 2022. One dominant, enzootic lineage, co-circulated alongside several limited introductions of a second lineage. A localized WNV lineage 2 outbreak occurred in live birds and mosquitoes in 2020, with another positive bird in 2022 and serological evidence of continued circulation. InterpretationWe provide the first comprehensive, multi-year documentation of two emerging arboviruses in the Netherlands. USUV was enzootically maintained over seven years and was associated with substantial bird mortality. WNV is in an early stage of establishment with no bird mortality observed. Our integrated wildlife sampling was crucial in detecting a human WNV outbreak, bringing this emerging threat to public health attention. FundingZonMw, Dutch Research Council (NWO), European Union, Government of the Netherlands

microbiology↗

Comparative genomics of Rickettsiella bacteria reveal variable metabolic traits involved in symbiotic interactions with arthropods

Members of the Rickettsiella genus (order: Legionellales) are emerging as widespread bacteria associated with insects, arachnids, and crustaceans. While some Rickettsiella strains are highly virulent pathogens, others are maternally inherited endosymbionts that manipulate arthropod phenotypes, including the induction of defensive symbiosis and cytoplasmic incompatibility. However, the genomic diversity of Rickettsiella remains largely unexplored, and their genetic potential to induce complex phenotypes in arthropods is only partially understood. In this study, we sequenced five new Rickettsiella genomes isolated from three tick species. Through comparative genomics, we observed that Rickettsiella members share similar metabolic capabilities, and collectively lack virulence genes from pathogenic Legionellales. Additional analysis of Rickettsiella genomes revealed significant variability in metabolic properties related to endosymbiosis. Specifically, their capacity to biosynthesize certain B vitamins and heme varies, suggesting a functional role of some Rickettsiella strains in the nutrition of their arthropod hosts. Some Rickettsiella genomes harbour homologs of Wolbachia cif genes, the cause of Wolbachia-induced cytoplasmic incompatibility,, suggesting that Rickettsiella may use a similar molecular mechanism to manipulate the reproduction of their arthropod hosts. Phylogenomics further revealed that tick-borne Rickettsiella exhibit distinct evolutionary origins within the genus, indicating that Rickettsiella have undergone repeated horizontal transfers between ticks and other arthropods.

evolutionary biology↗