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Biology subjects

Gyurkovszky, M.

Publications and source records attributed to Gyurkovszky, M..

2 recordsLinked to original sources

A climatically representative analysis of Hungarian Ixodes ricinus tick bacteriome

BackgroundThe microbial communities of disease vectors may represent a key feature in several biological functions and thus deserve special attention in light of climate change and the consequent need to develop novel control strategies. Nevertheless, vector-borne microbial networks are still poorly understood. Assessing vectors microbial interactions and climatic dependencies may contribute to better-estimating pathogen transmission characteristics, public health risks and the urgency for control steps to be taken. MethodsIn a climatically representative country-wide survey, Ixodes ricinus ticks were collected from 17 locations in Hungary. Using shotgun metagenomic sequencing, the bacteriome composition was analyzed by investigating the relationship between the abundances of nymphs and females in various climatic environments. ResultsBacterial composition on the genus level revealed a significant difference between the samples from females and nymphs. Within the core bacteriome, females and nymphs showed significant variation in the following genera: Arsenophonus, Bacillus, Candidatus Midichloria, Rhodococcus, Sphingomonas, Staphylococcus, Wolbachia. Among females, according to temperature strata, the following were found differentiating: Curtobacterium, Pseudomonas, Sphingomonas. There was no genus with a significant difference in precipitation categories for females. In the nymphs, Curtobacterium showed significant variation between temperature and Bacillus and Curtobacterium for various precipitation levels. Based on the full sample set, Arsenophonus and Wolbachia correlated positively which we assumed to have occurred due to the presence of I. hookeri. ConclusionsThe composition of vector-borne bacteriome members showed significant alterations at sampling points with different climatic conditions and development stages of the tick hosts. Our findings not only pave the way towards understanding tick-borne bacterial networks and interdependencies but also shed light on the high potential for the presence of a possible biological tick control species, the tick parasitoid, Ixodiphagus hookeri based on related bacteriome patterns. The results of conscious tick microbiome assessment studies may contribute to precision tick control strategies of the future.

genomics↗

First detection of Ixodiphagus hookeri (Hymenoptera: Encyrtidae) in Ixodes ricinus ticks (Acari: Ixodidae) from multiple locations of Hungary

The parasiotid wasp, Ixodiphagus hookeri (Hymenoptera: Encyrtidae) is the natural enemy of a wide range of hard and soft tick species. While these encyrtid wasps are supposed to be distributed worldwide, only few studies report about its actual appearance patterns around the globe. Within a shotgun sequencing based metagenome analysis, the occurrence of I. hookeri was screened at multiple Ixodes ricinus (Acari: Ixodidae) tick sampling points of Hungary, to contribute to the assessment of the appearance patterns of the parasitoid wasps in Central Europe. To our knowledge, the first report of the species in Hungary and the description of the southernmost I. hookeri associated geoposition in Central Europe took place within our study. I. hookeri infested I. ricinus nymphs were detected at five sampling points of Hungary. The results show that the exact distribution range of I. hookeri is still barely studied. At the same time, unprecedented public health issues being brought by climate change might require steps towards the exploitation of the tick biocontrol potential or ecological bioindicator role of the parasitoid wasp in the future.

genomics↗