Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Tick-Borne Pathogens Shape the Native Microbiome Within Tick Vectors

View through CrossRef
Ticks are blood-feeding arthropods and transmit a variety of medically important viral, bacterial, protozoan pathogens to animals and humans. Ticks also harbor a diverse community of microbes linked to their biological processes, such as hematophagy, and hence affect vector competence. The interactions between bacterial and/or protozoan pathogens and the tick microbiome is a black-box, and therefore we tested the hypothesis that the presence of a protozoan or bacterial pathogen will alter the microbial composition within a tick. Hence, this study was designed to define the microbial composition of two tick species, Hyalomma (H.) anatolicum and Rhipicephalus (R.) microplus. We used a combination of PCR based pathogen (Anaplasma marginale and Theileria species) and symbiont (Wolbachia species) identification followed by metagenomic sequencing and comparison of the microbial communities in PCR positive and negative ticks. A total of 1786 operational taxonomic units was identified representing 25 phyla, 50 classes, and 342 genera. The phylum Proteobacteria, Firmicutes, Actinobacteriota, and Bacteroidota were the most represented bacteria group. Alpha and beta diversity were not significantly affected in the presence or absence of Theileria sp. and A. marginale as see with H. anatolicum ticks. Interestingly, bacterial communities were significantly reduced in Theileria sp. infected R. microplus ticks, while also exhibiting a significant reduction in microbial richness and evenness. Putting these observations together, we referred to the effect the presence of Theileria sp. has on R. microplus a “pathogen-induced dysbiosis”. We also identify the presence of Plasmodium falciparum, the causative agent of human malaria from the microbiome of both H. anatolicum and R. microplus ticks. These findings support the presence of a “pathogen-induced dysbiosis” within the tick and further validation experiments are required to investigate how they are important in the vector competence of ticks. Understanding the mechanism of “pathogen-induced dysbiosis” on tick microbial composition may aid the discovery of intervention strategies for the control of emerging tick-borne infections.
Title: Tick-Borne Pathogens Shape the Native Microbiome Within Tick Vectors
Description:
Ticks are blood-feeding arthropods and transmit a variety of medically important viral, bacterial, protozoan pathogens to animals and humans.
Ticks also harbor a diverse community of microbes linked to their biological processes, such as hematophagy, and hence affect vector competence.
The interactions between bacterial and/or protozoan pathogens and the tick microbiome is a black-box, and therefore we tested the hypothesis that the presence of a protozoan or bacterial pathogen will alter the microbial composition within a tick.
Hence, this study was designed to define the microbial composition of two tick species, Hyalomma (H.
) anatolicum and Rhipicephalus (R.
) microplus.
We used a combination of PCR based pathogen (Anaplasma marginale and Theileria species) and symbiont (Wolbachia species) identification followed by metagenomic sequencing and comparison of the microbial communities in PCR positive and negative ticks.
A total of 1786 operational taxonomic units was identified representing 25 phyla, 50 classes, and 342 genera.
The phylum Proteobacteria, Firmicutes, Actinobacteriota, and Bacteroidota were the most represented bacteria group.
Alpha and beta diversity were not significantly affected in the presence or absence of Theileria sp.
and A.
marginale as see with H.
anatolicum ticks.
Interestingly, bacterial communities were significantly reduced in Theileria sp.
infected R.
microplus ticks, while also exhibiting a significant reduction in microbial richness and evenness.
Putting these observations together, we referred to the effect the presence of Theileria sp.
has on R.
microplus a “pathogen-induced dysbiosis”.
We also identify the presence of Plasmodium falciparum, the causative agent of human malaria from the microbiome of both H.
anatolicum and R.
microplus ticks.
These findings support the presence of a “pathogen-induced dysbiosis” within the tick and further validation experiments are required to investigate how they are important in the vector competence of ticks.
Understanding the mechanism of “pathogen-induced dysbiosis” on tick microbial composition may aid the discovery of intervention strategies for the control of emerging tick-borne infections.

Related Results

Socio-Demographic and Eco-Epidemiological Parameters of Tick-Borne Infections Morbidity in Baikal Region
Socio-Demographic and Eco-Epidemiological Parameters of Tick-Borne Infections Morbidity in Baikal Region
The aim of the work was to compare the main socio-demographic and eco-epidemiological parameters of tick-borne viral encephalitis, tick-borne borrelioses and tick-borne rickettsios...
Occurrence of Tick-Borne Pathogens in Ticks Collected from Cattle at Iringa and Kilombero District Councils, Tanzania
Occurrence of Tick-Borne Pathogens in Ticks Collected from Cattle at Iringa and Kilombero District Councils, Tanzania
Abstract Background Ticks and tick-borne diseases undermine livestock production and productivity in Tanzania. Cattle in Tanzania are challenged by several tick species an...
Characterisation and zoonotic risk of tick viruses in public datasets
Characterisation and zoonotic risk of tick viruses in public datasets
AbstractTick-borne viruses remain a substantial zoonotic risk worldwide, so knowledge of the diversity of tick viruses has potential health consequences. Despite their importance, ...
Prevalence of Ehrlichia-, Babesia-, and Hepatozoon-infected brown dog ticks in Khon Kaen Province, Northeast Thailand
Prevalence of Ehrlichia-, Babesia-, and Hepatozoon-infected brown dog ticks in Khon Kaen Province, Northeast Thailand
Background and Aim: The brown dog tick, Rhipicephalus sanguineus sensu lato, is the most common tick found on domestic dogs in Southeast Asia, including Thailand. Canine tick-borne...
A Review of Tick and Tick Control Strategies in Pakistan
A Review of Tick and Tick Control Strategies in Pakistan
Background: In Pakistan, ticks are a major problem for livestock and humans. These can spread a wide range of infections including protozoan, viruses, and bacteria such as spiroche...
Active Surveillance of ticks in peri-domestic areas of Indiana, Midwest United States
Active Surveillance of ticks in peri-domestic areas of Indiana, Midwest United States
Background & objectives: The incidence of Borreliosis, Anaplasmosis, Babesiosis and other tick-borne diseases acquired from private residential/peri-domestic areas has increase...

Back to Top