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Tick Microbiome Characterization by Next-Generation 16S rRNA Amplicon Sequencing
Published on: August 25, 2018
Two Coding-Complete Genomes of Tick-Borne Encephalitis Virus Sequenced from Ixodes persulcatus Collected in Bulgan,
Nora G Cleary1,2, Nyamdelger Tsevelmaa3, Julia E Paoli1,2
1Department of Environmental and Global Health, College of Public Health and Health Professions, University of Florida, Gainesville, FL 32610, USA.
Abstract:
Tick-borne encephalitis virus (TBEV) is primarily transmitted by Ixodes spp. and poses significant health risks, leading to morbidity and mortality in humans. Two of the five subtypes, Siberian and Far Eastern are known to circulate in Mongolia. In 2021, Ixodes persulcatus ticks were collected from Bulgan aimag (province) using flagging and dragging methods and subsequently screened for TBEV using PCR. Positive samples underwent sequencing using an Oxford Nanopore Technologies-based hybrid capture approach, resulting in two coding-complete TBEV genomes from separate tick pools. Phylogenetic analysis classified both genomes within the Siberian subtype, grouping them with other Mongolian sequences from I. persulcatus collected in 2014, 2020, 2021, and 2023. The study sequences, PX654173 and PX654174, showed high genetic similarity (99.9% and 99.8%, respectively) to the sequence PQ479142, obtained from I. persulcatus ticks in Selenge, Mongolia, in 2021. The estimated time to most recent common ancestor (TMRCA) of the Siberian genotype was approximately 981 CE (95% HPD: 646-1347) with the emergence of a distinct Mongolian clade of TBEV around 1888 CE (95% HPD: 1834-1934). These findings highlight the value of expanded whole-genome sequencing to improve our understanding of TBEV's genetic diversity and evolutionary history in Central Asia.
Insights
Tick-borne encephalitis virus (TBEV) genomes from Mongolian ticks were sequenced, revealing the Siberian subtype
Area of Science:
- Virology
- Genomics
- Epidemiology
Background:
- Tick-borne encephalitis virus (TBEV) poses significant human health risks, with Siberian and Far Eastern subtypes circulating in Mongolia.
- Ixodes persulcatus ticks are primary vectors for TBEV transmission.
Purpose of the Study:
- To characterize the genetic diversity and evolutionary history of TBEV in Mongolia.
- To identify and sequence TBEV genomes from Ixodes persulcatus ticks.
Main Methods:
- Tick collection using flagging and dragging methods in Bulgan province, Mongolia.
- TBEV screening using PCR and whole-genome sequencing via Oxford Nanopore Technologies.
- Phylogenetic analysis to determine TBEV subtype and evolutionary relationships.
Main Results:
- Two coding-complete TBEV genomes of the Siberian subtype were obtained from Ixodes persulcatus ticks.
- Sequences showed high genetic similarity to previously identified Mongolian TBEV strains.
- Phylogenetic analysis indicated the emergence of a distinct Mongolian TBEV clade around 1888 CE.
Conclusions:
- Expanded whole-genome sequencing enhances understanding of TBEV genetic diversity in Central Asia.
- The study provides insights into the evolutionary trajectory of TBEV in Mongolia.
- Continued surveillance and genomic analysis are crucial for TBEV risk assessment.
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