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Characterization of Bacterial Communities in Ticks Parasitizing Cattle in a Touristic Location in Southwestern China

Overview
Journal Exp Appl Acarol
Specialties Biology
Parasitology
Date 2023 Jun 7
PMID 37285110
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Abstract

The purpose of this study was to investigate tick species around Mount Fanjing and analyze bacterial communities in two species - Rhipicephalus microplus and Haemaphysalis longicornis - parasitizing cattle in Tongren, Guizhou province, Southwest China, using high-throughput sequencing methods. In April 2019, ticks were collected from five sites in Jiangkou County, Yinjiang County, and Songtao County. In total, 296 ticks were collected, comprising two genera and three species: H. longicornis, Haemaphysalis flava, and R. microplus. Rhipicephalus microplus was the most representative species (57.4%) within the collected group, being the dominant species in Tongren City, followed by H. longicornis (39.5%) and H. flava (3.0%). Beta-diversity analysis revealed differences in bacterial community composition among the tick species. The bacterial community structure of R. microplus collected in the three counties was highly similar. Chlorella and Bacillus were highly abundant in H. longicornis. Rickettsia was detected at high relative abundance in R. microplus but in low relative abundance in H. longicornis, suggesting that Rickettsia is more associated with R. microplus than with H. longicornis. More in-depth investigations are needed to determine the pathogenic risk of Rickettsia and its relationship with the host. This is the first survey on tick-borne bacterial communities in this area, which is of great significance for the prevention and control of tick-borne diseases locally.

References
1.
Abdelkadir K, Palomar A, Portillo A, Oteo J, Ait-Oudhia K, Khelef D . Presence of Rickettsia aeschlimannii, 'Candidatus Rickettsia barbariae' and Coxiella burnetii in ticks from livestock in Northwestern Algeria. Ticks Tick Borne Dis. 2019; 10(4):924-928. DOI: 10.1016/j.ttbdis.2019.04.018. View

2.
Bolanos-Rivero M, Carranza-Rodriguez C, Rodriguez N, Gutierrez C, Perez-Arellano J . Detection of Coxiella burnetii DNA in Peridomestic and Wild Animals and Ticks in an Endemic Region (Canary Islands, Spain). Vector Borne Zoonotic Dis. 2017; 17(9):630-634. DOI: 10.1089/vbz.2017.2120. View

3.
Brites-Neto J, Duarte K, Martins T . Tick-borne infections in human and animal population worldwide. Vet World. 2016; 8(3):301-15. PMC: 4774835. DOI: 10.14202/vetworld.2015.301-315. View

4.
Buczek W, Koman-Izko A, Buczek A, Buczek A, Bartosik K, Kulina D . Spotted fever group rickettsiae transmitted by ticks and determinants of their spread in Europe. Ann Agric Environ Med. 2020; 27(4):505-511. DOI: 10.26444/aaem/120602. View

5.
Clow K, Weese J, Rousseau J, Jardine C . Microbiota of field-collected Ixodes scapularis and Dermacentor variabilis from eastern and southern Ontario, Canada. Ticks Tick Borne Dis. 2017; 9(2):235-244. DOI: 10.1016/j.ttbdis.2017.09.009. View