Diversity and Phylogeny of Cattle Ixodid Ticks and Associated Spotted Fever Group Rickettsia spp. in Tunisia

被引:4
作者
Kratou, Myriam [1 ]
Belkahia, Hanene [1 ]
Selmi, Rachid [1 ,2 ]
Andolsi, Rihab [1 ]
Dhibi, Mokhtar [3 ]
Mhadhbi, Moez [3 ]
Messadi, Lilia [1 ]
Said, Mourad Ben [1 ,3 ,4 ]
机构
[1] Univ Manouba, Natl Sch Vet Med Sidi Thabet, Lab Microbiol, Manouba 2010, Tunisia
[2] Minist Natl Def, Vet Serv, Gen Directorate Mil Hlth, Tunis 1008, Tunisia
[3] Univ Manouba, Natl Sch Vet Med Sidi Thabet, Lab Parasitol, Manouba 2010, Tunisia
[4] Univ Manouba, Higher Inst Biotechnol Sidi Thabet, Dept Basic Sci, Manouba 2010, Tunisia
来源
PATHOGENS | 2023年 / 12卷 / 04期
关键词
Rickettsia species; cattle ticks; molecular species identification; genotyping; phylogenetic analysis; Tunisia; RHIPICEPHALUS-SANGUINEUS TICKS; BORNE RICKETTSIOSES; INFECTION; BACTERIA; SARDINIA; IDENTIFICATION; MASSILIAE; HELVETICA; EVOLUTION; SIBIRICA;
D O I
10.3390/pathogens12040552
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Tick-borne rickettsioses are mainly caused by obligate intracellular bacteria belonging to the spotted fever group (SFG) of the Rickettsia genus. So far, the causative agents of SFG rickettsioses have not been detected in cattle ticks from Tunisia. Therefore, the aim of this study was to investigate the diversity and phylogeny of ticks associated with cattle from northern Tunisia and their associated Rickettsia species. Adult ticks (n = 338) were collected from cattle in northern Tunisia. The obtained ticks were identified as Hyalomma excavatum (n = 129), Rhipicephalus sanguineus sensu lato (n = 111), Hyalomma marginatum (n = 84), Hyalomma scupense (n = 12) and Hyalomma rufipes (n = 2). After DNA extraction from the ticks, 83 PCR products based on the mitochondrial 16S rRNA gene were sequenced and a total of four genotypes for Rh. sanguineus s.l., two for Hy. marginatum and Hy. excavatum and only one for Hy. scupense and Hy. rufipes were recorded, with the occurrence of one, two and three novel genotypes, respectively, for Hy. marginatum, Hy. excavatum and Rh. sanguineus s.l. mitochondrial 16S rRNA partial sequences. The tick DNA was tested for the presence of Rickettsia spp. by using PCR measurements and sequencing targeting three different genes (ompB, ompA and gltA). Of the 338 analyzed ticks, 90 (26.6%), including 38 (34.2%) Rh. sanguineus s.l., 26 (20.1%) Hy. excavatum, 25 (29.8%) Hy. marginatum and one (50%) Hy. rufipes tick, were positive for Rickettsia spp. Based on 104 partial sequences of the three analyzed genes, the BLAST analysis and phylogenetic study showed the infection of Hy. excavatum, Hy. marginatum and Rh. sanguineus s.l. tick specimens with R. massiliae, R. aeschlimannii and R. sibirica subsp. mongolitimonae and one Hy. rufipes tick specimen with R. aeschlimannii. In addition, coinfection with R. massiliae and R. aeschlimannii was reported in one Hy. marginatum and one Rh. sanguineus s.l. tick specimen, while a coinfection with R. massiliae and R. sibirica subsp. mongolitimonae was recorded in one Rh. sanguineus s.l. tick specimen. In conclusion, our study reports, for the first time in Tunisia, the infection of cattle ticks belonging to Hyalomma and Rhipicephalus genera with zoonotic Rickettsia species belonging to the SFG group.
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相关论文
共 60 条
[1]   Presence of Rickettsia aeschlimannii, 'Candidatus Rickettsia barbariae' and Coxiella burnetii in ticks from livestock in Northwestern Algeria [J].
Abdelkadir, Karim ;
Palomar, Ana M. ;
Portillo, Aranzazu ;
Oteo, Jose A. ;
Ait-Oudhia, Khataim ;
Khelef, Djamel .
TICKS AND TICK-BORNE DISEASES, 2019, 10 (04) :924-928
[2]   Human Rickettsia sibirica mongolitimonae infection, Spain [J].
Aguirrebengoa, Koldo ;
Portillo, Aranzazu ;
Santibanez, Sonia ;
Marin, Juan J. ;
Montejo, Miguel ;
Oteo, Jose A. .
EMERGING INFECTIOUS DISEASES, 2008, 14 (03) :528-529
[3]   Ticks and associated pathogens in camels (Camelus dromedarius) from Riyadh Province, Saudi Arabia [J].
Alanazi, Abdullah D. ;
Nguyen, Viet Linh ;
Alyousif, Mohamed S. ;
Manoj, Ranju R. S. ;
Alouffi, Abdulaziz S. ;
Donato, Ridolfi ;
Sazmand, Alireza ;
Mendoza-Roldan, Jairo A. ;
Dantas-Torres, Filipe ;
Otranto, Domenico .
PARASITES & VECTORS, 2020, 13 (01)
[4]   The role of Rhipicephalus sanguineus ticks parasitizing dogs in the spread of tick-borne rickettsial pathogens in the city of Sevastopol [J].
Alieva, E. E. ;
Bondarenko, E. I. ;
Maliy, K. D. ;
Shvalov, A. N. ;
Verbenets, E. A. ;
Gafarova, M. T. .
NEW MICROBES AND NEW INFECTIONS, 2020, 36
[5]  
[Anonymous], 2006, CURR PROTOC BIOINFOR, DOI DOI 10.1002/0471250953.BI0603-15
[6]   Cattle ticks in Cameroon: Is Rhipicephalus (Boophilus) microplus absent in Cameroon and the Central African region? [J].
Awa, D. N. ;
Adakal, H. ;
Luogbou, N. D. D. ;
Wachong, K. H. ;
Leinyuy, I. ;
Achukwi, M. D. .
TICKS AND TICK-BORNE DISEASES, 2015, 6 (02) :117-122
[7]  
Azagi T, 2017, APPL ENVIRON MICROB, V83, DOI [10.1128/AEM.01302-17, 10.1128/aem.01302-17]
[8]   Molecular epidemiology, associated risk factors, and phylogenetic analysis of anaplasmosis in camel [J].
Azmat, M. ;
Ijaz, M. ;
Farooqi, S. H. ;
Ghaffar, A. ;
Ali, A. ;
Masud, A. ;
Saleem, S. ;
Rehman, A. ;
Ali, M. M. ;
Mehmood, K. ;
Khan, Amjad ;
Zhang, H. .
MICROBIAL PATHOGENESIS, 2018, 123 :377-384
[9]  
Bahari A, 2021, YALE J BIOL MED, V94, P249
[10]   Survey on tick-borne pathogens in ticks removed from humans in Northwestern Italy [J].
Battisti, Elena ;
Zanet, Stefania ;
Boraso, Flavio ;
Minniti, Davide ;
Giacometti, Marika ;
Duscher, Georg Gerhard ;
Ferroglio, Ezio .
VETERINARY PARASITOLOGY- REGIONAL STUDIES AND REPORTS, 2019, 18