阿尔泰共和国和哈巴罗夫斯克边疆区流行立克次体的基因分型

S. Shtrek, N. Rudakov, S. Shpynov, Alexey V. Sannikov, I. Samoylenko, L. D. Shchuchinova, O. Trotsenko, Anna G. Dragomeretskaya, E. V. Matushchenko
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The detection of rickettsia in ticks in the Altai Republic was 82.6% (CI: 69.196.1), in the Khabarovsk Krai 53.1% (CI: 44.961.3). The species composition of rickettsias in various species of ixodic mites in these territories, endemic to Siberian tick typhus, is characterized by the presence of mixed forms. Rickettsia sibirica and R. raoultii were found in ticks Dermacentor nuttalli, Haemaphysalis concinna, D. silvarum. Only Candidatus R. tarasevichiae were detected in Ixodes persulcatus, I. pavlovsky mites and I. pavlovsky/persulcatus hybrids. The DNA of R. heilongjiangensis was found in H. mites. concinna in the Khabarovsk Krai. The DNA of Candidatus R. tarasevichiae is also present in the ticks of D. nuttalli and H. concinna from the Altai Republic. The DNA of the classic pathogenic species, R. sibirica, was detected in ticks D. nuttalli and H. concinna in the Altai Republic, ticks D. silvarum, H. concinna and H. japonica douglasi in the Khabarovsk Krai. 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引用次数: 0

摘要

本研究的目的是利用综合分子生物学方法在阿尔泰共和国和哈巴罗夫斯克边疆区境内的蜱混合感染中验证西伯利亚蜱传斑疹伤寒(STT)的病原体。材料和方法。本研究的材料为6种伊螨304张图像。这些蜱虫于2014年至2022年在阿尔泰共和国和哈巴罗夫斯克边疆区境内收集。采用gltA和ompA基因的属特异引物和种特异引物对立克次体DNA进行两轮PCR鉴定,然后使用RealBest DNA R. sibirica/R PCR试剂对立克次体DNA进行测序。黑龙江省(Vector-Best,新西伯利亚)结果。阿尔泰地区蜱类立克次体检出率为82.6% (CI: 69.196.1),哈巴罗夫斯克地区蜱类立克次体检出率为53.1% (CI: 44.961.3)。西伯利亚蜱斑疹伤寒在这些地区特有的各种蜱螨中的立克次体的物种组成,其特点是存在混合形式。蜱中检出西伯利亚立克次体和拉乌尔氏体,分别为肉芽革蜱、中国血蜱和森林蜱。在过狭角伊蚊、巴甫洛夫伊蚊和巴甫洛夫伊蚊/过狭角伊蚊杂交种中只检出了候选螨。在螨类中发现了黑龙江黑僵螨的DNA。在哈巴罗夫斯克边疆区。在阿尔泰地区的努塔利蠓和康斯纳蠓的蜱虫中也发现了塔拉斯韦氏候鸟的DNA。在阿尔泰共和国的nuttalli蜱和concinna蜱,哈巴罗夫斯克边疆区的silvarum蜱、concinna蜱和douglasjaponica蜱中检测到典型致病种西伯利亚蜱的DNA。此外,在哈巴罗夫斯克边疆区蜱虫中检测到黑龙江布氏蜱的DNA,并发现西伯利亚布氏蜱虫亚种共有的DNA片段。在douglasica蜱中检出蒙古疟原虫和conorir,有待进一步研究。在阿尔泰共和国的nuttalli和H. concinna中,有常见的蜱螨(persulcatus、I. pavlovsky及其杂种)。R螨虫。在阿尔泰共和国和哈巴罗夫斯克边疆区分别在努塔利革螨属蜱和西尔瓦鲁姆革螨属蜱中检测到拉乌尔蒂虫。结论。在流行地区立克次体的分子生物学监测过程中,检测到拉乌尔氏热体掩盖了STT西伯利亚热体病原的存在。这一现象可能解释了研究区域STT的高发病率,在分子生物学筛选中,西伯利亚r.b ibirica DNA很少被检测到。
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Genotyping of rickettsias circulating in the territories of the Altai Republic and Khabarovsk krai
The aim of the study was to verificate of the causative agent of Siberian tick-borne typhus (STT) upon ixodic tick mixed infection on the territory of the Altai Republic and Khabarovsk Krai using an integrated molecular biological approach. Materials and methods. The material for the study was presented as 304 imago of ixodic mites of six species. The ticks were collected on the territory of the Altai Republic and the Khabarovsk Krai in the years 20142022. Rickettsia DNA was identified by two-round PCR using genus- and species-specific primers for gltA and ompA genes, followed by sequencing and using PCR reagent kits RealBest DNA R. sibirica/R. heilongjiangensis (Vector-Best, Novosibirsk). Results. The detection of rickettsia in ticks in the Altai Republic was 82.6% (CI: 69.196.1), in the Khabarovsk Krai 53.1% (CI: 44.961.3). The species composition of rickettsias in various species of ixodic mites in these territories, endemic to Siberian tick typhus, is characterized by the presence of mixed forms. Rickettsia sibirica and R. raoultii were found in ticks Dermacentor nuttalli, Haemaphysalis concinna, D. silvarum. Only Candidatus R. tarasevichiae were detected in Ixodes persulcatus, I. pavlovsky mites and I. pavlovsky/persulcatus hybrids. The DNA of R. heilongjiangensis was found in H. mites. concinna in the Khabarovsk Krai. The DNA of Candidatus R. tarasevichiae is also present in the ticks of D. nuttalli and H. concinna from the Altai Republic. The DNA of the classic pathogenic species, R. sibirica, was detected in ticks D. nuttalli and H. concinna in the Altai Republic, ticks D. silvarum, H. concinna and H. japonica douglasi in the Khabarovsk Krai. In addition, in the Khabarovsk Krai, the DNA of R. heilongjiangensis was detected in H. concinna ticks, and a DNA fragment common to R. sibirica subsp. mongolitimonae and R. conorii was detected in H. japonica douglasi ticks, which requires further study. Candidatus R. tarasevichiae is common in Ixodes mites (I. persulcatus, I. pavlovsky and their hybrids), in the Altai Republic in D. nuttalli and H. concinna. R mites. raoultii was detected in ticks of the genus Dermacentor D. nuttalli in the Altai Republic and D. silvarum in the Khabarovsk Krai. Conclusions. During molecular biological monitoring of rickettsias in endemic territories, the detection of R. raoultii masks the presence of the etiological agent of STT R. sibirica. This phenomenon makes it possible to explain the high incidence of STT in the studied territories, with the rare detectability of R. sibirica DNA during molecular biological screening in ixodic mites.
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