中哈边境野生鼠蚤中的罗查利巴尔通体、格拉哈氏巴尔通体、伊丽莎白巴尔通体和沃尔巴克氏体

Xiaoping Yin, Shanshan Zhao, Bin Yan, Yanhe Tian, T. Ba, Jiangguo Zhang, Yuanzhi Wang
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引用次数: 5

摘要

阿拉图山口靠近艾比努尔湖湿地(中国西北部)和塔尔迪库尔干(哈萨克斯坦东部),是野生啮齿动物的自然栖息地。迄今为止,该地区对来自跳蚤的巴尔通体和沃尔巴克氏体的监测工作做得很少。2016年1 - 10月,我们对阿拉图山口-哈萨克斯坦边境野生鼠蚤进行巴尔通体和沃尔巴克氏体分子检测。共采集鼠类6种10种蚤类1706只。10种蚤中沃尔巴克氏体阳性4种,巴尔通体阳性5种。分子分析结果表明:1)在沙billi xenopsyla minax和X. conformies conax中首次鉴定到B. rochalimae, 2) B. grahamii在沙billi minax中首次鉴定到,3)B. elizabethae首次在板翅Coptopsylla lamellifer ardua、repandus paradoxopsilus和laeviceps nosopsylus laeviceps中检测到。此外,3种沃尔巴克氏体内共生菌首次在沙billi minax、X. constens、P. repandus和N. laeviceps中被发现。BLASTn分析显示3种巴尔通体存在基因型变异。系统发育分析结果显示,3个沃尔巴克氏体内共生菌聚为非管翅目沃尔巴克氏体类群。这些发现进一步加深了我们对罗查利布氏菌、格拉哈布氏菌、伊丽莎白布氏菌和沃尔巴克氏菌的地理分布和携带者的认识。今后,中哈双方应加强合作,加强对野生动物蚤传病原体的监测。
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Bartonella rochalimae, B. grahamii, B. elizabethae, and Wolbachia spp. in Fleas from Wild Rodents near the China-Kazakhstan Border
The Alataw Pass, near the Ebinur Lake Wetland (northwest of China) and Taldykorgan (east of Kazakhstan), is a natural habitat for wild rodents. To date, little has been done on the surveillance of Bartonella spp. and Wolbachia spp. from fleas in the region. Here we molecularly detected Bartonella spp. and Wolbachia spp. in wild rodent fleas during January and October of 2016 along the Alataw Pass-Kazakhstan border. A total of 1,706 fleas belonging to 10 species were collected from 6 rodent species. Among the 10 flea species, 4 were found to be positive for Wolbachia, and 5 flea species were positive for Bartonella. Molecular analysis indicated that i) B. rochalimae was firstly identified in Xenopsylla gerbilli minax and X. conforms conforms, ii) B. grahamii was firstly identified in X. gerbilli minax, and iii) B. elizabethae was firstly detected in Coptopsylla lamellifer ardua, Paradoxopsyllus repandus, and Nosopsyllus laeviceps laeviceps. Additionally, 3 Wolbachia endosymbionts were firstly found in X. gerbilli minax, X. conforms conforms, P. repandus, and N. laeviceps laeviceps. BLASTn analysis indicated 3 Bartonella species showed genotypic variation. Phylogenetic analysis revealed 3 Wolbachia endosymbionts were clustered into the non-Siphonaptera Wolbachia group. These findings extend our knowledge of the geographical distribution and carriers of B. rochalimae, B. grahamii, B. elizabethae, and Wolbachia spp. In the future, there is a need for China-Kazakhstan cooperation to strengthen the surveillance of flea-borne pathogens in wildlife.
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