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Molecular detection and identification of Rickettsia in psocids collected from herbs
Affiliation:1. Institute Water and Ecology Problems, Far Eastern Branch of Russian Academy of Sciences, 680000, Khabarovsk, Russia;2. Department of Cell Biology and Genetics, Far Eastern Federal University, 690051, Vladivostok, Russia;3. Federal Scientific Center of the East Asia Terrestrial Biodiversity, Far Eastern Branch of Russian Academy of Sciences, 690022, Vladivostok, Russia;1. Guizhou Provincial Key Laboratory for Rare Animal and Economic Insect of the Mountainous Region, Guiyang University, Guiyang 550005, China;2. College of Tobacco Science, Guizhou University, Guiyang 550025, China;3. College of Biology and Environmental Engineering, Guiyang University, Guiyang 550005, China
Abstract:The aims of this study were to assess the psocids that potentially carry Rickettsia and to characterize Rickettsia species. We collected booklice from dried fragments of Chinese medicinal herbs for retail. Species identification and Rickettsia detection were performed by using nondestructive DNA extraction method and PCR. Of the 224 booklice samples collected, the following species were identified: Liposcelis pearmani (50.89%), L. bostrychophila (25.89%) and L. entomophila (23.21%). Twenty-four samples were found to be positive for Rickettsia (10.71%, 24/224), and the number of Rickettsia-positive samples per species was as follows: L. pearmani (n = 10), L. bostrychophila (n = 8) and L. entomophila (n = 6). The phylogenetic tree revealed that the rickettsial agents found in booklice cluster along with Rickettsia felis belong to the spotted fever group (SFG). Mixed booklice contamination occurs in herbal fragments. The presence of Rickettsia-infected booklice suggests that there is a risk of louse-borne rickettsioses to humans in contact with herbs. These findings can contribute to the development of a disease control program that assists relevant practitioners and promotes public health.
Keywords:Chinese medicinal herbs  Psocids  Non-destructive  SFG
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