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1.
PLoS One ; 13(12): e0208615, 2018.
Article in English | MEDLINE | ID: mdl-30586406

ABSTRACT

Argasid ticks (Acari: Argasidae) carry and transmit a variety of pathogens of animals and humans, including viruses, bacteria and parasites. There are several studies reporting ixodid ticks (Acari: Ixodidae) and associated tick-borne pathogens in Xinjiang, China. However, little is known about the argasid ticks and argasid tick-associated pathogens in this area. In this study, a total of 3829 adult argasid ticks infesting livestock were collected at 12 sampling sites of 10 counties in the Peripheral Oases, which carry 90% of the livestock and humans population, around the Tarim Basin (southern Xinjiang) from 2013 to 2016. Tick specimens were identified to two species from different genera by morphology and sequences of mitochondrial 16S rRNA and 12S rRNA were derived to confirm the species designation. The results showed that the dominant argasid ticks infesting livestock in southern Xinjiang were Ornithodoros lahorensis (87.86%, 3364/3829). Ornithodoros lahorensis was distributed widely and were collected from 10 counties of southern Xinjiang. Argas japonicus was collected from Xinjiang for the first time. In addition, we screened these ticks for tick-associated pathogens and showed the presence of DNA sequences of Rickettsia spp. of Spotted fever group and Anaplasma spp. in the argasid ticks. This finding suggests the potential role for Argas japonicus as a vector of pathogens to livestock and humans.


Subject(s)
Anaplasma/isolation & purification , Argas/microbiology , Ornithodoros/microbiology , Rickettsia/isolation & purification , Anaplasma/classification , Anaplasma/genetics , Anaplasma/pathogenicity , Animals , Argas/classification , Argas/genetics , Cattle , China , Disease Vectors , Mitochondria/genetics , Ornithodoros/classification , Ornithodoros/genetics , Phylogeny , RNA, Ribosomal/classification , RNA, Ribosomal/genetics , RNA, Ribosomal/metabolism , RNA, Ribosomal, 16S/classification , RNA, Ribosomal, 16S/genetics , RNA, Ribosomal, 16S/metabolism , Rickettsia/classification , Rickettsia/genetics , Rickettsia/pathogenicity , Sequence Analysis, DNA , Sheep , Tick Infestations/parasitology , Tick Infestations/pathology , Tick Infestations/veterinary
2.
Virusdisease ; 25(3): 365-71, 2014.
Article in English | MEDLINE | ID: mdl-25674605

ABSTRACT

The matrix protein (M) is one of only five genes in the RV genome and is an important multifunctional protein. Besides to allow for the release of newly replicated virions pairing with G, the M protein also functions in virus replication, pathogenicity, and host cell apoptosis. The goal of present study is to generate recombinant viruses with M gene rearranged, thus laying the foundation for further exploring what will happen when the gene for M is relocated on the RV single-strand RNA. We used rHEP-Flury, an attenuated virus that remains virulent for less than 3 days in sucking mice, to reshuffle the M gene, using an approach that leaves the other viral nucleotide sequence intact. Two viruses with translocated M genes (N1M2 and N1M4) were recovered from each of the rearranged cDNAs, whose gene order is 3'-N-M-P-G-L-5' and 3'-N-P-G-M-L-5' respectively. The growth dynamics of these viruses showed slower replication than the wild-type virus in multiple-step growth curves, but they can grow to a comparable titer in tests of single-step growth curves. Further experimentation with these rearranged viruses will provide insights into the relationships between genome structure and virus phenotypes.

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