4.6 Article

Virome of Giant Panda-Infesting Ticks Reveals Novel Bunyaviruses and Other Viruses That Are Genetically Close to Those from Giant Pandas

期刊

MICROBIOLOGY SPECTRUM
卷 10, 期 4, 页码 -

出版社

AMER SOC MICROBIOLOGY
DOI: 10.1128/spectrum.02034-22

关键词

ticks; tick-borne viruses; giant pandas; cross-species transmission; phylogenetic analysis

资金

  1. National Science Foundation of China [U21A20193]
  2. Chengdu Research Base of Giant Panda Breeding [2020CPB-C11]
  3. National Key Research and Development Program of China [2017YFC1200201]
  4. Jiangsu Provincial Key Research and Development Projects [BE2017693]

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This study analyzed the viromes of ticks collected from giant pandas in Sichuan Province, China, and found that these ticks carried various viral species, some of which were similar to those carried by giant pandas and their associated host species. The findings expand our understanding of the role of tick infestations in the local ecosystem and provide a foundation for assessing the risk of tick-borne viruses for giant pandas.
Tick infestations have been reported as one of the factors threatening the health of giant pandas, but studies of viral pathogens carried by ticks feeding on the blood of giant pandas are limited. To assess whether blood-sucking ticks of giant pandas can carry viral pathogens and if so, whether the viruses in ticks are associated with those previously detected in giant panda hosts, we determined the viromes of ticks detached from giant pandas in a field stocking area in Sichuan Province, southwest China. Using viral metagenomics we identified 32 viral species in ticks, half of which (including anellovirus [n = 9], circovirus [n = 3], and gemycircularvirus [n = 4]) showed homology to viruses carried by giant pandas and their associated host species (such as red pandas and mosquitoes) in the same living domain. Remarkably, several viruses in this study phylogenetically assigned as bunyavirus, hepe-like virus, and circovirus were detected with relatively high abundance, but whether these newly identified tick-associated viruses can replicate in ticks and then transmit to host animals during a blood meal will require further investigation. These findings further expand our understanding of the role of giant panda-infesting ticks in the local ecosystem, especially related to viral acquisition and transmission, and lay a foundation to assess the risk for giant panda exposure to tick-borne viruses. IMPORTANCE Ticks rank only second to mosquitoes as blood-feeding arthropods, capable of spreading pathogens (including viruses, bacteria, and parasites) to hosts during a blood meal. To better understand the relationship between viruses carried by ticks and viruses that have been reported in giant pandas, it is necessary to analyze the viromes of giant panda-parasitic blood-sucking ticks. This study collected 421 ticks on the body surface of giant pandas in Sichuan Province, China. We characterized the extensive genetic diversity of viruses harbored by these ticks and reported frequent communication of viruses between giant pandas and their ticks. While most of the virome discovered here are nonpathogenic viruses from giant pandas and potentially tick-specific viruses, we revealed some possible tick-borne viruses, represented by novel bunyaviruses. This research contributes to the literature because currently there are few studies on the virome of giant pandainfesting ticks.

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