(Meta)transcriptomic Insights into the Role of Ticks in Poxvirus Evolution and Transmission: A Multicontinental Analysis.

IF 4.1
Yu Xi Wang, Jing Jing Hu, Jing Jing Hou, Xiao Jie Yuan, Wei Jie Chen, Yan Jiao Li, Qi le Gao, Yue Pan, Shui Ping Lu, Qi Chen, Si Ru Hu, Zhong Jun Shao, Cheng Long Xiong
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Abstract

Objective: Poxviruses are zoonotic pathogens that infect humans, mammals, vertebrates, and arthropods. However, the specific role of ticks in transmission and evolution of these viruses remains unclear.

Methods: Transcriptomic and metatranscriptomic raw data from 329 sampling pools of seven tick species across five continents were mined to assess the diversity and abundance of poxviruses. Chordopoxviral sequences were assembled and subjected to phylogenetic analysis to trace the origins of the unblasted fragments within these sequences.

Results: Fifty-eight poxvirus species, representing two subfamilies and 20 genera, were identified, with 212 poxviral sequences assembled. A substantial proportion of AT-rich fragments were detected in the assembled poxviral genomes. These genomic sequences contained fragments originating from rodents, archaea, and arthropods.

Conclusion: Our findings indicate that ticks play a significant role in the transmission and evolution of poxviruses. These viruses demonstrate the capacity to modulate virulence and adaptability through horizontal gene transfer, gene recombination, and gene mutations, thereby promoting co-existence and co-evolution with their hosts. This study advances understanding of the ecological dynamics of poxvirus transmission and evolution and highlights the potential role of ticks as vectors and vessels in these processes.

蜱在痘病毒进化和传播中的转录组学研究:一项多大陆分析。
目的:痘病毒是一种人畜共患病原体,可感染人类、哺乳动物、脊椎动物和节肢动物。然而,蜱在这些病毒的传播和进化中的具体作用仍不清楚。方法:利用来自五大洲7种蜱类329个采样池的转录组学和亚转录组学原始数据,评估痘病毒的多样性和丰度。组装脊索病毒序列并进行系统发育分析,以追踪这些序列中未爆炸片段的起源。结果:共鉴定出痘病毒2亚科20属58种,共组装出212条痘病毒序列。在组装的痘病毒基因组中检测到大量富含at的片段。这些基因组序列包含来自啮齿动物、古细菌和节肢动物的片段。结论:蜱在痘病毒的传播和进化过程中发挥了重要作用。这些病毒显示出通过水平基因转移、基因重组和基因突变调节毒力和适应性的能力,从而促进与宿主的共存和共同进化。这项研究促进了对痘病毒传播和进化的生态动力学的理解,并强调了蜱在这些过程中作为媒介和管道的潜在作用。
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