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Detection of atypical porcine pestivirus genome in newborn piglets affected by congenital tremor and high preweaning mortality

机译:先天性震颤影响新生仔猪的非典型猪瘟病毒基因组,高薪水高预期死亡率

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Recently, piglets from a high-health status farm began exhibiting congenital tremors, high preweaning mortality and incidence of splayed legs. Postmortem histological examination identified a small number of scattered white matter vacuoles in the cerebellum and underlying brainstem of affected piglets. Presence of potential viral sources associated with this neurologic condition was initially infirmed using quantitative PCR for atypical porcine pestivirus (APPV), porcine teschovirus, and porcine sapelovirus. Using metagenomic analysis, APPV was identified as the main microbial species in serum obtained from piglets affected by congenital tremor. These piglets had higher preweaning mortality rates (46.4% vs. 15.3%) and incidence of splayed legs (33.0% vs. 0.8 %) compared to unaffected piglets. Piglets affected by congenital tremor had higher viral titer (P 0.15) and larger birth weights (P 0.05) compared to normal litter mates. Whole-genome sequencing and genome assembly of the novel APPV strain (MK728876) was carried out using Oxford Nanopore and related bioinformatics pipelines. Phylogenic analysis demonstrated that this strain along with other completely sequenced APPV strains were grouped into 2 clades, both including strains-inducing congenital tremor. Strains appear to cluster based on region but there were still significant differences within regions. Future research needs to address potential underdiagnosis due to genetic diversity but also to understand mode of transmission, variation in virulence, and the role of host genetics in APPV susceptibility.
机译:最近,来自高健康状况农场的仔猪开始表现出先天性震颤,高普化的死亡率和张平的腿的发病率。后期组织学检查鉴定了少量少量的小脑中的散射白土液泡,受影响小猪的底层脑干。最初使用用于非典型猪瘟病毒(APPV),猪Teschovirus和猪皂病毒的定量PCR,最初在与这种神经功能相关的潜在病毒源的存在。使用Metagenomic分析,APPV被鉴定为由先天性震颤影响的仔猪获得的血清中的主要微生物物种。与未受影响的仔猪相比,这些仔猪具有更高的预期死亡率(46.4%vs.15.3%)和张开的腿的发病率(33.0%与0.8%)。由先天性震颤影响的仔猪具有更高的病毒滴度(P <0.15),与正常垃圾伴侣相比,较大的出生体重(P <0.05)。使用牛津纳米孔和相关的生物信息化管道进行新型APPV菌株(MK728876)的全基因组测序和基因组组装。系统发育分析表明,这种应变与其他完全测序的APPV菌株分为2个蛹,包括诱导先天性震颤。基于区域的群体呈现,但区域内仍存在显着差异。由于遗传多样性,未来的研究需要解决潜在的下诊,但也要了解传播模式,毒力的变异,以及宿主遗传学在APPV易感性的作用。

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