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Virome comparisons in wild-diseased and healthy captive giant pandas

机译:野生和健康圈养大熊猫的病毒体比较

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BackgroundThe giant panda ( Ailuropoda melanoleuca ) is a vulnerable mammal herbivore living wild in central China. Viral infections have become a potential threat to the health of these endangered animals, but limited information related to these infections is available. MethodsUsing a viral metagenomic approach, we surveyed viruses in the feces, nasopharyngeal secretions, blood, and different tissues from a wild giant panda that died from an unknown disease, a healthy wild giant panda, and 46 healthy captive animals. ResultsThe previously uncharacterized complete or near complete genomes of four viruses from three genera in Papillomaviridae family, six viruses in a proposed new Picornaviridae genus (Aimelvirus), two unclassified viruses related to posaviruses in Picornavirales order, 19 anelloviruses in four different clades of Anelloviridae family, four putative circoviruses, and 15 viruses belonging to the recently described Genomoviridae family were sequenced. Reflecting the diet of giant pandas, numerous insect virus sequences related to the families Iflaviridae , Dicistroviridae , Iridoviridae , Baculoviridae , Polydnaviridae , and subfamily Densovirinae and plant viruses sequences related to the families Tombusviridae , Partitiviridae , Secoviridae , Geminiviridae , Luteoviridae , Virgaviridae , and Rhabdoviridae ; genus Umbravirus , Alphaflexiviridae , and Phycodnaviridae were also detected in fecal samples. A small number of insect virus sequences were also detected in the nasopharyngeal secretions of healthy giant pandas and lung tissues from the dead wild giant panda. Although the viral families present in the sick giant panda were also detected in the healthy ones, a higher proportion of papillomaviruses, picornaviruses, and anelloviruses reads were detected in the diseased panda. ConclusionThis viral survey increases our understanding of eukaryotic viruses in giant pandas and provides a baseline for comparison to viruses detected in future infectious disease outbreaks. The similar viral families detected in sick and healthy giant pandas indicate that these viruses result in commensal infections in most immuno-competent animals.
机译:背景大熊猫(Ailuropoda melanoleuca)是生活在中国中部的一种脆弱的哺乳动物食草动物。病毒感染已成为威胁这些濒危动物健康的潜在威胁,但与这些感染有关的信息有限。方法使用病毒宏基因组学方法,对死于未知疾病的野生大熊猫,健康的野生大熊猫和46只健康的圈养动物的粪便,鼻咽分泌物,血液和不同组织中的病毒进行了调查。结果先前未知的完整的或近乎完整的基因组,包括Papillomaviridae家族中三个属的四种病毒,拟议的Picornaviridae新属(Aimelvirus)中的六种病毒,Picornavirales顺序中与杆状病毒相关的两种未分类病毒,在Anelloviridae家族的四个不同进化枝中的19种Anelloviruss,测序了四种推定的圆环病毒,以及最近描述的Genomoviridae家族的15种病毒。由于反映了大熊猫的饮食,许多与昆虫病毒科,梭状病毒科,虹膜病毒科,杆状病毒科,多虫科和登革病毒科有关的昆虫病毒序列,以及与汤姆病毒科,Partitiviridae,Secoviridae,双子病毒科,犀牛科,卢氏病毒科有关的植物病毒序列。 ;在粪便样本中也检测到了伞状病毒属,甲状病毒科和藻科。在健康的大熊猫的鼻咽分泌物中和死去的野生大熊猫的肺组织中也检测到少量昆虫病毒序列。尽管在健康大熊猫中也发现了病毒家族,但在患病大熊猫中发现了更高比例的乳头瘤病毒,微小核糖核酸病毒和网膜病毒。结论这项病毒调查增加了我们对大熊猫真核病毒的了解,并为与未来传染病暴发中检测到的病毒进行比较提供了基线。在患病的大熊猫和健康的大熊猫中检测到的相似病毒家族表明,这些病毒在大多数具有免疫能力的动物中导致共同感染。

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