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首页> 外文期刊>Viruses >Identification and Distribution of Novel Cressdnaviruses and Circular Molecules in Four Penguin Species in South Georgia and the Antarctic Peninsula
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Identification and Distribution of Novel Cressdnaviruses and Circular Molecules in Four Penguin Species in South Georgia and the Antarctic Peninsula

机译:南格鲁吉亚四个企鹅种类和南极半岛的新型芝麻盆种和圆形分子的鉴定与分布

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摘要

There is growing interest in uncovering the viral diversity present in wild animal species. The remote Antarctic region is home to a wealth of uncovered microbial diversity, some of which is associated with its megafauna, including penguin species, the dominant avian biota. Penguins interface with a number of other biota in their roles as marine mesopredators and several species overlap in their ranges and habitats. To characterize the circular single-stranded viruses related to those in the phylum Cressdnaviricota from these environmental sentinel species, cloacal swabs ( n = 95) were obtained from King Penguins in South Georgia, and congeneric Adélie Penguins, Chinstrap Penguins, and Gentoo Penguins across the South Shetland Islands and Antarctic Peninsula. Using a combination of high-throughput sequencing, abutting primers-based PCR recovery of circular genomic elements, cloning, and Sanger sequencing, we detected 97 novel sequences comprising 40 ssDNA viral genomes and 57 viral-like circular molecules from 45 individual penguins. We present their detection patterns, with Chinstrap Penguins harboring the highest number of new sequences. The novel Antarctic viruses identified appear to be host-specific, while one circular molecule was shared between sympatric Chinstrap and Gentoo Penguins. We also report viral genotype sharing between three adult-chick pairs, one in each Pygoscelid species. Sequence similarity network approaches coupled with Maximum likelihood phylogenies of the clusters indicate the 40 novel viral genomes do not fall within any known viral families and likely fall within the recently established phylum Cressdnaviricota based on their replication-associated protein sequences. Similarly, 83 capsid protein sequences encoded by the viruses or viral-like circular molecules identified in this study do not cluster with any of those encoded by classified viral groups. Further research is warranted to expand knowledge of the Antarctic virome and would help elucidate the importance of viral-like molecules in vertebrate host evolution.
机译:越来越感兴趣地揭示野生动物物种中存在的病毒多样性。远程南极地区是大量未覆盖的微生物多样性的所在地,其中一些与其Megafauna有关,其中包括企鹅物种,主导的禽生物群。企鹅与许多其他Biota的界面,作为海洋中间封装器和几种物种在其范围和栖息地重叠。为了表征与这些环境哨兵物种的芹菜胺类芹毛岛芹菜菌的循环单链病毒有关,从南乔治亚国王企鹅,康涅里奇·齐瑞斯,Chinstrap企鹅,跨越企鹅,横跨企鹅,以及穿过的GentooPenguins南方驻地群岛和南极半岛。使用高通量测序的组合,邻接基于引物的PCR回收循环基因组元素,克隆和桑切尔测序,我们检测到包含来自40个单个企鹅的40个SSDNA病毒基因组和57个病毒样圆形分子的97个新序列。我们呈现了他们的检测模式,Chinstrap企鹅患有最多的新序列。确定的新型南极病毒似乎是特定于宿主的,而一个圆形分子在Sympatric Chinstrap和Gentoo企鹅之间共用。我们还报告三个成人小鸡对之间的病毒基因型共享,每个Pygoscelid物种中的一个。序列相似性与簇的最大似然性的网络接近表示40个新的病毒基因组不属于任何已知的病毒家族,并且可能基于其复制相关的蛋白质序列落入最近建立的门芹菜蛋白。类似地,由本研究中鉴定的病毒或病毒样圆形分子编码的83粒胶囊蛋白序列不会与由分类病毒基团编码的任何一种组成。进一步的研究得到了扩大南极生物体的知识,并有助于阐明病毒样分子在脊椎动物宿主进化中的重要性。

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