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鳗鱼“狂游病”病原学研究 被引量:11
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作者 陶增思 黎诚耀 +6 位作者 杨盛华 杨振国 李学勤 王振英 殷震 何顺光 黄政春 《中国兽医学报》 CAS CSCD 北大核心 1997年第1期30-32,共3页
对近两年在我国福建省等地养殖的鳗鱼暴发流行的一种不明病因的疾病(俗称“狂游病”),通过寄生虫学、细菌学、病毒学检查,以及人工感染回归试验,确认其病原为鳗冠状病毒样病毒。该病毒主要侵害鳗鱼的肝脏、肾脏和心脏,导致这些器... 对近两年在我国福建省等地养殖的鳗鱼暴发流行的一种不明病因的疾病(俗称“狂游病”),通过寄生虫学、细菌学、病毒学检查,以及人工感染回归试验,确认其病原为鳗冠状病毒样病毒。该病毒主要侵害鳗鱼的肝脏、肾脏和心脏,导致这些器官的实质细胞呈现变性。 展开更多
关键词 鳗鱼 狂游病 冠状病毒样病毒 病原学
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Genetic diversity of coronaviruses in Miniopterus fuliginosus bats 被引量:1
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作者 Jiang Du Li Yang +8 位作者 Xianwen Ren Junpeng Zhang Jie Dong Lilian Sun Yafang Zhu Fan Yang Shuyi Zhang Zhiqiang Wu Qi Jin 《Science China(Life Sciences)》 SCIE CAS CSCD 2016年第6期604-614,共11页
Coronaviruses, such as severe acute respiratory syndrome coronavirus and Middle East respiratory syndrome coronavirus, pose significant public health threats. Bats have been suggested to act as natural reservoirs for ... Coronaviruses, such as severe acute respiratory syndrome coronavirus and Middle East respiratory syndrome coronavirus, pose significant public health threats. Bats have been suggested to act as natural reservoirs for both these viruses, and periodic monitoring of coronaviruses in bats may thus provide important clues about emergent infectious viruses. The Eastern bent-wing bat Miniopterus fuliginosus is distributed extensively throughout China. We therefore analyzed the genetic diversity of coronaviruses in samples of M. fuliginosus collected from nine Chinese provinces during 2011–2013. The only coronavirus genus found was Alphacoronavirus. We established six complete and five partial genomic sequences of alphacoronaviruses, which revealed that they could be divided into two distinct lineages, with close relationships to coronaviruses in Miniopterus magnater and Miniopterus pusillus. Recombination was confirmed by detecting putative breakpoints of Lineage 1 coronaviruses in M. fuliginosus and M. pusillus(Wu et al., 2015), which supported the results of topological and phylogenetic analyses. The established alphacoronavirus genome sequences showed high similarity to other alphacoronaviruses found in other Miniopterus species, suggesting that their transmission in different Miniopterus species may provide opportunities for recombination with different alphacoronaviruses. The genetic information for these novel alphacoronaviruses will improve our understanding of the evolution and genetic diversity of coronaviruses, with potentially important implications for the transmission of human diseases. 展开更多
关键词 coronavirus Miniopterus fuliginosus bat co-infection recombination
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