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宜章县梅田的晚二叠世地层不宜采用“泡水组”之名 被引量:1
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作者 冯少南 《湖南地质》 1989年第2期78-82,共5页
泡水组系杨逢清、殷鸿福1987年新建的岩石地层名称,命名地点在广西来宾县泡水,层位与长兴组相当,时代属晚二叠世晚期。杨逢清,殷鸿福将泡水组引用到湖南宜章梅田长兴阶的地层。根据岩性特征,笔者认为宜章梅田长兴阶的地层不能冠用泡水组... 泡水组系杨逢清、殷鸿福1987年新建的岩石地层名称,命名地点在广西来宾县泡水,层位与长兴组相当,时代属晚二叠世晚期。杨逢清,殷鸿福将泡水组引用到湖南宜章梅田长兴阶的地层。根据岩性特征,笔者认为宜章梅田长兴阶的地层不能冠用泡水组,只能沿用梅田组、九陂组和麻田组。 展开更多
关键词 宜章 梅田 地层 泡水组 二叠纪
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Molecular Characterization of China Human Rabies Vaccine Strains 被引量:2
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作者 Xiaoyan Tao Na Han +3 位作者 Zhenyang Guo Qing Tang Simon Rayner Guodong Liang 《Virologica Sinica》 SCIE CAS CSCD 2013年第2期116-123,共8页
To understand the molecular characteristics of China human rabies vaccine strains, we report the full-length genome of the aG strain and present a comprehensive analysis of this strain and almost all available lyssavi... To understand the molecular characteristics of China human rabies vaccine strains, we report the full-length genome of the aG strain and present a comprehensive analysis of this strain and almost all available lyssavirus genomes (58 strains) from GenBank (as of Jan 6, 2011). It is generally considered that the G protein plays a predominant role in determining the pathogenicity of the virus, to this end we predicted the tertiary structure of the G protein of aG strain, CTN 181 strain and wild type strain HN 10 based on the crystal structure of Vesicular stomatitis virus (VSV) G. The predicted RABV G structure has a similar topology to VSV G and the ectodomain can be divided into 4 distinct domains DI - DIV. By mapping the characterized mutations to this structure between China vaccine strains and their close street strains, we speculate that the G303(P-H) mutations of CTN181 and HN10 causing D II 3D change may be associated with the attenuated virulence in both strains. Specifically, the two signature mutations (G165P and G231P) in the aG strain are withinβsheets, suggesting that both sites are of structural importance. 展开更多
关键词 Rabies virus LYSSAVIRUS GENOME GLYCOPROTEIN
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The nucleocapsid of vesicular stomatitis virus 被引量:2
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作者 LUO Ming 《Science China(Life Sciences)》 SCIE CAS 2012年第4期291-300,共10页
The nucleocapsid of vesicular stomatitis virus serves as the genomic template for transcription and replication. The viral genomic RNA is sequestered in the nucleocapsid in every step of the virus replication cycle. T... The nucleocapsid of vesicular stomatitis virus serves as the genomic template for transcription and replication. The viral genomic RNA is sequestered in the nucleocapsid in every step of the virus replication cycle. The structure of the nucleocapsid and the entire virion revealed how the viral genomic RNA is encapsidated and packaged in the virus. A unique mechanism for viral RNA synthesis is derived from the structure of the nuleocapsid and its interactions with the viral RNA-dependent RNA polymerase. 展开更多
关键词 RNA cavity cross-molecular interactions RNA access phosphoprotein binding to the nucleocapsid bullet-shaped vi-rion
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