期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Genome sequencing and phylogenetic analysis of Banna virus(genus Seadornavirus,family Reoviridae)isolated from Culicoides 被引量:9
1
作者 Song Song Yuanyuan Li +13 位作者 Shihong Fu Wenwen Lei Xiaofang Guo Yun Feng Xiaoyan Gao Xiaolong Li Zhonghua Yang Ziqian Xu Ying He Huanyu Wang Hongning Zhou Bin Wang Xiaoqing Lu Guodong Liang 《Science China(Life Sciences)》 SCIE CAS CSCD 2017年第12期1372-1382,共11页
In an investigation of blood-sucking insects and arboviruses, a virus(YN12243) was isolated from Culicoides samples collected in the Sino-Burmese border region of Yunnan Province, China. The virus caused cytopathic ef... In an investigation of blood-sucking insects and arboviruses, a virus(YN12243) was isolated from Culicoides samples collected in the Sino-Burmese border region of Yunnan Province, China. The virus caused cytopathic effect(CPE) in C6/36 cells and passaged stably. Polyacrylamide gel analysis showed that the genome of YN12243 was composed of 12 segments of double-stranded RNA(dsRNA), with a distribution pattern of 6-6. The nucleotide and amino acid sequences of the coding region(1.12 segments) were17,803 bp and 5,925 amino acids in length, respectively. The phylogenetic analysis of VP1 protein(RdRp) revealed that YN12243 belonged to genus Seadornavirus of family Reoviridae, and further analysis indicated that YN12243 belongs to the Banna virus(BAV) genotype A2. Additionally, YN12243 was located in the same evolutionary cluster as BAV strains isolated from different mosquito species, suggesting that the BAV isolated from Culicoides does not have species barriers. These results indicate that Culicoides can also be a vector for BAV. In view of the hematophagous habits of Culicoides on cattle, horses, deer, and other large animals, as well as the possibility of spreading and causing a variety of animal arboviral diseases, it is important to improve infection detection and monitor the BAV in large livestock. 展开更多
关键词 banna virus Seadornavirus Reoviridae MOSQUITO CULICOIDES
原文传递
东南亚十二节段双链RNA病毒的分子进化及基因组结构特征分析 被引量:3
2
作者 张珺 赵秋霞 +6 位作者 王家辉 夏菡 王纪衡 张建明 庄莹 刘红 丁忠峰 《中华实验和临床病毒学杂志》 CAS CSCD 2020年第3期256-263,共8页
目的了解东南亚十二节段双链RNA病毒(South-East Asian dodeca RNA viruses,Seadornavirus)的分子进化规律及遗传差异。方法基于Seadornavirus衣壳蛋白基因组序列进行同源性、系统进化、理化性质、抗原表位预测以及三级结构和表面电荷... 目的了解东南亚十二节段双链RNA病毒(South-East Asian dodeca RNA viruses,Seadornavirus)的分子进化规律及遗传差异。方法基于Seadornavirus衣壳蛋白基因组序列进行同源性、系统进化、理化性质、抗原表位预测以及三级结构和表面电荷分布的分析。结果Seadornavirus的最近共同祖先大约于2359年前,分为3个进化簇,其进化时间分别为约距今1338、499、253年前,其平均核苷酸替换率为3.6×10-4n/s/y。Seadornavirus 3种病毒之间的核苷酸与氨基酸同源性分别是31.3%~100%(μ=68.0%)和11.9%~100%(μ=56.0%)。理化性质和抗原表位分析显示,版纳病毒(Banna virus,BAV)衣壳蛋白为酸性疏水性蛋白质,存在6个B细胞表位和2个Th抗原表位,而辽宁病毒(Liaoning virus,LNV)和卡迪皮诺病毒(Kadipiro virus,KDV)为碱性亲水性蛋白质,分别存在3和5个B细胞抗原表位,其中LNV仅有1个Th抗原表位,KDV病毒则不存在。三级结构以及蛋白表面电荷分析显示,Seadornavirus的α螺旋和β折叠各不相同,并且BAV有2个明显的带正电荷区域和2个带负电荷的区域,LNV只有1个带正电荷区域,KDV则有2个带正电荷区域。结论Seadornavirus进化速率快,并且其基因组、衣壳蛋白抗原表位、理化性质、三级结构等具有较大的差异。 展开更多
关键词 东南亚十二节段病毒属 版纳病毒 辽宁病毒 Kadipiro病毒
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部