Selected article for: "additional file and sequence identity"

Author: Hu, Tingsong; Qiu, Wei; He, Biao; Zhang, Yan; Yu, Jing; Liang, Xiu; Zhang, Wendong; Chen, Gang; Zhang, Yingguo; Wang, Yiyin; Zheng, Ying; Feng, Ziliang; Hu, Yonghe; Zhou, Weiguo; Tu, Changchun; Fan, Quanshui; Zhang, Fuqiang
Title: Characterization of a novel orthoreovirus isolated from fruit bat, China
  • Document date: 2014_11_30
  • ID: 1fw9ng2p_13
    Snippet: To better understand the genetic relatedness of Cangyuan virus to other known bat-borne orthoreoviruses, the published sequences for the S genome segment of bat-borne orthoreoviruses known for causing acute respiratory disease in humans were retrieved from GenBank and used to compare homology (Table 3 and Additional file 2: Table S2 ) and construct phylogenetic trees (Figure 4 ). The Cangyuan virus S1-S4 segments sequence identity were 55.3%-94.7.....
    Document: To better understand the genetic relatedness of Cangyuan virus to other known bat-borne orthoreoviruses, the published sequences for the S genome segment of bat-borne orthoreoviruses known for causing acute respiratory disease in humans were retrieved from GenBank and used to compare homology (Table 3 and Additional file 2: Table S2 ) and construct phylogenetic trees (Figure 4 ). The Cangyuan virus S1-S4 segments sequence identity were 55.3%-94.7%, 86.2%-95.5%, 86.5%-97.9%%, and 83.5%-98.2%, respectively ( Table 3 and Additional file 2: Table S2 ). The S1 segment demonstrated a greater heterogeneity than other S segments in Pteropine orthoreovirus (PRV) species group.

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