Anjume Humaira, Hossain Kazi Alamgir, Hossain Anamica, Hossain M Anwar, Sultana Munawar
Department of Microbiology, University of Dhaka, Dhaka, 1000, Bangladesh.
Heliyon. 2024 Feb 20;10(5):e26716. doi: 10.1016/j.heliyon.2024.e26716. eCollection 2024 Mar 15.
Foot-and-mouth disease virus (FMDV), the causative agent of the foot-and-mouth disease of cattle population possesses a rapid evolutionary rate. In Bangladesh, the first circulation of the O/ME-SA/SA-2018 lineage as a novel sublineage, MYMBD21 was reported from our laboratory. The first whole genome sequence of an isolate, BAN/MY/My-466/2021 (shortly named My-466) of the SA-2018 lineage is characterized and represented in this study. The genome is 8216 nucleotides long with 6996 nucleotides open reading frame flanked by 5ꞌ UTR (1-1100) and 3ꞌ UTR (8097-8216). VP1 was found to be highly variable among the structural proteins with crucial mutations in the major antigenic region, G-H loop. Structural variations of the VP1 against both field and proposed local vaccine strains were evidenced by the G-H loop displacement in a superimposed 3D model. The complete genome information of the isolate would be valuable for undertaking proper control measures needed to limit the spread of the newly emerged FMDV strain.
口蹄疫病毒(FMDV)是牛口蹄疫的病原体,具有快速的进化速率。在孟加拉国,我们实验室报告了O/ME-SA/SA-2018谱系作为一个新的亚谱系MYMBD21的首次传播。本研究对SA-2018谱系的一个分离株BAN/MY/My-466/2021(简称My-466)的首个全基因组序列进行了特征分析和呈现。该基因组长度为8216个核苷酸,开放阅读框为6996个核苷酸,两侧分别是5′非编码区(1-1100)和3′非编码区(8097-8216)。在结构蛋白中,VP1被发现具有高度变异性,在主要抗原区域G-H环存在关键突变。通过叠加三维模型中的G-H环位移,证明了VP1相对于田间毒株和拟用的本地疫苗毒株的结构变异。该分离株的完整基因组信息对于采取适当的控制措施以限制新出现的口蹄疫病毒株的传播具有重要价值。