National Health Laboratory, Ministry of Public Health, 01 P.O. Box 418, Cotonou, Benin; Research Unit in Applied Microbiology and Pharmacology of Natural Substances, Research Laboratory in Applied Biology, Polytechnic School of Abomey-Calavi, University of Abomey-Calavi, 01 P.O. Box 2009, Cotonou, Benin.
Viral Gastroenteritis Branch, Division of Viral Diseases, Centers for Disease Control and Prevention, NCIRD, 1600 Clifton Rd NE, Atlanta, GA 30329, USA.
Virus Res. 2022 May;313:198715. doi: 10.1016/j.virusres.2022.198715. Epub 2022 Mar 3.
Species A rotaviruses (RVA) still play a major role in causing acute diarrhea in children under five years old worldwide. Currently, an 11-gene classification system is used to designate the full genotypic constellations of circulating strains. Viral proteins and non-structural proteins in the order VP7-VP4-VP6-VP1-VP2-VP3-NSP1-NSP2-NSP3-NSP4-NSP5/6 are represented by the genotypes Gx-P[x]-Ix-Rx-Cx-Mx-Ax-Nx-Tx-Ex-Hx, respectively. In Benin, ROTAVAC® vaccine was introduced into the Expanded Programme on Immunization in December 2019. To monitor circulating RVA strains for changes that may affect vaccine performance, in-depth analysis of strains prior to vaccine introduction are needed. Here we report, the whole-gene characterization (11 ORFs) for 72 randomly selected RVA strains of common and unusual genotypes collected in Benin from the 2016 to 2018 seasons. The sequenced strains were 15 G1P[8], 20 G2P[4], 5 G9P[8], 14 G12P[8], 9 G3P[6], 2 G1P[6], 3 G2P[6], 2 G9P[4], 1 G12P[6], and 1 G1G9P[8]/P[4]. The study strains exhibited two genetic constellations designed as Wa-like G1/G9/G12-P[6]/P[8]-I1-R1-C1-M1-A1-N1-T1-E1-H1 and DS-1-like G2/G3/G12-P[4]/P[6]-I2-R2-C2-M2-A2-N2-T2-E2-H2. Genotype G9P[4] strains possessed a DS-1-like genetic constellation with an E6 NSP4 gene, G9-P[4]-I2-R2-C2-M2-A2-N2-T2-E6-H2. The mixed genotype showed both Wa-like and DS-1-like profiles with a T6 NSP3 gene G1/G9P[8]/[4]-I1/I2-R1/R2-C1/C2-M1/M2-A1/A2-N1/N2-T1/T6-E1/E6-H1/H2. At the allelic level, the analysis of the Benin strains, reference strains (with known alleles), vaccine strains (with known alleles) identified 2-13 and 1-17 alleles for DS-1-like and Wa-like strains, respectively. Most of the study strains clustered into previously defined alleles, but we defined 3 new alleles for the VP7 (G3 = 1 new allele and G12 = 2 new alleles) and VP4 (P[4] = 1 new allele and P[6] = 2 new alleles) genes which formed the basis of the VP7 and VP4 gene clusters, respectively. For the remaining 9 genes, 0-6 new alleles were identified for both Wa-like and DS-1-like strains. This analysis of whole genome sequences of RVA strains circulating in Benin described genetic point mutations and reassortment events as well as novel alleles. Further detailed studies on these new alleles are needed and these data can also provide a baseline for studies on RVA in the post-vaccination period.
A 型轮状病毒(RVA)仍然在全球范围内导致 5 岁以下儿童急性腹泻方面发挥着重要作用。目前,使用 11 个基因分类系统来指定循环毒株的完整基因型组合。病毒蛋白和非结构蛋白按 VP7-VP4-VP6-VP1-VP2-VP3-NSP1-NSP2-NSP3-NSP4-NSP5/6 的顺序表示为基因型 Gx-P[x]-Ix-Rx-Cx-Mx-Ax-Nx-Tx-Ex-Hx。在贝宁,ROTAVAC®疫苗于 2019 年 12 月被纳入扩大免疫规划。为了监测可能影响疫苗效果的循环 RVA 株的变化,在引入疫苗之前需要对株进行深入分析。在这里,我们报告了 72 株随机选择的 RVA 株的全基因特征(11 个 ORF),这些 RVA 株来自 2016 年至 2018 年贝宁的常见和不常见基因型。测序的菌株为 15 株 G1P[8]、20 株 G2P[4]、5 株 G9P[8]、14 株 G12P[8]、9 株 G3P[6]、2 株 G1P[6]、3 株 G2P[6]、2 株 G9P[4]、1 株 G12P[6]和 1 株 G1G9P[8]/P[4]。研究菌株表现出两种遗传组合,设计为 Wa 样 G1/G9/G12-P[6]/P[8]-I1-R1-C1-M1-A1-N1-T1-E1-H1 和 DS-1 样 G2/G3/G12-P[4]/P[6]-I2-R2-C2-M2-A2-N2-T2-E2-H2。基因型 G9P[4]菌株具有 DS-1 样遗传组合,带有 E6 NSP4 基因,G9-P[4]-I2-R2-C2-M2-A2-N2-T2-E6-H2。混合基因型显示出 Wa 样和 DS-1 样的特征,带有 T6 NSP3 基因 G1/G9P[8]/[4]-I1/I2-R1/R2-C1/C2-M1/M2-A1/A2-N1/N2-T1/T6-E1/E6-H1/H2。在等位基因水平上,对贝宁菌株、参考菌株(具有已知等位基因)和疫苗菌株(具有已知等位基因)的分析确定了 DS-1 样和 Wa 样菌株的 2-13 和 1-17 个等位基因。大多数研究菌株聚类到先前定义的等位基因中,但我们定义了 VP7(G3=1 个新等位基因和 G12=2 个新等位基因)和 VP4(P[4]=1 个新等位基因和 P[6]=2 个新等位基因)基因的 3 个新等位基因,它们分别构成了 VP7 和 VP4 基因簇的基础。对于其余的 9 个基因,在 Wa 样和 DS-1 样菌株中分别确定了 0-6 个新等位基因。对贝宁循环 RVA 株的全基因组序列分析描述了遗传点突变和重组事件以及新等位基因。需要对这些新等位基因进行进一步的详细研究,这些数据也可以为疫苗接种后 RVA 的研究提供基线。