Teagasc, Crop Science Department, Carlow R93 XE12, Ireland.
School of Biology and Environmental Science, University College Dublin, Dublin 4, Ireland.
G3 (Bethesda). 2022 Mar 4;12(3). doi: 10.1093/g3journal/jkab418.
The English grain aphid, Sitobion avenae, is a major agricultural pest of wheat, barley and oats, and one of the principal vectors of barley yellow dwarf virus leading to significant reductions in grain yield, annually. Emerging resistance to and increasing regulation of insecticides has resulted in limited options for their control. Using PacBio HiFi data, we have produced a high-quality draft assembly of the S. avenae genome; generating a primary assembly with a total assembly size of 475.7 Mb, and an alternate assembly with a total assembly size of 430.8 Mb. Our primary assembly was highly contiguous with only 326 contigs and a contig N50 of 15.95 Mb. Assembly completeness was estimated at 97.7% using BUSCO analysis and 31,007 and 29,037 protein-coding genes were predicted from the primary and alternate assemblies, respectively. This assembly, which is to our knowledge the first for an insecticide resistant clonal lineage of English grain aphid, will provide novel insight into the molecular and mechanistic determinants of resistance and will facilitate future research into mechanisms of viral transmission and aphid behavior.
禾谷缢管蚜是一种主要的农业害虫,危害小麦、大麦和燕麦,也是大麦黄矮病毒的主要载体之一,导致每年粮食产量显著下降。对杀虫剂的抗药性不断增强和监管力度的不断加大,使得它们的控制选择有限。本研究使用 PacBio HiFi 数据,生成了禾谷缢管蚜的高质量基因组草图;主组装的总组装大小为 475.7Mb,替代组装的总组装大小为 430.8Mb。我们的主组装具有高度连续性,仅有 326 个 contigs,contig N50 为 15.95Mb。使用 BUSCO 分析估计组装的完整性为 97.7%,分别从主组装和替代组装中预测到 31007 个和 29037 个蛋白质编码基因。该组装是我们所知的第一个抗药性的禾谷缢管蚜克隆谱系的基因组组装,将为抗性的分子和机制决定因素提供新的见解,并有助于未来研究病毒传播和蚜虫行为的机制。