Division of Entomology, Indian Agricultural Research Institute, New Delhi 110012, India.
Division of Plant Protection, Central Potato Research Institute, Shimla, Himachal Pradesh 171001, India.
Int J Biol Macromol. 2024 Nov;279(Pt 1):135140. doi: 10.1016/j.ijbiomac.2024.135140. Epub 2024 Aug 30.
Genome wide analysis identified 14 OBPs in B. tabaci Asia II-1, of which six are new to science. Phylogenetic analysis traced their diversity and evolutionary lineage among Hemipteran insects. Comparative analysis reclassified the OBP gene families among B. tabaci cryptic species: Asia I, II-1, MEAM1, and MED. The 14 OBPs were clustered on four chromosomes of B. tabaci. RT-qPCR showed high expression of OBP3 and 8 across all body tissues and OBP10 in the abdomen. Molecular docking showed that OBP 3 and 10 had high affinity bonding with different candidate ligands, with binding energies ranging from -5.0 to -7.7 kcal/mol. Competitive fluorescence binding assays revealed that β-caryophyllene and limonene had high binding affinities for OBP3 and 10, with their IC50 values ranging from 9.16 to 14 μmol·L-1 and KD values around 7 to 9 μmol·L-1. Behavioural assays revealed that β-caryophyllene and carvacrol were attractants, β-ocimene and limonene were repellents, and γ-terpinene and β-ocimene were oviposition deterrents to B. tabaci. Functional validation by RNAi demonstrated that OBP3 and OBP10 modulated host recognition of B. tabaci. This study expands our understanding of the genomic landscape of OBPs in B. tabaci, offering scope for developing novel pest control strategies.
全基因组分析鉴定出亚洲二型烟粉虱 B. tabaci 中的 14 个 OBPs,其中 6 个是新发现的。系统发育分析追踪了它们在半翅目昆虫中的多样性和进化谱系。比较分析重新分类了 B. tabaci 隐种的 OBP 基因家族:亚洲 I、II-1、MEAM1 和 MED。这 14 个 OBPs 聚类在 B. tabaci 的四条染色体上。RT-qPCR 显示所有体组织中 OBP3 和 8 的高表达和腹部的 OBP10。分子对接显示 OBP 3 和 10 与不同候选配体具有高亲和力结合,结合能范围为-5.0 至-7.7 kcal/mol。竞争性荧光结合测定显示 β-石竹烯和柠檬烯对 OBP3 和 10 具有高结合亲和力,其 IC50 值范围为 9.16 至 14 μmol·L-1,KD 值约为 7 至 9 μmol·L-1。行为测定表明 β-石竹烯和香芹酚是引诱剂,β-罗勒烯和柠檬烯是驱避剂,γ-松油烯和β-罗勒烯是 B. tabaci 的产卵抑制剂。RNAi 的功能验证表明 OBP3 和 OBP10 调节了烟粉虱对宿主的识别。这项研究扩展了我们对 B. tabaci OBPs 基因组景观的理解,为开发新的害虫控制策略提供了机会。