State Key Laboratory of Crop Stress Biology for Arid Areas, and Key Laboratory of Plant Protection Resources and Pest Management of the Ministry of Education, College of Plant Protection, Northwest A&F University, Yangling 712100, Shaanxi, China.
J Agric Food Chem. 2021 Sep 22;69(37):10797-10806. doi: 10.1021/acs.jafc.1c02807. Epub 2021 Sep 10.
Chemosensory proteins (CSPs) can bind and transport odorant molecules and play important roles in insect chemoreception. In this study, we focused on the roles of a chemosensory protein (BodoCSP1) in perception of host plant volatiles in . The expression of was significantly higher in adults than in larvae and pupae, without a significant difference between male and female adults. Recombinant protein BodoCSP1 exhibited relatively high binding affinities to 9 out of 10 tested ligands ( < 10 μM). Behavioral assays revealed that adults of showed a significant preference for five compounds. The predicted three-dimensional (3D) structure of BodoCSP1 has the typical six α-helices that form the hydrophobic ligand-binding pocket. Molecular docking and site-directed mutagenesis combined with ligand-binding assays indicated that Val48 and Thr66 may be the key binding site in BodoCSP1 for host plant volatiles. RNAi results indicated that -treated adults showed significant reductions in response to diallyl disulfide, dipropyl disulfide, and allyl methyl disulfide. These results indicated that BodoCSP1 plays essential functions in the perception of host plant volatiles in .
化学感觉蛋白(CSPs)可以结合和转运气味分子,并在昆虫化学感受中发挥重要作用。在这项研究中,我们专注于化学感觉蛋白(BodoCSP1)在 中感知宿主植物挥发物中的作用。 的表达在成虫中显著高于幼虫和蛹,而雌雄成虫之间没有显著差异。重组蛋白 BodoCSP1 对 10 种测试配体中的 9 种表现出相对较高的结合亲和力(<10 μM)。行为测定显示,成虫对五种化合物表现出显著的偏好。BodoCSP1 的预测三维(3D)结构具有形成疏水性配体结合口袋的典型六个α-螺旋。分子对接和定点突变结合配体结合测定表明,Val48 和 Thr66 可能是 BodoCSP1 识别宿主植物挥发物的关键结合位点。RNAi 结果表明,-处理的成虫对二烯丙基二硫、二丙基二硫和烯丙基甲基二硫的反应明显减少。这些结果表明,BodoCSP1 在 中宿主植物挥发物的感知中发挥着重要作用。