Ahmed Tofael, Zhang Tiantao, Wang Zhenying, He Kanglai, Bai Shuxiong
State Key Laboratory for the Biology of the Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural SciencesBeijing, China; Bangladesh Sugarcrop Research InstitutePabna, Bangladesh.
State Key Laboratory for the Biology of the Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences Beijing, China.
Front Physiol. 2017 Feb 8;8:62. doi: 10.3389/fphys.2017.00062. eCollection 2017.
The soluble carrier proteins, OBPs carry odor components through sensilium lymph to specific receptors within the antennal sensilla to trigger behavioral responses. Herein, McinOBP4 was characterized from the , which is the specialist parasitic insect of for better understanding of olfactory recognition mechanism of this wasp. The classical odorant binding protein McinOBP4 showed good binding affinity to corn green leaf volatiles. RT-qPCR results showed that the McinOBP4 was primarily expressed in male and female wasp antennae, with transcripts levels differing by sex. Fluorescence assays indicate that, McinOBP4 binds corn green leaf volatiles including terpenoides and aliphatic alcohols as well as aldehydes with good affinity. We have also conducted series of binding assay with first mutant (M1), which lacked the last 8 residues and a second mutant (M2), with Met119 replaced by Leucine (Leu119). In the acidic conditions, affinity N-phenylnaphthylamine (1-NPN) to McinOBP4 and M1 were substantially decreased, but increase in basic condition with no significant differences. The lack of C-terminus showed reduced affinity to terpenoides and aliphatic alcohols as well as aldehydes compounds of corn odorants. The mutant M2 with Met119 showed significant reduction in binding affinity to tested odorants, it indicating that Met119 forming hydrophobic chain with the odorants functional group to binding. This finding provides detailed insight of chemosensory function of McinOBP4 in and help to develop low release agents that attract of this wasp to improve ecologically-friendly pest management strategy.
可溶性载体蛋白气味结合蛋白(OBPs)通过感器淋巴将气味成分携带至触角感器内的特定受体,以触发行为反应。在此,为了更好地理解这种黄蜂的嗅觉识别机制,从这种专性寄生昆虫中鉴定出了McinOBP4。经典的气味结合蛋白McinOBP4对玉米绿叶挥发物表现出良好的结合亲和力。实时定量PCR结果表明,McinOBP4主要在雌雄黄蜂触角中表达,转录水平存在性别差异。荧光分析表明,McinOBP4与包括萜类、脂肪醇以及醛类在内的玉米绿叶挥发物具有良好的亲和力。我们还对第一个缺失最后8个残基的突变体(M1)和将Met119替换为亮氨酸(Leu119)的第二个突变体(M2)进行了一系列结合试验。在酸性条件下,N-苯基萘胺(1-NPN)与McinOBP4和M1的亲和力大幅降低,但在碱性条件下增加,且无显著差异。C末端的缺失显示出对玉米气味剂的萜类、脂肪醇以及醛类化合物的亲和力降低。具有Met119的突变体M2对测试气味剂的结合亲和力显著降低,这表明Met119与气味剂官能团形成疏水链以进行结合。这一发现为McinOBP4在该黄蜂中的化学感受功能提供了详细的见解,并有助于开发吸引这种黄蜂的低释放剂,以改善生态友好型害虫管理策略。