Binding characteristics and structural dynamics of two general odorant-binding proteins with plant volatiles in the olfactory recognition of Glyphodes pyloalis

IF 3.2 2区 农林科学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Insect Biochemistry and Molecular Biology Pub Date : 2024-08-20 DOI:10.1016/j.ibmb.2024.104177
Yijiangcheng Li , Wenmiao Song , Shanshan Wang , Wanglong Miao , Zhixiang Liu , Fuan Wu , Jun Wang , Sheng Sheng
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Abstract

Glyphodes pyloalis Walker (Lepidoptera: Pyralidae) is the most destructive pest, causing severe damage to mulberry production in China's sericulture industry. The insecticide application in mulberry orchards poses a significant risk of poisoning to Bombyx mori. Shifting from insecticides to odor attractants is a beneficial alternative, but not much data is available on the olfactory system of G. pyloalis. We identified 114 chemosensory genes from the antennal transcriptome database of G. pyloalis, with 18 odorant-binding protein (OBP) and 17 chemosensory protein (CSP) genes significantly expressed in the antennae. Ligand-binding assays for two antennae-biased expressed general odorant-binding proteins (GOBPs) showed high binding affinities of GOBP1 to hexadecanal, β-ionone, and 2-ethylhexyl acrylate, while GOBP2 exhibited binding to 4-tert-octylphenol, benzyl benzoate, β-ionone, and farnesol. Computational simulations indicated that van der Waal forces predominantly contributed to the binding free energy in the binding processes of complexes. Among them, Phe12 of GOBP1 and Phe19 of GOBP2 were demonstrated to play crucial roles in their bindings to plant volatiles using site-directed mutagenesis experiments. Moreover, hexadecanal and β-ionone attracted G. pyloalis male moths in the behavioral assays, while none of the candidate plant volatiles significantly affected female moths. Our findings provide a comprehensive understanding of the molecular mechanisms underlying olfactory recognition in G. pyloalis, setting the groundwork for novel mulberry pests control strategies based on insect olfaction.

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两种普通气味剂结合蛋白与植物挥发物的结合特征和结构动态,用于蚜虫的嗅觉识别。
褐飞虱是中国蚕桑业中最具破坏性的害虫,对桑树生产造成严重破坏。在桑园施用杀虫剂会对桑蚕造成严重的中毒风险。从杀虫剂转向气味引诱剂是一种有益的替代方法,但有关褐飞虱嗅觉系统的数据并不多。我们从焦蝽触角转录组数据库中发现了 114 个化感基因,其中 18 个气味剂结合蛋白(OBP)和 17 个化感蛋白(CSP)基因在触角中明显表达。对两种偏向触角表达的一般气味剂结合蛋白(GOBPs)进行的配体结合试验表明,GOBP1与十六醛、β-酮和丙烯酸 2-乙基己酯有很高的结合亲和力,而 GOBP2 则与 4-叔辛基苯酚、苯甲酸苄酯、β-酮和法呢醇有很高的结合亲和力。计算模拟表明,在复合物的结合过程中,范德华力对结合自由能的贡献占主导地位。其中,通过定点突变实验证明,GOBP1 的 Phe12 和 GOBP2 的 Phe19 在与植物挥发物的结合过程中起着关键作用。此外,在行为试验中,十六醛和β-酮能吸引雌蛾,而候选植物挥发物对雌蛾均无明显影响。我们的研究结果全面揭示了焦蛾嗅觉识别的分子机制,为基于昆虫嗅觉的新型桑害虫控制策略奠定了基础。
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来源期刊
CiteScore
7.40
自引率
5.30%
发文量
105
审稿时长
40 days
期刊介绍: This international journal publishes original contributions and mini-reviews in the fields of insect biochemistry and insect molecular biology. Main areas of interest are neurochemistry, hormone and pheromone biochemistry, enzymes and metabolism, hormone action and gene regulation, gene characterization and structure, pharmacology, immunology and cell and tissue culture. Papers on the biochemistry and molecular biology of other groups of arthropods are published if of general interest to the readership. Technique papers will be considered for publication if they significantly advance the field of insect biochemistry and molecular biology in the opinion of the Editors and Editorial Board.
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