Functional characterization of four antenna-enriched odorant binding proteins in Rhaphuma horsfieldi reveals the importance of RhorOBP1 in odorant recognition and insecticide resistance

IF 4.2 1区 农林科学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Yin-Lan Liang , Shun-Si Li , Ning-Na Yin, Shu-Lin Li, Yu-Yue Lu, Nai-Yong Liu
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Abstract

The cerambycid beetles are key players for the sustenance of biodiversity in the forest ecosystem, but in most cases are well known due to their harmfulness to agricultural and forest plants. Here, we characterized the odorant binding protein (OBP) gene family in Rhaphuma horsfieldi, emphasizing the roles of RhorOBP1 in odorant reception and insecticide sequestering. A homology-based search led to the identification of 35 RhorOBP genes with a major distribution in the Minus-C OBPs clade (21/35 genes). Expression profiles showed that RhorOBP1RhorOBP4 had the abundant expression in antennae. Binding assays revealed that the four RhorOBPs exhibited diverse odorant response profiles tuned differentially to various classes of plant odorants, comprising walnut-derived host volatiles and ordinary floral scents. Two broadly tuned RhorOBP1 and RhorOBP2 exhibited different chain length-dependent binding properties to 10C12C alcohols, aldehydes or acetates. Compared with other three proteins, RhorOBP1 reduced the binding to ligands with high affinities at pH 5.0 (1.27–6.72-fold differences relative to pH 7.4). Molecular docking and point-mutation experiments confirmed that Ser107, Tyr118, Tyr119 and Phe120 situated in the binding pocket of RhorOBP1 were critical determinants for the recognition of 14, 15, 10 and 10 compounds, respectively. On the other hand, RhorOBP1 could strongly bind six insecticides, particularly chlorpyrifos (dissociation constant, Ki = 3.69 ± 0.74 μM). This study has provided insights into different binding properties of four antenna-enriched RhorOBPs in R. horsfieldi and identifies a dual role of RhorOBP1 in the binding of odorants and insecticides.

Abstract Image

马蹄金四种触角丰富的气味结合蛋白的功能表征揭示了 RhorOBP1 在气味识别和杀虫剂抗性中的重要性
啮齿目甲虫是维持森林生态系统生物多样性的关键角色,但在大多数情况下,由于其对农业和森林植物的危害而广为人知。在这里,我们描述了马蹄金甲虫气味结合蛋白(OBP)基因家族的特征,强调了 RhorOBP1 在气味接收和杀虫剂封存中的作用。通过基于同源性的搜索,确定了 35 个 RhorOBP 基因,这些基因主要分布在 Minus-C OBPs 支系中(21/35 个基因)。表达谱显示,RhorOBP1-RhorOBP4在触角中的表达量最大。结合试验显示,四种 RhorOBPs 对不同类别的植物气味(包括核桃提取的宿主挥发物和普通花香)表现出不同的气味反应特征。两种广泛调谐的 RhorOBP1 和 RhorOBP2 对 10C12C 醇、醛或醋酸盐表现出不同的链长依赖性结合特性。与其他三种蛋白质相比,RhorOBP1 在 pH 值为 5.0 时与配体的结合亲和力较低(与 pH 值为 7.4 时相比,相差 1.27-6.72 倍)。分子对接和点突变实验证实,位于 RhorOBP1 结合口袋中的 Ser107、Tyr118、Tyr119 和 Phe120 分别是识别 14、15、10 和 10 种化合物的关键决定因素。另一方面,RhorOBP1 能强烈结合六种杀虫剂,尤其是毒死蜱(解离常数 Ki = 3.69 ± 0.74 μM)。这项研究揭示了马蹄蟾中四种富含触角的 RhorOBPs 的不同结合特性,并确定了 RhorOBP1 在气味剂和杀虫剂结合过程中的双重作用。
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来源期刊
CiteScore
7.00
自引率
8.50%
发文量
238
审稿时长
4.2 months
期刊介绍: Pesticide Biochemistry and Physiology publishes original scientific articles pertaining to the mode of action of plant protection agents such as insecticides, fungicides, herbicides, and similar compounds, including nonlethal pest control agents, biosynthesis of pheromones, hormones, and plant resistance agents. Manuscripts may include a biochemical, physiological, or molecular study for an understanding of comparative toxicology or selective toxicity of both target and nontarget organisms. Particular interest will be given to studies on the molecular biology of pest control, toxicology, and pesticide resistance. Research Areas Emphasized Include the Biochemistry and Physiology of: • Comparative toxicity • Mode of action • Pathophysiology • Plant growth regulators • Resistance • Other effects of pesticides on both parasites and hosts.
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