Yang Yuting, Hua Dengke, Zhu Jiaqi, Wang Fu, Zhang Youjun
Hubei Engineering Technology Center for Pest Forewarning and Management, Institute of Insect Sciences, Yangtze University, Jingzhou, Hubei, China.
Institute of Agricultural Quality Standards and Testing Technology Research, Hubei Academy of Agricultural Sciences/Hubei Key Laboratory of Nutritional Quality and Safety of Agro Products, Wuhan, Hubei, China.
Front Physiol. 2022 Sep 27;13:989601. doi: 10.3389/fphys.2022.989601. eCollection 2022.
(Diptera: Sciaridae) is a serious pest of Chinese chives cultivated in China. Chemosensory proteins (CSPs) are important components of insect olfactory systems that capture and bind environmental semiochemicals which are then transported to olfactory receptors. Despite their importance, the mechanism of olfaction and related behavioral processes in . have not been characterized. Here, we found that has an important olfactory function. RT-qPCR indicated that expression was highest in the heads (antennae removed) of adult males, followed by the antennae of adult males. Competitive binding assays with 33 ligands indicated that BodoCSP4 binds well with methyl allyl disulfide, diallyl disulfide, and n-heptadecane; the corresponding dissolution constants (K) were as high as 5.71, 5.71, and 6.85 μM, respectively. 3D-structural and molecular docking indicated that BodoCSP4 has five α-helices and surrounds the ligand with certain hydrophobic residues including Leu60, Leu63, Leu64, Ala67, Val28, Ile30, Ile33, Leu34, and Val86, suggesting these residues help BodoCSP4 bind to ligands. Silencing of significantly decreased the attraction of males to diallyl disulfide and n-heptadecane but not to methyl allyl disulfide in Y-tube olfaction assays. These results increase our understanding of how contributes to host and female localization by males.
(双翅目:眼蕈蚊科)是中国栽培韭菜的一种严重害虫。化学感受蛋白(CSPs)是昆虫嗅觉系统的重要组成部分,可捕获并结合环境中的信息素,然后将其运输到嗅觉受体。尽管它们很重要,但[该害虫名称未给出]的嗅觉机制和相关行为过程尚未得到表征。在此,我们发现[该害虫名称未给出]具有重要的嗅觉功能。RT-qPCR表明,[该害虫名称未给出]的表达在成年雄性(去除触角)头部最高,其次是成年雄性触角。与33种配体的竞争性结合试验表明,BodoCSP4与甲基烯丙基二硫化物、二烯丙基二硫化物和正十七烷结合良好;相应的解离常数(K)分别高达5.71、5.71和6.85μM。三维结构和分子对接表明,BodoCSP4有五个α螺旋,并用包括Leu60、Leu63、Leu64、Ala67、Val28、Ile30、Ile33、Leu34和Val86在内的某些疏水残基围绕配体,表明这些残基有助于BodoCSP4与配体结合。在Y型管嗅觉试验中,[该害虫名称未给出]的沉默显著降低了[该害虫名称未给出]雄性对二烯丙基二硫化物和正十七烷的吸引力,但对甲基烯丙基二硫化物没有影响。这些结果增加了我们对[该害虫名称未给出]如何有助于[该害虫名称未给出]雄性定位宿主和雌性的理解。