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TabsPBP2,一种在[昆虫名称]雄性触角中高度表达的信息素结合蛋白,可结合性信息素和番茄挥发物。 (注:原文中“of ”后面缺失昆虫名称)

TabsPBP2, a Pheromone-Binding Protein Highly Expressed in Male Antennae of , Binds Sex Pheromones and Tomato Volatiles.

作者信息

Qu Cheng, Yan Jingxue, Yan Zuqing, Li Ren, Liu Yuqi, Lin Aoli, Fu Yuejun, Luo Chen, Kang Zhiwei, Wang Ran

机构信息

Institute of Plant Protection, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, China.

Beijing Key Laboratory of Environment Friendly Management on Fruit Diseases and Pests in North China, Beijing 100097, China.

出版信息

Biomolecules. 2025 Aug 11;15(8):1152. doi: 10.3390/biom15081152.

Abstract

The tomato leafminer (), a globally invasive pest, poses a major economic threat to tomato production. Although chemical control remains the primary management method, sustainable alternatives are urgently needed. Sex pheromone communication is critical for moth courtship and mating, with pheromone-binding proteins (PBPs) playing a key role in this process. In this study, we identified a PBP gene, , from the transcriptome. Real-time quantitative PCR (RT-qPCR) revealed that is highly expressed in the antennae, with a strong male-biased expression pattern. Ligand-binding assays demonstrated that TabsPBP2 has the highest affinity for the sex pheromones (3E, 8Z, 11Z)-tetradecatrienyl acetate (TDTA) and (3E, 8Z)-tetradecadienyl acetate (TDDA). It also demonstrated a moderate-to-strong binding affinity to several tomato volatiles, including 2-carene, myrcene, α-pinene, -3-hexen-l-ol, methyl salicylate, sabinene, and α-terpinene. Molecular docking suggested that hydrophobic interactions predominantly stabilize the TabsPBP2-ligand complexes, with PHE118, PHE12, LEU90, LEU68, and ALA73 identified as key interacting residues. Electroantennogram (EAG) and Y-tube olfactometer assays confirmed that TDTA and TDDA act as strong attractants for male . This study enhances our understanding of the pheromone recognition in and provides a foundation for developing novel, pheromone-based pest control strategies.

摘要

番茄潜叶蛾是一种全球入侵性害虫,对番茄生产构成重大经济威胁。尽管化学防治仍是主要的管理方法,但迫切需要可持续的替代方法。性信息素通讯对于蛾类求偶和交配至关重要,信息素结合蛋白(PBPs)在此过程中起关键作用。在本研究中,我们从转录组中鉴定出一个PBP基因。实时定量PCR(RT-qPCR)显示,该基因在触角中高度表达,具有强烈的雄性偏向表达模式。配体结合试验表明,番茄潜叶蛾PBP2(TabsPBP2)对性信息素(3E,8Z,11Z)-十四碳三烯乙酸酯(TDTA)和(3E,8Z)-十四碳二烯乙酸酯(TDDA)具有最高亲和力。它对几种番茄挥发物也表现出中度至强的结合亲和力,包括蒈烯、月桂烯、α-蒎烯、叶醇、水杨酸甲酯、桧烯和α-萜品烯。分子对接表明,疏水相互作用主要稳定TabsPBP2-配体复合物,苯丙氨酸118、苯丙氨酸12、亮氨酸90、亮氨酸68和丙氨酸73被确定为关键相互作用残基。触角电位(EAG)和Y型嗅觉仪试验证实,TDTA和TDDA对雄性番茄潜叶蛾有强烈吸引作用。本研究增进了我们对番茄潜叶蛾信息素识别的理解,并为开发基于信息素的新型害虫防治策略奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a976/12384096/079099d8cf40/biomolecules-15-01152-g001.jpg

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