Key amino acids in odorant-binding protein OBP7 enable Bradysia odoriphaga to recognize host plant volatiles
文献类型: 外文期刊
作者: Yuting Yang;Shunyang Tan;Qinli Wang;Fu Wang;Youjun Zhang
作者机构:
关键词: Bradysia odoriphaga;Fluorescence competitive binding assay;Molecular docking;Odorant binding protein;Site-directed mutagenesis
期刊名称: International Journal of Biological Macromolecules
ISSN: 0141-8130
年卷期: 2025 年 284 卷
页码:
收录情况: SCIE(2025版) ; ; EI(2025版)
摘要: Bradysia odoriphaga (Diptera: Sciaridae) is a devastating underground pest that can cause serious economic losses. Odorant binding proteins (OBPs) are crucial components of the insect olfactory system, playing key roles in locating host plants, oviposition sites, and mates. Therefore, they are considered potential targets for pest control. Here, we obtained one OBP gene (BodoOBP7) from the antennal transcriptome of B. odoriphaga, and observed that the expression level of BodoOBP7 was primarily in the antennae of both sexes, with significantly higher expression level in females than in males. Fluorescence competitive binding assays indicated that BodoOBP7 exhibited strong binding affinities for the six host plant volatiles, including propyl disulfide, dipropyl trisulfide, dimethyl trisulfide, 2-tridecanone, 2-undecanone and alpha-ionone. Subsequently, homology modeling, molecular docking and site-directed mutagenesis revealed that four key amino acid residues (Phe79, Phe99, Ile96, Leu100) participate in the binding of BodoOBP7 with six host plant volatiles. Our results demonstrate that BodoOBP7 is involved in olfactory recognition in B. odoriphaga. These findings may enhance our understanding of the interaction mechanisms between host plants and B. odoriphaga, potentially offering new perspectives for the development of effective green control strategies.
分类号:
- 相关文献
作者其他论文 更多>>
-
Species Identification, Insecticide Resistance and TYLCV Detection of Bemisia tabaci in Kashgar, Xinjiang
作者:Weina Gu;Jing Yang;Qi Li;Jinyu Hu;Rong Zhang;Shaoli Wang;Youjun Zhang;Qi Su;Xin Yang
关键词:B. tabaci;cotton;insecticide resistance;tomato;TYLCV
-
RNAi effect in target and non-target pests correlates with the length of continuous matches in dsRNA sequences
作者:Zhaoyang Li;Junna Liu;Satyabrata Nanda;Zexin Zhong;Xuming Luo;Xuguo Zhou;Youjun Zhang;Chunxiao Yang;Huipeng Pan
关键词:Gene silencing;Henosepilachna vigintioctopunctata;Non-target effects;Propylaea japonica;RNA interference
-
Cytochrome P450 CYP6EM1 confers resistance to thiamethoxam in the whitefly Bemisia tabaci (Hemiptera: Aleyrodidae) via detoxification metabolism
作者:Mingjiao Huang;Peipan Gong;Cheng Yin;Jing Yang;Shaonan Liu;Buli Fu;Xuegao Wei;Jinjin Liang;Hu Xue;Chao He;Tianhua Du;Chao Wang;Yao Ji;Jin Yu Hu;Rong Zhang;Natalia A. Belyakova;Youjun Zhang;Xin Yang
关键词:Bemisia tabaci;In vitro metabolism;P450s;Pest management;Thiamethoxam-resistance
-
Transcriptome analysis of insecticide resistance mechanisms in field populations of the bean flower thrips, Megalurothrips usitatus (Bagnall)
作者:Hongyi Cao;Jiangjiang Yuan;Yanran Wan;Yingxi Tang;Xiaobin Zheng;Jing Wang;Kanghua Qian;Jiuming Feng;Sirui Chen;Youjun Zhang;Qingjun Wu
关键词:Detoxification enzymes;Insecticide resistance;Megalurothrips usitatus;RNA-seq;Vigna unguiculata;WGCNA
-
Two carboxyl/choline esterase (CCE) genes, TuCCE11 and TuCCE34, are related to abamectin resistance in Tetranychus urticae Koch
作者:Yan Zhang;Ke Wang;Dandan Xu;Chunyue Zhu;Zhaojiang Guo;Wen Xie;Xin Yang;Qingjun Wu;Youjun Zhang;Shaoli Wang
关键词:Abamectin;Carboxyl/cholinesterases;Resistance;Tetranychus urticae
-
HvStaufenC contributes to the high RNAi efficiency in the 28-spotted ladybeetle, Henosepilachna vigintioctopunctata
作者:Zhaoyang Li;June Sun Yoon;Zexin Zhong;Yalin Ruan;Chunxiao Yang;Xuguo Zhou;Youjun Zhang;Huipeng Pan
关键词:CRISPR/Cas9;Henosepilachna vigintioctopunctata;RNAi efficiency;StaufenC
-
Altitude weakens the drought resistance-resilience tradeoff across northern ecosystems
作者:Yuting Yang;Xie He;Yunfei Feng;Ben Niu;Jianshuang Wu;Meng Li
关键词:Climate change;Control factor;Remote sensing;Stability;Vegetation growth