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Functional characterization of four antenna-biased chemosensory proteins in Dioryctria abietella reveals a broadly tuned olfactory DabiCSP1 and its key residues in ligand-binding.

Authors :
Yin, Ning-Na
Yao, Yu-Juan
Liang, Yin-Lan
Wang, Zheng-Quan
Li, Yong-He
Liu, Nai-Yong
Source :
Pesticide Biochemistry & Physiology. Dec2023, Vol. 197, pN.PAG-N.PAG. 1p.
Publication Year :
2023

Abstract

The orientation of the oligophagous cone-feeding moth Dioryctria abietella (Lepidoptera: Pyralidae) to host plants primarily relies on olfactory-related proteins, particularly those candidates highly expressed in antennae. Here, through a combination of expression profile, ligand-binding assay, molecular docking and site-directed mutagenesis strategies, we characterized the chemosensory protein (CSP) gene family in D. abietella. Quantitative real-time PCR (qPCR) analyses revealed the detectable expression of all 22 DabiCSPs in the antennae, of which seven genes were significantly enriched in this tissue. In addition, the majority of the genes (19/22 relatives) had the expression in at least one reproductive tissue. In the interactions of four antenna-dominant DabiCSPs and different chemical classes, DabiCSP1 was broadly tuned to 27 plant-derived odors, three man-made insecticides and one herbicide with high affinities (K i < 6.60 μM). By contrast, three other DabiCSPs (DabiCSP4, CSP6 and CSP17) exhibited a narrow odor binding spectrum, in response to six compounds for each protein. Our mutation analyses combined with molecular docking simulations and binding assays further identified four key residues (Tyr25, Thr26, Ile65 and Val69) in the interactions of DabiCSP1 and ligands, of which binding abilities of this protein to 12, 15, 16 and three compounds were significantly decreased compared to the wildtype protein, respectively. Our study reveals different odor binding spectra of four DabiCSPs enriched in antennae and identifies key residues responsible for the binding of DabiCSP1 and potentially active compounds for the control of this pest. [Display omitted] • Seven of 22 DabiCSPs were significantly enriched in antennae of D. abietella. • Four antenna-dominant DabiCSPs were differentially tuned to odor ligands. • DabiCSP1 could strongly interact with 31 compounds. • Residues Tyr25, Thr26, Ile65 and Val69 significantly affected the binding of DabiCSP1 to some ligands. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00483575
Volume :
197
Database :
Academic Search Index
Journal :
Pesticide Biochemistry & Physiology
Publication Type :
Academic Journal
Accession number :
174105338
Full Text :
https://doi.org/10.1016/j.pestbp.2023.105678