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October 10, 2025Journal of Agricultural and Food Chemistry2 citations

Evolution and Function of Antenna-Binding Proteins II in Recognition of Brassicaceous Volatiles by the Striped Flea Beetle

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YXYong XiaoMCMinxue ChenLZLing‐Ling Zheng

Key Points

  • High binding affinities to Brassicaceae volatiles were demonstrated by PstrOBP9 and PstrOBP24, showcasing their role in host recognition.
  • Phylogenetic analyses identified eight ABP II genes across four chromosomes in the striped flea beetle, emphasizing evolutionary aspects.
  • Dual RNAi knockdown of PstrOBP9 and PstrOBP24 eliminated host-seeking and oviposition preferences, highlighting their functional importance.
  • The study provides insights into the ABP II family's role in volatile recognition and its implications for pest management strategies.

Abstract

Antenna-binding proteins (ABPs) are crucial in behaviors, such as foraging in insects, but comprehensive studies on the evolution and functional characteristics of the whole family are rare. This study investigates the ABP II family in the striped flea beetle (Phyllotreta striolata), a major pest of Brassicaceae. Through phylogenetic, expression, and binding analyses, we characterized 38 odorant-binding proteins (OBPs) in the striped flea beetle and eight ABP II genes were distributed across four chromosomes. PstrOBP9 and PstrOBP24 exhibited high binding affinities to various volatiles of Brassicaceous plants, especially isothiocyanates (ITCs), and were coexpressed in the olfactory sensory neurons of the antennae. Individual RNAi knockdown of PstrOBP9 or PstrOBP24 had mild effects; however, dual knockdown abolished host-seeking and oviposition preferences, and there was an expression compensation phenomenon between them. These findings underscore the importance of ABP II in host volatile recognition and offer insights into developing behavior-based pest control strategies.

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Cite This Study

Xiao et al. (2025) studied this question.

synapsesocial.com/papers/68e92b74531184d53775e30ahttps://doi.org/10.1021/acs.jafc.5c07078
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