AI Article Synopsis

  • A genome-wide analysis identified 14 odorant binding proteins (OBPs) in the B. tabaci Asia II-1 species, with six being new discoveries, and traced their evolutionary lineage among Hemipteran insects.
  • Phylogenetic and comparative analyses reclassified the OBP gene families in various B. tabaci cryptic species, revealing that these 14 OBPs are located on four chromosomes.
  • Functional studies showed that OBP3 and OBP10 are highly expressed and are crucial for host recognition, while specific ligands like β-caryophyllene and limonene can attract or repel B. tabaci, highlighting potential for new pest control approaches.

Article Abstract

Genome wide analysis identified 14 OBPs in B. tabaci Asia II-1, of which six are new to science. Phylogenetic analysis traced their diversity and evolutionary lineage among Hemipteran insects. Comparative analysis reclassified the OBP gene families among B. tabaci cryptic species: Asia I, II-1, MEAM1, and MED. The 14 OBPs were clustered on four chromosomes of B. tabaci. RT-qPCR showed high expression of OBP3 and 8 across all body tissues and OBP10 in the abdomen. Molecular docking showed that OBP 3 and 10 had high affinity bonding with different candidate ligands, with binding energies ranging from -5.0 to -7.7 kcal/mol. Competitive fluorescence binding assays revealed that β-caryophyllene and limonene had high binding affinities for OBP3 and 10, with their IC50 values ranging from 9.16 to 14 μmol·L-1 and KD values around 7 to 9 μmol·L-1. Behavioural assays revealed that β-caryophyllene and carvacrol were attractants, β-ocimene and limonene were repellents, and γ-terpinene and β-ocimene were oviposition deterrents to B. tabaci. Functional validation by RNAi demonstrated that OBP3 and OBP10 modulated host recognition of B. tabaci. This study expands our understanding of the genomic landscape of OBPs in B. tabaci, offering scope for developing novel pest control strategies.

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Source
http://dx.doi.org/10.1016/j.ijbiomac.2024.135140DOI Listing

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