The pharyngeal taste organ of a blood-feeding insect functions in food recognition

BMC Biol. 2024 Mar 13;22(1):63. doi: 10.1186/s12915-024-01861-w.

Abstract

Background: Obligate blood-feeding insects obtain the nutrients and water necessary to ensure survival from the vertebrate blood. The internal taste sensilla, situated in the pharynx, evaluate the suitability of the ingested food. Here, through multiple approaches, we characterized the pharyngeal organ (PO) of the hematophagous kissing bug Rhodnius prolixus to determine its role in food assessment. The PO, located antero-dorsally in the pharynx, comprises eight taste sensilla that become bathed with the incoming blood.

Results: We showed that these taste sensilla house gustatory receptor neurons projecting their axons through the labral nerves to reach the subesophageal zone in the brain. We found that these neurons are electrically activated by relevant appetitive and aversive gustatory stimuli such as NaCl, ATP, and caffeine. Using RNA-Seq, we examined the expression of sensory-related gene families in the PO. We identified gustatory receptors, ionotropic receptors, transient receptor potential channels, pickpocket channels, opsins, takeouts, neuropeptide precursors, neuropeptide receptors, and biogenic amine receptors. RNA interference assays demonstrated that the salt-related pickpocket channel Rproppk014276 is required during feeding of an appetitive solution of NaCl and ATP.

Conclusions: We provide evidence of the role of the pharyngeal organ in food evaluation. This work shows a comprehensive characterization of a pharyngeal taste organ in a hematophagous insect.

Keywords: ATP; Hematophagous; PPKs; RNA-seq; Taste sense.

MeSH terms

  • Adenosine Triphosphate
  • Animals
  • Insecta
  • Pharynx
  • Sodium Chloride* / pharmacology
  • Taste* / physiology

Substances

  • Sodium Chloride
  • Adenosine Triphosphate