Molecular Characterization and Phylogenetic Analysis of Flightin Gene in (Hymenoptera, Vespidae).

Animals (Basel)

Shaanxi Key Laboratory for Animal Conservation/Key Laboratory of Resource Biology and Biotechnology in Western China, Ministry of Education, College of Life Sciences, Northwest University, Xi'an 710069, China.

Published: March 2024

AI Article Synopsis

  • - The research investigated the flight competence of a dangerous hornet species by focusing on the flightin protein, essential for muscle coordination during flight.
  • - Using PCR, scientists obtained a partial cDNA sequence of the flightin protein, which was 1189 base pairs long and produced a protein of 150 amino acids with specific molecular characteristics.
  • - A phylogenetic analysis indicated that this hornet species shares a close relationship with another species based on aggressive behavior, while also highlighting differences in their evolutionary paths, setting a foundation for future studies on flight adaptations and pest management.

Article Abstract

Flight is a complex physiological process requiring precise coordination of muscular contraction. A key protein in insect flight is flightin, which plays an integral role in the flight muscles. This research sought to evaluate the flight competence of the social wasp by characterizing the molecular components involved. Our study focused on , one of the most dangerous hornet species, utilizing PCR to obtain a partial cDNA sequence of the flightin protein. We then employed phylogenetic and sequence analysis to gain insights into this protein in flight-related adaptations. The cDNA has an 1189-base pair sequence including an open reading frame (453 bp) encoding 150 amino acids. Analyzing the deduced amino acid sequence using an online tool revealed a molecular weight of 18.05 kDa, an isoelectric point of 5.84, four functional site patterns, and no transmembrane topology. We constructed a phylogenetic tree of flightin based on 38 species. Our analysis indicated that is most closely related to ; this alignment is consistent with their similar aggressive behavior, but their evolutionary relationship, based on mitochondrial sequences, presents a contrast. These initial findings on the flightin gene in lay the groundwork for future functional studies to elucidate its specific role in flight adaptations and explore its potential as a target for pest management strategies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10967473PMC
http://dx.doi.org/10.3390/ani14060978DOI Listing

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