Insects (Jul 2023)

Gut Bacterial Diversity of Insecticide-Susceptible and Insecticide-Resistant <i>Megalurothrips usitatus</i> (Thysanoptera: Thripidae) and Elucidation of Their Putative Functional Roles

  • Bifeng Zhu,
  • Yueyin Chen,
  • Chenyan Zhou,
  • Haolong Li,
  • Shaukat Ali,
  • Jianhui Wu

DOI
https://doi.org/10.3390/insects14080669
Journal volume & issue
Vol. 14, no. 8
p. 669

Abstract

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The gut bacterial microbiota of insects plays a crucial role in physiological, metabolic, and innate immune processes. In the current study, the gut bacterial communities of an insecticide-susceptible (IS), and a resistant (IR) population of a major legume pest, Megalurothrips usitatus (Bagnall), were evaluated. The 16S rDNA V3 + V4 regions of M. usitatus infected with Beauveria brongniartii along with the intestinal flora of both populations were sequenced based on a High-throughput sequencing platform. Toxicological bioassays revealed that the IR population exhibited resistance to acetamiprid and B. brongniartii isolate SB010 at levels of 138.0-fold and 55.6-fold higher, respectively, compared to the IS population. Through 16S High-throughput sequencing, the results indicate that both resistant populations, as well as B. brongniartii infestation, reduce the number of species of M. usitatus gut microbes. Using KEGG function prediction, it was found that most intestinal bacteria were involved in various metabolic activities, and the abundance of resistant populations was higher than that of sensitive populations. The bacteria in the gut of M. usitatus are mainly involved in various metabolic activities to achieve the degradation of B. brongniartii. This study provides valuable insights into the interaction between gut bacteria, insecticide resistance, and Beauveria. brongniartii infection in Megalurothrips usitatus, which can help inform future pest control strategies.

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