Transcriptional signature of host shift in the seed beetle Zabrotes subfasciatus.

Genet Mol Biol

Universidade Federal de Alfenas (UNIFAL-MG), Instituto de Ciências Biomédicas, Departamento de Biologia Celular e do Desenvolvimento, Alfenas, MG, Brazil.

Published: February 2024

AI Article Synopsis

  • The study investigates how the bean beetle, Zabrotes subfasciatus, adapts to new host plants through changes in gene expression, focusing on the early stages of this adaptation.
  • Researchers conducted a short-term selection experiment with populations that shifted from their usual host to Cicer arietinum, revealing significant differences in gene expression related to stimuli, signaling, and development.
  • The findings suggest that specific genes, such as those involved in histone methylation and reproductive functions, play a crucial role in the insect's adaptation process, laying the groundwork for further genomic studies on insect evolution.

Article Abstract

In phytophagous insects, adaptation to a new host is a dynamic process, in which early and later steps may be underpinned by different features of the insect genome. Here, we tested the hypothesis that early steps of this process are underpinned by a shift in gene expression patterns. We set up a short-term artificial selection experiment (10 generations) for the use of an alternative host (Cicer arietinum) on populations of the bean beetle Zabrotes subfasciatus. Using Illumina sequencing on young adult females, we show the selected populations differ in the expression of genes associated to stimuli, signalling, and developmental processes. Particularly, the "C. arietinum" population shows upregulation of histone methylation genes, which may constitute a strategy for fine-tuning the insect global gene expression network. Using qPCR on body regions, we demonstrated that the "Phaseolus vulgaris" population upregulates the genes polygalacturonase and egalitarian and that the expression of an odorant receptor transcript variant changes over generations. Moreover, in this population we detected the existence of vitellogenin (Vg) variants in both males and females, possibly harbouring canonical reproductive function in females and extracellular unknown functions in males. This study provides the basis for future genomic investigations seeking to shed light on the nature of the proximate mechanisms involved in promoting differential gene expression associated to insect development and adaptation to new hosts.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10851049PMC
http://dx.doi.org/10.1590/1678-4685-GMB-2023-0148DOI Listing

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