Temperature regulation mechanisms of diapause in Coridius chinensis revealed by multi-omics integration: coordinated responses of Brain-Gut-Fat Body
Multi-omics analyses, including gut metagenomics, brain transcriptomic, and fat body metabolomics, revealed an extreme polarization during diapause, suggesting a trade-off where microbial metabolic diversity is sacrificed in favor of intracellular symbionts that may regulate host mitochondrial activity and suppress energy consumption.