# Functional Analysis of Adipokinetic Hormone and Its Receptor Genes in Regulating Energy Metabolism Under Stress Conditions in Dendroctonus armandi

**Authors:** Linjun Wang, Ming Tang, Hui Chen

PMC · DOI: 10.3390/ijms27062724 · International Journal of Molecular Sciences · 2026-03-17

## TL;DR

This study explores how a hormone and its receptor regulate energy use in a forest pest under stress, revealing potential targets for pest control.

## Contribution

Identifies the role of Adipokinetic Hormone and its receptor in energy metabolism under stress in Dendroctonus armandi.

## Key findings

- DaAKH and DaAKHR expression is highest in adults and upregulated under starvation and cold stress.
- RNAi suppression of DaAKH and DaAKHR reduces mortality under starvation but increases it under heat and cold stress.
- These genes regulate lipid metabolism and energy allocation to help D. armandi survive environmental stress.

## Abstract

Dendroctonus armandi is a major primary pest of Chinese white pine in the Qinling–Bashan forest region. By feeding on the phloem and vectoring symbiotic fungi that cause blue stain in the sapwood, it drives rapid decline and mortality of host trees. As a key wood-boring forest insect, its outbreaks are closely linked to adaptive strategies in energy metabolism. Adipokinetic hormone (AKH) is a highly conserved insect neuropeptide and plays a major role in regulating energy metabolism. This study aimed to determine how the AKH gene regulates energy use in D. armandi under different stress conditions. We cloned the DaAKH gene and its receptor gene, DaAKHR, from D. armandi. DaAKH and DaAKHR showed the highest expression in emerged adults and the lowest levels in pupae. In larvae and in adult males and females, DaAKH transcripts were predominantly expressed in the head, whereas DaAKHR was enriched in the fat body. Under starvation and cold stress, DaAKH and DaAKHR expression were significantly upregulated; under heat stress, expression first increased and then decreased. Across stress treatments, RNAi significantly downregulated DaAKH and DaAKHR expression in D. armandi. Under starvation, RNAi reduced mortality, lowered lipid metabolism, and led to lipid accumulation, thereby mitigating premature energy depletion and starvation-induced death. By contrast, under heat and cold stress, RNAi significantly increased mortality, significantly reduced triglyceride and glycogen consumption, and suppressed metabolism. These results indicate that DaAKH and DaAKHR regulate energy allocation under starvation stress and help maintain adaptive capacity under temperature stress in D. armandi. By tuning energy metabolism, DaAKH and DaAKHR help resist environmental stress and maintain reproduction and population size. This study advances understanding of the physiological responses and molecular mechanisms of D. armandi under stress conditions and provides a new avenue for metabolism-targeted control.

## Linked entities

- **Species:** Dendroctonus armandi (taxon 77159), Mus musculus (taxon 10090)

## Full-text entities

- **Chemicals:** glycogen (MESH:D006003), lipid (MESH:D008055), triglyceride (MESH:D014280)
- **Species:** Dendroctonus armandi (species) [taxon 77159], Davidina armandi (species) [taxon 1454236]

## Full text

_Full body text omitted from this summary view._ Fetch the complete paper as Markdown: https://tomesphere.com/paper/PMC13026165/full.md

## Figures

18 figures with captions in the complete paper: https://tomesphere.com/paper/PMC13026165/full.md

## References

75 references — full list in the complete paper: https://tomesphere.com/paper/PMC13026165/full.md

---
Source: https://tomesphere.com/paper/PMC13026165