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January 22, 2026Forests0 citationsOpen Access

Preliminary Study on Mechanism of Cold Stress on Dendroctonus valens Larvae

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DLDebin LiSLShisong LuSKShiyu Kuang

Key Points

  • The aim is to understand how cold stress affects Dendroctonus valens larvae at physiological and biochemical levels.
  • Conducted under controlled laboratory conditions
  • Performed physiological and biochemical assessments
  • Utilized transcriptome sequencing to analyze gene expression
  • Validated findings with quantitative polymerase chain reaction (qPCR)
  • Stable water content observed in larvae during cold stress initiation
  • Triglycerides and fats decreased as cold stress progressed
  • Increased glycogen and trehalose levels during prolonged cold exposure
  • Variations in enzyme activities: SOD declined then increased, POD increased then decreased, CAT decreased throughout cold stress
  • Transcriptome analysis revealed over 4600 upregulated genes related to metabolism

Abstract

To elucidate the effect of cold stress on Dendroctonus valens larvae, a study was conducted under controlled laboratory conditions to examine the physiological and biochemical mechanisms associated with cold stress, coupled with transcriptome sequencing. Physiological and biochemical assessments indicated stable water content in larvae during cold stress initiation, with triglycerides and fats serving as primary energy reserves that decreased over cold stress progression. Glycogen and trehalose were identified as energy sources for larval energy metabolism, with their levels increasing as cold stress duration extended. Superoxide dismutase (SOD) activity exhibited an initial decline followed by an increase, while peroxidase (POD) activity initially rose before decreasing over induction time, and catalase (CAT) activity decreased during cold stress induction. Transcriptome sequencing at various time points revealed 4630 upregulated and 1554 downregulated genes, predominantly involved in metabolic pathways such as carbohydrate, amino acid, and lipid metabolism. Quantitative polymerase chain reaction (qPCR) results validated the transcriptome data accuracy. This investigation delineated the physiological, biochemical, and transcriptome alterations during cold stress, offering a theoretical framework for the rational prediction of Dendroctonus valens outbreaks.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/6971bfdff17b5dc6da021f33https://doi.org/10.3390/f17010136
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