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April 29, 2026Animals0 citationsOpen Access

Transcriptomic Response and Molecular Adaptation Mechanisms of Common Carp (Cyprinus carpio) Intestine Under Dual Stress of High Temperature and Zinc

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XJXiaoying JiangJZJunli ZhengZJZilong Jiang

Key Points

  • This research aims to explore the transcriptomic responses of common carp intestine to combined stress from high temperature and zinc.
  • Used a 2 × 2 factorial design to analyze stress effects
  • Applied Illumina RNA-seq and WGCNA methods for data collection and analysis
  • Conducted qPCR validation for key findings
  • High temperature caused significant transcriptomic reprogramming with numerous differentially expressed genes (DEGs)
  • Zinc reduced DEGs by 43.2%, suggesting its protective role against heat stress
  • Identified core modules related to heat response and zinc mitigation with 'emergency defense' and 'repair adaptation' strategies.

Abstract

This study employed a 2 × 2 factorial design to investigate the transcriptomic responses of common carp intestine under the single and combined stress of high temperature and zinc. Results from Illumina RNA-seq, WGCNA, and qPCR showed high-quality sequencing data with good reproducibility. High temperature was the core driver of global transcriptomic reprogramming, inducing numerous DEGs via activating metabolic and stress signaling pathways. Zinc alleviated heat stress by reducing DEGs by 43.2% and activating DNA repair and cell cycle pathways. WGCNA identified core modules for heat response and zinc mitigation, revealing “emergency defense” and “repair adaptation” strategies. This study enriches the teleost stress adaptation theory and provides a scientific basis for healthy carp aquaculture.

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Cite This Study

Jiang et al. (2026) studied this question.

synapsesocial.com/papers/69f1545d879cb923c49448echttps://doi.org/10.3390/ani16091334
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