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December 8, 2025Comprehensive Reviews in Food Science and Food Safety8 citations

Climate Change: An Inevitable Factor in Reshaping the Contamination Level of Fungi and Mycotoxins

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HYHonglin YanJSJiadi SunXFXuran Fu

Key Points

  • Mycotoxin exposure may increase due to climate change-driven environmental stress and fungus adaptation.
  • Elevated environmental stress related to climate change alters the toxin synthesis in fungi, leading to new risks.
  • Analysis of global mycotoxins emphasizes the pressing need for revised prediction frameworks.
  • The review outlines the emergence of novel mycotoxins driven by climate-related changes in fungal communities.

Abstract

ABSTRACT The increasing frequency of extreme weather events, such as heatwaves and heavy rainfall, attributed to climate change, has considerably escalated the multifaceted threat of mycotoxins to agricultural productivity, food security, and public health. This review comprehensively examines the effect of climate change on fungal growth dynamics, mycotoxin production, and exposure patterns. Central to this effect is the phenomenon of niche transition within fungal communities, marked by the expansion of the thermal tolerance of traditional toxigenic species and the emergence of novel thermotolerant fungi via cross‐regional migration. In addition, climate change drives the regional migration of mycotoxins and promotes the emergence of “novel” and “masked” mycotoxins by altering substrate effects. Furthermore, climate‐driven environmental stress may activate previously silent secondary metabolic gene clusters (or hidden gene clusters) by affecting the regulatory network and epigenetic mechanisms of fungi, thereby reshaping metabolic pathways and inducing differential expression of genes related to toxin synthesis, resulting in a surge in mycotoxin exposure. This review also evaluates current global mycotoxin exposure trends and critically analyzes the limitations of prevailing fungal growth and mycotoxin prediction models, which often fail to explain the nonlinear effects of climate variables. Ultimately, this review underscores the pressing need to redefine the mycotoxin risk framework and develop mechanistic information prediction tools tailored to climate change, thereby warning of new risks associated with global warming.

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Cite This Study

Yan et al. (2025) studied this question.

synapsesocial.com/papers/69401f002d562116f28f9dd4https://doi.org/10.1111/1541-4337.70354
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