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March 29, 2026Conservation Physiology2 citationsOpen Access

Evaluating the vulnerability of critical early life stages in plants during heat extremes

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PAPieter A. ArnoldTWTara WalkerEWElla Wishart

Key Points

  • This research aims to evaluate how extreme heat affects critical early life stages in plants, impacting their fitness and recruitment.
  • Discusses four critical early life stage transitions: pollen development, germination, dormant seeds, and seedling transition.
  • Utilizes the thermal load sensitivity framework to analyze microclimate conditions.
  • Assesses sensitivity to thermal load and additional stressors like soil moisture.
  • Identifies critical points of plant development that are vulnerable to extreme heat.
  • Highlights the impact of physiological heat tolerance variations among different life stages.
  • Suggests that recognizing vulnerable stages is vital for effective plant conservation strategies.

Abstract

Abstract Plants, their seeds and their gametes show remarkable resilience and responsiveness to environmental conditions. However, worsening climate change with more severe and frequent extreme climatic events, like heatwaves and hot droughts, will likely push many species towards or beyond their physiological limits. If such events occur during important points of development and reproduction—rather than mature vegetative growth—the direct impact on individual fitness can be high, with potential to bottleneck recruitment in populations. Here we take an ecophysiological perspective to discuss what is known of the effects of extreme heat on four critical early life stage transitions in wild plant development that affect fitness and recruitment. These life stages are pollen development, pollen germination to seed set, dormant-to-imbibed seeds and seed-to-seedling transition. We use the recently developed thermal load sensitivity framework to showcase how these critical points of ontogeny could be exposed to vastly different microclimate conditions and have different physiological heat tolerance. Assessing sensitivity of these life stage transitions to increasing thermal load with the additional stressors of limited soil moisture and drying atmosphere could be an effective approach to identify at-risk populations or species. We argue that vulnerable developmental stages and narrow reproductive windows that affect recruitment must be considered for effective conservation and restoration of plant populations under climate change.

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Cite This Study

Arnold et al. (2026) studied this question.

synapsesocial.com/papers/69c8c384de0f0f753b39e524https://doi.org/10.1093/conphys/coag015
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