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December 4, 2025Forests1 citationsOpen Access

Response of Eucalyptus Seedlings to Water Stress in a Warm Tropical Region in Brazil

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SMSara Bezerra Bandeira MilhomemNRNádia da Silva RamosFGFlávia Barreira Gonçalves

Key Points

  • Eucalyptus seedlings exhibited varying drought tolerance under water stress conditions, with E. urophylla × E. camaldulensis being the most resilient.
  • Physiological responses were assessed including stomatal conductance, carbon assimilation rate, and activities of superoxide dismutase.
  • Water stress treatments were categorized into well-watered, rehydrated, and water deficit regimes based on soil retention.
  • Findings highlight the importance of physiological adaptations in improving drought tolerance for sustainable forestry.

Abstract

This study evaluated the physiological and biochemical responses of three Eucalyptus genotypes (E. urophylla; hybrid E. urophylla × E. grandis; hybrid E. urophylla × E. camaldulensis) under three water regimes (well-watered—plants watered daily with 70% of field capacity; rehydrated—water supply suspended at initial wilting symptoms; water deficit—water supply suspended upon reaching 50% of soil water retention capacity) in a warm tropical environment. The treatment was performed through daily weighing of plant pots and addition of the required water amount to reach the pot weight in each treatment. Measurements included stomatal conductance (gs), carbon assimilation rate (A), transpiration rate (E), leaf water potential (Ψleaf), chlorophyll content (a and b), proline accumulation, and the activities of superoxide dismutase (SOD) and catalase (CAT). The genotypes exhibited contrasting drought responses: E. urophylla × E. camaldulensis showed the highest resilience, maintaining gas exchange, water status, and proline accumulation under stress. E. urophylla × E. grandis displayed intermediate tolerance, while E. urophylla was the most sensitive. Overall, drought tolerance in Eucalyptus emerged from the coordinated interaction of hydraulic, osmotic, and antioxidant mechanisms.

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Cite This Study

Milhomem et al. (2025) studied this question.

synapsesocial.com/papers/6930e8c6ea1aef094cca35f6https://doi.org/10.3390/f16121802
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