Related Experiment Video
Updated: Jun 11, 2025

Author Spotlight: Unraveling Plant Responses to Abiotic Stresses Using the PlantScreen Robotic Platform
Published on: June 7, 2024
Water-Light Interaction and Its Effect on the Morphophysiology of Cedrela fissilis Vell. Seedlings
Juliana Milene Silverio1, Silvana de Paula Quintão Scalon1, Cleberton Correia Santos1
1Faculty of Agricultural Science, Federal University of Grande Dourados, Road Dourados-Itahum Km 1, Dourados 79804970, MS, Brazil.
Abstract:
Plant responses to different light and water availability are variable among species and their respective phenotypic plasticity, and the combination between these two abiotic factors can alleviate or intensify stressful effects. This study aimed to evaluate the impacts of exposure time of Cedrela fissilis Vell. seedlings to different water and light availability considering natural radiation variations and the interaction of these factors. Seedlings were submitted to combinations of three shading levels-SH (0, 30 and 70%) and three water regimes based on the water holding capacity (WHC) in the substrate, constituting nine cultivation conditions: T1-0% SH + 40% WHC; T2-0% SH + 70% WHC; T3-0% SH + 100% WHC; T4-30% SH + 40% WHC; T5-30% SH + 70% WHC; T6-30% SH + 100% WHC; T7-70% SH + 40% WHC; T8-70% SH + 70% WHC; T9-70% SH + 100% WHC. C. fissilis seedlings are sensitive to water deficit, here represented by 40% WHC, regardless of exposure time, and when cultivated in full sun even though there are variations in radiation, the stressful effects were enhanced, acting in a synergistic manner. The condition that provided better gas exchange performance and greater total dry mass accumulation for C. fissilis seedlings was 30% shading combined with 100% WHC. C. fissilis seedlings have physiological plasticity and resilience to survive under different water and light conditions.
Related Concept Videos
Responses to Drought and Flooding
Adaptations that Reduce Water Loss
Epiphytes, Parasites, and Carnivores
Tonicity in Plants
Photoreceptors and Plant Responses to Light
Light Acquisition

