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Drought effects on resource partition and conservation among leaf ontogenetic stages in epiphytic tank bromeliads
Authors:Mia Svensk  Sabrina Coste  Bastien Gérard  Eva Gril  Frédéric Julien  Pascale Maillard  Clément Stahl  Céline Leroy
Institution:1. AMAP, Univ Montpellier, CIRAD, CNRS, INRAE, IRD, Montpellier, France

UMR EcoFoG, CNRS, CIRAD, INRAE, AgroParisTech, Université des Antilles, Université de Guyane, Kourou, 97310 France

Grazing Systems, Agroscope, Route de Duillier 50, Nyon, 1260 Suisse;2. UMR EcoFoG, CNRS, CIRAD, INRAE, AgroParisTech, Université des Antilles, Université de Guyane, Kourou, 97310 France;3. INRAE, UMR Silva, AgroParisTech, Université de Lorraine, Nancy, F-54000 France;4. AMAP, Univ Montpellier, CIRAD, CNRS, INRAE, IRD, Montpellier, France

UMR EcoFoG, CNRS, CIRAD, INRAE, AgroParisTech, Université des Antilles, Université de Guyane, Kourou, 97310 France

UMR ‘Ecologie et Dynamique des Systèmes Anthropisées’ (EDYSAN, UMR 7058 CNRS-UPJV), Univ. de Picardie Jules Verne, Amiens, France;5. Laboratoire Ecologie Fonctionnelle et Environnement, Université de Toulouse, CNRS, Toulouse, 31062 France;6. AMAP, Univ Montpellier, CIRAD, CNRS, INRAE, IRD, Montpellier, France

Abstract:Studying the response to drought stress of keystone epiphytes such as tank bromeliads is essential to better understand their resistance capacity to future climate change. The objective was to test whether there is any variation in the carbon, water and nutrient status among different leaf ontogenetic stages in a bromeliad rosette subjected to a gradient of drought stress. We used a semi-controlled experiment consisting in a gradient of water shortage in Aechmea aquilega and Lutheria splendens. For each bromeliad and drought treatment, three leaves were collected based on their position in the rosette and several functional traits related to water and nutrient status, and carbon metabolism were measured. We found that water status traits (relative water content, leaf succulence, osmotic and midday water potentials) and carbon metabolism traits (carbon assimilation, maximum quantum yield of photosystem II, chlorophyll and starch contents) decreased with increasing drought stress, while leaf soluble sugars and carbon, nitrogen and phosphorus contents remained unchanged. The different leaf ontogenetic stages showed only marginal variations when subjected to a gradient of drought. Resources were not reallocated between different leaf ontogenetic stages but we found a reallocation of soluble sugars from leaf starch reserves to the root system. Both species were capable of metabolic and physiological adjustments in response to drought. Overall, this study advances our understanding of the resistance of bromeliads faced with increasing drought stress and paves the way for in-depth reflection on their strategies to cope with water shortage.
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