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Bromelia humilis
Leaf Anatomy and C02 Recycling During Crassulacean Acid Metabolism in Twelve Epiphytic Species of Tillandsia (Bromeliaceae)
Network Scan Data
Water Relations of Bromeliaceae in Their Evolutionary Context
Implications of Leaf Anatomy and Stomatal Responses in the Clusia Genus for the Evolution of Crassulacean Acid Metabolism
Bromeliadvisory May.Indd
Brazilian Journal of Development
Ecophysiology of Crassulacean Acid Metabolism (CAM)
Light-Stress and Crassulacean Acid Metabolism
Lüttge-2010-Ability of Crassulacean Acid Metabolism Plants to Overcome
Hydraulics Link Leaf Shape and Environmental Niche in Terrestrial Bromeliads
Absorptive Trichomes in Brocchinia Reducta (Bromeliaceae) and Their Evolutionary and Systematic Significance Author(S): David H
Structure-Function Relationships in the Water-Use Strategies and Ecological Diversity of the Bromeliaceae
Phenotypic Plasticity in Bromelia Serra Griseb.: Morphological Variations Due to Plant Size and Habitats with Contrasting Light Availability
Essay on the Geography of Plants
View of CAM (Crassulacean Acid Metabolism) Biology, Chlorophyll Fluorescence, and Leaf Optical Properties
VII Fichas Descriptivas 9 Angiospermas Monocotiledóneas. Letras
Living World 2005 Issue.Indd
Castniidae (Lepidoptera) of Margarita Island, Venezuela: Comments
Top View
An Alphabetical List of Bromeliad Binomials
Bromeliaceae of the Guianas
For Review Only 9 CAM Is a Flexible Photosynthetic Mode Which Confers Robust Environmental Resilience