Cuticular wax composition contributes to different strategies of foliar water uptake in six plant species from foggy rupestrian grassland in tropical mountains

The cuticle is the outermost region of the epidermal cell wall of plant aerial organs. The cuticle acts as a two-way lipid barrier for water diffusion; therefore, it plays a vital role in foliar water uptake (FWU). We hypothesised that the chemical composition of the cuticular waxes influences the F...

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Veröffentlicht in:Phytochemistry (Oxford) 2021-10, Vol.190, p.112894-112894, Article 112894
Hauptverfasser: Boanares, Daniela, Bueno, Amauri, de Souza, Aline Xavier, Kozovits, Alessandra Rodrigues, Sousa, Hildeberto Caldas, Pimenta, Lúcia Pinheiro Santos, Isaias, Rosy Mary dos Santos, França, Marcel Giovanni Costa
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Sprache:eng
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Zusammenfassung:The cuticle is the outermost region of the epidermal cell wall of plant aerial organs. The cuticle acts as a two-way lipid barrier for water diffusion; therefore, it plays a vital role in foliar water uptake (FWU). We hypothesised that the chemical composition of the cuticular waxes influences the FWU strategy that plants adopt in a foggy tropical ecosystem. We analysed the leaf cuticular waxes of six plant species known by their different FWU strategies, in both qualitative and quantitative approaches, to test this hypothesis. We also investigated the fine structure of the plant cuticle by scanning electron microscopy. Neither the total wax loads nor the amounts of single wax compound classes correlated to the FWU. In contrast, the qualitative chemical composition of the cuticular waxes was related to the water absorption speed but not to the maximum water absorbed. The presence of wax crystals might interfere with the FWU. Our findings suggest that a complex three-dimensional network of the cuticular compounds contributes to different strategies of FWU in six plant species from foggy tropical mountaintops. Cuticular waxes are the main barrier against cuticular water permeability. Leaf surface composition and structure alter wettability and permeability. [Display omitted]
ISSN:0031-9422
1873-3700
DOI:10.1016/j.phytochem.2021.112894