Fig. 3. Gas chromatographic analysis of cuticular waxes of the six plant species with two different strategies of foliar water uptake (FWU). Data are shown as mean ± SD (n = 3). Different letters indicate significant differences among plant species (P ≤ 0.05, One-Way ANOVA). Note that the x-axis scale is modified after the break.Published as part of Boanares, Daniela, Bueno, Amauri, Souza, Aline Xavier de, Kozovits, Alessandra Rodrigues, Sousa, Hildeberto Caldas, Pimenta, Lúcia Pinheiro Santos, Isaias, Rosy Mary dos Santos & França, Marcel Giovanni Costa, 2021, Cuticular wax composition contributes to different strategies of foliar water uptake in six plant species from foggy rupestrian grassland in tropical mountains, pp. 1-8 in Phytochemi...
A study has been undertaken on epicuticular wax on the leaves of 35 woody species in Linares, Northe...
Hydathodes are usually associated with water exudation in plants. However, foliar water uptake (FWU)...
<p>Rice leaves and sheaths of late-tillering stage in WT (cv. <i>Nipponbare</i>), OE3 and Ri1 plants...
Fig. 5. NMDS plot of leaf cuticular wax composition of each of the six plant species and (A) leaf wa...
Boanares, Daniela, Bueno, Amauri, Souza, Aline Xavier de, Kozovits, Alessandra Rodrigues, Sousa, Hil...
Fig. 1. Leaf surfaces of the three plant species with slow foliar water uptake strategy under scanni...
Fig. 4. Chain-length distribution of the very-long-chain (VLC) aliphatic compounds of leaf cuticular...
Fig. 2. Leaf surfaces of the three plant species with fast foliar water uptake strategy under scanni...
Plants prevent uncontrolled water loss by synthesizing, depositing and maintaining a hydrophobic lay...
Plant cuticles form an external barrier, primarily blocking water loss into the desiccating atmosphe...
Plants coat themselves in a cuticle to hinder transpiration across the vast surface areas they requi...
The cuticle is an external barrier of aerial plant organs that prevents desiccation. It is composed ...
Leaf cuticular waxes are known to influence both biotic and abiotic stress tolerances of plants. The...
Cuticular wax, the first protective layer of above ground tissues of many plant species, is a key ev...
Plant cuticles seal above-ground organs against non-stomatal water loss, and therefore are vital for...
A study has been undertaken on epicuticular wax on the leaves of 35 woody species in Linares, Northe...
Hydathodes are usually associated with water exudation in plants. However, foliar water uptake (FWU)...
<p>Rice leaves and sheaths of late-tillering stage in WT (cv. <i>Nipponbare</i>), OE3 and Ri1 plants...
Fig. 5. NMDS plot of leaf cuticular wax composition of each of the six plant species and (A) leaf wa...
Boanares, Daniela, Bueno, Amauri, Souza, Aline Xavier de, Kozovits, Alessandra Rodrigues, Sousa, Hil...
Fig. 1. Leaf surfaces of the three plant species with slow foliar water uptake strategy under scanni...
Fig. 4. Chain-length distribution of the very-long-chain (VLC) aliphatic compounds of leaf cuticular...
Fig. 2. Leaf surfaces of the three plant species with fast foliar water uptake strategy under scanni...
Plants prevent uncontrolled water loss by synthesizing, depositing and maintaining a hydrophobic lay...
Plant cuticles form an external barrier, primarily blocking water loss into the desiccating atmosphe...
Plants coat themselves in a cuticle to hinder transpiration across the vast surface areas they requi...
The cuticle is an external barrier of aerial plant organs that prevents desiccation. It is composed ...
Leaf cuticular waxes are known to influence both biotic and abiotic stress tolerances of plants. The...
Cuticular wax, the first protective layer of above ground tissues of many plant species, is a key ev...
Plant cuticles seal above-ground organs against non-stomatal water loss, and therefore are vital for...
A study has been undertaken on epicuticular wax on the leaves of 35 woody species in Linares, Northe...
Hydathodes are usually associated with water exudation in plants. However, foliar water uptake (FWU)...
<p>Rice leaves and sheaths of late-tillering stage in WT (cv. <i>Nipponbare</i>), OE3 and Ri1 plants...