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1.
Sci Rep ; 6: 25994, 2016 05 24.
Artigo em Inglês | MEDLINE | ID: mdl-27217018

RESUMO

This paper proposes a methodology for plant analysis and identification based on extracting texture features from microscopic images of leaf epidermis. All the experiments were carried out using 32 plant species with 309 epidermal samples captured by an optical microscope coupled to a digital camera. The results of the computational methods using texture features were compared to the conventional approach, where quantitative measurements of stomatal traits (density, length and width) were manually obtained. Epidermis image classification using texture has achieved a success rate of over 96%, while success rate was around 60% for quantitative measurements taken manually. Furthermore, we verified the robustness of our method accounting for natural phenotypic plasticity of stomata, analysing samples from the same species grown in different environments. Texture methods were robust even when considering phenotypic plasticity of stomatal traits with a decrease of 20% in the success rate, as quantitative measurements proved to be fully sensitive with a decrease of 77%. Results from the comparison between the computational approach and the conventional quantitative measurements lead us to discover how computational systems are advantageous and promising in terms of solving problems related to Botany, such as species identification.


Assuntos
Botânica/classificação , Classificação/métodos , Epiderme Vegetal/classificação , Folhas de Planta/classificação , Estômatos de Plantas/classificação , Asteraceae , Clusiaceae , Biologia Computacional , Meio Ambiente , Malpighiaceae , Microscopia , Fenótipo , Epiderme Vegetal/anatomia & histologia , Folhas de Planta/anatomia & histologia , Estômatos de Plantas/anatomia & histologia
2.
ScientificWorldJournal ; 2013: 307593, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-23864825

RESUMO

Some species of Dyckia Schult. f., including Dyckia brevifolia Baker, are rheophytes that live in the fast-moving water currents of streams and rivers which are subject to frequent flooding, but also period of low water. This study aimed to analyze the leaf epidermis of D. brevifolia in the context of epidermal adaptation to this aquatic plant's rheophytic habitat. The epidermis is uniseriate, and the cuticle is thickened. The inner periclinal and anticlinal walls of the epidermal cells are thickened and lignified. Stomata are tetracytic, located in the depressions in relation to the surrounding epidermal cells, and covered by peltate trichomes. While the epidermal characteristics of D. brevifolia are similar to those of Bromeliaceae species, this species has made particular adaptations of leaf epidermis in response to its rheophytic environment.


Assuntos
Bromeliaceae/classificação , Bromeliaceae/ultraestrutura , Epiderme Vegetal/ultraestrutura , Folhas de Planta/ultraestrutura , Epiderme Vegetal/classificação , Folhas de Planta/classificação
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