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1.
Plants (Basel) ; 13(9)2024 Apr 26.
Article in English | MEDLINE | ID: mdl-38732421

ABSTRACT

The characterization of colleters in Rubiaceae is crucial for understanding their role in plant function. Analyzing colleters in Palicourea tetraphylla and Palicourea rudgeoides aims to deepen the understanding of these structures morphoanatomical and functional characteristics. The study reveals colleters with palisade epidermis and a parenchymatic central axis, classified as standard type, featuring vascularization and crystals. Colleter secretion, abundant in acidic mucopolysaccharides, proteins, and phenolic compounds, protects against desiccation. The ontogenesis, development, and senescence of the colleters are quite rapid and fulfill their role well in biotic and abiotic protection because these structures are present at different stages of development in the same stipule. Pronounced protrusions on the colleters surface, coupled with the accumulation of secretion in the intercellular and subcuticular spaces, suggest that the secretory process occurs through the wall, driven by pressure resulting from the accumulation of secretion. The microorganisms in the colleters' secretion, especially in microbiota-rich environments such as the Atlantic Forest, provide valuable information about plant-microorganism interactions, such as resistance to other pathogens and organisms and ecological balance. This enhanced understanding of colleters contributes to the role of these structures in the plant and enriches knowledge about biological interactions within specific ecosystems and the family taxonomy.

2.
Ciênc. rural ; 44(6): 1037-1042, June 2014. ilus, tab
Article in Portuguese | LILACS | ID: lil-709594

ABSTRACT

Espécies vegetais são capazes de ajustar suas características fisiológicas, anatômicas e ultraestruturais aos fatores ambientais, como, por exemplo, a disponibilidade de radiação luminosa incidente. O objetivo deste estudo foi avaliar a influência de diferentes níveis de radiação luminosa na anatomia e ultraestrutura foliar de Ocimum gratissimum L. (Lamiaceae). As plantas foram cultivadas por 93 dias em quatro níveis de radiação fotossinteticamente ativa (20, 11, 7 e 4mol m-2 d-1). O incremento da intensidade de luz proporcionou aumento no espessamento dos parênquimas paliçádico e esponjoso e do limbo foliar, entretanto, a espessura da epiderme não foi alterada. Em relação aos aspectos ultraestruturais, verificou-se aumento no tamanho dos cloroplastos e grãos de amido e um aumento do empilhamento dos tilacoides com a redução da intensidade de luz. As variações anatômicas e ultraestruturais verificadas confirmam a plasticidade fenotípica dessa espécie em função da intensidade de radiação luminosa.


Plant species are able to adjust their physiological, anatomical and ultrastructural characteristics to changes in environmental factors, such as the availability of incident light. The objective of this study was to evaluate the influence of different light radiation levels on leaf anatomy and ultrastructure in plants of Ocimum gratissimum L. (Lamiaceae). Plants were grown for 93 days in four levels photosynthetic active radiation (FAR): 20, 11, 7 and 4mol m-2 d-1. The increase of light intensity resulted in increase of palisade and spongy parenchyma thickness and leaf blade. However, epidermal thickness was not changed. Regarding the ultrastructural aspects, there was an increase in the size of the chloroplasts and starch granules. However, there was an increase of the stacking of the thylakoids with reducing light intensity. Anatomical and ultrastructural changes confirm the phenotypic plasticity of this species as a function of changes in light intensity.

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