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1.
Environ Sci Pollut Res Int ; 31(28): 41059-41068, 2024 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-38842777

RESUMO

Lead (Pb) can be deposited in aquatic environments that are especially subject to pollution due to wastewater and sewage disposal. This study aimed to evaluate the tolerance of Echinodorus grandiflorus (Cham. & Schltr.) Micheli to Pb and changes in growth, gas exchange, and leaf anatomy. Experiments were conducted with E. grandiflorus plants exposed to the following Pb concentrations in nutrient solution: [0; 0.75; 1.5; 3.0 and 9.0 µM Pb (NO 3)2] in a greenhouse for 60 days. At the end of the experiment, the lead concentration, growth, leaf gas exchange, and changes in leaf anatomy were evaluated. There was no mortality of E. grandiflorus plants, and they accumulated higher concentrations of Pb proportional to the concentration of the pollutant in the solution. Pb did not cause significant changes in growth, stomatal conductance, transpiration, and Ci/Ca rate but reduced the photosynthesis in E. grandiflorus. The leaf anatomy showed significant changes in the presence of Pb, reducing the epidermis and chlorophyll parenchyma. E. grandiflorus demonstrated tolerance to Pb, surviving and growing under contamination; however, it negatively modified its leaf anatomy and photosynthesis in the presence of the metal.


Assuntos
Chumbo , Folhas de Planta , Folhas de Planta/anatomia & histologia , Folhas de Planta/efeitos dos fármacos , Fotossíntese/efeitos dos fármacos , Poluentes Químicos da Água/toxicidade , Alismataceae/anatomia & histologia
2.
Braz J Biol ; 84: e280876, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38808788

RESUMO

Echinodorus is the second largest genus of the aquatic plant family Alismataceae, comprising 28 species, of which 24 occur in Brazil. This study represents the first record of Echinodorus scaber Rataj for the State of Maranhão, based on material collected in the Municipality of Brejo, eastern Maranhão. Echinodorus scaber shares morphological similarities with E. macrophyllus (Kunth) Micheli, but it can be distinguished by (I) a highly branched inflorescence, (II) scabrous peduncles and petioles covered by stellate trichomes, and (II) small flowers with reflexed petals. This new record of E. scaber contributes to a better understanding of this genus' diversity and distribution in Maranhão and underscores the necessity to broaden collection efforts for a better comprehension of the state's flooded zones. Comprehensive collection efforts, with a special focus on aquatic plants and in locations far from the state's main urban center, São Luís, may result in a significant knowledge increase of the flora, especially of the genus Echinodorus, which needs a broad taxonomic study. These recommendations may result in new records, range extensions, and species descriptions, contributing to the conservation of the aquatic environments of Maranhão.


Assuntos
Alismataceae , Brasil , Alismataceae/classificação , Alismataceae/anatomia & histologia
3.
Environ Sci Pollut Res Int ; 25(13): 12507-12514, 2018 May.
Artigo em Inglês | MEDLINE | ID: mdl-29464599

RESUMO

To better monitor and remediate environments contaminated by cadmium (Cd), plants are used as hyperaccumulators or biomonitors; however, few have been identified for aquatic Cd pollution. In our study, two aquatic ornamental plants, Microsorum pteropus (Blume) Copel. and Echinodorus grisebachii Small, were studied for their Cd accumulation capacity, morphological characteristics, and leaf physiological indexes. Microsorum pteropus (Blume) Copel. leaf has the potential to hyperaccumulate Cd (166 mg/kg dry weight for 1 mg/L exposure), with no significant physiological difference under exposure. Echinodorus grisebachii Small had sensitive diagnostic responses to Cd toxicity, such as significant decreases in Chl (a + b) and Chl-a/b, increased peroxidase (POD) activity, greater malondialdehyde (MDA) content, and increased soluble sugar content. These results suggest that Microsorum pteropus (Blume) Copel. could have the potential to be a Cd hyperaccumulator, while Echinodorus grisebachii Small could serve as a biomonitor for Cd-contaminated water bodies.


Assuntos
Alismataceae/metabolismo , Cádmio/metabolismo , Polypodiaceae/metabolismo , Poluentes do Solo/metabolismo , Alismataceae/anatomia & histologia , Alismataceae/fisiologia , Biodegradação Ambiental , Folhas de Planta/fisiologia , Polypodiaceae/anatomia & histologia , Polypodiaceae/fisiologia
4.
Braz J Biol ; 72(1): 163-9, 2012 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-22437397

RESUMO

Temporary lakes are common in the semi-arid region of the State of Bahia and form water mirrors in the rainy season. In this period, various vegetal species appear having different life forms adapted to the seasonality conditions of the rainfall regime. This work surveyed the adaptive anatomical structures of some emergent and amphibious monocot species occurring in these lakes. We studied the anatomy of roots, rhizomes, leaves and scapes of Cyperus odoratus, Oxycaryum cubense, Pycreus macrostachyos (Cyperaceae) - amphibious species; and of Echinodorus grandiflorus (Alismataceae), Eichhornia paniculata (Pontederiaceae) and Habenaria repens (Orchidaceae) - emergent species. The anatomical features of the dermal, fundamental and vascular systems confirming the tendency of the adaptive convergence of these plants to temporary lacustrine the environment include: single layered epidermal cells with a thin cuticle layer in the aerial organs; the presence of air canals in all the organs; few or no supporting tissues; and less numerous conducting elements and thinner cell walls in the xylem. The reduction of the supporting tissues, the number of stomata, which can even be absent, and the number of conducting elements and the degree of cell wall lignification in the xylem of the emergent species is more accentuated than that of the amphibious species. The pattern of distribution of aerenchyma in the roots of the studied species was considered important to distinguish between amphibious and emergent life forms.


Assuntos
Adaptação Fisiológica , Alismataceae/anatomia & histologia , Cyperaceae/anatomia & histologia , Orchidaceae/anatomia & histologia , Pontederiaceae/anatomia & histologia , Alismataceae/fisiologia , Brasil , Cyperaceae/fisiologia , Lagos , Orchidaceae/fisiologia , Pontederiaceae/fisiologia
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