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1.
Am J Bot ; 109(8): 1221-1229, 2022 08.
Artículo en Inglés | MEDLINE | ID: mdl-35903036

RESUMEN

PREMISE: Terminal velocity (Vt) is an important factor for the dispersal of biological particles but has scarcely been studied for anemochorous fern spores, and the influence of spore characteristics on Vt has not been evaluated. Here, we measured the Vt of 1234 spores of 18 fern species and two Selaginella microspores using videoimaging analysis and evaluated the effects of mass, size, and ornamentation on Vt. METHODS: We designed a sedimentation tower with a graduated microtelescope attached to a high-speed video camera to record falling particles and measure the Vt of fern spores using video-image processing software. Spores were measured for each species and their size correlated with Vt. RESULTS: The Vt of fern spores ranged from 4.7 cm·s-1 (Cyathea costaricensis) to 18.85 cm·s-1 (Acrostichum danaeifolium). The method is accurate and reliable as predicted by Stokes model for glass beads of known density and size. In addition, Vt had a higher correlation coefficient with mass (ρ = 0.72) than size (ρ = 0.20), and ornamental appendages reduced Vt. CONCLUSIONS: The reported values of Vt of fern spores are within the range of different biological airborne particles such as moss spores and pollen grains of seed plants. The results showed that spore ornamentation is directly related to Vt rather than spore size and may increase or decrease the drag. This method will aid future aerobiological research on biological particles.


Asunto(s)
Briófitas , Helechos , Selaginellaceae , Esporas
2.
J Nat Prod ; 82(4): 785-791, 2019 04 26.
Artículo en Inglés | MEDLINE | ID: mdl-30920216

RESUMEN

Two new prenylated acylphloroglucinols, paleacenins A (1) and B (2), were isolated from the rhizome n-hexane and chloroform extracts of the fern Elaphoglossum paleaceum. Both compounds were found to possess the same geranylated filicinic acid moiety but have a different phloroglucinol ring substituent. Their structures were determined using 1H and 13C NMR spectroscopic, HRMS, and ECD analysis. The plant extracts and purified compounds were assayed for inhibition of monoamine oxidase (MAO) activity, and the n-hexane and chloroform extracts displayed 25.0% and 26.5% inhibition of MAO-A, respectively, as well as 42.5% and 23.7% inhibition of MAO-B, respectively. Compounds 1 and 2 exhibited IC50 values of 31.0 (1.3) µM for MAO-A and 4.7 (4.4) µM for MAO-B. Paleacenin A (1) showed a higher selective index (SI) toward MAO-B (SIMAO-B/MAO-A 0.1), and paleacenin B (2) exhibited selectivity to MAO-A (SIMAO-B/MAO-A, 3.5). The extracts showed cytotoxicity against a panel of prostate, cervix, breast, and colon cancer cell lines (IC50 values between 1.7 and 10.6 µg/mL); the pure compounds were more active against the prostate, cervix, and colon cancer cell lines. Paleacenins A (1) and B (2), with IC50 values of 46 and 41 µM, respectively, inhibited nitric oxide production by the RAW264.7 murine macrophage model.


Asunto(s)
Helechos/química , Floroglucinol/aislamiento & purificación , Animales , Antineoplásicos Fitogénicos/química , Antineoplásicos Fitogénicos/aislamiento & purificación , Antineoplásicos Fitogénicos/farmacología , Espectroscopía de Resonancia Magnética con Carbono-13 , Línea Celular Tumoral , Dimerización , Ensayos de Selección de Medicamentos Antitumorales , Ratones , Simulación del Acoplamiento Molecular , Inhibidores de la Monoaminooxidasa/química , Inhibidores de la Monoaminooxidasa/aislamiento & purificación , Inhibidores de la Monoaminooxidasa/farmacología , Floroglucinol/química , Floroglucinol/farmacología , Espectroscopía de Protones por Resonancia Magnética , Células RAW 264.7 , Espectrometría de Masa por Ionización de Electrospray , Relación Estructura-Actividad
3.
Rev. biol. trop ; 66(1): 178-188, Jan.-Mar. 2018. tab, graf
Artículo en Inglés | LILACS | ID: biblio-897663

RESUMEN

Abstract Acrostichum is a pantropical genus and has four species, two of which occur in the Neotropics, A. aureum and A. danaeifolium. In Mexico, A. danaeifolium grows further in land wet soils and is much more common than A. aureum, which is typically found in brackish or saline habitats near the coast, and is restricted to coastal saline mangrove communities. The purpose of this paper was to describe and compare the morphogenesis of the sexual phase of A. aureum and A. danaeifolium for systematic purposes. For this, spores of each species were sown in Petri dishes with agar, previously enriched with sterilized Thompson's medium. To avoid contamination and dehydration, the dishes were kept in transparent plastic bags under laboratory conditions. For the micro-morphological observation with SEM, the gametophyte development phases were fixed in FAA with 0.8 % sucrose for 24 h. Photomicrographs of spores, development stages of gametophytes and young sporophytes were observed with scanning electron microscope. Our results showed that the spores of both species are triletes, globose and positive photoblastic. Germination is Vittaria-type; the germinate filaments are short and uniseriate (5 to 7 cells), and prothallial development is Ceratopteris-type. The adult gametophytes of both species have asymmetrical wings. Adult gametophytes in culture are cordiform-spatulate. Antheridia have a broad basal cell, an annular cell, and an asymmetric opercular cell. Archegonia have short necks and four triangular cells at the mouth of the neck. The first leaf of the sporophyte is lobed, with dichotomous veins and anomocytic stomata. The gemmae are formed in adult gametophytes in both species. The development of the gametophyte of A. aureum, A. danaeifolium and A. speciosum share many similarities such as the development of a lateral meristem, asymmetric nature of the mature prothallus, lack of hairs on the prothallus, and undivided asymmetrical opercular antheridia morphology. The genus Acrostichum is the sister group of Ceratopteris, another genus of aquatic ferns; they differ in the antheridium morphology, Acrostichum has an asymmetric opercular cell and Ceratopteris shows an undivided cap cell, but the notable difference is the sporophyte morphology. Rev. Biol. Trop. 66(1): 178-188. Epub 2018 March 01.


Resumen Acrostichum es pantropical y tiene cuatro especies dos de las cuáles ocurren en el Neotrópico, A. aureum y A. danaeifolium. El género se encuentra típicamente en hábitats salobres o salinos cerca de la costa. También puede crecer más lejos en tierra en suelos húmedos. Acrostichum aureum está restringido a las comunidades de manglares salinos costeros. A. danaeifolium es mucho más común que A. aureum en México. El propósito de este trabajo es describir y comparar la morfogénesis de la fase sexual de A. aureum y A. danaeifolium. Las esporas de cada especie fueron sembradas en cajas de Petri, en agar previamente enriquecido con medio de Thompson esterilizado. Para evitar la contaminación y la deshidratación, las cajas se mantuvieron dentro de bolsas de plástico transparentes en condiciones de laboratorio. Para la observación micro-morfológica con el MEB, las fases de desarrollo del gametofito se fijaron en FAA con sacarosa al 0.8 % durante 24 h. Se observaron las esporas, fases de desarrollo de gametofitos y esporofitos jóvenes con un microscopio electrónico de barrido. Las esporas de ambas especies son triletes, globosas y fotoblásticas positivas. La germinación es tipo-Vittaria, los filamentos germinativos son cortos y uniseriados (5 a 7 células) y el desarrollo protálico es de tipo-Ceratopteris. Los gametofitos de ambas especies tienen alas asimétricas. Los gametofitos adultos en cultivo son cordiforme-espatulados. Los anteridios tienen una célula basal amplia, una célula anular y una célula opercular asimétrica. Los arquegonios tienen cuellos cortos y cuatro células triangulares en la boca del cuello. La primera hoja del esporofito es lobulada, con venación dicotómica y estomas anomocíticos. Las yemas se forman en gametofitos adultos en ambas especies. El desarrollo del gametofito de A. aureum, A. danaeifolium y A. speciosum comparten características tales como el desarrollo de un meristemo lateral, el protalo maduro de naturaleza asimétrica, ausencia de pelos en el protalo y anteridio con célula opercular asimétrica no dividida. Acrostichum es el grupo hermano de Ceratopteris, otro género de helecho acuático, que difieren en la morfología del anteridio, Acrostichum tiene una célula opercular asimétrica y Ceratopteris muestran una célula opercular no dividida.

4.
Rev. biol. trop ; 65(3): 939-952, Jul.-Sep. 2017. tab, ilus
Artículo en Español | LILACS-Express | LILACS | ID: biblio-897594

RESUMEN

Resumen: En México, la familia Gleicheniaceae está representada por Dicranopteris flexuosa, Diplopterygium bancroftii, Gleichenella pectinata, Sticherus bifidus, S. brevipubis, S. palmatus y S. underwoodianus; existen pocos trabajos sobre el estudio de los gametofitos de algunas especies de esta familia, por lo que el objetivo es describir, comparar y aportar información sobre su germinación, desarrollo de los gametofitos y finalmente determinar si los caracteres de los prótalos son útiles en la delimitación taxonómica del grupo. Para ello se recolectaron ejemplares y esporas de cada taxón en el campo, las esporas se sembraron en cajas de Petri que contenían agar y medio nutritivo de Thompson, se cultivaron en germinadoras bajo condiciones controladas de luz (12hrs luz/oscuridad), humedad (50 %) y temperatura (18 °C noche y 25 °C día); se realizaron observaciones de material fresco y se tomaron fotomicrografías utilizando un microscopio óptico y un microscopio electrónico de barrido. Como resultado se distinguieron dos tipos de germinación Gleichenia y Cyathea. En cuanto al desarrollo protálico, se observaron tres tipos, Marattia, Osmunda y Drynaria. Debido a las variaciones en el tipo de germinación que no habían sido reportadas para la familia en la literatura, así como por la heterogeneidad presente en el patrón de desarrollo protálico y la presencia de más de cuatro células en los gametangios, es importante ampliar el estudio de otras especies para determinar el valor taxonómico de las características morfológicas de los gametofitos, así como para determinar si estas variaciones se presentan en otras especies de la familia.


Abstract: In Mexico, the Gleicheniaceae family is represented by different species such as Dicranopteris flexuosa, Diplopterygium bancroftii, Gleichenella pectinata, Sticherus bifidus, S. brevipubis, S. palmatus and S. underwoodianus. Currently, few studies have described the gametophytes of some species in this family, and our objective was to contribute to the knowledge, and to describe and compare different aspects of their germination, gametophyte development, and to determine if the prothallus characters are useful for taxonomic delimitations in the group. For this purpose, specimens and spores of each taxon were collected in the field, spores were sown in Petri dishes containing agar and Thompson nutrient medium, and grown in a plant growing chamber under controlled conditions of light (12 hr light/darkness), (50 %) humidity, and temperature (18 °C night, 25 °C day). Additionally, observations of fresh materials were made and photomicrographs were taken using both optical and scanning electron microscopes. Our observations allowed distinguishing two types of germination Gleichenia and Cyathea; and three types of prothallial development Marattia, Osmunda and Drynaria. Gametangia presented more than three cells, and this is considered a primitive feature by other authors. As some variations in the germination type were observed and have not previously been reported in the literature for this family, and because of the heterogenity in the patterns of the prothallial cell development, and gametangia of more than four cells, it is important to broaden the study to other species, in order to determine the taxonomic value of the morphological characters of the gametophyte, as well as to determine if these variations are present in other species of the family. Rev. Biol. Trop. 65 (3): 939-952. Epub 2017 September 01.

5.
Pak J Pharm Sci ; 30(1 Suppl): 235-239, 2017 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-28625948

RESUMEN

Huperzine A (Hup A), the alkaloid produced by the Chinese medicinal plant Huperzia serrata, has been documented to be a promising agent for the treatment of Alzheimer's disease due to its potent acetylcholinesterase inhibitory (AChEI) activity. The search for anticholinesterase natural products, as well as for alternative sources of Hup A in Mexican lycopods, prompted us to investigate these plants. The action of methanolic and alkaloidal extracts of three Huperzia species (H. cuernavacensis, H. dichotoma, and H. linifolia) was evaluated using an in vitro anticholinesterase activity assay. Also, chromatographic and spectroscopic analyses were employed to detect the presence of Hup A. Methanolic and alkaloidal extracts of H. cuernavacensis showed IC50 =5.32±0.8µg/mL and 0.74±0.05µg/mL; H. dichotoma displayed AChEI with IC50 values =14.11±2.1µg/mL and 0.64±0.09µg/mL; and H. linifolia presented IC50 =158.37±8.7µg/mL and 4.2±1.24µg/mL, respectively, compared to the control Hup A (IC50= 0.16±0.03µg/mL). Hup A was identified in the extracts of H. dichotoma, but it was not detected in the extracts of H. cuernavacensis and H. linifolia by 1H NMR techniques. This study reveals H. dichotoma as a new source of Hup A, and presents H. linifolia and H. cuernavacensis as potential candidates to obtain other anticholinesterase compounds useful in the Alzheimer's disease treatment.


Asunto(s)
Acetilcolinesterasa/metabolismo , Alcaloides/química , Alcaloides/farmacología , Inhibidores de la Colinesterasa/química , Inhibidores de la Colinesterasa/farmacología , Huperzia/química , Lycopodiaceae/química , Sesquiterpenos/química , Sesquiterpenos/farmacología , Enfermedad de Alzheimer/tratamiento farmacológico , Extractos Vegetales/química , Extractos Vegetales/farmacología , Plantas Medicinales/química
6.
Micron ; 45: 37-44, 2013 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-23176817

RESUMEN

This paper describes the development of the sexual phase of the invasive fern, Pteridium caudatum, from spore germination to young sporophyte formation. Spores samples for gametophyte cultures were taken from various sporophytes and then sown on mineral agar with Thompson's media. Gametophytes were maintained under fluorescent light on a 12h light, 12h dark cycle at 24-25°C. Developmental phases were fixed in FAA-sucrose solution and processed for observation with the scanning electron microscope. Spores are trilete and germination takes place on the second day after sowing; germination is of the Vittaria-type. Adiantum-type prothallial development was observed. The differentiation of a two-dimensional thallus begins 5 days after germination maturation of adult gametophytes occurs about 30 days after sowing. Adult gametophytes are heart-shaped, bisexual and glabrous. Antheridia are formed by three cells: basal, annular and opercular cell with a pore. Archegonia have a neck of 4-cells. The young sporophyte becomes visible within 8 weeks after spores are sown. The taxonomic significance of the gametophyte morphology is discussed.


Asunto(s)
Células Germinativas de las Plantas/ultraestructura , Pteridium/ultraestructura , Diferenciación Celular , Medios de Cultivo/química , Células Germinativas de las Plantas/crecimiento & desarrollo , Germinación , Microscopía Electrónica de Rastreo , Pteridium/crecimiento & desarrollo , Esporas/crecimiento & desarrollo , Esporas/ultraestructura , Factores de Tiempo
7.
Micron ; 41(7): 806-13, 2010 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-20542440

RESUMEN

This paper describes the morphology of the sexual phase and spores of Platycerium andinum and Platycerium wandae. Spores were sown in Thompson's media and the cultures were kept at 24-25 degrees C, with 12h light/darkness photoperiod. Developmental phases were fixed in FAA and processed for observation with the scanning electron microscope. Spores of both species are monolete; Vittaria-type germination and Aspidium-type prothallial development were observed. In the phase of development, the gametophytes develop unicellular secretory and as they mature, develop bifurcated or branched pluricellular trichomes, both in the cushion and near the meristematic zone. Adult gametophytes in culture are cordiform-spatulate to cordiform-reniform, most are unisexual and a few are bisexual. Gametangia belong to the leptosporangiate fern type. Archegonial morphology is uniform, with an elongate, thin neck curved toward the base of the gametophyte. Antheridia have a basal cell, an annular cell and an undivided opercular cell. Three hundred days after the spores were sown, sporophytes still had not developed. In both species, some spores germinate inside the sporangial capsule (intra-sporangial germination). We provide new information on morphogenesis in the genus Platycerium.


Asunto(s)
Células Germinativas de las Plantas/ultraestructura , Polypodiaceae/citología , Células Cultivadas , Microscopía Electrónica de Rastreo , Polypodiaceae/crecimiento & desarrollo
8.
Micron ; 39(8): 1351-62, 2008 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-18358731

RESUMEN

The morphogenesis of the sexual phase of seven species of Thelypteris subg. Cyclosorus (Thelypteridaceae) is described and compared. Spores of all species are monolete, ellipsoid and have positive photoblastism. They have Vittaria-type germination, germinal filaments are short and uniseriate, and Aspidium-type development. Adult gametophytes are spatulate-cordiform, and have wide wings with numerous glandular, marginal and superficial hairs. Antheridia have a narrow or widened basal cell, an undivided annular cell, and an opercular cell; antherozoids are liberated through three mechanisms. Archegonia have short necks and four triangular cells on the neck's mouth. The sporophyte's first leaf is lobed, with open dichotomous veins, glandular hairs similar to those of the gametophyte, and anomocytic stomata. Differences observed between the studied species are: spore size; ornamentation of the perispore; germination and emergence periods; size of hairs; developmental period of gametangia; and antherozoid liberation mechanisms through total detachment of the operculum, partial detachment of the operculum, and development of an apical pore through tearing of the operculum. These taxonomically valuable characters, combined with the sporophyte characteristics, can be useful tools in the identification of the species studied to the subg. Cyclosorus.


Asunto(s)
Helechos/ultraestructura , Helechos/crecimiento & desarrollo , Microscopía Electrónica de Rastreo , Morfogénesis , Esporas/ultraestructura
9.
Rev. biol. trop ; 51(2): 321-332, jun. 2003. ilus, tab
Artículo en Español | LILACS | ID: lil-365925

RESUMEN

The development and morphology of the gametophytes of seven species of ferns from genus Pleopeltis are described and compared. The spore germination is Vittaria-type in P. astrolepis, P. crassinervata, P. macrocarpa, P. polylepis and P. revoluta. For P. angusta and P. mexicana it was proposed a new germination pattern is Pleopeltis-type. The prothallial development is Drynaria-type in P. astrolepis, P. crassinervata, P. macrocarpa, P. polylepis and P. revoluta and Ceratopteris-type for P. angusta and P. mexicana. The gametangia are typical of the leptosporangiate ferns, sporophytes after six and a half months in culture did not appeared.


Asunto(s)
Gametogénesis , Germinación , Polypodiaceae , México , Polypodiaceae
10.
Rev Biol Trop ; 51(2): 321-32, 2003 Jun.
Artículo en Español | MEDLINE | ID: mdl-15162725

RESUMEN

The development and morphology of the gametophytes of seven species of ferns from genus Pleopeltis are described and compared. The spore germination is Vittaria-type in P. astrolepis, P. crassinervata, P. macrocarpa, P. polylepis and P. revoluta. For P. angusta and P. mexicana it was proposed a new germination pattern is Pleopeltis-type. The prothallial development is Drynaria-type in P. astrolepis, P. crassinervata, P. macrocarpa, P. polylepis and P. revoluta and Ceratopteris-type for P. angusta and P. mexicana. The gametangia are typical of the leptosporangiate ferns, sporophytes after six and a half months in culture did not appeared.


Asunto(s)
Gametogénesis/fisiología , Germinación/fisiología , Polypodiaceae/crecimiento & desarrollo , México , Polypodiaceae/citología
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