849 resultados para escapo floral


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The apetalal mutation of Arabidopsis affects floral meristem identity and the development of sepal and petal primordia of the flower. We mapped the available RFLP markers on chromosome 1 that are in the general vicinity of apetalal on a fine structure map and then chose the closest RFLP as a starting point for contiguous DNA (contig) generation. We report here a contig of about 800 kilobases (kb) that spans a 3.5 cM region of chromosome 1. We used genomic libraries of Arabidopsis prepared in yeast artificial chromosome (YAC) vectors and the detailed characterization of 19 YACs is reported. RFLPs displayed by the end fragments from the walk were mapped to align and correlate the genetic and physical maps for this region of chromosome 1. In this segment of the genome, 1 cM corresponds to a little over 200 kb of physical distance.

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Freshwater ecosystems vary in size and composition and contain a wide range of organisms which interact with each other and with the environment. These interactions are between organisms and the environment as nutrient cycling, biomass formation and transfer, maintenance of internal environment and interactions with the external environment. The range of organisms present in aquatic communities decides the generation and transfer function of biomass, which defines and characterises the system. These organisms have distinct roles as they occupy particular trophic levels, forming an interconnected system in a food chain. Availability of resources and competition would primarily determine the balance of individual species within the food web, which in turn influences the variety and proportions of the different organisms, with important implications for the overall functioning of the system. This dynamic and diverse relationship decides the physical, chemical and biological elements across spatial and temporal scales in the aquatic ecosystem, which can be recorded by regular inventorying and monitoring to maintain the integrity and conserve the ecosystem. Regular environmental monitoring, particularly water quality monitoring allows us to detect, assess and manage the overall impacts on the rivers. The appreciation of water quality is in constant flux. Water quality assessments derived through the biotic indices, i.e. assessments based on observations of the resident floral and faunal communities has gained importance in recent years. Biological evaluations provide a description of the water quality that is often not achievable from elemental analyses alone. A biological indicator (or bioindicator) is a taxon or taxa selected based on its sensitivity to a particular attribute, and then assessed to make inferences about that attribute. In other words, they are a substitute for directly measuring abiotic features or other biota. Bioindicators are evaluated through presence or absence, condition, relative abundance, reproductive success, community structure (i.e. composition and diversity), community function (i.e. trophic structure), or any combination thereof.Biological communities reflect the overall ecological integrity by integrating various stresses, thus providing a broad measure of their synergistic impacts. Aquatic communities, both plants and animals, integrate and reflect the effects of chemical and physical disturbances that occur over extended periods of time. Monitoring procedures based on the biota measure the health of a river and the ability of aquatic ecosystems to support life as opposed to simply characterising the chemical and physical components of a particular system. This is the central purpose of assessing the biological condition of aquatic communities of a river.Diatoms (Bacillariophyceae), blue green algae (Cyanophyceae), green algae (Chlorophyceae), and red algae (Rhodphyceae) are the main groups of algae in flowing water. These organisms are widely used as biological indicators of environmental health in the aquatic ecosystem because algae occupy the most basic level in the transfer of energy through natural aquatic systems. The distribution of algae in an aquatic ecosystem is directly related to the fundamental factors such as physical, chemical and biological constituents. Soft algae (all the algal groups except diatoms) have also been used as indicators of biological integrity, but they may have less efficiency than diatoms in this respect due to their highly variable morphology. The diatoms (Bacillariophyceae) comprise a ubiquitous, highly successful and distinctive group of unicellular algae with the most obvious distinguishing characteristic feature being siliceous cell walls (frustules). The photosynthetic organisms living within its photic zone are responsible for about one-half of global primary productivity. The most successful organisms are thought to be photosynthetic prokaryotes (cyanobacteria and prochlorophytes) and a class of eukaryotic unicellular algae known as diatoms. Diatoms are likely to have arisen around 240 million years ago following an endosymbiotic event between a red eukaryotic alga and a heterotrophic flagellate related to the Oomycetes.The importance of algae to riverine ecology is easily appreciated when one considers that they are primary producers that convert inorganic nutrients into biologically active organic compounds while providing physical habitat for other organisms. As primary producers, algae transform solar energy into food from which many invertebrates obtain their energy. Algae also transform inorganic nutrients, such as atmospheric nitrogen into organic forms such as ammonia and amino acids that can be used by other organisms. Algae stabilises the substrate and creates mats that form structural habitats for fish and invertebrates. Algae are a source of organic matter and provide habitat for other organisms such as non-photosynthetic bacteria, protists, invertebrates, and fish. Algae's crucial role in stream ecosystems and their excellent indicator properties make them an important component of environmental studies to assess the effects of human activities on stream health. Diatoms are used as biological indicators for a number of reasons: 1. They occur in all types of aquatic ecosystems. 2. They collectively show a broad range of tolerance along a gradient of aquatic productivity, individual species have specific water chemistry requirements. 3. They have one of the shortest generation times of all biological indicators (~2 weeks). They reproduce and respond rapidly to environmental change and provide early measures of both pollution impacts and habitat restoration. 4. It takes two to three weeks before changes are reflected to a measurable extent in the assemblage composition.

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Ripe fruit need to signal their presence to attract dispersal agents. Plants may employ visual and/or olfactory sensory channels to signal the presence of ripe fruit. Visual signals of ripe fruit have been extensively investigated. However, the volatile signatures of ripe fruit that use olfactorily-oriented dispersers have been scarcely investigated. Moreover, as in flowers, where floral scents are produced at times when pollinators are active (diurnal versus nocturnal), whether plants can modulate the olfactory signal to produce fruit odours when dispersers are active in the diel cycle is completely unknown. We investigated day night differences in fruit odours in two species of figs, Ficus racemosa and Ficus benghalensis. The volatile bouquet of fruit of F.racemosa that are largely dispersed by bats and other mammals was dominated by fatty acid derivatives such as esters. In this species in which the ripe fig phase is very short, and where the figs drop off soon after ripening, there were no differences between day and night in fruit volatile signature. The volatile bouquet of fruit of F. benghalensis that has a long ripening period, however, and that remain attached to the tree for extended periods when ripe, showed an increase in fatty acid derivatives such as esters and of benzenoids such as benzaldehyde at night when they are dispersed by bats, and an elevation of sesquiterpenes during the day when they are dispersed by birds. For the first time we provide data that suggest that the volatile signal produced by fruit can show did l differences based on the activity period of the dispersal agent. (C) 2011 Elsevier Masson SAS. All rights reserved.

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Ant-plant interactions often are mediated by extrafloral nectar (EFN) composition that may influence plant visitation by ants. Over a 300 km range in the Indian Western Ghats, we investigated the correlation between the EFN composition of the myrmecophytic ant-plant Humboldtia brunonis (Fabaceae) and the number and species of ants visiting EFN. EFN composition varied among H. brunonis populations and between plant organs (floral bud vs. young leaf EFN). In general, EFN was rich in sugars with small quantities of amino acids, especially essential amino acids, and had moderate invertase activity. In experiments at the study sites with sugar and amino acid solutions and with leaf or floral bud EFN mimics, dominant EFN-feeding ants differentiated between solutions as well as between mimics. The castration parasite Crematogaster dohrni (northern study site) was the least selective and did not exhibit any clear feeding preferences, while the largely trophobiont-tending non-protective Myrmicaria brunnea (middle study site) preferred higher sucrose concentrations and certain essential/non-essential amino acid mixtures. The mutualistic Technomyrmex albipes (southern study site) preferred sucrose over glucose or fructose solutions and consumed the leaf EFN mimic to a greater extent than the floral bud EFN mimic. This young leaf EFN mimic had low sugar concentrations, the lowest viscosity and sugar: amino acid ratio, was rich in essential amino acids, and appeared ideally suited to the digestive physiology of T. albipes. This preference for young leaf EFN may explain the greater protection afforded to young leaves than to floral buds by T. albipes, and may also help to resolve ant-pollinator conflicts. The differential response of dominant ants to sugar, amino acids, or solution viscosity suggests that plants can fine-tune their interactions with local ants via EFN composition. Thus, EFN can mediate local partner-choice mechanisms in ant-plant interactions.

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SEPALLATA (SEP) MADS box transcription factors mediate floral development in association with other regulators. Mutants in five rice (Oryza sativa) SEP genes suggest both redundant and unique functions in panicle branching and floret development. LEAFY HULL STERILE1/OsMADS1, from a grass-specific subgroup of LOFSEP genes, is required for specifying a single floret on the spikelet meristem and for floret organ development, but its downstream mechanisms are unknown. Here, key pathways and directly modulated targets of OsMADS1 were deduced from expression analysis after its knockdown and induction in developing florets and by studying its chromatin occupancy at downstream genes. The negative regulation of OsMADS34, another LOFSEP gene, and activation of OsMADS55, a SHORT VEGETATIVE PHASE-like floret meristem identity gene, show its role in facilitating the spikelet-to-floret meristem transition. Direct regulation of other transcription factor genes like OsHB4 (a class III homeodomain Leu zipper member), OsBLH1 (a BEL1-like homeodomain member), OsKANADI2, OsKANADI4, and OsETTIN2 show its role in meristem maintenance, determinacy, and lateral organ development. We found that the OsMADS1 targets OsETTIN1 and OsETTIN2 redundantly ensure carpel differentiation. The multiple effects of OsMADS1 in promoting auxin transport, signaling, and auxin-dependent expression and its direct repression of three cytokinin A-type response regulators show its role in balancing meristem growth, lateral organ differentiation, and determinacy. Overall, we show that OsMADS1 integrates transcriptional and signaling pathways to promote rice floret specification and development.

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1. Plant reproductive phenology is generally viewed as an individual's strategy to maximize gamete exchange and propagule dispersal and is often considered largely dependent on patterns of floral initiation. Reproductive phenology, however, can be affected by proximate responses to pollinators, parasites and herbivores which could influence floral longevity or fruit development time. 2. We examined the influence of insect interactants on within-plant reproductive phenology in the fig-fig wasp nursery pollination mutualism in Ficus racemosa (Moraceae). Most figs support a wasp community comprised of a mutualistic pollinator, with several host-plant-specific non-pollinating herbivorous gallers and parasitoids. These wasps reproduce within enclosed inflorescences called syconia, which develop into fruit after pollination. While different wasp species oviposit into syconia at varying times during its ontogeny, all wasp progeny are constrained to exit syconia simultaneously just prior to fruit ripening. Developing larvae of early-ovipositing wasps may hasten syconium ontogeny through formation of earlier and larger nutrient sinks, whereas larvae of late-arriving parasites may lengthen syconium ontogeny to complete their development successfully. Seeds are also important nutrient sinks. The number of seeds and the type and number of developing wasps may therefore be expected to influence syconium development times, thereby affecting the reproductive synchrony of syconia on a plant. 3. Observations on naturally pollinated and parasitized syconia indicated that their seed and wasp content affected syconium development time. Experimental manipulations of syconia to produce only seeds or various combinations of wasps confirmed this finding. Early-ovipositing galler progeny reduced syconium development times, while gallers ovipositing concurrently with pollinators had no effect on syconium development. Late-ovipositing parasitoid progeny, the presence of only seeds within the syconium, or delayed pollination increased syconium development time. The differential development of syconia, which was influenced by mutualistic or parasitic progeny, accordingly contributed to within-tree reproductive asynchrony. 4. Synthesis. Individual reproductive units in fig trees called syconia, which also function as brood sites for pollinating and parasitic fig wasps, have plastic development durations dependent on pollination timing and species of wasps developing within them. Syconium development times are a likely compromise between conflicting demands from developing seeds and different wasp species.

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In nursery pollination mutualisms, which are usually obligate interactions, olfactory attraction of pollinators by floral volatile organic compounds (VOCs) is the main step in guaranteeing partner encounter. However, mechanisms ensuring the evolutionary stability of dioecious fig-pollinator mutualisms, in which female fig trees engage in pollination by deceit resulting in zero reproductive success of pollinators that visit them, are poorly understood. In dioecious figs, individuals of each sex should be selected to produce odours that their pollinating wasps cannot distinguish, especially since pollinators have usually only one choice of a nursery during their lifetime. To test the hypothesis of intersexual chemical mimicry, VOCs emitted by pollen-receptive figs of seven dioecious species were compared using headspace collection and gas chromatography-mass spectrometry analysis. First, fig-flower scents varied significantly among species, allowing host-species recognition. Second, in species in which male and female figs are synchronous, intersexual VOC variation was not significant. However, in species where figs of both sexes flower asynchronously, intersexual variation of VOCs was detectable. Finally, with one exception, there was no sexual dimorphism in scent quantity. We show that there are two ways to use scent to be a dioecious fig based on differences in flowering synchrony between the sexes.

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Con el objetivo de evaluar la adaptabilidad y rendimiento de Cuatro variedades de tomate Lycopersicum esculentum, en Santa Lucía municipio del departamento de Boaco. Se establecieron dos parcelas, una MIP y otra tradicional en la finca de los productores Holmán bravo y Miguel Álvarez. A cada parcela se le realizó diferente manejo técnico para el complejo mosca blanca Bemisia tabaci­ Geminivirus. Se evaluaron 4 variedades de tomate (UC-82, Peto-95, Río Grande y Pacesetter-502) y se tomaron los siguientes variables fitosanitarias: fluctuaciones de mosca blanca, incidencia de virosis e incidencia de gusanos de fruto, también se evaluaron algunas variables agronómicas para conocer la adaptabilidad de las variables como: Número de racimos florales por planta, altura del primer racimo floral, número de racimos frutales y diámetro horizontal y vertical del fruto.La incidencia de mosca blanca en semillero fue mínima y no alcanzó el nivel de aplicación (10 moscas blancas en 50 plantas) y rolo se encontró un máximo de 9 insectos en el semillero tradicional que fue donde se encontró más. Pero después del trasplante las fluctuaciones aumentaron tanto en la parcela MIP como tradicional y a partir de los 17 días después del trasplante las fluctuaciones superaron el nivel de aplicación (12 moscas blancas en 30 plantas) y así se mantuvieron en todo el periodo del ensayo. Las fluctuaciones de gusanos de fruto fueron bajas y no alcanzaron el nivel de aplicación en la parcela MIP, en la parcela tradicional a los 39 DDT alcanzaron el nivel de aplicación. Las variables agronómicas evaluadas en la parcela MIP, superaron a las de la parcela tradicional exceptuando el número de racimos frutales por planta y en el diámetro horizontal del fruto de la variedad Río Grande que fueron superiores en la parcela tradicional; se obtuvo mayor rendimiento en las cuatro variedades en la parcela MIP que en la parcela tradicional y la variedad UC-82 Y Río Grande presentaron el mayor rendimiento en comparación con las otras variedades evaluadas en las dos parcelas. Las condiciones climáticas presentes durante el ensayo fueron favorables para la adaptabilidad de las variedades. El análisis económico muestra un mayor ingreso neto para las variedades evaluadas en la parcela MIP, y que la variedad RIO GRANDE Género el mayor ingreso neto en las 2 parcelas.

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La pérdida de diversidad genética es un proceso que transcurre a gran velocidad, para preservar y conservar estos recursos genéticos vegetales, se hace necesario el inventario y caracterización (agronómica, morfológica, genética, bioquímica, etc), con el propósito de describir y diferenciar el material genético. Las estrategias de conservación del germoplasma deben basarse en la preservación de las poblaciones en su hábitat ( in situ) y la preservación fuera de su hábitat (ex situ). El presente estudio se desarrolló durante el período de octubre (2002) a noviembre (2002), muestreado en la zona del pacífico en los departamentos de Chinandega, León, Managua, Masaya, Granada, Carazo y Rivas con el objetivo de proponer una guía de descriptores del cultivo de pitahaya (Hylocereus undatus Britt & Rosse), definir descriptores que determinen similitud y relación entre los diferentes materiales genéticos y la realización de un catálogo de los caracteres cuantitativos de la estructura floral y vegetativa de esta especie, mediante análisis de estadística descriptiva, análisis de correlación y técnicas de taxonomía numérica como análisis de componentes principales (ACP) y análisis de agrupamiento (AA). Se encontró que esta especie florece con las primeras lluvias de mayo a junio, el periodo de producción es de mayo a noviembre, obteniendo mayores rendimientos entre agosto y septiembre. El cultivo de la pitahaya tiene amplia distribución en el país, cultivado en huertos familiares y de forma comercial, abasteciendo al mercado local de Masaya principalmente y en menor proporción a los otros departamentos, localizando los mejores frutos en La Concepción (cerro San Ignacio), debido a las condiciones ambientales y de adaptación del material genético en la zona. Tiene usos múltiples como fruta fresca, alimento para el ganado, uso medicinal. Se determinó que la variable diámetro del estilo presentó un C.V de 83.11% y el peso de la cáscara un C.V de 61.24%, siendo estas dos las que presentan mayor variación. Las variables diámetro basal de la flor y número de pétalos presentaron un C.V de 10.60% y 9.37% respectivamente, siendo las de menor variación. Asimismo las variables forma de brácteas inferior y superior al igual que el color primario y secundario presentaron semejanzas. El análisis de componentes principales determinó que el 46.83% de la variación total que la aportan los 3 primeros componentes y las variables que la integran son VOLFRU, PESFRU, LONFRU, PESCAS, VOLPUL y DIAFRU para discriminar un 19.24% en el primer componente; las variables COLFRU, UNIFES, DIAESTI, LONESP aislaron un 14.81% en el segundo componente y un 12.78% para el tercer componente conformado por NUMBRF, DIAEST y DIAFLO, estas variables pueden ser utilizadas para evaluar materiales de pitahayas.

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La producción de pepino (Cucumis Sativus L.) en Nicaragua está en manos de pequeños y medianos productores, en esto reside la importancia de investigar y formular alternativas que permitan mejorar la producción del cultivo. El estudio se presenta como una investigación descriptiva bajo la modalidad de un estudio de caso (único) realizado en la FDR-UNA. El trabajo tiene como objetivos, construir la estructura de los costos de producción, punto de equilibrio y rentabilidad en el ciclo de producción. La metodología empleada fue la recolección de datos durante el ciclo productivo, los que fueron comparados con dos casos similares para su análisis e interpretación. Los resultados se lograron a partir del análisis de las variables principales: costos fijos y variables, punto de equilibrio y rentabilidad, el costo total de producción fue de US$ 178.38, el mayor peso está dado por los costos fijos con una participación del 56% por la depreciación del macro túnel; los ingresos, US$103.20, fueron menores a los costos productivos, generándose una pérdida de US$75.18. Los resultados obtenidos se dieron por la baja productividad del cultivo provocada por el aborto floral debido a las altas temperaturas en la época de siembra y por la falta de ventilación en el macro túnel donde se realizó el estudio. Se concluyó que la actividad productiva no fue rentable y se requiere de un manejo agronómico más eficiente así como el uso de variedades híbridas más resistentes y de mayor rendimiento productivo, de igual manera es necesario hacer la siembra en épocas de más baja temperatura, aplicar técnica de tutoreo y hacer uso de micro aspersores para bajar la temperatura.

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Fossil flora described in the present report is too limited for purposes of exact correlation, which may be expected to be settled by the marine faunas present at most horizons in the Isthmian region. Accompanying table of distribution will show that from the oldest (Hohio) to the youngest (Gatun) plant-bearing formations there is no observable difference in floral facies. This so-called Oligocence series of formations does not represent any great interval of time. (39 page document)

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At first it was intended to confine the collections to the Canal Zone proper, but as the faunal and floral areas extended to the north and south of this region, it was decided to carry the work into the Republic of Panama, a step which met with the hearty approval of that Republic. The work accomplished has been very valuable to science, including collections and observations of vertebrate animals, land and fresh water mollusks, and plants, including flowering plants, grasses and ferns. Special attention will be given during the coming season to vertebrate animals, insects, crustaceans, rotifers and other minute freshwater animals, and also to the microscopic plants known as diatoms. Includes appendix of papers that resulted.

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The phytoplankton distribution of the Shen Reservoir, Bukuru in the Jos Plateau, Nigeria was monitored at 6 depths. Higher floral abundance occurred within the upper 00-03 meters with highest values at the first 1 meter. Bacillariophyceae and Dinophyceae recorded higher values in March-April with lower values in July and January respectively. Phytoplankton were most abundant in the rainy season. Secchi disc transparency was lowest in the peak of the rainy season (July) due to higher levels of suspended matter resulting from the increased run-off from surrounding farmlands of allochthonous materials as well as higher levels of phytoplankton population arising from the former factor. The low water temperature of December/January 15 degree C plus or minus 2 degree C might have depressed growth among the major groups of plankters but enhanced rapid multiplication of the Chlorophyta, Trachelomonas which showed a bloom at this season

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A vegetação da Ilha Grande faz parte do Bioma Floresta Atlântica, que possui altos índices de biodiversidade e cobre amplas regiões de zonas climáticas e formações vegetacionais tropicais a subtropicais. No Brasil, estende-se numa estreita faixa ao longo de quase toda a costa atlântica e interioriza-se atingindo parte da Argentina e do Paraguai. Asteraceae é a terceira maior família em número de espécies na Floresta Atlântica. Assim, buscou-se conhecer a representatividade dessa família na Ilha Grande, objetivando contribuir com a política de preservação e manutenção de seus ecossistemas. Nesse contexto, promoveu-se um levantamento bibliográfico, consultas a herbários e excursões periódicas de coleta em campo. O material coletado foi depositado no herbário da Universidade do Estado do Rio de Janeiro (HRJ). Registrou-se na área de estudo 67 espécies subordinadas a 37 gêneros. Os gêneros são a seguir denominados: Achyrocline (3 spp.), Adenostemma (1sp.), Ageratum (1 sp.), Austrocritonia (1 sp.), Astroeupatorium (1 sp.), Baccharis (8 spp.), Bidens (1 sp.), Blainvillea (1 sp.), Centratherum (1 sp.), Chaptalia (1 sp.), Chromolaena (3 spp.), Conyza (1 sp.), Cosmos (1 sp.), Eclipta (1 sp.), Elephantopus (2 spp.), Emilia (1 sp.), Erechtites (1 sp.), Galinsoga (1 sp.), Gamochaeta (1 sp.), Grazielia (1 sp.), Heterocondylus (2 spp.), Mikania (13 spp.), Piptocarpha (2 spp.), Pluchea (1 sp.), Praxelis (1 sp.), Pseudogynoxys (1 sp.), Pterocaulon (1 sp.), Sphagneticola (1 sp.), Sonchus (1 sp.), Steymarkina (1 sp.), Struchium (1 sp.), Synedrella (1 sp.), Tilesia (1 sp.), Tithonia (1 sp.), Trixis (1 sp.), Verbesina (1 sp.) e Vernonia (5 spp.). Estes gêneros estão abrigados sob nove tribos. São citadas pela primeira vez para o Estado do Rio de Janeiro as espécies Mikania campanulata e Struchium sparganophorum.

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A subtribo Elephantopinae tem sido alvo de poucos estudos taxonômicos e palinológicos, necessitando de uma reavaliação em seus limites. Assim, o presente estudo teve como proposta atualizar e ampliar o conhecimento de 13 espécies de Elephantopinae ocorrentes no Brasil através de um acurado estudo palinológico, da anatomia foliar e taxonômico, promovendo a delimitação das espécies dos gêneros Elephantopus (10 espécies) Orthopappus (uma espécie) e Pseudelephantopus (duas espécies)além de oferecer subsídios para posteriores análises filogenéticas. O material botânico utilizado foi obtido através de exsicatas depositadas nos herbários brasileiros e de material coletado em campo. Os grãos de pólen foram tratados pelo método acetolítico, sendo posteriormente mensurados, descritos, e analisados sob microscopia de luz e eletrônica de varredura. As eletromicrografias foram obtidas de grãos de pólen não acetolisados, as análises taxonômicas baseiam-se na metodologia clássica. A anatomia foliar deu-se através da metodologia usual. Os resultados mostram grãos de pólen médios, 3-porados, de exina equinolofada com malhas poligonais organizadas ou não em Elephantopus e Pseudelephantopus, podendo apresentar interrupção na malha poral em Elephantopus. Em Orthopapus os grãos de pólen são 3-colporados, de sexina subequinolofada. A anatomia foliar possibilitou a separação de E. hirtiflorus e E. riparius através da forma ou contorno da nervura principal (planoconvexo), nas demais espécies o contorno é biconvexo. As espécies apresentaram tricomas capitados bisseriados com 8 células, tricomas filamentosos 3-4 celulares, bem como filamentosos de célula distal globosa ou ovóide em E. biflorus, E. micropappus, E. tomentous e Orthopappus angustifolius. Registrou-se variação na ornamentação da cutícula podendo ser lisa ou estriada entre as espécies, bem como a presença de substâncias pécticas na epiderme e drusas nos parênquimas. Em relação aos microcaracteres florais, foram considerados de importância diagnóstica os lóbulos da corola, que variaram entre glandular, glabro e penicilado, este ultimo apenas em E. hirtiflorus, os ápices das anteras que variaram entre obtuso, retuso em E. hirtiflorus e apiculado, lancelolado em E. mollis e E. racemosus, a base da antera variou entre sagitada, caudada lisa em E. riparius e E. tomentosus e caudada em E. riparius. Os macrocaracteres que apresentaram maior valor taxonômico foram a cipsela e o papus, a organização das coflorescências, o número de flores por capítulo e limbo foliar. Neste trabalho aceitou-se a segregação dos três gêneros, com base nos caracteres analisados