305 resultados para Helianthus annuus


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p.25-44

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p.291-295

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El objetivo de esta tesis fue estudiar los efectos del genotipo, el ambiente y su interacción sobre peso de cáscara y aptitud al descascarado de los granos; y la composición acídica, contenido de ceras, tocoferoles y fosfolípidos y estabilidad oxidativa del aceite de girasol; así como de las relaciones intrínsecas entre dichos variables con rendimiento en aceite y peso de aquenios, identificando etapas fenológicas de máxima respuesta de estas características de calidad al efecto combinado de factores ambientales, dentro de los cuales se incluyeron a la productividad media y a características de suelo y climáticas, registrados para cada una de las etapas fenológicas de cada cultivar en cada localidad. Se utilizó un diseño de bloques al azar con 5 cultivares sembrados en 11 localidades de Argentina, distribuidas en las áreas NEA, OESTE y SUR. Se aplicaron técnicas de ANAVA factorial, regresión múltiple, análisis de sendero y esquemas de causa-efecto para estimar la importancia relativa de las fuentes de variación e identificar los factores ambientales de mayor efecto sobre estas características. Se utilizó análisis de conglomerados y componentes principales para el estudio de interrelaciones entre las características de calidad y factores ambientales. Aunque se observó variabilidad entre genotipos, el efecto del ambiente sobre la variabilidad total fue superior a la contribución del componente genético para todos los atributos examinados, con la excepción de porcentaje de cáscara y concentración de ceras. No se observó relación entre el rendimiento y las características estudiadas. Los factores ambientales de mayor efecto sobre las características de calidad fueron temperatura mínima, PAR, agua útil, precipitaciones, humedad relativa y nitrógeno, dependiendo el efecto individual, de cada factor, de su interrelación y de la etapa fenológica que se considere. Las condiciones ambientales durante las etapas R1-R5.5 y R5.5+300°Cd lograron explicar gran parte de la variabilidad total.

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Phenotypic variation (morphological and pathogenic characters), and genetic variability were studied in 50 isolates of seven Plasmopara halstedii (sunflower downy mildew) races 100, 300, 304, 314, 710, 704 and 714. There were significant morphological, aggressiveness, and genetic differences for pathogen isolates. However, there was no relationship between morphology of zoosporangia and sporangiophores and pathogenic and genetic characteristics for the races used in our study. Also, our results provided evidence that no relation between pathogenic traits and multilocus haplotypes may be established in P. halstedii. The hypothesis explaining the absence of relationships among phenotypic and genetic characteristics is discussed.

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In order to clarify the role of Pl2 resistance gene in differentiation the pathogenicity in Plasmopara halstedii (sunflower downy mildew), analyses were carried out in four pathotypes: isolates of races 304 and 314 that do not overcome Pl2 gene, and isolates of races 704 and 714 that can overcome Pl2 gene. Based on the reaction for the P. halstedii isolates to sunflower hybrids varying only in Pl resistance genes, isolates of races 704 and 714 were more virulent than isolates of races 304 and 314. Index of aggressiveness was calculated for pathogen isolates and revealed the presence of significant differences between isolates of races 304 and 314 (more aggressive) and isolates of races 704 and 714 (less aggressive). There were morphological and genetic variations for the four P. halstedii isolates without a correlation with pathogenic diversity. The importance of the Pl2 resistance gene to differentiate the pathogenicity in sunflower downy mildew was discussed.

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Rice is a major source of inorganic arsenic (iAs) in the human diet because paddy rice. efficient at accumulating As Rice As speciation is dominated by iAs and dimethylarsinic acid (DMA). Here we review the global pattern in rice As speciation and the factors causing the variation. Rice produced in Asia shows a strong linear relationship between iAs and total As concentration with a slope of 0.78. Rice produced in Europe and the United States shows a more variable, but generally hyperbolic relationship with DMA being predominant in U.S. rice. Although there is significant genotypic variation in grain As speciation, the regional Variations are primarily attributed to environmental factors. Emerging evidence also indicates that methylated. As species in rice are derived from the soil, while rice plants lack the As methylation ability. Soil flooding and additions of organic matter increase microbial methylation of As, although the microbial community responsible for methylafion is poorly understood. Compared with iAs, methylated As species are taken up by rice roots less efficiently but are transported to the grain much, more efficiently, which may be an important factor responsible for the spikelet sterility disorder (straight head disease) in rice. DMA is a weak carcinogen, but the level of ingestion from rice consumption is much lower than that of concern. Questions that require further investigations are identified.

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Tese de dout., Biologia (Fisiologia Vegetal), Faculdade de Engenharia dos Recursos Naturais, Univ. do Algarve, 2005

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Tese de dout., Química, Faculdade de Ciências e Tecnologia, Univ. do Algarve, 2012

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Des preuves archéopalynologiques directes appuient maintenant l’hypothèse d’une lente adaptation horticole durant la néolithisation amérindienne de la région de Montréal. Les sites archéologiques Hector-Trudel (BhFl-1a) de Pointe-du-Buisson et Séminaire de Saint-Sulpice (BjFj-18) dans le Vieux-Montréal ont été retenus pour élaborer une méthodologie archéopalynologique d’étude des sols archéologiques. Cela a permis de caractériser l’impact de la présence humaine sur l'environnement végétal des sites et d’identifier des indices de culture et de gestion de plantes allogènes et indigènes. Un complexe horticole de production à petite échelle de maïs (Zea mays), de tournesol (Helianthus annuus) et de petit tabac (Nicotiana rustica) et une forme de gestion des arbustes à petits fruits sont identifiés au site Hector-Trudel durant le Sylvicole moyen tardif (500 à 1000 A.D.). Ces cultigènes sont aussi identifiés au site du Séminaire pour la fin du Sylvicole supérieur ancien (1200 à 1300 A.D.), dans des proportions toutefois plus importantes, et une activité de gestion forestière au profit des arbres à noix et du tilleul d’Amérique (Tilia americana), reflet des pratiques d’entretien des champs cultivés, témoignent d’une évolution dans les comportements

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Many nonlinear optical microscopy techniques based on the high-intensity nonlinear phenomena were developed recent years. A new technique based on the minimal-invasive in-situ analysis of the specific bound elements in biological samples is described in the present work. The imaging-mode Laser-Induced Breakdown Spectroscopy (LIBS) is proposed as a combination of LIBS, femtosecond laser material processing and microscopy. The Calcium distribution in the peripheral cell wall of the sunflower seedling (Helianthus Annuus L.) stem is studied as a first application of the imaging-mode LIBS. At first, several nonlinear optical microscopy techniques are overviewed. The spatial resolution of the imaging-mode LIBS microscope is discussed basing on the Point-Spread Function (PSF) concept. The primary processes of the Laser-Induced Breakdown (LIB) are overviewed. We consider ionization, breakdown, plasma formation and ablation processes. Water with defined Calcium salt concentration is used as a model of the biological object in the preliminary experiments. The transient LIB spectra are measured and analysed for both nanosecond and femtosecond laser excitation. The experiment on the local Calcium concentration measurements in the peripheral cell wall of the sunflower seedling stem employing nanosecond LIBS shows, that nanosecond laser is not a suitable excitation source for the biological applications. In case of the nanosecond laser the ablation craters have random shape and depth over 20 µm. The analysis of the femtosecond laser ablation craters shows the reproducible circle form. At 3.5 µJ laser pulse energy the diameter of the crater is 4 µm and depth 140 nm for single laser pulse, which results in 1 femtoliter analytical volume. The experimental result of the 2 dimensional and surface sectioning of the bound Calcium concentrations is presented in the work.