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Época de colheita, irrigação, fitoquímica e atividades carrapaticida e fungicida do óleo essencial de genótipos de Lippia gracilis SchauerCruz, Elizangela Mércia de Oliveira 15 March 2013 (has links)
The aim of this study was to determine the influence of harvesting time and water stress on the chemical composition of the essential oil and to test the activities against ticks and fungus of the essential oil of L. gracilis. For the analysis of harvest season the plant material was collected from seven genotypes of L. gracilis at the Research Farm "Campus Rural da UFS", in the rainy and dry seasons. The experiment testing water stress was conducted in the dry season. The extraction of essential oils was performed in the Laboratory of Phytotechnology of the UFS through hydrodistillation. Chemical analysis of the essential oil performed using GC-MS in the Laboratory of Chromatography of the UFS. For the activity tests against ticks package larvae and immersion of engorged tick Rhipicephalus microplus in different concentrations of essential oil, thymol or carvacrol. To test of fungicidal activity, the essential oil at different concentrations was added to PDA medium. Each plate was inoculated with mycelia culture of Thielaviopis paradoxa. The essential oil of L. gracilis presented two distinct chemotypes, one genotype LGRA-106 presenting as major compound thymol and the other genotypes presenting carvacrol as major compound. The leaves provided essential oil with an average grade of 1.55% in the rainy season and 2.09% in the dry season. In the rainy season there was no significant difference in both the yield and the content. The chemical composition of essential oils L. gracilis showed high levels of terpenes, 92% in the rainy season and 96% in the dry season. In the experiment with irrigation the values of content and yield of all genotypes were smaller when compared without irrigation. In general, the species L. gracilis, for the presence of water in the soil, provides stability in the chemical composition of the essential oil regardless of season, since plants subjected to irrigation, even in the dry season, the essential oil produced in quantity and quality similar to the rainy season. The essential oil of L. gracilis exhibits high activity against ticks, proven by lethal concentrations of genotypes LGRA-201 (1.31 mg.mL-1) and LGRA-106 (4.66 mg.mL-1), demonstrating efficiency in the control of this parasite. The tests showed that the concentrations 0.45; 0.91 and 2.75 mg.mL-1 of all genotypes of L. gracilis completely inhibited the development of the pathogen T. paradoxa, corresponding to a percentage of mycelium growth inhibition of 100%. The concentration of 0.18 mg.mL-1 of essential oil was sufficient to significantly reduce the number of spores of T. paradoxa. The minimal fungicidal concentration T. paradoxa was found between concentrations from 0.80 to 0.98 mg.mL-1 for the essential oils and 0.26 mg.mL-1 for carvacrol and 0.35 mg.mL-1 to thymol. / O presente trabalho teve como objetivo determinar a influencia da época de colheita e do estresse hídrico na composição química do óleo essencial e testar a atividade carrapaticida e fungicida do óleo essencial de L. gracilis. Para as análises de época de colheita o material vegetal foi colhido de sete genótipos de L. gracilis no Campus Rural da UFS , nas épocas chuvosa e seca. Já para o ensaio de estresse hídrico o experimento foi conduzido na época seca. A extração de óleos essenciais foi realizada no Laboratório de Fitotecnia da UFS, por meio de hidrodestilação. A análise química do óleo essencial foi realizada utilizando CG-EM, no Laboratório de Cromatografia da UFS. Para a atividade carrapaticida foram realizadas os testes de pacote de larvas e de imersão de fêmeas ingurgitadas do carrapato Rhipicephalus microplus em diversas concentrações de óleo essencial, timol ou carvacrol. Para o teste de atividade fungicida, o óleo essencial, em diferentes concentrações foi adicionado ao meio BDA. Cada placa foi inoculada com micélios da cultura monospórica de Thielaviopis paradoxa. O óleo essencial de L. gracilis apresentou dois quimiotipos distintos um com o genótipo LGRA-106 apresentando o composto timol como majoritário e os demais o carvacrol. As folhas forneceram óleos essenciais amarelados com teor médio de 1,55% na época chuvosa e 2,09% na seca. Na época chuvosa não houve diferença significativa tanto no rendimento como no teor. A composição química dos óleos essenciais de L. gracilis apresentou altos níveis de terpenos, 92% na época chuvosa e 96% na época seca. No ensaio com irrigação os valores de teor e rendimento de todos os genótipos são menores quando comparado com o ensaio sem irrigação. De maneira geral a espécie L. gracilis, quanto à presença de água no solo, apresenta estabilidade na composição química do óleo essencial independente da época do ano, uma vez que as plantas submetidas à irrigação, mesmo no verão, produziram óleo essencial em quantidade e qualidade semelhantes à época do inverno. O óleo essencial de L. gracilis apresenta alta atividade carrapaticida, comprovados pelas concentrações letais dos genótipos LGRA-201 (1,31 mg.mL-1) e LGRA-106 (4,66 mg.mL-1), demonstrando eficiência no controle desse parasita. Os ensaios demonstraram que as concentrações 0,45; 0,91 e 2,75mg.mL-1 de todos os genótipos de L. gracilis inibiram completamente o desenvolvimento do patógeno T. paradoxa, correspondendo a uma porcentagem de inibição do crescimento micelial de 100%. A concentração de 0,18mg.mL-1 de óleo essencial foi suficiente para reduzir significativamente o número de esporos de T. paradoxa. A concentração fungicida mínima de T. paradoxa foi encontrada entre as concentrações de 0,80 a 0,98mg.mL-1 para os óleos essenciais e 0,26mg.mL-1 para o carvacrol, e 0,35mg.mL-1 para o timol.
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Época de colheita, irrigação, fitoquímica e atividades carrapaticida e fungicida do óleo essencial de genótipos de Lippia gracilis SchauerCruz, Elizangela Mércia de Oliveira 15 March 2013 (has links)
The aim of this study was to determine the influence of harvesting time and water stress on the chemical composition of the essential oil and to test the activities against ticks and fungus of the essential oil of L. gracilis. For the analysis of harvest season the plant material was collected from seven genotypes of L. gracilis at the Research Farm "Campus Rural da UFS", in the rainy and dry seasons. The experiment testing water stress was conducted in the dry season. The extraction of essential oils was performed in the Laboratory of Phytotechnology of the UFS through hydrodistillation. Chemical analysis of the essential oil performed using GC-MS in the Laboratory of Chromatography of the UFS. For the activity tests against ticks package larvae and immersion of engorged tick Rhipicephalus microplus in different concentrations of essential oil, thymol or carvacrol. To test of fungicidal activity, the essential oil at different concentrations was added to PDA medium. Each plate was inoculated with mycelia culture of Thielaviopis paradoxa. The essential oil of L. gracilis presented two distinct chemotypes, one genotype LGRA-106 presenting as major compound thymol and the other genotypes presenting carvacrol as major compound. The leaves provided essential oil with an average grade of 1.55% in the rainy season and 2.09% in the dry season. In the rainy season there was no significant difference in both the yield and the content. The chemical composition of essential oils L. gracilis showed high levels of terpenes, 92% in the rainy season and 96% in the dry season. In the experiment with irrigation the values of content and yield of all genotypes were smaller when compared without irrigation. In general, the species L. gracilis, for the presence of water in the soil, provides stability in the chemical composition of the essential oil regardless of season, since plants subjected to irrigation, even in the dry season, the essential oil produced in quantity and quality similar to the rainy season. The essential oil of L. gracilis exhibits high activity against ticks, proven by lethal concentrations of genotypes LGRA-201 (1.31 mg.mL-1) and LGRA-106 (4.66 mg.mL-1), demonstrating efficiency in the control of this parasite. The tests showed that the concentrations 0.45; 0.91 and 2.75 mg.mL-1 of all genotypes of L. gracilis completely inhibited the development of the pathogen T. paradoxa, corresponding to a percentage of mycelium growth inhibition of 100%. The concentration of 0.18 mg.mL-1 of essential oil was sufficient to significantly reduce the number of spores of T. paradoxa. The minimal fungicidal concentration T. paradoxa was found between concentrations from 0.80 to 0.98 mg.mL-1 for the essential oils and 0.26 mg.mL-1 for carvacrol and 0.35 mg.mL-1 to thymol. / O presente trabalho teve como objetivo determinar a influencia da época de colheita e do estresse hídrico na composição química do óleo essencial e testar a atividade carrapaticida e fungicida do óleo essencial de L. gracilis. Para as análises de época de colheita o material vegetal foi colhido de sete genótipos de L. gracilis no Campus Rural da UFS , nas épocas chuvosa e seca. Já para o ensaio de estresse hídrico o experimento foi conduzido na época seca. A extração de óleos essenciais foi realizada no Laboratório de Fitotecnia da UFS, por meio de hidrodestilação. A análise química do óleo essencial foi realizada utilizando CG-EM, no Laboratório de Cromatografia da UFS. Para a atividade carrapaticida foram realizadas os testes de pacote de larvas e de imersão de fêmeas ingurgitadas do carrapato Rhipicephalus microplus em diversas concentrações de óleo essencial, timol ou carvacrol. Para o teste de atividade fungicida, o óleo essencial, em diferentes concentrações foi adicionado ao meio BDA. Cada placa foi inoculada com micélios da cultura monospórica de Thielaviopis paradoxa. O óleo essencial de L. gracilis apresentou dois quimiotipos distintos um com o genótipo LGRA-106 apresentando o composto timol como majoritário e os demais o carvacrol. As folhas forneceram óleos essenciais amarelados com teor médio de 1,55% na época chuvosa e 2,09% na seca. Na época chuvosa não houve diferença significativa tanto no rendimento como no teor. A composição química dos óleos essenciais de L. gracilis apresentou altos níveis de terpenos, 92% na época chuvosa e 96% na época seca. No ensaio com irrigação os valores de teor e rendimento de todos os genótipos são menores quando comparado com o ensaio sem irrigação. De maneira geral a espécie L. gracilis, quanto à presença de água no solo, apresenta estabilidade na composição química do óleo essencial independente da época do ano, uma vez que as plantas submetidas à irrigação, mesmo no verão, produziram óleo essencial em quantidade e qualidade semelhantes à época do inverno. O óleo essencial de L. gracilis apresenta alta atividade carrapaticida, comprovados pelas concentrações letais dos genótipos LGRA-201 (1,31 mg.mL-1) e LGRA-106 (4,66 mg.mL-1), demonstrando eficiência no controle desse parasita. Os ensaios demonstraram que as concentrações 0,45; 0,91 e 2,75mg.mL-1 de todos os genótipos de L. gracilis inibiram completamente o desenvolvimento do patógeno T. paradoxa, correspondendo a uma porcentagem de inibição do crescimento micelial de 100%. A concentração de 0,18mg.mL-1 de óleo essencial foi suficiente para reduzir significativamente o número de esporos de T. paradoxa. A concentração fungicida mínima de T. paradoxa foi encontrada entre as concentrações de 0,80 a 0,98mg.mL-1 para os óleos essenciais e 0,26mg.mL-1 para o carvacrol, e 0,35mg.mL-1 para o timol.
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Cinétique d'évolution structurale des sols argileux : relation stress hydrique-stress salin ; Application à la biodiversité et rendement de culture / Kinetics of structural evolution of clay dominated soils : water stress-salt stress relationship; biodiversity and crop yield applicationRadimy, Raymond Tojo 11 December 2015 (has links)
Les marais de l'Ouest ont été gagnés sur les sédiments fluvio-marins par poldérisation débutée dès le moyen âge. Les aménagements hydrauliques avaient, initialement, des objectifs sanitaires et d'élevage. A partir des endiguements, ils ont divisé les territoires en marais mouillés et marais desséchés. Depuis les années 1970 le développement des cultures intensives de céréales a nécessité un rabaissement complémentaire de la nappe par drainage en partie pour augmenter la désalinisation de surface et limiter l’engorgement des sols. Néanmoins, ces territoires restent caractérisés par des nappes proches de la surface. En conséquence les profils hydriques vont être gouvernés par les conditions météorologiques y compris l'évapotranspiration, la pluviométrie, mais également par les remontées capillaires issues d'une nappe salée. D'autre par la nature argileuse des sols et ses propriétés de retrait conditionnent énormément le fonctionnement hydrodynamique et les évolutions de structure.La première partie du travail a été de suivre les évolutions des profils hydriques et de salinité en parcelles non drainées (prairies) et en parcelles drainées (Maïs, Blé, Tournesol). Ces suivis ont été complétés par les mesures des niveaux de nappes et par des mesures tensiométriques via des bougies poreuses implantées à différentes profondeurs. L'objectif final a été de calculer et modéliser les profils de réserve utile (RU) et de RU "résiduelle" utilisable par les plantes. Dans ces systèmes alimentés par les remontées capillaires, le réseau racinaire puise l'eau dans la zone non saturée de surface (vadose) puis dans la zone saturée sous-jacente. La teneur en eau caractéristique de l'interface zone non saturée - zone saturée a été déterminée par analogie entre les chemins d'état de la matrice argileuse le long de sa courbe de retrait et du sol le long de sa courbe de compaction. Les profils de RU résiduelle utilisable par les plantes ont été calculés à partir des profils de teneurs en eau puis comparés aux profils de RU obtenus via les données de station météorologique. Ces profils de RU résiduelle ont pu être écrits sous forme d'équation polynomiale du second degré puis modélisés. Dans cet environnement alimenté par les remontées capillaires, ces profils de RU résiduelles peuvent être modélisés à partir d'un paramètre facilement mesurable en surface qui prend en compte la structure du sol et les conditions météorologique : soit la teneur en eau à 10 cm de profondeur. Cette modélisation reste suffisamment réaliste pour être utilisée comme un outil prédictif face à la pédodiversité et/ou les rendements de culture.A ce travail s'ajoute deux études préliminaires : - les mesures des conductivités thermiques effectives de ces sols par la méthode du fil chaud et leurs modélisations dans les systèmes biphasés : eau - argile et air - argile, mais également pour les systèmes triphasés non saturés : eau - air - argile. Les perspectives sont la modélisation des transferts thermiques et hydriques dans le sol à partir de la surface, - et l'élaboration d'un protocole d'imprégnation-polymérisation des sols argileux humides par des résines de type HEMA. Cette imprégnation permet d'envisager la confection de lames minces dans le matériau argileux induré avec conservation de sa structure initiale humide. Les perspectives sont la pétrographie quantitative à l'interface racine - sol le long de profils verticaux dans les environnements argileux à degrés de saturation et structure évolutives. / The coastal marshlands are territories generally reclaimed on primary fluvio-marine sediments. They result from hydraulic managements and/or polderization which may date from the Middle Ages. Historically these hydraulic managements were built for goals of wholesomeness, breeding and farming. They isolate two territories: the dried marshes and the wet marshes. For the intensive cereal crops the slow drying caused by land reclamation was recently improved by the drainage, in part for increase the depth of desalinization and decrease waterlogging. Nevertheless, these territories remain characterized by shallow ground water of initial salt water. Consequently, the hydric profiles are governed by the meteoric conditions including the Evapotranspiration, the rainfall, but also the capillarity rises from the salt groundwater. Moreover, the clay dominated nature of the soils and their drastic shrinkage properties govern the hydrodynamic functioning and the soil structure behavior.The first part of the work was the monitoring of the water content and salinity profiles in drained cereal crops and in undrained grasslands. These measurements have been completed by the ground water level and tensiometric monitoring. The final goal was the calculation and modeling of the available water capacity (AWC) and plant available water (PAW) profiles. In these systems mainly supplied by the capillarity rises, the root network gets water in the subsurface vadose zone and then in the deeper saturated groundwater zone. The water content characteristic of the interface between the vadose and saturated zone was determined by comparison between the clay material state paths along its shrinkage curve and along its compaction curve. The PAW profiles were calculated from the water content profiles and then compared to the AWC profiles. The PAW profiles have been equated as polynomial second degree equations. In these shallow groundwater environments the PAW profiles have been modeled taking into account an easy measurable surface parameter which includes the soil structure behavior and the meteoric conditions: i.e. the water content measured at 10 cm depth. The PAW modelling remains sufficiently realistic to be used as a tool for farming management. Two preliminary studies were added to this work: - the measurement of effective thermal conductivity of the clayey soils by the transient hot wire method, and the modeling of the effective thermal conductivity of biphasic air-clay and water-clay media, but also triphasic unsaturated air-water-clay media. The prospect is the modeling of thermal and hydric transfer from the surface to the depth. - and the elaboration of a protocol of impregnation - hardening for wet clay dominated soils by HEMA resins. This impregnation allows the making of thin sections in these clay materials with conservation of their initial wet structures. The prospective is the quantitative petrography at the root - clay matrix interface along vertical profiles in clayey soils at different degrees of saturation and different structures.
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