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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
11

Composition of cuticular wax on the leaves of kalanchoe daigremontiana

van Maarseveen, Clare Susan 11 1900 (has links)
Analysis of cuticular wax from Kalanchoe daigremontiana leaves was performed to identify the constituent components within the wax, determine how these changed during leaf ontogenesis, and discover how they were distributed within the cuticle. Analysis of extracted cuticular wax by gas chromatography, mass spectrometry, and comparison with authentic standards led to the identification of triterpenoids including glutinol, friedelin, germanicol, epifriedelanol, glutinol acetate and β-amyrin as well as very long chain fatty acid (VLCFA) derivatives including alkanes, primary alcohols, aldehydes, fatty acids, and alkyl esters. Cuticular wax composition in young K. daigremontiana leaves was dominated by triterpenoids, which made up over 70% of the lipid soluble compounds. During leaf ontogenesis, wax composition changed to include a higher proportion of VLCFA derivatives, which made up approximately 50% of cuticular wax in mature leaves. The most abundant triterpenoids in the wax were glutinol and friedelin, both fairly uncommon pentacyclic triterpenoids with a complex proposed biosynthetic mechanism. Tritriacontane (C33 alkane) was the most abundant compound within the VLCFA derivatives. Cuticular wax accumulation was found to correspond well to leaf growth, with both processes slowing at the same time. Variations in the ratio of friedelin-like compounds to glutinol-like compounds during leaf ontogenesis suggest the presence more than one active triterpenoid synthase enzyme in the leaves of K. daigremontiana. VLCFA compounds were found mainly in the epicuticular wax on both the adaxial and abaxial surfaces, while triterpenoids were relatively more abundant in the intracuticular layer. Two different epicuticular wax crystal forms were observed by scanning electron microscopy (SEM) which can be described as platelets with sinuate margins and twisted ribbons. Based on SEM and chemical data as well as previous reports of crystal composition, it is hypothesized that each crystal type has a unique composition, with the platelets containing one or more triterpenoids and the twisted ribbons containing alkanes and other VLCFA derivatives. Confirmation of this hypothesis will have to await further investigation. This research provides information that will aid in the larger goals of characterizing a glutinol or friedelin synthase and understanding the gradients established within epicuticular and intracuticular wax layers. / Science, Faculty of / Chemistry, Department of / Graduate
12

The Ultrastructure of the Leaf Surfaces of Wild Rice (Zizania aquatica L.) under Different Environmental Conditions

Hawthorn, Wayne Rothan 10 1900 (has links)
<p> Previous work on the ultrastructure of leaf surfaces has been confined to commercial terrestrial plants. Until recently there was a conflicting overlap of definitions of surface structures. Lately, studies have concentrated on the role of the epicuticular wax layer in surface phenomena such as water permeability, transpiration, and herbicide susceptibility. The initiating factors in surface wax formation and the mode of extrusion still remain unresolved. </p> <p> An emergent hydrophyte, Zizania aquatica L., was selected to attempt to clarify the initiation and extrusion of epicuticular wax. The first appearance of epicuticular wax occurs while the whole plant is submerged. The wax platelet shape is probably controlled by an endogenous circadian rhythm with very little environmental control. The significance of water depth, temperature, continous light, physical and chemical abrasion are discussed in terms of the surface morphology of the three types of leaves. </p> / Thesis / Master of Science (MSc)
13

Ferrugem asiática da soja: métodos de preservação dos urediniósporos e fatores relacionados à infecção do hospedeiro / Asian soybean rust: methods for uredospores preservation and factors related to host infection

Furtado, Gleiber Quintão 02 May 2007 (has links)
A soja é a cultura agrícola com maior extensão de área plantada no Brasil, país que se destaca no cenário mundial como o segundo maior produtor e exportador desta oleaginosa. A ferrugem asiática (FA), causada pelo fungo Phakopsora pachyrhizi, apresenta-se como um dos mais graves problemas fitossanitários da cultura da soja no Brasil, principalmente por não existirem, até o presente momento, cultivares com níveis de resistência satisfatórios. Com o objetivo de melhor se conhecer a biologia de Phakopsora pachyrhizi e alguns fatores relacionados ao processo infeccioso em soja, no presente trabalho foram avaliados: (1) Métodos de preservação de urediniósporos; (2) Influência da descontinuidade do molhamento foliar no processo infeccioso dos urediniósporos; (3) Influência da luminosidade e da superfície foliar no processo infeccioso de urediniósporos de P. pachyrhizi; (4) Influência do estádio fenológico da soja na infecção de P. pachyrhizi. Os resultados obtidos mostraram que a desidratação dos esporos proporcionou maior viabilidade destes ao longo do tempo, para todas as condições de armazenamento testadas. No deep freezer foi possível preservar os esporos por até 231 dias, independente da sua condição de hidratação. No ambiente, os esporos não desidratados e desidratados permaneceram viáveis por 16 e 22 dias, respectivamente. A reversão de dormência dos esporos foi efetiva ao empregar hidratação (24h de câmara úmida) seguida ou não por choque térmico (40&#176;C/5 minutos). Em todos os tratamentos onde se aplicou molhamento foliar descontínuo, a severidade de FA foi sempre inferior quando comparada ao molhamento contínuo, principalmente quando a interrupção do molhamento se deu após 4 horas de câmara úmida inicial. A interrupção temporária do molhamento afetou os esporos que haviam germinado, pois os mesmo não foram aptos a infectar após novo período de molhamento. Com relação à luminosidade, os urediniósporos foram aptos a infectar plantas de soja tanto na luz quanto no escuro. Porém, severidade maior foi observada quando se inoculou a superfície adaxial, com posterior incubação das plantas no escuro. Os experimentos in vitro mostraram que, na ausência de luz, houve maior germinação e maior formação de apressórios. O teor de cera epicuticular e o seu aspecto ultra-estrutural não apresentaram diferenças entre as superfícies adaxial e abaxial no cultivar BRS 154. Os cultivares BRS 154 e BRS 258, no estádio fenológico reprodutivo, R5, apresentaram menor severidade em relação aos estádios V3 e R1. O período latente médio (PLM) da FA foi 8 e 9 dias para os cultivares BRS 154 e BRS 258, respectivamente. O PLM não se diferenciou em função do estádio fenológico para ambos cultivares. Quanto à influência da idade da folha na suscetibilidade à FA, a folha 1, considerando-se o sentido base-ápice da planta, mostrou maior suscetibilidade e freqüência de infecção de P. pachyrhizi . Os resultados apresentados são essenciais, tanto por disponibilizarem informações sobre a biologia e epidemiologia do fungo, quanto por servirem como base para novos estudos, nas mais diversas áreas sobre este importante patossistema. / Soybean is the agricultural crop with the largest planted area in Brazil. The country stands out in the world scenario as the second-largest producer and exporter of this oilseed crop. The Asian rust (AR), caused by the fungus Phakopsora pachyrhizi, is one of the most serious phytosanitary problems of soybean in Brazil, especially because no cultivars exist so far with satisfactory resistance levels. In order to acquire better knowledge about the biology of Phakopsora pachyrhizi and some factors related to its infectious process in soybean, the following were evaluated in the present work: (1) Uredospore preservation methods; (2) Influence of leaf wetness discontinuity on the infectious process of uredospores; (3) Influence of luminosity and leaf surface on the infectious process of P. pachyrhizi uredospores; (4) Influence of phenological stage of soybean on infection by P. pachyrhizi . The results obtained showed that spore dehydration provided greater spore viability with time, in all storage conditions tested. Spores could be preserved for up to 231 days in the deep freezer, regardless of their hydration condition. At room temperature, non-dehydrated and dehydrated spores remained viable for 16 and 22 days, respectively. Spore dormancy reversion was effective when hydration was used (24h in humid chamber), followed or not by thermal shock (40&#176;C/5 minutes). In all treatments where discontinuous leaf wetting was applied, AR severity was always lower when compared with continuous wetting, especially when wetting was interrupted after 4 hours of initial treatment in the humid chamber. Temporary wetness interruption affected spores that had already germinated, as these were not able to infect after a new wetness period. As to luminosity, uredospores were capable of infecting soybean plants both in the light and in the dark. However, higher severity was observed when the adaxial surface was inoculated, with later incubation of the plants in the dark. The in vitro experiments showed that there was greater germination and greater formation of appressoria in the absence of light. Epicuticular wax content and its ultrastructural aspect did not show differences between the adaxial and abaxial surfaces in cultivar BRS 154. At the R5 reproductive phenological stage, cultivars BRS 154 and BRS 258 showed smaller severity in relation to stages V3 and R1. The AR mean latent period (MLP) was 8 and 9 days for cultivars BRS 154 and BRS 258, respectively. MLP differences due to phenological stage were not detected in any of the cultivars. As to the influence of leaf age on AR susceptibility, leaf 1 showed greater susceptibility and frequency of infection by P. pachyrhizi, considering the plant base-apex direction. The results herein presented are essential, either because they make information available on the biology and epidemiology of the fungus, or because they serve as a foundation for new studies on the most diverse areas about this important pathosystem.
14

Ferrugem asiática da soja: métodos de preservação dos urediniósporos e fatores relacionados à infecção do hospedeiro / Asian soybean rust: methods for uredospores preservation and factors related to host infection

Gleiber Quintão Furtado 02 May 2007 (has links)
A soja é a cultura agrícola com maior extensão de área plantada no Brasil, país que se destaca no cenário mundial como o segundo maior produtor e exportador desta oleaginosa. A ferrugem asiática (FA), causada pelo fungo Phakopsora pachyrhizi, apresenta-se como um dos mais graves problemas fitossanitários da cultura da soja no Brasil, principalmente por não existirem, até o presente momento, cultivares com níveis de resistência satisfatórios. Com o objetivo de melhor se conhecer a biologia de Phakopsora pachyrhizi e alguns fatores relacionados ao processo infeccioso em soja, no presente trabalho foram avaliados: (1) Métodos de preservação de urediniósporos; (2) Influência da descontinuidade do molhamento foliar no processo infeccioso dos urediniósporos; (3) Influência da luminosidade e da superfície foliar no processo infeccioso de urediniósporos de P. pachyrhizi; (4) Influência do estádio fenológico da soja na infecção de P. pachyrhizi. Os resultados obtidos mostraram que a desidratação dos esporos proporcionou maior viabilidade destes ao longo do tempo, para todas as condições de armazenamento testadas. No deep freezer foi possível preservar os esporos por até 231 dias, independente da sua condição de hidratação. No ambiente, os esporos não desidratados e desidratados permaneceram viáveis por 16 e 22 dias, respectivamente. A reversão de dormência dos esporos foi efetiva ao empregar hidratação (24h de câmara úmida) seguida ou não por choque térmico (40&#176;C/5 minutos). Em todos os tratamentos onde se aplicou molhamento foliar descontínuo, a severidade de FA foi sempre inferior quando comparada ao molhamento contínuo, principalmente quando a interrupção do molhamento se deu após 4 horas de câmara úmida inicial. A interrupção temporária do molhamento afetou os esporos que haviam germinado, pois os mesmo não foram aptos a infectar após novo período de molhamento. Com relação à luminosidade, os urediniósporos foram aptos a infectar plantas de soja tanto na luz quanto no escuro. Porém, severidade maior foi observada quando se inoculou a superfície adaxial, com posterior incubação das plantas no escuro. Os experimentos in vitro mostraram que, na ausência de luz, houve maior germinação e maior formação de apressórios. O teor de cera epicuticular e o seu aspecto ultra-estrutural não apresentaram diferenças entre as superfícies adaxial e abaxial no cultivar BRS 154. Os cultivares BRS 154 e BRS 258, no estádio fenológico reprodutivo, R5, apresentaram menor severidade em relação aos estádios V3 e R1. O período latente médio (PLM) da FA foi 8 e 9 dias para os cultivares BRS 154 e BRS 258, respectivamente. O PLM não se diferenciou em função do estádio fenológico para ambos cultivares. Quanto à influência da idade da folha na suscetibilidade à FA, a folha 1, considerando-se o sentido base-ápice da planta, mostrou maior suscetibilidade e freqüência de infecção de P. pachyrhizi . Os resultados apresentados são essenciais, tanto por disponibilizarem informações sobre a biologia e epidemiologia do fungo, quanto por servirem como base para novos estudos, nas mais diversas áreas sobre este importante patossistema. / Soybean is the agricultural crop with the largest planted area in Brazil. The country stands out in the world scenario as the second-largest producer and exporter of this oilseed crop. The Asian rust (AR), caused by the fungus Phakopsora pachyrhizi, is one of the most serious phytosanitary problems of soybean in Brazil, especially because no cultivars exist so far with satisfactory resistance levels. In order to acquire better knowledge about the biology of Phakopsora pachyrhizi and some factors related to its infectious process in soybean, the following were evaluated in the present work: (1) Uredospore preservation methods; (2) Influence of leaf wetness discontinuity on the infectious process of uredospores; (3) Influence of luminosity and leaf surface on the infectious process of P. pachyrhizi uredospores; (4) Influence of phenological stage of soybean on infection by P. pachyrhizi . The results obtained showed that spore dehydration provided greater spore viability with time, in all storage conditions tested. Spores could be preserved for up to 231 days in the deep freezer, regardless of their hydration condition. At room temperature, non-dehydrated and dehydrated spores remained viable for 16 and 22 days, respectively. Spore dormancy reversion was effective when hydration was used (24h in humid chamber), followed or not by thermal shock (40&#176;C/5 minutes). In all treatments where discontinuous leaf wetting was applied, AR severity was always lower when compared with continuous wetting, especially when wetting was interrupted after 4 hours of initial treatment in the humid chamber. Temporary wetness interruption affected spores that had already germinated, as these were not able to infect after a new wetness period. As to luminosity, uredospores were capable of infecting soybean plants both in the light and in the dark. However, higher severity was observed when the adaxial surface was inoculated, with later incubation of the plants in the dark. The in vitro experiments showed that there was greater germination and greater formation of appressoria in the absence of light. Epicuticular wax content and its ultrastructural aspect did not show differences between the adaxial and abaxial surfaces in cultivar BRS 154. At the R5 reproductive phenological stage, cultivars BRS 154 and BRS 258 showed smaller severity in relation to stages V3 and R1. The AR mean latent period (MLP) was 8 and 9 days for cultivars BRS 154 and BRS 258, respectively. MLP differences due to phenological stage were not detected in any of the cultivars. As to the influence of leaf age on AR susceptibility, leaf 1 showed greater susceptibility and frequency of infection by P. pachyrhizi, considering the plant base-apex direction. The results herein presented are essential, either because they make information available on the biology and epidemiology of the fungus, or because they serve as a foundation for new studies on the most diverse areas about this important pathosystem.
15

Evolution and Environmental Degradation of Superhydrophobic Aspen and Black Locust Leaf Surfaces

Tranquada, George Christopher 17 July 2013 (has links)
The current study is focused on the characterization of four natural leaf species (quaking, bigtooth and columnar european aspen as well as black locust) possessing a unique dual-scale cuticle structure composed of micro- and nano-scale asperities, which are able to effectively resist wetting (superhydrophobic), characteristic of The Lotus Effect. Scanning Electron Microscopy (SEM) was used to track the growth and evolution of their distinctive nano-scale epicuticular wax (ECW) morphologies over one full growing season. In addition, the stability of their superhydrophobic property was tested in various environments. It was determined that the long-term stability of these surfaces is tentatively linked to various environmental stress factors. Specifically, a combination of high temperature and humidity caused the degradation of nano-scale asperities and loss of the superhydrophobic property. The dual-scale surface structure was found to provide a suitable template for the design of future superhydrophobic engineering materials.
16

Evolution and Environmental Degradation of Superhydrophobic Aspen and Black Locust Leaf Surfaces

Tranquada, George Christopher 17 July 2013 (has links)
The current study is focused on the characterization of four natural leaf species (quaking, bigtooth and columnar european aspen as well as black locust) possessing a unique dual-scale cuticle structure composed of micro- and nano-scale asperities, which are able to effectively resist wetting (superhydrophobic), characteristic of The Lotus Effect. Scanning Electron Microscopy (SEM) was used to track the growth and evolution of their distinctive nano-scale epicuticular wax (ECW) morphologies over one full growing season. In addition, the stability of their superhydrophobic property was tested in various environments. It was determined that the long-term stability of these surfaces is tentatively linked to various environmental stress factors. Specifically, a combination of high temperature and humidity caused the degradation of nano-scale asperities and loss of the superhydrophobic property. The dual-scale surface structure was found to provide a suitable template for the design of future superhydrophobic engineering materials.

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