166 resultados para ALTERNARIA-ALTERNATA


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Fungal invasive infections are rare in general population but are an emergent cause of infection in the immunocompromized population, especially in the solid organ transplant recipients. Herein the authors report a clinical case of a liver transplanted patient suffering a cutaneous co-existent infection with A. alternata as well as A. infectoria. To our knowledge this is the first case of cutaneous concomitant infection due to those two species reported not only in Portugal but also worldwide. The patient was treated with surgical excision of the lesions and oral itraconazol without relapse.

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Alternaria leaf blight is the most prevalent disease of cotton in northern Australia. A trial was conducted at Katherine Research Station, Northern Territory, Australia, to determine the effects of foliar application of potassium nitrate (KNO3) on the suppression of Alternaria leaf blight of cotton. Disease incidence, severity and leaf shedding were assessed at the bottom (1-7 nodes), middle (8-14 nodes) and the top (15+ nodes) of plants at weekly intervals from 7 July to 22 September 2004. Disease incidence, severity and shedding at the middle canopy level were significantly higher for all treatments than those from bottom and top canopies. Foliar KNO3, applied at 13 kg/ha, significantly (P < 0.05) reduced the mean disease incidence, severity and leaf shedding assessed during the trial period. KNO 3 significantly (P < 0.001) reduced the disease severity and leaf shedding at the middle canopy level. Almost all leaves in the middle canopy became infected in the first week of July in contrast to infection levels of 50-65% at the bottom and top of the canopy. Disease severity and leaf shedding in the middle canopy were significantly (P < 0.05) lower in KNO 3-treated plots than the control plots from the second and third weeks of July to the second and third weeks of August. This study demonstrates that foliar application of KNO3 may be effective in reducing the effect of Alternaria leaf blight of cotton in northern Australia.

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This project determined the identity of causal pathogens, epidemiology and disease cycle of Alternaria leaf blotch and fruit spot in Australian apples and provided a management strategy for both diseases for inclusion in the integrated fruit production manual.

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Alternaria leaf blotch and fruit spot caused by Alternaria spp. cause annual losses to the Australian apple industry. Control options are limited, mainly due to a lack of understanding of the disease cycle. Therefore, this study aimed to determine potential sources of Alternaria spp. inoculum in the orchard and examine their relative contribution throughout the production season. Leaf residue from the orchard floor, canopy leaves, twigs and buds were collected monthly from three apple orchards for two years and examined for the number of spores on their surface. In addition, the effects of climatic factors on spore production dynamics in each plant part were examined. Although all four plant parts tested contributed to the Alternaria inoculum in the orchard, significant higher numbers of spores were obtained from leaf residue than the other plant parts supporting the hypothesis that overwintering of Alternaria spp. occurred mainly in leaf residue and minimally on twigs and buds. The most significant period of spore production on leaf residue occurred from dormancy until bloom and on canopy leaves and twigs during the fruit growth stage. Temperature was the single most significant factor influencing the amount of Alternaria inoculum and rainfall and relative humidity showed strong associations with temperature influencing the spore production dynamics in Australian orchards. The practical implications of this study include the eradication of leaf residue from the orchard floor and sanitation of the canopy after harvest to remove residual spores from the trees.

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Alternaria leaf blotch and fruit spot of apple caused by Alternaria spp. cause annual losses to the Australian apple industry. Erratic control using protectant fungicides is often experienced and may be due to the lack of understanding of the timing of infection and epidemiology of the diseases. We found that Alternaria leaf blotch infection began about 20 days after bloom (DAB) and the highest disease incidence occurred from 70 to 110 DAB. Alternaria fruit spot infection occurred about 100 DAB in the orchard. Fruit inoculations in planta showed that there was no specific susceptible stage of fruit. Leaves and fruit in the lower canopy of trees showed higher levels of leaf blotch and fruit spot incidence than those in the upper canopy and the incidence of leaf blotch in shoot leaves was higher than in spur leaves. Temperature, relative humidity, and rainfall affected leaf blotch and fruit spot incidence. The gained knowledge on the timing of infection and development of disease may aid in the development of more effective disease management strategies.

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Rapid screening tests and an appreciation of the simple genetic control of Alternaria brown spot (ABS) susceptibility have existed for many years, and yet the application of this knowledge to commercial-scale breeding programs has been limited. Detached leaf assays were first demonstrated more than 40 years ago and reliable data suggesting a single gene determining susceptibility has been emerging for at least 20 years. However it is only recently that the requirement for genetic resistance in new hybrids has become a priority, following increased disease prevalence in Australian mandarin production areas previously considered too dry for the pathogen. Almost all of the high-fruit-quality parents developed so far by the Queensland-based breeding program are susceptible to ABS necessitating the screening of their progeny to avoid commercialisation of susceptible hybrids. This is done effectively and efficiently by spraying 3-6 month old hybrid seedlings with a spore suspension derived from a toxin-producing field isolate of Alternaria alternate, then incubating these seedlings in a cool room at 25°C and high humidity for 5 days. Susceptible seedlings show clear disease symptoms and are discarded. Analysis of observed and expected segregation ratios loosely support the hypothesis for a single dominant gene for susceptibility, but do not rule out the possibility of alternative genetic models. After implementing the routine screening for ABS resistance for three seasons we now have more than 20,000 hybrids growing in field progeny blocks that have been screened for resistance to the ABS disease.

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Total synthesis of the naturally occurring phytotoxic phthalides, silvaticol 7, zinniol 5 and the phthalides 1 and 2, is reported from the substrate 16 derived from the Alder-Rickert reaction of 1-methoxy-2-methyl-3-trimethylslyloxycyclohexa-1,3-diene 15 with dimethyl acetylenedicarboxylate.

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En el presente trabajo se estudió el control biológico del Tizón Temprano, causado por Alternaria solani en el cultivo de Tomate. Dicho estudio consistió en dos fases: Fase de in vitro, en la cual se determinaron las características bioquímicas y el comportamiento antagonista de las bacterias aisladas del filoplano de la hoja de tomate contra Alternaria solani . En la fase de invernadero in vivo, se estudió el comportamiento de las bacterias escogidas por su conducta antagonista in vitro y no antagonistas en el cultivo de tomate con dos Variedades Dina y Hayslib, tomando dos momentos de aplicación: a) simultáneamente hongo y bacteria, b) aplicación de las bacterias 24 horas antes de la inoculación artificial del hongo. Para el estudio in vitre se tomaron 50 cepas bacteriales, de las cuales cuatro se comportaron antagonistas y 46 no antagonistas; las cuatro cepas antagonistas inhibieron el crecimiento del patógeno. En relación a las 46 cepas se tomó una al azar para la prueba in vivo y las restantes se apartaron. De las 50 cepas, el 30% resultó con Pseudomonas• fluorescentes (15 cepas bacteriales) y el 70% no fluorescentes (35 cepas bacteriales). Para la prueba in vivo en el cultivo de tomate, se utilizaron las cuatro cepas antagonistas y la cepa bacterial no antagonista escogida al azar. En el cultivo de tomate disminuyó la incidencia de la enfermedad en las cuatro cepas bacteriales antagonistas y a la vez observamos disminución en la incidencia de la enfermedad en la cepa de característica no antagonistas.

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Objetivando analisar os eventos iniciais das interações A. solani - L. hirsutum var. glabratum e A. solani - L. esculentum ev. Miller, será realizado um trabalho utilizando processamento para microscopia eletrônica de varredura.

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RESUMO: A reação de 23 genótipos de girassol à mancha de Alternaria foi avaliada em dois experimentos de campo, conduzidos em Londrina, PR, nas safras 2013/2014 e 2014/2015. Os experimentos foram semeados em outubro de 2013 e outubro de 2014. A severidade da doença, que ocorreu por infecção natural das plantas pelo fungo, foi avaliada na fase de desenvolvimento R3, utilizando uma escala diagramática da doença. Após a colheita, também foram avaliados a produtividade, o peso de mil aquênios e o teor de óleo. Em cada experimento, verificou-se diferença estatística significativa entre os híbridos avaliados em condições de campo, tanto para a severidade da doença, quanto para os componentes de produção. Nenhum genótipo de girassol apresentou resistência completa à mancha de Alternaria. ABSTRACT: The reaction of 23 sunflower genotypes to Alternaria leaf spot disease was evaluated in two field experiments carried out in Londrina, state of Paraná, Brazil, during 2013/2014 and 2014/2015 growing seasons. The experiments were sown in October 2013 and October 2014. Alternaria disease severity, under natural conditions in the field, was evaluated at the R3 growth stage with reference to a diagrammatic scale developed for this disease. After harvesting, yield, 1000-seed weight and oil content were also evaluated. For each experiment, statistical significance was observed among the evaluated genotypes for disease severity and yield components. None of the sunflower genotypes showed complete resistance to Alternaria leaf spot.

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RESUMO: Este trabalho teve como objetivo comparar a severidade da mancha de Alternaria de genótipos de girassol em ambientes do Cerrado do Distrito Federal. Três experimentos foram avaliados, dois na Embrapa Cerrados (Planaltina, DF) e um localizado na Embrapa Produtos e Mercado (Recanto das Emas, DF). Foram feitas análises ao longo do ciclo da cultura com um intervalo de 15 dias, sendo a primeira aos 35 dias após emergência. Cada planta foi analisada em três partes: terço inferior, terço médio e terço superior. Ao final de cada experimento, a área abaixo da curva de progresso da doença (AACPD) foi calculada para cada genótipo. De acordo com os resultados observados, o ambiente de sequeiro na Embrapa Cerrados, que deteve a maior média da severidade da doença, entre os ambientes avaliados. Dentre os genótipos avaliados, MG 360 mostrou menor severidade da doença no sequeiro e AGUARA 06 no irrigado da Embrapa Cerrados. O genótipo BSG 42 na Embrapa Produtos e Mercado, se destacou pela menor severidade do fungo. Houve influência significativa do ambiente nos resultados de severidade da doença, que está estreitamente relacionada com os fatores climáticos como temperatura e umidade relativa do ar. A compreensão dessas condições favoráveis ao desenvolvimento do fungo é essencial quando se avalia a resistência em genótipos de girassol. ABSTRACT: This study had the purpose of comparing the severity of Alternaria leaf spot on genotypes of sunflower in the Brazilian Cerrado. Three field trials were established, two at Embrapa Cerrados (Planaltina, DF) and one at Embrapa Produtos e Mercados (Recanto das Emas, DF). Evaluations were made during the crop cycle every 15 days, the first one happening 35 days after crop emergency. Each plant was analyzed in three parts: lower, middle and upper thirds. At the end of each trial the average area under the disease progress curve (AUDPC), for each third, was calculated for all genotypes. According to the observed results, the dryland environment at Embrapa Cerrados had the highest mean disease severity, among the studied environments. Between the evaluated genotypes, MG360 showed less severity in dryland and AGUARA 06 in the irrigated environment at Embrapa Cerrados. At Embrapa Produtos e Mercado the genotype that presented the best performance was BRS G42. Environmental conditions deeply affected the trials, mainly temperature and relative humidity. Their influence on Alternaria leaf spot epidemics in the Cerrado region must be studied in more detail, to avoid misinterpreting data when evaluating sunflower genotypes for resistance to this important fungal disease.

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This study represents the first international intercomparison of fungal spore observations since 1990, focusing on atmospheric concentrations of Alternaria, Cladosporium, Ganoderma and Didymella spores. The campaigns were performed at sites located in Cork (Ireland) and Worcester (England) during summer 2010. Observations were made using Hirst-type volumetric spore traps and corresponding optical identification at the genus level by microscope. The measurements at both sites (including meteorological parameters) were compared and contrasted. The relationships between the fungal spore concentrations with selected meteorological parameters were investigated using statistical methods and multivariate regression trees (MRT). The results showed high correlations between the two sites with respect to daily variations. Statistically significant higher spore concentrations for Alternaria, Cladosporium and Ganoderma were monitored at the Worcester site. This result was most likely due to the differences in precipitation and local fungal spore sources at the two sites. Alternaria and Cladosporium reached their maxima a month earlier in Cork than in Worcester, and Didymella with Ganoderma peaked simultaneously with similar diurnal trends found for all the investigated spore types. MRT analysis helped to determine threshold values of the meteorological parameters that exerted most influence on the presence of spores: they were found to vary at the two sites. Our results suggest that the aeromycological profile is quite uniform over the British Isles, but a description of bioaerosols with respect to overall load and daily concentration can be quite diverse although the geographical difference between sites is relatively small. These variations in the concentrations therefore need to be explored at the national level

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There are many species among the Alternaria genus, which hosts on economically important crops causing significant yield losses. Less attention has been paid to fungi hosting on plants constituting substantial components of pastures and meadows. Alternaria spp. spores are also recognised as important allergens. A 7-day volumetric spore trap was used to monitor the concentration of airborne fungal spores. Air samples were collected in Worcester, England (2006–2010). Days with a high spore count were then selected. The longest episode that occurred within a five year study was chosen for modelling. Two source maps presenting distribution of crops under rotation and pastures in the UK were produced. Back trajectories were calculated using the HYSPLIT model. In ArcGIS clusters of trajectories were studied in connection with source maps by including the height above ground level and the speed of the air masses. During the episode no evidence for a long distance transport from the continent of Alternaria spp. spores was detected. The overall direction of the air masses fell within the range from South-West to North. The back trajectories indicated that the most important sources of Alternaria spp. spores were located in the West Midlands of England.