224 resultados para Colletotrichum graminicola


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Página modelo; Simbologia empregada; Doenças causadas por fungos; Míldio da soja (Peronospora manshurica); Oídio da soja (Microsphaera diffusa); Ferrugem asiática (Phakopsora pachyrhizi); Mancha parda da folha (Septoria glycines); Mancha alvo (Corynespora cassiicola); Mancha olho-de-rã (Cercospora sojina); Mancha púrpura (Cercospora kikuchi); Seca da haste e da vagem (Phomopsis spp.); Antracnose (Colletotrichum truncatum); Cancro da haste (Phomopsis phaseoli f. sp. meridionalis); Podridão parda da haste (Phialophora gregata); Podridão vermelha da raiz (Fusarium solani); Mofo branco da haste (Sclerotinia sclerotiorum); Murcha de esclerotium (Sclerotium rolfsii); Podridão da raiz e da haste (Phytophthora megasperma f. sp. glycinea); Mela da folha (Rhizoctonia solani); Tombamento (Rhizoctonia solani); Morte em reboleira (Rhizoctonia solani); Roseliniose (Dematophora necatrix); Podridão negra da raiz (Macrophomina phaseolina); Doenças causadas por nematóides; Nematóide de cisto (Heterodera glycines); Nematóide de galha (Meloidogyne incognita); Doenças causadas por vírus; Mosaico comum da soja; Queima do broto; Doenças causadas por bactérias; Pústula bacteriana (Xanthomonas axonopodis pv. glycines); Fogo selvagem (Pseudomonas syringae pv. tabaci); Crestamento bacteriano (Pseudomonas savastonoi pv. glycinea); Microorganismos que frequentemente causam a morte das sementes a campo; Aspergillus spp.; Penicillium spp.; Bacillus subtilis; Créditos fotográficos; Estádios vegetativos da planta de soja; Estádios reprodutivos da planta de soja.

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Mildio da soja (Peronospera manshurica); Oidio da soja (Microsphaera diffusa); Mancha parda da folha (Septoria glycines); Mancha alvo (Corynespora cassiicola); Mancha de alternaria (Alternaria spp.); Mancha olho-de-rã (Cercospora sojina); Mancha purpura (Cercospora kikuchii); Seca da haste e da vagem (Phomopsis spp.); Antracnose (Colletotrichum truncatum); Cancro da haste (Phomopsis phaseoli f. sp. meridionalis); Podridão parda da haste (Phialophora gregata); Podridão vermelha da raiz (Fusarium solani); Mofo branco da haste (Sclerotinia sclerotiorum); Murcha de esclerotium (Sclerotium rolfsii); Podridão da raiz e da haste (Phytophthora megasperma f. sp. glycinea); Mela da folha (Rhizoctonia solani); Tombamento (Rhizoctonia solani); Morte em reboleira (Rhizoctonia solani); Roseliniose (Dematophora necatrix); Podridão negra da raiz (Macrophomina phaseolina); Nematoide de cisto (Heterodera glycines); Nematoide de galha (Meloidogyne incognita); Mosaico comum da soja; Queima do broto; Pustula bacteriana (Xanthomonas campestris pv. glycines); Fogo selvagem (Pseudomonas syringae pv. tabaci); Crestamento bacteriano (Pseudomonas syringae pv. glycinea); Aspergillus spp.; Penicillium spp.; Bacillus subtilis; Créditos fotográficos; Estádios vegetativos da planta de soja; Estádios produtivos da planta de soja.

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M66 an X-ray induced mutant of winter wheat (Triticum aestivum) cv. Guardian exhibits broad-spectrum resistance to powdery mildew (Blumeria graminis f. sp. tritici), yellow rust (Puccinia striiformis f. sp. tritici), and leaf rust (Puccinia recondita f. sp. tritici), along with partial resistance to stagnonospora nodorum blotch (caused by the necrotroph Stagonosporum nodorum) and septoria tritici blotch (caused by the hemibiotroph Mycosphaerella graminicola) compared to the parent plant ‘Guardian’. Analysis revealed that M66 exhibited no symptoms of infection following artificial inoculation with Bgt in the glasshouse after adult growth stage (GS 45). Resistance in M66 was associated with widespread leaf flecking which developed during tillering. Flecking also occurred in M66 leaves without Bgt challenge; as a result grain yields were reduced by approximately 17% compared to ‘Guardian’ in the absence of disease. At the seedling stage, M66 exhibited partial resistance. M66, along with Tht mutants (Tht 12, Tht13), also exhibit increased tolerance to environmental stresses (abiotic), such as drought and heat stress at seedling and adult growth stages, However, adult M66 exhibited increased susceptibility to the aphid Schizaphis graminum compared to ‘Guardian’. Resistance to Bgt in M66 was characterized with increased and earlier H2O2 accumulation at the site of infection which resulted in increased papilla formation in epidermal cells, compared to ‘Guardian’. Papilla formation was associated with reduced pathogen ingress and haustorium formation, indicating that the primary cause of resistance in M66 was prevention of pathogen penetration. Heat treatment at 46º C prior to challenge with Bgt also induced partial disease resistance to Blumeria graminis f. sp. tritici in ‘Guardian’ and M66 seedlings. This was characterized by a delay in primary infection, due to increased production of ROS species, such as hydrogen peroxide, ROS-scavenging enzymes and Hsp70, resulting in cross-linking of cell wall components prior to inoculation. This actively prevented the fungus from penetrating the epidermal cell wall. Proteomics analysis using 2-D gel electrophoresis identified primary and secondary disease resistance effects in M66 including detection of ROS scavenging enzymes (4, 24 hai), such as ascorbate peroxidase and a superoxidase dismutase isoform (CuZnSOD) in M66 which were absent from ‘Guardian’. Chitinase (PR protein) was also upregulated (24 hai) in M66 compared to ‘Guardian’.Monosomic and ditelosomic analysis of M66 revealed that the mutation in M66 is located on the long arm of chromosome 2B (2BL). Chromosome 2BL is known to have key genes involved in resistance to pathogens such as those causing stripe rust and powdery mildew. The TaMloB1 gene, an orthologue of the barley Mlo gene, is also located on chromosome 2BL. Sanger sequencing of part of the coding sequence revealed no deletions in the TaMloB1 gene between ‘Guardian’ and M66.

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Chitins produced via a conventional chemical route as well as from a new biological process were modified to increase the efficiency of enzymatic deacetylation reactions for the production of novel biological chitosan. These modified chitins were reacted for 24h with extracellular fungal enzymes from Colletotrichum lindemuthianum. The chemical and physical properties of the various substrates were analysed and their properties related to the effectiveness in the deacetylation reaction. Modifications of the chitins affected the degree of deacetylation with varied effects. Without further modification to reduce crystallinity and to open up the solid substrate structure, the chitins were found to be poor substrates for the heterogeneous solid-liquid enzymatic catalysis. It was found that the solvent and drying method used in modifying the chitins had significant impact on the final efficiency of the enzymatic deacetylation reaction. The most successful modifications through freeze drying of a colloidal chitin suspension increased the degree of enzymatic deacetylation by 20 fold. These processes reduce the crystallinity of the chitin making it easier for the enzymes to access their internal structure. X-ray diffraction, scanning electron microscopy, thermogravimetric analysis, and BET isotherm analysis are employed to characterise the modified chitins to ascertain the degree of crystallinity, porous structure, surface area, and morphology.

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Agriculture in the Mojanda Watershed is facing rainfall reductions caused by climate change. Reductions of water availability in the Watershed are also due to constant extension of the agricultural activities into the páramo ecosystem above 3000m a.s.l., with this ecosystem having immanently important functions in the local water balance. The application of pesticides threatens the quality of water and with less precipitation contaminations will further concentrate in the outflow. To analyze problems associated with agricultural practices in the area a questionnaire about agricultural practices (28) was conducted and fields (20) were surveyed for pests and diseases with a focus on potatoes (Solanum tuberosum L.), tree tomatoes (Solanum betaceum Cav.) and peas (Pisum sativum L.). Potatoes were infected to a low degree with Phytophthora infestans and according to the farmers the Andean potato weevil (Premnotrypes spec.) caused biggest losses. To combat the weevil the soils are disinfected with toxic Carbofuran (WHO Class 1B). Tree tomatoes showed symptoms of various fungal diseases. Most important was Fusarium solani causing the branches to rot and Anthracnosis (Colletotrichum gloeosporioides) causing the fruits to rot. Fungicide applications were correspondingly high. Peas were only minorly affected by Ascochyta blight (Mycosphaerella pinodes) and a root rot. Overall 19 active ingredients were applied of which fungicide Mancozeb (WHO class table 5) and insecticide Carbofuran (WHO Class 1B) were applied the most. Approved IPM methods are advised to reduce pesticide use. For tree tomatoes regular cutting of branches infected with F. solani and regular collection and disposal of infected fruits with Anthracnosis are advised. For potatoes plastic barriers around the fields prevent the Andean potato weevil from laying eggs thus reducing infestation with the larvae in the tubers. Local bioinsecticide “Biol” seems effective and without harm to the environment, although not used by many farmers. Organic fertilization promises to restore decreasing soil fertility, water holding capacity and reduce erosion. The here presented alternatives and strategies to reduce pesticide use pose an opportunity to preserve the water resources of the region.

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We used the PCR to study the presence of two plant pathogens in archived wheat samples from a long-term experiment started in 1843. The data were used to construct a unique 160-yr time-series of the abundance of Phaeosphaeria nodorum and Mycosphaerella graminicola, two important pathogens of wheat. During the period since 1970, the relative abundance of DNA of these two pathogens in the samples has reflected the relative importance of the two wheat diseases they cause in U.K. disease surveys. Unexpectedly, changes in the ratio of the pathogens over the 160-yr period were very strongly correlated with changes in atmospheric pollution, as measured by SO2 emissions. This finding suggests that long-term, economically important, changes in pathogen populations can be influenced by anthropogenically induced environmental changes.

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Four foliar and two stem-base pathogens were inoculated onto wheat plants grown in different substrates in pot experiments. Soils from four different UK locations were each treated in three ways: (i) straw incorporated in the field at 10 t ha−1 several months previously; (ii) silicon fertilization at 100 mg L−1 during the experiment; and (iii) no amendments. A sand and vermiculite mix was used with and without silicon amendment. The silicon treatment increased plant silica concentrations in all experiments, but incorporating straw was not associated with raised plant silica concentrations. Blumeria graminis and Puccinia recondita were inoculated by shaking infected plants over the test plants, followed by suitable humid periods. The silicon treatment reduced powdery mildew (B. graminis) substantially in sand and vermiculite and in two of the soils, but there were no effects on the slight infection by brown rust (P. recondita). Phaeosphaeria nodorum and Mycosphaerella graminicola were inoculated as conidial suspensions. Leaf spot caused by P. nodorum was reduced in silicon-amended sand and vermiculite; soil was not tested. Symptoms of septoria leaf blotch caused by M. graminicola were reduced by silicon amendment in a severely infected sand and vermiculite experiment but not in soil or a slightly infected sand and vermiculite experiment. Oculimacula yallundae (eyespot) and Fusarium culmorum (brown foot rot) were inoculated as agar plugs on the stem base. Severity of O. yallundae was reduced by silicon amendment of two of the soils but not sand and vermiculite; brown foot rot symptoms caused by F. culmorum were unaffected by silicon amendment. The straw treatment reduced severity of powdery mildew but did not detectably affect the other pathogens. Both straw and silicon treatments appeared to increase plant resistance to all diseases only under high disease pressure.

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We report herein an intramolecular Diels-Alder approach towards the construction of the macrocyclic lactone ring and the perhydrobenzofuran system of the colletofragarones, novel metabolites produced by fungi of the genus Colletotrichum that are responsible for inhibition of germination of the conidia in these species. Crown Copyright (C) 2009 Published by Elsevier Ltd. All rights reserved.

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Solvent-free desymmetrisation of meso-dialdehyde 1 with chiral 1-phenylethan-1-ol, led to preparation of 4-silyloxy-6-alkyloxytetrahydro-2H-pyran-2-one (+)-3a with a 96:4 d.r. Deprotected lactone (+)-19a and the related racemic lactones 16a-18a present a lactone moiety resembling the natural substrate of HMG-CoA reductase and their antifungal properties have been evaluated against the phytopathogenic fungi Botrytis cinerea and Colletotrichum gloeosporioides. These compounds were selectively active against B. cinerea, while inactive against C. gloeosporioides.

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Lipid transfer proteins (LTPs) were thus named because they facilitate the transfer of lipids between membranes in vitro. This study was triggered by the characterization of a 9-kDa LTP from Capsicum annuum seeds that we call Ca-LTP(1). Ca-LTP(1) was repurified, and in the last chromatographic purification step, propanol was used as the solvent in place of acetonitrile to maintain the protein`s biological activity. Bidimensional electrophoresis of the 9-kDa band, which corresponds to the purified Ca-LTP(1), showed the presence of three isoforms with isoelectric points (pIs) of 6.0, 8.5 and 9.5. Circular dichroism (CD) analysis suggested a predominance of alpha-helices, as expected for the structure of an LTP family member. LTPs immunorelated to Ca-LTP(1) from C. annuum were also detected by western blotting in exudates released from C. annuum seeds and also in other Capsicum species. The tissue and subcellular localization of Ca-LTP(1) indicated that it was mainly localized within dense vesicles. In addition, isolated Ca-LTP(1) exhibited antifungal activity against Colletotrichum lindemunthianum, and especially against Candida tropicalis, causing several morphological changes to the cells including the formation of pseudohyphae. Ca-LTP(1) also caused the yeast plasma membrane to be permeable to the dye SYTOX green, as verified by fluorescence microscopy. We also found that Ca-LTP(1) is able to inhibit mammalian alpha-amylase activity in vitro.

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O objetivo do presente trabalho conduzido na Estação Experimental Agronômica da Universidade Federal do Rio Grande do Sul em Eldorado do Sul, RS, em um solo Podzólico Vermelho Amarelo, foi avaliar nove cultivares de melancia (Citrullus lanatus) buscando identificar cultivares de melhor adaptação à região, possibilitando o cultivo em anos sucessivos na mesma área, pois os produtores devido a problemas fitossanitários buscam a cada cultivo novas áreas para produzir. A semeadura no espaçamento 3,0m x 1,5m, foi feita em novembro, com ressemeadura em dezembro de 2000. As cultivares foram avaliadas quanto à produtividade e ocorrência de doenças. Em termos de produtividade, a cultivar Vista F1, com 10,8 t.ha-1, foi significativamente mais produtiva que a cultivar Vitória F1 (2,6 t.ha-1). Quanto a ocorrência de doenças, a cultivar Athens F1 apresentou o menor número de plantas com sintomas de antracnose (Colletotrichum orbiculare), com 5,4 plantas, diferindo estatisticamente das cultivares Vista F1, Crimson Select, Crimson Magic F1, com 9,2, 8,6, 8,5 plantas, respectivamente, e das cultivares Vitória F1, Arriba F1 e Verona F1, com 8,1 plantas com sintomas. O peso 6,4 Kg por fruto da cultivar Crimson Magic F1 foi significativamente maior que o peso de frutos das cultivares Vitória F1 (4,4 Kg) e Crimson Sweet (4,4 Kg). O peso de melancias das demais cultivares foi intermediário e não diferiu estatisticamente do peso médio da cultivar Crimson Magic F1. Na classificação dos frutos por peso, somente as cultivares Athens F1 e Vista F1 apresentaram frutos com peso acima de 10 Kg, frutos na categoria especial. As cultivares Verona F1, Crimson Magic F1 e Vista F1 apresentaram a melhor performance em relação ao número de frutos na categoria 1, isto é, frutos com peso entre 6 e 10 Kg . As cultivares Vista F1 e Crimson Magic F1 destacaram-se na produtividade e a cultivar Athens F1 destacou-se na resistência a antracnose. Estas cultivares são promissoras, mas são necessários novos ensaios para consolidar estes resultados.

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O objetivo desse estudo foi determinar a tolerância de banana (Musa spp.) 'Prata-Anã' (AAB) e do fungo Colletotrichum musae à termoterapia no controle de podridões em pós-colheita. Experimentos in vivo e in vitro foram instalados em delineamento inteiramente casualizado, seguindo um esquema fatorial 4x5 (temperatura x tempo). Os tratamentos consistiram na imersão dos frutos (buquês) e do fungo (esporos e micélio) em água aquecida a 47, 50, 53 e 56 ºC, durante 0, 3, 6, 9 e 12 min. A exposição dos frutos a 56 ºC durante 9 min causou escurecimento da casca nas extremidades dos frutos, porém, as características físicas e químicas dos frutos não foram alteradas pelos tratamentos. Frutos inoculados e tratados a 56 ºC durante 6 min não apresentaram podridões nem escurecimento da casca, enquanto aqueles não tratados apresentaram 64% da área lesionada / fruto. A partir das combinações 53 ºC / 9 mi. e 56 ºC / 3 min a germinação de esporos foi reduzida para 4% e 0%, respectivamente. A combinação 56 ºC / 12 min reduziu, mas não paralisou o crescimento micelial. O tratamento 56 ºC / 6 min retardou mas não paralisou o crescimento micelial in vitro, porém foi efetivo no controle completo das podridões in vivo. Esse tratamento evitou a manifestação de podridões no inverno (maio), mas não no verão (novembro), mostrando-se influenciado pelas condições climáticas próximas à colheita dos cachos. A termoterapia pode ser recomendada para controle de podridão em pós-colheita de banana devendo ser ajustada para diferentes estações do ano.

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Este trabalho teve por objetivo determinar a ocorrência e a freqüência de fungos em banana 'Prata anã' e elucidar o agente causal das podridões em pós-colheita de frutos provenientes do norte de Minas Gerais. Dois métodos de isolamento foram adotados: diluição em placas, a partir da lavagem de frutos verdes, e direto de frutos maduros. Os fungos Colletotrichum musae, Trichoderma harzianum, Fusarium equisetii, Penicillium sp. Aspergillus parasiticus, Trichothecium roseum, Colletotrichum acutatum, Alternaria sp., Cladosporium musae e Curvularia lunata foram os mais freqüentemente associados aos frutos. A patogenicidade desses fungos foi testada pela substituição de discos da casca de frutos verdes por discos de micélio. Colletotrichum musae apresentou área média lesionada em torno do ponto de inoculação igual a 5,8 cm², enquanto para os demais fungos testados não passou de 1,50 cm². Os resultados mostraram que C. musae é o agente primário das podridões dos frutos examinados com 100 % de incidência e os demais fungos limitaram-se a necrosar os ferimentos em torno do ponto de inoculação. O modo de infecção latente, causada por C. musae, parece favorecer, primeiramente, a colonização interna dos tecidos e, posteriormente, a ação dos fungos oportunistas, que aceleram as podridões nos frutos e na coroa.

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Sementes contaminadas ou infectadas no campo podem ter sua sanidade alterada durante o armazenamento, pela perda da viabilidade dos patógenos. O objetivo do presente trabalho foi verificar o efeito do armazenamento na qualidade sanitária de sementes de soja. Variedades de soja BRS 133, MSoy 6101, Conquista e Liderança foram inoculadas, no campo, por pulverização com suspensão de esporos de dois isolados de Colletotrichum dematium var. truncata e Phomopsis sojae. Após a colheita foram realizados testes de sanidade, sem e com desinfestação superficial das sementes com hipoclorito de sódio a 1% por 3 min. As sementes foram armazenadas em câmara fria, por seis meses, e testes de sanidade foram novamente realizados. Os resultados do trabalho permitem concluir que o armazenamento das sementes de soja contaminadas por fungos em câmara fria, por um período de seis meses, diminuiu a incidência de Phmopsis sojae e Colletotricum dematium var. truncata.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)