368 resultados para Fungus Rhizoctonia-solani


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The correct quantification of blast caused by the fungus Magnaporthe oryzae on wheat (Triticum aestivum) spikes is an important component to understand the development of this disease aimed at its control. Visual quantification based on a diagrammatic scale can be a practical and efficient strategy that has already proven to be useful against several plant pathosystems, including diseases affecting wheat spikes like glume blotch and fusarium head blight. Spikes showing different disease severity values were collected from a wheat field with the aim of elaborating a diagrammatic scale to quantify blast severity on wheat spikes. The spikes were photographed and blast severity was determined by using resources of the software ImageJ. A diagrammatic scale was developed with the following disease severity values: 3.7, 7.5, 21.4, 30.5, 43.8, 57.3, 68.1, 86.0, and 100.0%. An asymptomatic spike was added to the scale. Scale validation was performed by eight people who estimated blast severity by using digitalized images of 40 wheat spikes. The precision and the accuracy of the evaluations varied according to the rater (0.82

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Sugarcane (Saccharum spp.) cultivation is one of the major agricultural activities in the Brazilian states. This study aimed to molecularly identify the pathogen associated with rust in sugarcane cultivars in the state of Rio de Janeiro and to suggest a control strategy. Among the 14 PCR-tested cultivars, Puccinia kuehnii infection was identified for RB947520, RB92606, RB835486, RB72454, SP89-11I5, SP83-2847, both from infected leaf sample and from urediniospores. Puccinia kuehnii was not detected by PCR for the cultivars RB955971, RB951541, RB92579, RB867515, RB855536, SP91-1049, SP80-3280, SP80-1816. This is the first molecular detection of this fungus in the state of Rio de Janeiro for six of the 14 analyzed cultivars.

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Experiments were carried out in a growth chamber with controlled temperature and photoperiod to test two populations of Blumeria graminis f. sp. hordei from Guarapuava, Paraná State, and Passo Fundo, Rio Grande do Sul State, Brazil. Treatments consisted in application of the fungicide triadimenol (Baytan 150 SC®) at three rates of its commercial formulation: 150, 250, 350 mL/100 Kg barley seeds. The experiments were conducted separately in a growth chamber for each population, adopting the same temperature and photoperiod. For inoculation, pots containing barley seedlings colonized by the fungus were placed among the plots. After emergence of the first symptoms, the disease severity was assessed at two-day intervals. The experiments were repeated twice for each fungus population. Data were expressed as area under the disease progress curve and as powdery mildew control by comparing the severity after the fungicide treatments to that of control. Data were subjected to analysis of variance and regression analysis; the area under the disease progress curve was also calculated. Comparing the data obtained in the present study with those reported in the literature and the control, the maximum value of 26.1% is considered insufficient to prevent the damages caused by the disease. The control response to the fungicide rate was significant. We can conclude that there was a reduction in the sensitivity of both B. graminis f.sp. hordei populations to the fungicide triadimenol, which explains the control failure observed in barley farms.

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Northern corn leaf blight, caused by Exserohilum turcicum (Et), is a disease of widespread occurrence in regions where corn, sweetcorn and popcorn are grown. This disease has great potential to cause damage and has been studied for years, but the association of its causal agent with seeds remains unconfirmed. Thus, the availability of a sensitive method to detect and quantify the inoculum in seeds, even at low incidence, is essential. The aim of this study was to develop a method to detect and quantify the presence of the fungus infecting and infesting corn and popcorn seeds. Artificially and naturally infected seeds were employed to develop the medium. The semi-selective medium was composed of carbendazim (active ingredient) (60 mg/L), captan (30 mg/L), streptomycin sulfate (500 mg/L) and neomycin sulfate (600 mg/L) aggregated to the medium lactose casein hydrolysate agar medium. By using this, Et was detected in naturally infected corn seeds, showing 0.124% incidence, in four out of ten analyzed samples. In addition, 1.04 conidia were detected per infested seed. By means of isolation, pathogenicity test, morphological characterization and comparison with descriptions of the species in the literature, the fungus isolated from the seeds was confirmed to be Et. Both infection and infestation were considered low; thus, for studies of Et detection in corn seeds, the use of semi-selective medium and more than 1,200 seeds/sample is suggested.

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In a survey of damages caused by soybean root rot to crops in the south of Brazil for several years, a root rot caused by Phomopsis sp has been found with increasing frequency. The primary symptoms are seen when the main root is cut longitudinally, including the death of the wood which shows white coloration and well-defined black lines that do not have a defined format. Thus, based on similarity, it has been called geographic root rot due to its aspect resembling irregular lines that separate regions on a map. In isolations, colonies and alpha spores of Phomopsis have prevailed. Pathogenicity test was done by means of inoculation in the crown of plants cultivated in a growth chamber. The geographic symptoms were reproduced in plants and the fungus Phomopsis sp. was reisolated. In soybean stems naturally infected with pod and stem blight, geographic symptoms caused by Phomopsis phaseoli are found. To the known symptoms on stems, pods and grains, that of root rot caused by P. phaseoli is now added.

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Soybean target leaf spot, caused by the fungus Corynespora cassiicola, is controlled especially by leaf application of fungicides. In the last seasons, in the central-west region of Brazil, the disease chemical control efficiency has been low. This led to the hypothesis that the control failure could be due to the reduction or loss of the fungus sensitivity to fungicides. To clarify this fact, in vitro experiments were conducted to determine mycelial sensitivity of five C. cassiicola isolates to fungicides. Mycelial growth was assessed based on the growth of the mycelium on the culture medium, in Petri dishes. The medium potato-dextrose-agar was supplemented with the concentrations 0; 0.01; 0.1; 1; 10; 20 and 40 mg/L of the active ingredients carbendazim, cyproconazole, epoxiconazole, flutriafol and tebuconazole. The experiment was conducted and repeated twice in a controlled environment, temperature of 25±2ºC and photoperiod of 12 hours. Data on the percentage of mycelial inhibition were subjected to logarithmic regression analysis and the concentration that inhibits 50% of the mycelial growth (IC50) was calculated. Loss of sensitivity to carbendazim was observed for three fungal isolates, IC50 > 40 mg/L. Considering all five isolates, the IC50 for tebuconazole ranged from 1.89 to 2.80 mg/L, for epoxiconazol from 2.25 to 2.91, for cyproconazole from 9.21 to 20.32 mg/L, and for flutriafol from 0.77 to 2.18 mg/L. In the absence of information on the reference IC50 determined for wild isolates, the lowest values generated in our study can be used as standard to monitor the fungus sensitivity.

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The method of preserving detached wheat leaves in Petri dish was used for the inoculation and development of the fungus Puccinia triticina, the causal agent of wheat leaf rust. The reaction of 26 wheat cultivars was compared by using seedlings cultivated in pots (in vivo) and detached leaves (in vitro) inoculated with four physiological races of the pathogen. After inoculation, the material was kept in a growth chamber for 15 days. The reaction was evaluated on the 15th day after inoculation. Results for each race in the evaluated genotypes confirmed the efficiency of the detached leaf method in assessing the reaction of wheat cultivars.

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In in vivoexperiments the sensitivity of 18 isolates of Phakopsora pachyrhizifrom several regions of Brazil to IDM fungicides (cyproconazole, epoxiconazole and tebuconazole and an IQE (pyraclostrobin) were evaluated. The assessments were based on leaflet uredia density. Inhibitory concentration (IC50) and sensitivity reduction factor were determined for all fungicide x strain interactions. Tebuconazole sensitivity reduction was detected for most fungus isolates. In contrast, there was no fungicide shift in sensitivity of the fungus to pyraclostrobin. We conclude that the control failure of soybean rust found in some farms is due to the reduced sensitivity of the fungus to the IDM fungicide and that it remains sensitive to pyraclostrobin.

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Published data containing fungicide concentrations that control 50% (IC50) of a given fungus were analyzed. In the analysis we considered: (i) the IC50 determined in vitroand in vivofor a given fungicide and for a specific fungus; (ii) the concentration (g/ha) of active ingredient for the fungicide indicated to control a specific disease in the field; (iii) water volume of 120/L used in the spray; (iv) the fungicide a.i. concentration (mg/L) in 120 L volume; (v) and the ratio of the concentration used in the field with that determined in the laboratory. The analysis were performed by using IC50 data for DMIs, QoIs, a carbamate and a benzimidazol against the following fungi Bipolaris sorokiniana, Drechslera tritici-repentis, D. siccans, Fusarium graminearum, Puccinia triticina, Exserohilum turcicum, Phakopsora pachyrhiziand Corynespora cassiicola. The fungicide concentrations sprayed in the field were 33.9 (D. siccansand trifloxystrobin) to 500,000.0 (E. turcicumand iprodione) times higher than that determined in the laboratory. It was concluded that the IC50 was not related to the concentration used in the field and therefore should be used to compare the power among fungicides and to monitor the fungal sensitivity shift towards fungicides

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A homeopatia pode ser uma alternativa de controle de doenças de plantas pela ativação de genes vegetais responsáveis pela resistência às doenças. O objetivo deste trabalho foi avaliar a ação dos medicamentos homeopáticos Propolis, Sulphur e Ferrum sulphuricum nas dinamizações 6, 12, 30 e 60CH (escala centesimal hahnemaniana) no controle de Alternaria solani e em variáveis de crescimento. Solução hidroalcóolica 10% e água destilada foram os tratamentos controle. Aos 19 dias após o transplante, a 6 ª folha de cada planta foi tratada e 72 horas após, a 6ª e a 7ª folhas foram inoculadas com A. solani. A severidade da doença foi avaliada e calculada a área abaixo da curva de progresso da doença (AACPD). Foram avaliados volume e massa seca do sistema radicular e massa fresca e seca da parte aérea. Sulphur em 12 e 30CH, Ferrum sulphuricum em 6, 12 e 30CH e Propolis em todas as dinamizações reduziram a AACPD na ordem de 17% a 49%. Sulphur em 60CH e solução hidroalcoólica 10% apresentaram efeito sistêmico na indução de resistência. Nas variáveis de crescimento, Propolis em 30 e 60CH incrementou o volume de raiz em 39% e 33%, a massa fresca da parte aérea em 35% (30CH) e a massa seca da raiz em 38% (30CH). Sulphur em todas as dinamizações aumentou a massa da parte aérea entre 23% a 37%, e em 60CH incrementou em 59% a massa de raízes, o que também ocorreu com Ferrum sulphuricum 60CH (65% de incremento). Esses resultados indicam que os preparados homeopáticos podem controlar a pinta preta e incrementar o crescimento do tomateiro.

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O principal mecanismo que confere resistência do fungo Venturia inaequalis aos inibidores de oxidação (quinol QoIs) é a ocorrência de mutações no gene citocromo b CYTB (G143A). O objetivo do trabalho foi a implementação da metodologia RFLP-PCR para caracterizar a reação de isolados de V. inaequalis à presença de Qols. Foram utilizados sete isolados monospóricos de V. inaequalis, coletados em pomares comerciais de Santa Catarina e cedidos pela Estação Experimental da EPAGRI de São Joaquim, Santa Catarina. Os isolados foram classificados como sensíveis ou resistentes após crescimento em meio BDA contendo 10 µg.mL-1 de cresoxim metílico. Para determinação da presença da mutação G143A foram utilizados os marcadores específicos ViCytB-5F e ViCytB-6071R. O DNA dos isolados foi amplificado em reação de PCR e separado em gel de agarose 1,5%. Os fragmentos foram então digeridos com a enzima de restrição Fnu4HI identificadora da mutação e os produtos da digestão foram analisados por eletroforese num gel de agarose 1,0%. Os genótipos revelados estavam associados ao fenótipo estabelecido pelo crescimento dos isolados em presença do fungicida, mostrando que 6 isolados já apresentavam o alelo de resistência. O uso de técnicas de RFLP-PCR permitiram uma avaliação rápida e confiável na detecção da resistência de V. inaequalisao cresoxim metílico.

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Os objetivos desse trabalho foram identificar e avaliar o potencial antagônico in vitro de bactérias endofíticas isoladas de Echinodorus scaber (chapéu de couro) sobre alguns patógenos e verificar sua capacidade de controlar o desenvolvimento de fungos em grãos de soja. Um total de 113 linhagens foi confrontado com cinco fungos patogênicos (método de cultura dupla), e quatro bactérias patogênicas (método de sobrecamada). O controle de crescimento de fungo em grãos de soja foi realizado por microbiolização e avaliado pelo método de papel de filtro. As bactérias antagonistas foram submetidas a teste de antibiose contra quatro bactérias patógenas. Duas linhagens inibiram os fungos Colletotrichum lindemunthianum, C. gloeosporioides, Corynespora cassiicula, Fusarium solani, Microsporum canis. No teste de antibiose contra as bactérias patogênicas somente (BREIII-107) apresentou atividade antagônica. As duas linhagens e foram identificadas como Bacillus sp (BREI-92) e Bacillus subitilis (BREIII-107). Quando inoculadas em grãos de soja, Bacillus sp (BREI-92) e Bacillus subitilis (BREIII-107) inibiram aproximadamente 100% do desenvolvimento de fungos sobre os grãos.

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Ramularia blight, caused by Ramularia areola, is one of the most important diseases affecting cotton crop in Brazil. For its effective control, 5-9 fungicide applications on susceptible cultivars are necessary. The aim of the present study was to evaluate, in vitro and in vivo, the sporulation potential of R. areolaisolates from different Brazilian regions at distinct temperatures. Spore production was assessed in the laboratory and under green house conditions by using leaves from plants of eight cotton cultivars. The in vitro results indicated that the potential of spore production was dependent on temperature. Maximum sporulation of the fungus occurred at 17°C for isolates from São Paulo State and 23°C for isolates from Goiás and Mato Grosso States. In the in vivo study, there was a variation in spore production according to the cultivar and the isolate. Most isolates showed to be highly aggressive on cultivars FM966 LL and DELTAOPAL. The obtained results suggest a more rational use of fungicides and cultivars with decreased fungal sporulation and can form the basis for further studies of the pathogenic variability of this fungus in cotton crops in Brazil. This is the first report on the sporulation potential of Brazilian R. areola isolates.

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ABSTRACTThe incidence and the levels of yield loss caused by the white mold of soybean (caused by the fungus Sclerotinia sclerotiorum) have increased in areas of higher altitude at Cerrado and Southern Brazil, causing yield losses of up to 60%. The aim of this study was to select saprobic fungi with the potential to control the white mold of soybean. First, in vitroantagonism screening was carried out to test eight saprobic fungi against S. sclerotiorum. Assessment of S. sclerotiorum mycelial growth was done at four and seven days after its placement on the culture medium. The isolate showing greatest antagonistic effect in all tests/assessments was Myrothecium sp. An in vivo experiment was conducted in a greenhouse and growth chamber, where plants previously treated with eight saprobic fungi were artificially inoculated with S. sclerotiorum. The fungal culture medium (potato-dextrose) and the commercial resistance inducer acibenzolar-S-methyl were used as controls. In the in vivotests, severity of the white mold was assessed at 8, 14 and 21 days after inoculation. The highest reduction percentage in the lesion length was observed for the treatment with Myrothecium sp. (70%), which has the greater potential to be used as biocontrol agent of soybean under the conditions of this experiment.

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RESUMO O objetivo deste trabalho foi avaliar o efeito da aplicação de silicato de cálcio e de cinza de casca de arroz (CCA) na incidência de fungos associados a manchas em sementes de arroz irrigado. Plantas de arroz foram submetidas à aplicação de silicato de cálcio ou CCA nas doses de 0, 51, 153, 256 e 357 kg ha-1de silício (Si). Dois experimentos foram conduzidos, sendo um na safra 2007/2008 e outro na safra 2008/2009 e, posteriormente, amostras de sementes foram analisadas em laboratório. Foram realizadas avaliações do Índice de Escurecimento de Sementes (IES), da concentração de Si no pericarpo das sementes e a determinação da diversidade dos fungos presentes nas sementes. Não houve efeito das duas fontes de Si empregadas, nas doses utilizadas nos dois experimentos no IES e na concentração de Si. Os fungos fitopatogênicos encontrados em ambos experimentos foram Alternaria padwickiii, Bipolarisoryzae, Botrytis cinerea, Curvularia lunata, Fusarium semitectum, F. solani, Microdochium oryzae, Nigrospora oryzae, Phoma sorghina e Pyriculariaoryzae. A incidência destes fungos não foi afetada pela aplicação das fontes de Si nas doses utilizadas.