466 resultados para PENICILLIUM-EXPANSUM


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La producción frutícola española es muy importante y los problemas relacionados con su conservación, sobre todo desde la entrada de España en la UE, tienen un interés peculiar con el objetivo de mejorar la calidad y disminuir el uso de los productos susceptibles de perjudicar la salud humana. Para conseguir avances importantes en el aspecto tecnológico se precisa una profundización en los fenómenos bioquímicos que determinan las capacidades de conservación del fruto. Dentro de la complejidad de esta temática, este proyecto pretende determinar los factores bioquímicos involucrados en el control de podredumbres en la fruta y más específicamente los factores endógenos que determinan la resistencia del fruto a este tipo de daños. El objetivo general de este proyecto era de definir los mecanismos bioquímicos involucrados en la resistencia de la manzana ‘Golden Delicious’ contra la acción de un patógeno: Penicillium expansum. Para lograr este objetivo se plantearon las diferentes tareas: Tarea 1 (T1): determinación de madurez y del estado fisiológico a la cosecha Tarea 2 (T2): determinación de las capacidades de resistencia endógenas iniciales e influencia del estado de madurez a la cosecha Tarea 3 (T3): respuesta inicial a una inoculación artificial: cambios bioquímicos y sensibilidad al patógeno Tarea 4 (T4): comportamiento después de conservación: respuesta a una inoculación (cambios bioquímicos y sensibilidad al patógeno) y sensibilidad natural durante la conservación Tarea 5 (T5): determinación de un esquema explicativo y caracterización de los factores bioquímicos determinantes Tarea 6 (T6): elaboración de un test de predicción.

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Penicillium expansum is the causative agent of apple blue mold. The inhibitory effects of the capsaicin derived from Capsicum spp. fruits and yeast Hansenula wingei against P. expansum were evaluated in an in vitro and in in vivo assay using Fuji apples. The minimum inhibitory concentration of capsaicin determined using the broth micro-dilution method was 122.16 µg mL-1. Capsaicin did not reduce blue mold incidence in apples. However, it was able to delay fungal growth in the first 14 days of the in vivo assay. The in vivo effect of the yeast Hansenula wingei AM2(-2), alone and combined with thiabendazole at low dosage (40 µg mL-1), on the incidence of apple diseases caused by P. expansum was also described. H. wingei AM2(-2) combined with a low fungicide dosage (10% of the dosage recommended by the manufacturer) showed the best efficacy (100%) up to 7 days of storage at 21 ºC, later showing a non-statistically different decrease (p > 0.05) after 14 (80.45%) and 21 days (72.13%), respectively. These results contribute providing new options for using antifungal agents against Penicillium expansum.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Considerable losses during apple fruit storage occur due to microbiological diseases, mainly caused by Penicillium expansum, which in addition to fruit pulp deterioration produces patulin, a mycotoxin with carcinogenic and teratogenic activity. Biological control of post-harvest disease by antagonist yeasts focused on killer toxins is an appreciable alternative to the chemical fungicides, due to the low possibility of toxic residues demonstrated during fermentative processes. Twenty out of 44 yeasts (16 isolated from fruits, 10 from corn silage and 18 from laboratory anthill), showed antagonism against spores of P. expansum. The assay in solid medium pointed the strongest nutrient competition antagonism by D. hansenii strain C1 (31 mm inhibition diameter), while D. hansenii strain C7 (15 mm) showed higher antibiosis and parasitism pattern. In the following step the extracellular activity was tested performing the assay with culture supernatant in Yeast Medium agar, where C. guilliermondii P3 was more effective against conidia germination (inhibition rate of 58.15%) while P. ohmeri showed better inhibition on micelial growth (66.17%). The antibiosis showed by both yeasts could suggest probable mechanism associated with killer phenomenon, once both strains were killer positive against sensitive reference strains (S. cerevisiae NCYC 1006 and P. kluyveri CAY-15). In order to enhance the production of antifungal substance, these yeasts were cultivated with P. expansum, but the difference between culture supernatant obtained from yeasts cultivated alone and with mould was not significant (P > 0.05). The results demonstrated that the yeasts application constitute a promising tool, enhancing the biological control of P. expansum in post-harvest diseases of apple fruit.

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The years of excessive use of thiabendazole to control Penicillium expansum has induced the development of resistance. Sensitivity of fourty eight strains collected from orchards and packinghouses in Emilia Romagna to pure and commercial TBZ was determined in vitro on TBZ amended medium (400μg/mL). Out of 48 strains, 35 were thiabendazole-sensitive (S) and 13 were thiabendazole-resistant (R). Microtiter assay adapted to P. expansum, showed EC50 values ranging from 54 to 320 μg/mL for ten TBZ-resistant strains. At the highest dose (50 μg/mL), resistant strains growth was not inhibited and the reported MICs value were >1000 μg/mL. Therefore, preliminary screening combined with microtiter assay, can be a good strategy to test susceptibility to TBZ. Mutations in the β-tubulin gene were studied on amino acid sequences from residue 167 to residue 357 of 10 P. expansum strains. Mutation at codon 198 was associated with TBZ-resistance. However, its absence in 3 resistant strains can be explained by the involvement of other mechanisms. Moreover, a P. expansum strain LB8/99 showed good antifungal effect against some fungal pathogens through double petri dish assay. It inhibited both mycelium growth and conidia germination of B. cinerea, C. acutatum, and M. laxa, and reduced significantly by 53% and 18% respectively P. expansum. Three major VOCS: geosmin, phenethyl alcolhol (PEA) and an unknown substance were identified by GC-MS analysis. Consistent fumigation of fungal pathogens with PEA (1230 mg/mL), inhibited both conidia germination and mycelium growth of all pathogens, except conidia germination of P. expansum that was reduced by 90% with respect to control. While, the concentration of PEA produced naturally by LB8/99 was ineffective in controlling the pathogens and seemed to have a synergic or additive effect with the other VOCS. Investigations to study the biofumigant effect of LB8/99 on other commodities like seeds and seedlings are in progress.

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A maçã (Malus domestica Borkhausen) é uma excelente fonte nutricional e de interesse econômico, sendo que a Região Sul do Brasil contribue com 90% da produção Nacional deste fruto com destaque aos cultivares Gala e Fuji. O objetivo deste estudo foi avaliar a produção de patulina nestes cultivares inoculados com Penicillium expansum NRRL 1172 e Penicillium variabile toxigênico, isolado de maçãs regionais. As frutas contaminadas foram mantidas em condições de tempo de armazenamento e temperatura que variaram respectivamente de 15 a 90 dias e de 0 a 25°C. A produção de patulina ocorreu em todas as combinações de armazenagem e temperaturas empregadas para o ensaio, independentemente dos cultivares. A produção de patulina foi negativa no 30º dia nas maçãs estocadas a 0°C inoculadas com P.expansum, mas o aumento de temperatura para 4°C restringiu a margem de segurança, causando positividade na produção da toxina para ambos os cultivares inoculados com as duas linhagens fúngicas, no mesmo período. Nas maçãs inoculadas com P. variabile ocorreu maior concentração de patulina (F=68,05) do que as contaminadas com P. expansum NRRL 1172 (F=26,0). O risco freqüente de produção de patulina nas temperaturas de refrigeração, indicaram a necessidade de melhor controle nos estágios de colheita e armazenagem de maçãs, a fim de evitar constante ingestão de toxina.

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Blue mould caused by Penicillium expansum Link is one of the most destructive rot of pome fruit in all growing areas (Snowdon, 1990; Jones and Aldwinckle, 1991; Tonini,1996) In the past, Penicillium rot has been controlled by fungicide postharvest treatment mainly by thiabendazole (TBZ) and benomyl (Hardenburg and Spalding, 1972), but their intense use produced the appearance of resistant strains with a great reduction of their activity The aims of the present study were to characterize the isolates of Pencillium sp causing blue mold on pear in Italy by physiological and biochemical parameters. In particular differencing also the behavior of isolates to relationship with sensitivity or resistance to TBZ treatments. We have examined the early stage of infection in relation to enzyme activity, local modulation of pH, production of organic acids, and to secondary metabolism of pathogen. The results described here confirm that the majority of P. expansum isolates from pears packing houses are resistant to TBZ, Among the TBZ-resistant isolates scored in this work, different isolates (RR) showed higher percentage of conidial germination on TBZ-amended medium compared to non amended medium. This may indicate a stimulatory effect of TBZ on conidial germination. Therefore TBZ treatments are not only ineffective for controlling P. expansum, but they may also increase the severity of blue mould on fruits. In the absence of fungicide, isolates showed a significant difference for infection severity, R and RR isolates are characterized by higher pathogenic fitness on fruits, producing larger lesions than S isolates. These data are supported by the study with laboratory-induced resistant isolates, which shows the lack of correlation between TBZ resistance and osmotic sensitivity, and highlights the association between TBZ resistance and infection severity (Baraldi et al 2003). Enzymatic screening gave a positive reaction to esterase, urease, pectinase activity, in addition, the pathogen is able to synthesize a complex enzyme act to degrade the main components of the cell wall especially pectin and cellulose. Isolated sensitive and resistant are characterized by a good activity of pectinase, especially from poligactoronase, which, as already reported by several studies (D'hallewin et al, 2004; Prusky et al, 2004), are the basis of degradative process of cell wall. Also, although the measure was minor also highlighted some activities of cellulase, but even note in the production of this kind of cellulase and hemicellulase P. Expansum were not targeted, studies have found no other source of information in this regard. Twenty isolates of Penicillium expansum, were tested in vitro ad in vivo for acid production ability and pH drop. We have found that modulation of pH and the organic acids extrusion were influence to various parameter:  Initial pH: in general, the greatest reduction of pH was observed in isolates grown at pH 7, except for four isolates that maintained the pH of the medium close to 7, the others significantly decreased the pH, ranging from 5.5 to 4.1.. In extreme acid condition (pH 3,0) growth and modulation of pH is most lower respect optimal condition (pH 5,0). Also isolates R and RR have showed a greater adaptation to environmental condition more than isolates S.  Time: although the acidification continues for some days, PH modulation is strongest in early hours (48-72 hours)of inoculation process. Time also affects the quality of organic acids, for example in vitro results showed an initial abundant production of succinc acid, followed to important production of galacturoinc acid.  Substrates: there are many differences for the type of acids produced in vitro and in vivo. Results showed in vivo an abundant production of galacturonic, malic, and citric acids and some unknown organic acids in smaller concentrations. Secondary metabolite analysis revealed intra-specific differences, and patulin was found in all isolates, but most significant reduction was observed between in vitro and in vivo samples. There was no correlation between the concentration of patulin, and the percentage of infected fruits, but sample with a lower infection severity of rotten area than the others, showed a significantly lower mycotoxin concentration than samples with a higher lesion diameter of rotten area. Beyond of patulin was detected the presence of another secondary metabolite, penitrem A.

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Dissertação para obtenção do Grau de Mestre em Tecnologia e Segurança Alimentar na área de especialização Qualidade Alimentar

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This study evaluated the efficacy of lactic acid bacteria (LAB) isolated from fresh fruits and vegetables as biocontrol agents against the phytopathogenic and spoilage bacteria and fungi, Xanthomonas campestris, Erwinia carotovora, Penicillium expansum, Monilinia laxa, and Botrytis cinerea. The antagonistic activity of 496 LAB strains was tested in vitro and all tested microorganisms except P. expansum were inhibited by at least one isolate. The 496 isolates were also analyzed for the inhibition of P. expansum infection in wounds of Golden Delicious apples. Four strains (TC97, AC318, TM319, and FF441) reduced the fungal rot diameter of the apples by 20%; only Weissella cibaria strain TM128 decreased infection levels by 50%. Cell-free supernatants of selected antagonistic bacteria were studied to determine the nature of the antimicrobial compounds produced. Organic acids were the preferred mediators of inhibition but hydrogen peroxide was also detected when strains BC48, TM128, PM141 and FF441 were tested against E. carotovora. While previous reports of antifungal activity by LAB are scarce, our results support the potential of LAB as biocontrol agents against postharvest rot. [Int Microbiol 2008; 11(4):231-236]

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Food safety today is conditiones by the implementation of new Tecnologies for food preservation based on mild treatments and mínimum process, Novel foods, severe restrictions in the toxicològic profile of chemical preservatives, And the drastic limitation /prohibition of antibiotics, and as a consequence, by the New emergint pathogens or by the increase of classical food-borne pathogens. Biopreservatives appear within this context with strong expectations, because thei are safe microorganisms of ten isolated from foods, chemical compounds of natural origin -antimicrobial peptides and proteins, botanical extracts, enzymes- and sintetic compounds based on natural structures, but less toxic and more eficients, like the amtimicrobial peptides. Among the microbial biopreservatives, lactic acid bacteria have shown great possibilities in the preservation of cured meat products, ready to eat fresh fruit and vegetables, as well as to decrease microbial spoilage in food by products before processing for valorization. Our laboratory has performed an extense survey of the microbiological quality of fresh fruit and vegetables, and of ready-to-eat products, and have detect low levels, but significant of Salmonella sp., E. coli and Listeria spp., including L.monocytogenes, in retail markets and Supermarkets of Catalonia. Due to this reason, we started a project consisting of Developing application of lactic acid bacteria (LAB) obtained from these products, as biopreservatives. LAB were abundant in ready-to-eat fresh fruits and vegetables, specially in germinated seeds. From these products we obtained strains of Leuconostoc, Lactobacillus and Weissella, producing bacteriocins and with a Significant activity of control of L.monocytogenes in fresh apple and cut salad. Ather strains were efective in the inhibition of fungal rot during postharvest caused by Penicillium expansum

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O mofo-azul (Penicillium expansum) é uma podridão pós-colheita comum em maçãs (Malus domestica). O uso de substâncias menos ofensivas ao ambiente, como o fosfito (ácido fosforoso), é uma das alternativas de controle dessa doença. Visou-se, então, a avaliar neste estudo a eficiência de fosfito-K (40% de P2O5 e 30% de K2O) e fosfito-CaB (10,7% de P2O5, 3,89% de Ca e 0,5% de B) no controle do mofo-azul em maçãs 'Fuji' e 'Gala'. Os testes foram delineados em blocos ao acaso com seis repetições de 20 frutos cada. Os frutos foram desinfestados em hipoclorito de Na (1%) por três minutos, lavados em água esterilizada, feridos (1mm de diâmetro e de profundidade) com agulha em quatro pontos eqüidistantes, imersos nos tratamentos por 15 minutos e armazenados a 15-20ºC. Nas suspensões contaminadas com Penicillium expansum (10² conídios.mL-1), foram adicionadas as seguintes substâncias: benomil (150 mg.L-1), fosfito-K (0,5 a 1,5 mL.L-1) e fosfito-CaB (1,5 a 3,0 mL.L-1). As maçãs 'Fuji' e 'Gala' imersas em água com fosfito-CaB (1,5 mL.L-1), fosfito-K (0,5-1,5 mL.L-1) ou benomil (150 mg.L-1) foram menos afetadas pelo mofo-azul. A aplicação de fosfito-K (1,5 mL.L-1) ou benomil (150 mg.L-1) nos frutos foi mais eficiente do que os demais tratamentos no controle do mofo-azul.

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Certain strains of Pantoea are used as biocontrol agents for the suppression of plant diseases. However, their commercial registration is hampered in some countries because of biosafety concerns. This study compares clinical and plant-beneficial strains of P. agglomerans and related species using a phenotypic analysis approach in which plant-beneficial effects, adverse effects in nematode models, and toxicity were evaluated. Plant-beneficial effects were determined as the inhibition of apple fruit infection by Penicillium expansum and apple flower infection by Erwinia amylovora. Clinical strains had no general inhibitory activity against infection by the fungal or bacterial plant pathogens, as only one clinical strain inhibited P. expansum and three inhibited E. amylovora. By contrast, all biocontrol strains showed activity against at least one of the phytopathogens, and three strains were active against both. The adverse effects in animals were evaluated in the plant-parasitic nematode Meloidogyne javanica and the bacterial-feeding nematode Caenorhabditis elegans. Both models indicated adverse effects of the two clinical strains but not of any of the plant-beneficial strains. Toxicity was evaluated by means of hemolytic activity in blood, and genotoxicity with the Ames test. None of the strains, whether clinical or plant-beneficial, showed any evidence of toxicity

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As podridões pós-colheita podem ocasionar perdas substanciais em maçãs (Malus domestica). O mofo azul (Penicillium expansum), a podridão amarga (Glomerella cingulata) e a podridão olho-de-boi (Pezicula malicorticis) estão entre as mais comuns. Grande atenção tem sido dada ao uso de alternativas de controle às doenças pós-colheita. A aplicação pós-colheita de leveduras, como o Cryptococcus laurentii, é uma das opções. Neste estudo testou-se a eficiência de C. laurentii (isolado 36) para o controle de podridões em maçãs 'Fuji' e 'Gala'. Após aplicação dos produtos, através de imersão, os frutos foram armazenados em laboratório (15-20 ºC / 60-70% UR) ou em câmara fria (1 ºC / 90-95% UR). Os patógenos foram inoculados na concentração de 10² conídios ml-1, a levedura a 10(7) células ml-1 e os fungicidas a 150 mg l-1. Em testes de laboratório, a aplicação de C. laurentii reduziu as podridões (G. cingulata, P. expansum e P. malicorticis) da maçã tanto quanto os fungicidas testados (thiabendazol e iprodione). Nos testes efetuados em câmara fria, constatou-se que, após o armazenamento, o tratamento de maçãs com C. laurentii foi tão eficiente quanto os tratamentos com fungicidas (thiabendazol, iprodione, digluconato de clorohexidina, dicloro-s-triazinatriona sódica, dicloroisocianurato de sódio e hipoclorito de sódio) na redução da podridão causada por P. expansum. Aplicação de C. laurentii não alterou a firmeza de polpa nem o teor de sólidos solúveis totais (°Brix) dos frutos.