164 resultados para Bipolaris maydis


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El objetivo del presente estudio fue obtener los parámetros bioetológicos de Sipha maydis (Passerini) y Schizaphis graminum (Rondani) sobre cebada, Hordeum vulgare L. cv. Pampa. Los pulgones se criaron en condiciones de laboratorio a 20±1 °C, 14:10 horas de fotofase y una humedad relativa del 50-70 %. Se obtuvieron cohortes a partir de poblaciones de estos áfidos, sobre las que se realizó el registro diario de los cambios de estado, número de individuos muertos y los nacimientos una vez alcanzado el estado adulto. Se analizaron las curvas de supervivencia por edades (lx) y fecundidad (mx) y los siguientes estadísticos vitales: tasa reproductiva neta (Ro); tasa intrínseca de crecimiento natural (rm); tiempo generacional medio (T) y tiempo de duplicación (D). Para la comparación de las rm se obtuvieron las rm estimadas junto con su error standard mediante el procedimiento <jackknife». Si bien el pulgón verde de los cereales S. graminum posee mayor eficiencia reproductiva, S. maydis presenta valores de supervivencia y fecundidad de importancia, que indicaría que este áfido podría constituirse en una plaga potencial de gramíneas cultivadas.

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A human and a mouse gene have been isolated based on homology to a recombinational repair gene from the corn smut Ustilago maydis. The new human (h) gene, termed hREC2, bears striking resemblance to several others, including hRAD51 and hLIM15. hREC2 is located on human chromosome 14 at q23–24. The overall amino acid sequence reveals characteristic elements of a RECA-like gene yet harbors an src-like phosphorylation site curiously absent from hRAD51 and hLIM15. Unlike these two relatives, hREC2 is expressed in a wide range of tissues including lung, liver, placenta, pancreas, leukocytes, colon, small intestine, brain, and heart, as well as thymus, prostate, spleen, and uterus. Of greatest interest is that hREC2 is undetectable by reverse transcription-coupled PCR in tissue culture unless the cells are treated by ionizing radiation.

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Recombinational repair of double-stranded DNA gaps was investigated in Ustilago maydis. The experimental system was designed for analysis of repair of an autonomously replicating plasmid containing a cloned gene disabled by an internal deletion. It was discovered that crossing over rarely accompanied gap repair. The strong bias against crossing over was observed in three different genes regardless of gap size. These results indicate that gap repair in U. maydis is unlikely to proceed by the mechanism envisioned in the double-stranded break repair model of recombination, which was developed to account for recombination in Saccharomyces cerevisiae. Experiments aimed at exploring processing of DNA ends were performed to gain understanding of the mechanism responsible for the observed bias. A heterologous insert placed within a gap in the coding sequence of two different marker genes strongly inhibited repair if the DNA was cleaved at the promoter-proximal junction joining the insert and coding sequence but had little effect on repair if the DNA was cleaved at the promoter-distal junction. Gene conversion of plasmid restriction fragment length polymorphism markers engineered in sequences flanking both sides of a gap accompanied repair but was directionally biased. These results are interpreted to mean that the DNA ends flanking a gap are subject to different types of processing. A model featuring a single migrating D-loop is proposed to explain the bias in gap repair outcome based on the observed asymmetry in processing the DNA ends.

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Todo organismo se enfrenta a condiciones desafiantes durante su desarrollo; variaciones de temperatura, humedad, presión osmótica y de pH, esta última condición se ve implicada en el grado de disponibilidad de nutrientes, entre ellos los metales, cuya solubilidad depende del pH del medio, por lo que la homeostasis de las concentraciones intracelulares de iones es fundamental para la fisiología de todo organismo vivo. El zinc forma parte estructural y es cofactor catalítico de numerosas enzimas y factores de transcripción, es por ello, que el transporte del metal está altamente regulado. Se han descrito transportadores de zinc y/o hierro pertenecientes a la familia ZIP, donde los principales representantes son Zrt1p y Zrt2p de alta y baja afinidad a zinc respectivamente, expresados ante condiciones limitantes de zinc en la levadura Saccharomyces cerevisiae. En el presente estudio fueron caracterizados 2 genes que codifican para transportadores de zinc en el hongo basidiomiceto Ustilago maydis; el gen codificado en el marco de lectura abierto um00096 corresponde a un transportador de alta afinidad a zinc, siendo ortólogo a ZRT1 de S. cerevisiae, mientras que el gen codificado en el marco um03110 presentó menor afinidad por el metal, nuestros resultados indican que pudiese ser transportador de otro metal. Mediante transcripción reversa y reacción en cadena de polimerasa punto final (RTPCR), se identificó que el factor de transcripción Rim101p participa en la regulación del gen ZRT2 de U. maydis, actuando como represor, en ambientes ácidos y limitantes de zinc, y como activador en pH neutro y bajas concentraciones de zinc.

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Este trabalho teve como objetivo avaliar o potencial antagônico in vitro de rizobactérias contra Bipolaris sp., importante patógeno causador de manchas foliares na cultura do milho. O método adotado foi o de pareamento de colônias. No centro de placas de Petri contendo BDA e circundadas próximo à borda com as rizobactérias, foi depositado um disco de micélio do patógeno. Estas foram incubadas a 28 ± 2ºC, com fotoperíodo de 12h claro/escuro. O delineamento experimental foi inteiramente ao acaso, com seis tratamentos e cinco repetições. As avaliações do crescimento diamétrico (mm) foram diárias, sendo, posteriormente, calculado o Índice de Velocidade de Crescimento Micelial (IVCM), que foi comparado entre os tratamentos pelo teste de Scott-Knott (p-valor ≤ 0.05), utilizando-se o programa SISVAR, versão 5.6. As rizobactérias testadas apresentam mecanismos que inibiram o crescimento micelial in vitro de Bipolaris sp. O isolado P23 apresentou maior potencial de inibição contra o patógeno, diferindo estatisticamente de todos os tratamentos, apresentando potencial de utilização em futuros programas de controle biológico da mancha de Bipolaris do milho.

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Background: Exposure of cells to environmental stress conditions can lead to the interruption of several intracellular processes, in particular those performed by macromolecular complexes such as the spliceosome. Results: During nucleotide sequencing of cDNA libraries constructed using RNA isolated from B. emersonii cells submitted to heat shock and cadmium stress, a large number of ESTs with retained introns was observed. Among the 6,350 ESTs obtained through sequencing of stress cDNA libraries, 181 ESTs presented putative introns (2.9%), while sequencing of cDNA libraries from unstressed B. emersonii cells revealed only 0.2% of ESTs containing introns. These data indicate an enrichment of ESTs with introns in B. emersonii stress cDNA libraries. Among the 85 genes corresponding to the ESTs that retained introns, 19 showed more than one intron and three showed three introns, with intron length ranging from 55 to 333 nucleotides. Canonical splicing junctions were observed in most of these introns, junction sequences being very similar to those found in introns from genes previously characterized in B. emersonii, suggesting that inhibition of splicing during stress is apparently a random process. Confirming our observations, analyses of gpx3 and hsp70 mRNAs by Northern blot and S1 protection assays revealed a strong inhibition of intron splicing in cells submitted to cadmium stress. Conclusion: In conclusion, data indicate that environmental stresses, particularly cadmium treatment, inhibit intron processing in B. emersonii, revealing a new adaptive response to cellular exposure to this heavy metal.

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The basidiomycete Moniliophthora perniciosa is the causal agent of witches` broom disease of Theobroma cacao (cacao). Pathogenesis mechanisms of this hemibiotrophic fungus are largely unknown. An approach to identify putative pathogenicity genes is searching for sequences induced in mycelia grown under in vitro conditions. Using this approach, genes from M. perniciosa induced under limiting nitrogen and light were identified from a cDNA library enriched by suppression subtractive hybridization as potential putative pathogenicity genes. From the 159 identified unique sequences, 59 were annotated and classified by gene ontology. Two sequences were categorized as ""Defence genes, Virulence, and Cell response"" presumably coding for allergenic proteins, whose homologues from other fungi are inducers of animal or plant defences. Differential gene expression was evaluated by quantitative amplification of reversed transcripts (RT-qPCR) of the putative identified genes coding for the two allergenic proteins (Aspf13 and 88KD), and for the enzymes Arylsulfatase (AS); Aryl-Alcohol Oxidase; Aldo-Keto Reductase (AK); Cytochrome P450 (P450); Phenylalanine Ammonia-Lyase; and Peroxidase from mycelia grown under contrasting N concentrations. All genes were validated for differential expression, except for the putative Peroxidase. The same eight genes were analysed for expression in susceptible plants inoculated with M. perniciosa, and six were induced during the early asymptomatic stage of the disease. In infected host tissues, transcripts of 88KD and AS were found more abundant at the biotrophic phase, while those from Aspf13, AK, PAL, and P450 accumulated at the necrotrophic phase, enabling to suggest that mycelia transition from biotrophic to necrotrophic might occur earlier than currently considered. These sequences appeared to be virulence life-style genes, which encode factors or enzymes that enable invasion, colonization or intracellular survival, or manipulate host factors to benefit the pathogen`s own survival in the hostile environment. (C) 2010 The British Mycological Society. Published by Elsevier Ltd. All rights reserved.

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Maize breeding programmes in Brazil and elsewhere seek reliable methods to identify genotypes resistant to Phaeosphaeria leaf spot. The area under the disease progress curve (AUDPC) is an accurate method to evaluate the severity of foliar diseases. However, at least three data points are required to calculate the AUDPC, which is unfeasible when there are thousands of genotypes to be assessed. The aim of this work was to estimate the heritability of disease resistance, evaluate disease severity at different times using a nine-point scale in comparison to the AUDPC, and establish the most suitable phenological period for disease assessment. A repeated experiment was conducted in a 11 x 11 lattice experimental design with three replications. Disease assessments were carried out at flowering, 15 and 30 days post-anthesis for the parental lines DS95, DAS21, the F1 generation and 118 F2:3 progenies. Then, the AUDPC was obtained and results compared with the single-point evaluations used to calculate it. Individual and joint analyses of variance were conducted to obtain heritabiliy estimates. The assessments performed after the flowering stage gave higher estimates of heritability and correlation with AUDPC. We concluded that one assessment between the 15th and 30th day after flowering could provide enough information to distinguish maize genotypes for their resistance to Phaeosphaeria leaf spot under tropical conditions.

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The etiological agent of maize white spot (MWS) disease has been a subject of controversy and discussion. Initially the disease was described as Phaeosphaeria leaf spot caused by Phaeosphaeria maydis. Other authors have Suggested the existence of different fungal species causing similar symptoms. Recently, a bacterium, Pantoea ananatis, was described as the causal agent of this disease. The purpose of this Study was to offer additional information on the correct etiology of this disease by providing visual evidence of the presence of the bacterium in the interior of the MWS lesions by using transmission electron microscopy (TEM) and molecular techniques. The TEM allowed Visualization of a large amount of bacteria in the intercellular spaces of lesions collected from both artificially and naturally infected plants. Fungal structures were not visualized in young lesions. Bacterial primers for the 16S rRNA and rpoB genes were used in PCR reactions to amplify DNA extracted from water-soaked (young) and necrotic lesions. The universal fungal oligonucleotide ITS4 was also included to identity the possible presence of fungal structures inside lesions. Positive PCR products from water-soaked lesions, both from naturally and artificially inoculated plants, were produced with bacterial primers, whereas no amplification was observed when ITS4 oligonucleotide was used. On the other hand, DNA amplification with ITS4 primer was observed when DNA was isolated from necrotic (old) lesions. These results reinforced previous report of P. ananatis as the primary pathogen and the hypothesis that fungal species may colonize lesions pre-established by P. ananatis.

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Phaeosphaeria leaf spot (PLS) is an important disease in tropical and subtropical maize (Zea mays, L.) growing areas, but there is limited information on its inheritance. Thus, this research was conducted to study the inheritance of the PLS disease in tropical maize by using QTL mapping and to assess the feasibility of using marker-assisted selection aimed to develop genotypes resistance to this disease. Highly susceptible L14-04B and highly resistant L08-05F inbred lines were crossed to develop an F(2) population. Two-hundred and fifty six F(2) plants were genotyped with 143 microsatellite markers and their F(2:3) progenies were evaluated at seven environments. Ten plants per plot were evaluated 30 days after silk emergence following a rating scale, and the plot means were used for analyses. The heritability coefficient on a progeny mean basis was high (91.37%), and six QTL were mapped, with one QTL on chromosomes 1, 3, 4, and 6, and two QTL on chromosome 8. The gene action of the QTL ranged from additive to partial dominance, and the average level of dominance was partial dominance; also a dominance x dominance epistatic effect was detected between the QTL mapped on chromosome 8. The phenotypic variance explained by each QTL ranged from 2.91 to 11.86%, and the joint QTL effects explained 41.62% of the phenotypic variance. The alleles conditioning resistance to PLS disease of all mapped QTL were in the resistant parental inbred L08-05F. Thus, these alleles could be transferred to other elite maize inbreds by marker-assisted backcross selection to develop hybrids resistant to PLS disease.

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Phosphate is an ion that is essential for fungal growth. The systems for inorganic phosphate (Pi) acquisition in eukaryotic cells (PHO) have been characterized as a low-affinity (that assures a supply of Pi at normal or high external Pi concentrations) and a high-affinity (activated in response to Pi starvation). Here, as an initial step to understand the PHO pathway in Aspergillus fumigatus, we characterized the PH080 homologue, PhoB(PHO80). We show that the Delta phoB(PHO80) mutant has a polar growth defect (i.e., a delayed germ tube emergence) and, by phenotypic and phosphate uptake analyses, establish a link between PhoB(PHO80), calcineurin and calcium metabolism. Microarray hybridizations carried out with RNA obtained from wild-type and Delta phoB(PHO80) mutant cells identify Afu4g03610 (phoD(PHO84)), Afu7g06350 (phoE(PHO89)), Afu4g06020 (phoC(PHO81)), and Afu2g09040 (vacuolar transporter Vtc4) as more expressed both in the Delta phoB(PHO80) mutant background and under phosphate-limiting conditions of 0.1 mM P-i. Epifluorescence microscopy revealed accumulation of poly-phosphate in Delta phoB(PHO80) vacuoles, which was independent of extracellular phosphate concentration. Surprisingly, a phoD(PHO84) deletion mutant is indistinguishable phenotypically from the corresponding wild-type strain. mRNA analyses suggest that protein kinase A absence supports the expression of PHO genes in A. fumigatus. Furthermore, Delta phoB(PHO80) and Delta phoD(PHO84) mutant are fully virulent in a murine low dose model for invasive aspergillosis. (C) 2008 Elsevier Inc. All rights reserved.

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As doenças foliares, principalmente, helmintosporiose (Bipolaris spp.), antracnose (Colletotrichum graminicola) e ferrugem (Puccinia spp.), podem ocasionar redução do rendimento da cultura do milho. Este estudo teve como objetivo avaliar a ocorrência e severidade de helmintosporiose, antracnose e ferrugem, bem como a produtividade de genótipos de milho, em resposta a doses crescentes de nitrogênio. Avaliou-se a severidade das doenças, utilizando-se escala de notas, em nove genótipos de milho (AG9040, AG7088, 30F35, 3F624, 1F583, 1F632, 1F557, 1F640 e ID219), submetidos a quatro doses de nitrogênio (67; 112; 157; e 202 kg ha-1), em duas safras (2009/2010 e 2010/2011). Para determinar a produtividade, utilizou-se a massa dos grãos coletados. Os graus de severidade da helmintosporiose, da antracnose e da ferrugem variaram em resposta às doses de nitrogênio e, entre os genótipos de milho avaliados durante as duas safras, entretanto, não houve relação clara entre as doses de nitrogênio aplicadas e a ocorrência das doenças nas duas safras. A ferrugem foi detectada apenas durante a safra I. Apesar da severidade das doenças foliares, elas, de modo geral, não afetaram significativamente a produtividade dos genótipos de milho avaliados. Desses, o genótipo de milho AG7088 pode ser considerado o mais produtivo e o mais resistente às doenças avaliadas.

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The basidiomycosis, fungal infections provoked by basidiomycetes or agaric fungi have been recorded at growing frequencies in the medical literature, especially after the advent of AIDS in 1991. The basidiospores of these fungi, scattered in the atmosphere and transported by winds or air currents, reach the maxillary sinuses through the nasal route, most of the times causing signs and symptoms of chronic sinusitis. Basidiomycetes have also been isolated from sputum, especially Schizophyllum commune. Lesions of the buccal mucosa, brain abscesses, onychomycosis and endocarditis have been described, with a growing interest in this type of deep mycosis on the part of mycologists and infectologists. The present paper reports descriptions of mycetism as well as infectious processes caused by basidiomycetes, such as Schizophyllum commune, Ustilago maydis (= Ustilago zeae) and Coprinus cinereus

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Dissertação para obtenção do Grau de Doutor em Biologia