10 resultados para Maculans


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The novel antimicrobial peptide MiAMP1, originally isolated from the seeds of Macadamia integrifolia, was constitutively expressed in transgenic tobacco and canola plants to test its effect on disease resistance. Analysis of plants transformed with 35S-MiAMP1 construct by northern and western blot analyses demonstrated the presence of MiAMP1 mRNA and the mature peptide in the transgenic plants. The MiAMP1 purified from the leaves of transgenic plants was biologically active with the same in vitro antifungal activity as native MiAMP1 purified from the seeds of macadamia. The effect of MiAMP1 expression on the economically important canola pathogen Leptosphaeria maculans (causal agent of blackleg disease) was evaluated in comparison with an untransformed control line and an azygous segregant derived from one of the transgenic lines. Lesion development on the cotyledons of the inoculated canola seedlings was significantly reduced in the T-2 progeny of seven independently transformed transgenic lines. These results suggested that, transgenic canola expressing MiAMP1 may be useful for the management of blackleg disease.

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Maculalactone A is the most abundant secondary metabolite in Kyrtuthrix maculans, a marine cyanobacterium found in the mid-high shore of moderately exposed to sheltered rocky shores in Hong Kong and South East Asia. This species appears to survive as pure colonies forming distinct black zones on the rock. Maculalactone A may provide K. maculans with a chemical defense against several marine organisms, including the common grazer, Chlorostoma argyrostoma and settlement by larvae of the barnacles, Tetraclita japonica, Balanus amphitrite and Ibla cumingii. The natural concentration of maculalactone A varied with season and also with tidal height on the shore and although a strong positive linear correlation was observed between maculalactone A concentration and herbivore grazing pressure, manipulative experiments demonstrated that grazing pressure was not directly responsible for inducing the biosynthesis of this metabolite. The potential of maculalactone A as a natural marine anti-fouling agent (i.e. as an alternative to environmentally-damaging copper- and tin-based anti-fouling paints) was investigated after achieving a gram-scale synthesis of this compound. Preliminary field trials with anti-fouling paints which contained synthetic maculalactone A as the active principle have confirmed that this compound seems to have a specific activity against molluscan settlers.

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Epipolythiodioxopiperazine toxins are secreted by a range of fungi, including Leptosphaeria maculans, which produces sirodesmin, and Aspergillus fumigatus, which produces gliotoxin. The L. maculans biosynthetic gene cluster for sirodesmin includes an ABC transporter gene, sirA. Disruption of this gene led to increased secretion of sirodesmin into the medium and an altered ratio of sirodesmin to its immediate precursor. The transcription pattern of a peptide synthetase that catalyses an early step in sirodesmin biosynthesis was elevated in the sirA mutant by 47% over a 7-day period. This was consistent with the finding that the transporter mutant had elevated sirodesmin levels. Despite increased production of sirodesmin, the sit-A mutant was more sensitive to both sirodesmin and gliotoxin. The putative gliotoxin transporter gene, gliA, (a major facilitator superfamily transporter) from A.fumigatus complemented the tolerance of the L. maculans sirA mutant to gliotoxin, but not to sirodesmin. The results indicate that SirA contributes to self-protection against sirodesmin in L. maculans and suggest a transporter other than SirA is primarily responsible for efflux of endogenously produced sirodesmin. (C) 2004 Elsevier Inc. All rights reserved.

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Two biotypes (A and B) of Colletotrichum gloeosporioides infect the tropical legumes Stylosanthes spp. in Australia. These biotypes are asexual and vegetatively incompatible. However, field isolates of biotype B carrying a supernumerary 2-Mb chromosome, thought to originate from biotype A, have been reported previously. We tested the hypothesis that the 2-Mb chromosome could be transferred from biotype A to biotype B under laboratory conditions. Selectable marker genes conferring resistance to hygromycin and phleomycin were introduced into isolates of biotypes A and B, respectively. A transformant of biotype A, with the hygromycin resistance gene integrated on the 2-Mb chromosome, was cocultivated with phleomycin-resistant transformants of biotype B. Double antibiotic-resistant colonies were obtained from conidia of these mixed cultures at a frequency of approximately 10(-7). Molecular analysis using RFLPs, RAPDs, and electrophoretic karyotypes showed that these colonies contained the 2-Mb chromosome in a biotype B genetic background. In contrast, no double antibiotic colonies developed from conidia obtained from mixed cultures of phleomycin-resistant transformants of biotype B with biotype A transformants carrying the hygromycin resistance gene integrated in chromosomes >2 Mb in size. The results demonstrated that the 2-Mb chromosome was selectively transferred from biotype A to biotype B. The horizontal transfer of specific chromosomes across vegetative incompatibility barriers may explain the origin of supernumerary chromosomes in fungi.

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Isolations from black stem lesions of sunflower growing in south-eastern Queensland yielded fungi putatively identified as species of Phoma. Pathogenicity assays showed that these isolates were capable of killing sunflower plants under glasshouse conditions. The isolates were compared with authentic cultures of Phoma macdonaldii and other isolates of Phoma taken from sunflower from around the world. Random amplified polymorphic DNA analysis showed that all the Australian isolates examined were very similar to the holotype culture of Phoma macdonaldii from Canada. Sequencing of the internal transcribed spacer regions also revealed the relatedness of the Australian isolates to the holotype. This is the first official record of P. macdonaldii in Australia.

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Nos estudos sobre a micoflora de muitos ecossistemas os fungos do género Curvularia Boedijn 1933, constituem um dos mais fascinantes grupos, devido à frequência com que são observados especímenes do género e ao elevado número de espécies que são normalmente identificadas. Apesar da maioria dos táxones do género ser conhecida como saprófita em diferentes substratos vegetais e no solo, podendo ainda ser isolada a partir do solo e do ar, muitas espécies são fitopatogénicas, sobretudo em gramíneas e em regiões de clima tropical e subtropical (SIVANESAN 1987). Um pequeno número de espécies pode raramente originar doenças em animais, incluindo humanos, surgindo como agentes de onicomicoses, sinusite alérgica, pneumonia, endocardite e alergia broncopulmonar (CARTER & BOUDREAUX 2004). Descrito com a espécie tipo C. lunata (Wakker) Boedijn, o género Curvularia permitiu acomodar espécies da família Dematiaceae que possuíam conidióforos macronematosos, mononematosos, direitos ou flexuosos, frequentemente geniculados, por vezes nodosos, células conidiogénicas politétricas, integradas, terminais e simpodiais, fragmoconídios solitários, acropleurógenos por proliferação subterminal do conidióforo, oliváceos a castanhos, elipsóides, cilíndricos, obovóides ou piriformes, três ou mais septos transversais, terceira célula ou segunda e terceira distintamente maiores e escuras, muitas vezes desigualmente curvos devido ao alargamento de uma ou duas células centrais, raramente direitos, septos rígidos, hilo truncado ou protuberante (ELLIS 1971). O género actualmente é composto por mais de 40 táxones que se distinguem por diferenças mais ou menos evidentes na morfologia dos conídios, número de septos e aspectos culturais (SIVANESAN 1987, HOSOKAWA et al. 2003, SIVANESAN et al. 2003, ZHANG-MENG & ZHANG 2003, ZHANG-MENG et al. 2004, CHUNG 2005). Algumas espécies possuem teleomorfo conhecido no género Cochliobolus Drechsler 1934, formando ascósporos filiformes paralelos ou frouxamente enrolados em espiral, característica não evidenciada pela espécie tipo do género, C. heterostrophus (Drechsler) Drechsler, teleomorfo de Bipolaris maydis (Nisik. & Miyake) Shoem., na qual os ascósporos se mostram enrolados formando uma espiral fechada. Por isso, teleomorfos dos fungos do género Curvularia são considerados por alguns autores como sendo do género Pseudocochliobolus Tsuda, Ueyama & Nishih. 1978, que é tido como uma sinonímia de Cochliobolus (ALCORN 1983, SIVANESAN 1987). De notar, no entanto, que sendo filogeneticamente próximo do género Bipolaris Shoem. 1959, as suas espécies apresentam semelhanças morfológicas com espécies do género Bipolaris que têm conídios pequenos e direitos e estudos com análise de sequências ITS e com o marcador enzimático gliceraldeído-3-P desidrogenase mostraram que partilham teleomorfo no grupo 2 do género Cochliobolus (BERBEE et al. 1999). A variabilidade morfológica observada nos fungos enquadrados em Curvularia levou a que ao ser criado o género as espécies fossem separadas em três grupos, ‘geniculata’, com a espécie-tipo C. geniculata (Tracy & Earle) Boedijn, ‘lunata’, com a espécie-tipo C. lunata (Tracy & Earle) Boedijn, e ‘maculans’, com a espécie-tipo C. maculans (Bancroft) Boedijn (=C. eragrostidis (Henn.) Mey.), que se diferenciaram pela forma dos conídios e número de septos (CORBETTA 1964). Nos grupos ‘lunata’ e ‘maculans’ ficaram colocadas as espécies com conídios 3-septados e no grupo ‘geniculata’ as espécies que tinham conídios 4- septados ou com maior número de septos. As espécies do grupo ‘lunata’ distinguiram-se das do grupo ‘maculans’ principalmente por apresentarem curvatura mais pronunciada, célula mediana mais volumosa e habitual presença de estroma em cultura. O reconhecimento das características principais do género Curvularia é relativamente fácil, o que permite que seja normalmente possível a identificação ao género de um qualquer espécimen. No entanto, a identificação em espécie é por vezes complicada pelas descrições vagas e ausência de ilustrações em trabalhos mais antigos, inconstância de características morfológicas e biométricas dos esporos, causada por diferentes condições em que ocorre o crescimento, e sobreposição dos valores das medidas apresentadas por diferentes autores (TSUDA & UEYAMA 1982, HOSOKAWA et al. 2003). Contudo, esta situação não impede que a identificação das espécies continue a ser feita numa aproximação fenotípica, com base em características morfológicas e culturais. Recentemente, as espécies C. fallax Boedijn, C. geniculata (Tracy & Earle) Boedijn e C. senegalensis (Speg.) Subram., do grupo ‘geniculata’, que eram aceites como táxones válidos em monografias clássicas do género (ELLIS 1971, SIVANESAN 1987) mostraram-se interférteis (HOSOKAWA et al. 2003), vindo a ser consideradas, com base em características morfológicas e análise de DNA total por RFLP (HOSOKAWA et al. 2003) e na análise da sequência do gene Brn1 (SUN et al. 2003), como espécie única e sinonimizadas com C. geniculata. Sabido que a diversidade dos fungos que ocorrem nos diferentes ecossistemas de Cabo Verde tem sido pouco estudada, iniciou-se um levantamento da micoflora associada a gramíneas, tendo-se obtido uma colecção de Magnaporthe grisea (Hebert) Barr (LIMA & DUCLOS 2001) e de espécies dos géneros Bipolaris, Exserohilum Leonard & Suggs e Curvularia. O presente trabalho tem como objectivo descrever e ilustrar as espécies de Curvularia identificadas na ilha de Santiago e contribuir para o melhor conhecimento do género naquele país. Na bibliografia consultada não foram encontradas referências a fungos do género Curvularia para Cabo Verde.

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O pau-brasil é uma espécie florestal que tem imenso potencial de utilização, porém, atualmente, encontra-se enquadrada na categoria de extinção sendo importantes as ações que contribuírem para retirá-la desse contexto. As espécies florestais tropicais regeneram-se por vários mecanismos e, dentre estes, a semente é um dos principais, devendo-se atentar para sua qualidade sanitária e fisiológica. Existem poucos relatos sobre a ocorrência de fungos em sementes de pau-brasil e os trabalhos existentes não esclarecem em que momento da formação das sementes ocorre a incidência desses fungos. Objetivou-se através deste trabalho verificar a incidência de fungos durante o processo de formação e dispersão das sementes de pau-brasil. Foram analisadas, pelo método do papel de filtro, sementes coletadas em diferentes momentos da sua formação (após antese e após deiscência). Os principais fungos detectados foram Cladosporium cladosporioides, Pestalotiopsis maculans, Fusarium sp. e Epicoccum sp. Outros fungos encontrados em menor incidência foram Aspergillus spp., Nigrospora sp. e Penicillium sp. C. cladosporioides e Pestalotiopsismaculans estavam presentes nas sementes desde o início, na coleta aos 40 dias pós-antese, tendo a incidência aumentada ao longo do tempo, atingindo 100% nas sementes com um e dois dias de deiscência. Fusarium sp. foi detectado nas sementes coletadas após a deiscência, tendo sua incidência aumentada à medida que as sementes permaneceram no solo.

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Maculalactones A, B and C from the marine cyanobacterium Kyrtuthrix maculans are amongst the only compounds based on the tribenzylbutyrolactone skeleton known in nature and (+) maculalactone A from the natural source possesses significant biological activity against various marine herbivores and marine settlers. We now report a concise synthesis of racemic maculalactone A in five steps from inexpensive starting materials. Maculalactones B and C were synthesized by a minor modification to this procedure, and the synthetic design also permitted an asymmetric synthesis of maculalactone A to be achieved in around 85% ee. The (+) and (-) enantiomers of maculalactone A were assigned, respectively, to the S and R configurations on the basis of the chiral selectivity expected for catecholborane reduction of an unsymmetrical ketone in the presence of Corey's oxazoborolidine catalyst. Surprisingly, it appeared that natural (+) maculalactone A was biosynthesized in K. maculans in a partially racemic form, comprising ca. 90-95% of the (S) enantiomer and 5-10% of its (R) enantiomer. Coincidentally therefore, the percentage enantiomeric excess of the product obtained from asymmetric synthesis almost exactly matched that found in nature. (C) 2004 Elsevier Ltd. All rights reserved.

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The objective was to analyse population structure and to determine genetic diversity of Erysiphe necator (syn. Uncinula necator) populations obtained from some vineyards located in the South-East Po valley (Italy). Powdery mildew is one of the most important fungal diseases of grapes (Vitis vinifera L.) throughout the world. The causal agent is the haploid, heterothallic ascomycete E. necator. It is an obligate biotrophic fungus and it can be found only on green organs of plants belonging to the family Vitaceae. For this pathogen, two sympatric populations (groups A and B) have been described in Europe and Australia. The two genetic groups differ at multiple genetic loci and previous studies reported a lack of interfertility among isolates of the two groups. There are now several well documented examples of plant pathogen species, such as Leptosphaeria maculans, Gaeumannomyces graminis var. tritici, Botrytis cinerea and Erysiphe syringae, which are indeed composed of genetically differentiated clades, that have led to the description of new groups or even new species. Several studies have suggested that genetic E. necator group A and B correlated with ecological features of the pathogen; some researchers proposed that group A isolates over-winter as resting mycelium within dormant buds, and in spring originate infected shoots, known as Flag shoots, while group B isolates would survive as ascospores in overwintering cleistothecia. However, the association between genetic groups and mode of over-wintering has been challenged by recent studies reporting that flag-shoot may be originated indifferently by group A or group B isolate. Previous studies observed a strong association between the levels of disease severity at the end of the growing season and the initial compositions of E. necator populations in commercial vineyards. The frequencies of E. necator genetic groups vary considerably among vineyards, and the two groups may coexist in the same vineyard. This finding suggests that we need more information on the genetics and epidemiology of E. necator for optimize the crop management In this study we monitored E. necator populations in different vineyards in Emilia – Romagna region (Italy), where the pathogen overwinters both as flagshoots and as cleistothecia. During the grape growing season, symptomatic leaves were sampled early in the growing season and both leaves and berries later during the epidemic growth of the disease. From each sample, single-conidial isolate was obtained. Each isolates was grown on V. vinifera leaf cv. Primitivo and after harvesting the mycelium, the DNA was purified and used as template for PCR amplification with SCAR primers (Sequences Characterised Amplified Region ), -tubulin, IGS sequences and Microsatellite markers (SSR). Amplified DNA from b-tubulin and IGS loci was digested with AciI and XhoI restriction enzymes, respectively, to show single-nucleotide polymorphisms specific for the two genetic groups. The results obtained indicated that SCAR primers are not useful to study the epidemiology. of E. necator conversely the b-tubulin IGS sequences and SSR. Summarize the results obtained with b-tubulin, IGS sequences, in treated vineyards we have found individuals of group B along all grape growing season, whereas in the untreated vineyard individuals of the two genetic groups A and B coexisted throughout the season, with no significant change of their frequency. DNA amplified from ascospores of single cleistothecia showed the presence of markers diagnostic for either groups A and B and were seldom observed also the coexistence of both groups within a claistothecium. These results indicate that individuals of the two groups mated in nature and were able to produced ascospores. With SSR we showed the possibility of recombination between A and B groups in field isolates. During winter, cleistothecia were collected repeatedly in the same vineyards sampling leaves fallen on ground, exfoliating bark from trunks, and from soil. From each substrate, was assess the percentage of cleistothecia containing viable ascospores. Our results confirmed that cleisthotecia contained viable ascospores, therefore they have the potential to be an additional and important source of primary inoculum in Emilia-Romagna vineyards.

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On the area in relation with the very wave battered made, the associations to be noted are: 1) association with Bangia sp., which is seasonal and located at the level of Brachytrichia maculans. 2) Association with Chthamalus stellatus, which is very well developed over under the oysters’ level. 3) Association with Dermonema frappieri, which form a narrow band over the Chnoospora minima band. At the same level are located the associations with Ectocarpus braeviarticulatus, with Centroceras clavulatum, with Gymnogongrus Sereneii and with Chaetomorpha antennina. The infralittoral level does not present any conspicuous different.