996 resultados para COWPEA MOSAIC-VIRUS


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Este trabalho teve por objetivo avaliar, em condições de casa de vegetação e de campo, os danos causados pelo PRSV-W e ZYMV em abobrinha-de-moita (Cucurbita pepo cv. Caserta). As plantas em casa de vegetação foram inoculadas com os vírus individualmente e em mistura aos 12 e 22 dias após emergência (DAE) e aos 5, 15 e 25 DAE no campo. Em casa de vegetação, as infecções com PRSV-W + ZYMV, PRSV-W e ZYMV, na primeira época de inoculação, ocasionaram reduções de área foliar de 39,6%, 36,8% e 12,1%, respectivamente. As massas fresca e seca também foram significativamente afetadas na primeira época de inoculação. No campo, as plantas com infecções individuais ou mistas dos potyvírus produziram frutos não comerciais em quantidades que variaram de 14 a 861 g/planta, dependendo da idade que foram inoculadas. As plantas tratadas com tampão fosfato aos 5, 15 e 25 DAE produziram em média 573 g, 937 g e 1172 g de frutos comerciais e 282 g, 221 g e 192 g de frutos não comerciais, respectivamente. A redução na massa fresca das plantas foi diretamente relacionada com a época de inoculação, com médias de 60,7% para aquelas inoculadas aos 5 DAE e de 22,7% para aquelas inoculadas aos 15 DAE. Na terceira época de inoculação não houve diferença significativa de massa fresca entre os tratamentos.

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Os dois principais vírus que infectam o milho no Brasil são o Sugarcane mosaic virus (SCMV) e o Maize rayado fino virus (MRFV), cujos principais vetores são o afídeo Rhopalosiphum maidis e a cigarrinha Dalbulus maidis, respectivamente. O MRFV é freqüentemente encontrado em infecções mistas com fitoplasmas e espiroplasmas, causando as doenças denominadas enfezamentos do milho. Em uma lavoura de milho próxima a Santo Antonio da Posse, SP, cercada por campos de cana-de-açúcar, foi encontrada alta incidência de plantas apresentando mosaico, riscas, nanismo e espigas com falhas no enchimento de grãos. Análises serológicas com anti-soros específicos detectaram a presença do SCMV e MRFV nessas plantas. A infecção pelo SCMV também foi confirmada por RT-PCR com primers específicos e análise de seqüências. Em observações de preparações contrastadas negativamente em TEM, partículas flexuosas (ca.770 nm) e isométricas (ca.30 nm) foram detectadas. Em cortes ultrafinos, inclusões citoplasmáticas, típicas de Potyviridae, foram observadas; não foi encontrada a presença de espiroplasmas nem de fitoplasmas. Esses resultados mostram que a infecção conjunta por SCMV e MRFV pode ser responsável pelos danos encontrados nessa lavoura.

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The culture and commercialization of ornamental plants have considerably increased in the last years. To supply the commercial demand, several Hemerocallis and Impatiens varieties have been bred for appreciated qualities such as flowers with a diversity of shapes and colors. With the aim of characterizing the tobamovirus isolated from Hemerocallis sp. (tobamo-H) and Impatiens hawkeri (tobamo-I) from the USA and São Paulo, respectively, as well as to establish phylogenetic relationships between them and other Tobamovirus species, the viruses were submitted to RNA extraction, RT-PCR amplification, coat-protein gene sequencing and phylogenetic analyses. Comparison of tobamovirus homologous sequences yielded values superior to 98.5% of identity with Tomato mosaic virus (ToMV) isolates at the nucleotide level. In relation to tobamo-H, 100% of identity with ToMV from tomatoes from Australia and Peru was found. Based on maximum likelihood (ML) analysis it was suggested that tobamo-H and tobamo-I share a common ancestor with ToMV, Tobacco mosaic virus, Odontoglossum ringspot virus and Pepper mild mottle virus. The tree topology reconstructed under ML methodology shows a monophyletic group, supported by 100% of bootstrap, consisting of various ToMV isolates from different hosts, including some ornamentals, from different geographical locations. The results indicate that Hemerocallis sp. and I. hawkeri are infected by ToMV. This is the first report of the occurrence of this virus in ornamental species in Brazil.

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LMV is one of the most important pathogens of lettuce worldwide. Based on their ability to overcome the resistance genes mo1¹ and mo1² in lettuce, isolates can be divided in two types: LMV-Most, which can infect and are seed-borne in cultivars containing the mo1 gene and LMV-Common, which do not cause symptoms on these cultivars and are seed transmitted only in susceptible cultivars. To evaluate the occurrence of these two types of LMV isolates, a survey was carried out during 2002-2005 in three lettuce production areas from São Paulo State. Total RNA was used for the diagnosis of LMV isolates by RT-PCR using universal primers for the variable N-terminus of the capsid protein, in the 3' end of the genome. Positives samples were analyzed by a second RT-PCR using specifics primers for LMV-Most isolates designed to amplify a fragment from the central region (CI-VPg) of the genome. A total of 1362 samples showing mosaic symptoms were collected and 504 (37.29 %) were positives for LMV. On susceptible lettuce cultivars, LMV-Common was prevalent (77.3%). LMV-Most was found frequently associated with tolerant (mo1¹) lettuce cultivars. Susceptible cultivars correspond today for most of the area of lettuce production. So, despite the ability of LMV-Most isolates to overcome the resistance provided by the recessive mo1¹ gene, they are not prevalent in the conditions of São Paulo State.

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The main objective of this work was to investigate the ability of Aphis gossypii and Myzus persicae to transmit Cucumber mosaic virus (CMV) singly and mixed with two potyviruses (Papaya ringspot virus - type W, PRSV-W and Zucchini yellow mosaic virus, ZYMV), to zucchini squash plants (Cucurbita pepo). The results showed that the potyviruses in general were more efficiently transmitted by both species of aphids as compared to CMV. The transmission of PRSV-W, ZYMV and CMV separately was more efficient than in mixture.

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Em 2004, plantas de alface com sintomas de mosaico coletadas em São Manuel - SP foram analisadas por microscopia eletrônica, constatando-se presença de partículas típicas de potyvirus com 730 nm de comprimento. Após purificação biológica por monolesionais em Chenopodium quinoa, o extrato vegetal foi inoculado em uma série de plantas diferenciadoras, verificando-se que o isolado testado foi capaz de infectar C. quinoa e C. amaranticolor induzindo lesões locais seguidas de mosaico sistêmico. Ervilha (Pisum sativum) mostrou-se assintomática, e em diferentes cultivares de alface como Trocadero, White Boston, Regina, Verônica, Lucy Brown, Rafaela, Tainá, Vera e Laurel foi observado o mosaico. A cultivar Gizele foi tolerante ao vírus. O sequenciamento da região codificadora da proteína capsidial revelou maior identidade de aminoácidos (97%) deste isolado com o Bidens mosaic virus - BiMV (nº de acesso AY960151). Diferentemente dos isolados de BiMV já descritos, este proveniente de alface não foi capaz de infectar Bidens pilosa, Helianthus annuus, Nicotiana tabacum TNN e N. glutinosa. A ocorrência natural do BiMV em alface, causando sintomas semelhantes aos do LMV e a suscetibilidade de várias das cultivares hoje plantadas, servem como um alerta para a correta diagnose do vírus a campo.

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O Bidens mosaic virus (BiMV) é uma espécie tentativa do gênero Potyvirus, que infecta alface (Lactuca sativa). Na ausência de métodos eficientes para diagnose deste vírus, o objetivo do trabalho foi a síntese de oligonucleotídeos específicos e sua otimização em testes de RT-PCR em uma só etapa, partindo-se de extrações de RNA total. Os oligonucleotídeos 8851sens (5'AGG CAG TTC GCA CGG CAT AC 3´) e 9211ant (5´ CTT CAT CTG GAT GTG TGC TTC 3´) permitem a eficiente detecção do vírus e possibilitaram a descoberta de uma nova hospedeira do vírus, a planta Galinsoga parviflora, comumente encontrada em canteiros de produção comercial de alface.

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Weeds can act as important reservoirs for viruses. Solanum americanum (Black nightshade) is a common weed in Brazil and samples showing mosaic were collected from sweet pepper crops to verify the presence of viruses. One sample showed mixed infection between Cucumber mosaic virus (CMV) and Potato virus Y (PVY) and one sample showed simple infection by PVY. Both virus species were transmitted by plant extract and caused mosaic in tomato (Solanum lycopersicum cv. Santa Clara), sweet pepper (Capsicum annuum cv. Magda), Nicotiana benthamiana and N. tabaccum TNN, and local lesions on Chenopodium quinoa, C. murale and C. amaranticolor. The coat protein sequences for CMV and PVY found in S. americanum are phylogenetically more related to isolates from tomato. We conclude that S. americanum can act as a reservoir for different viruses during and between sweet pepper crop seasons.

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O Lettuce mosaic virus espécie mais importante na cultura de alface (Lactuca sativa L.) no Brasil, causando sintomas de mosaico, clareamento das nervuras, necrose, distorção foliar e redução do crescimento da planta, pode ser transmitido por sementes com uma taxa de 1% a 16%, dependendo da interação dos genótipos de alface com os isolados LMV-Most ou LMV-Common. Neste trabalho, avaliou-se a detecção do LMV por PTA-ELISA, em sementes e plântulas de oito genótipos de alface: 'Vanessa Roxa', 'Baba de Verão', 'Verdinha', 'Maravilha das 4 Estações', 'Evely', 'Marcela', 687 ('Sapore' x 'Vera' ), 784 ('Sapore' x 'Vera'), utilizando anti-soro policlonal específico. O vírus não foi detectado em sementes do genótipo 'Verdinha' e, em plântulas dos genótipos 687, 'Marcela' e 'Evely', após a germinação em papel e 687, 784 e 'Marcela' com gene mo1¹, após a germinação em substrato. A avaliação individual do número de sementes infectadas foi de 100% para 'Vanessa Roxa' e 'Baba de Verão', 87,7% para 'Verdinha', 46,6% para 'Maravilha das 4 Estações' e 16,6% para 'Evely'. Nos genótipos com gene de resistência o percentual foi de 15,6%, 26,6%, 90% em 'Marcela', 687 e 784, respectivamente. A detecção do LMV por PTA-ELISA foi eficiente tanto em sementes quanto em plântulas.

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STOBBS, Lorne,W ABSTRACT Biochemical and Histological Investigations of viral localisation in the hypersensitive reaction of Phaseolus vulgaris L. var Pinto to tobacco mosaic virus infection. The infection of Phaseolus vulgaris L. var Pinto with tobacco mosaic virus (TMV) results in the production of distinct necrotic lesions confining the virus to restricted areas of the leaf surface. Biochemical and histological changes in the leaf tissue as a result of infection have been described. Trace accumulations of fluorescent metabolites, detected prior to lesion expression represent metabolites produced, by the cell in response to virus infection. These substances, are considered to undergo oxidation and in diffusing into adjacent cells, react with cellular constituents causing the death of these cells. Such cellular necrosis in advance of infection effectively limits virus spread. Chromatographic studies on extracts from TMV infected Pinto bean leaf tissue suggests that a number of extra-fluorescent metabolites produced on lesion'expression represent end products of phenolic oxidation r,eactionsoccurring earlier in these cells. Inhibition of phenolic oxidation by ascorbate infiltration or elevated temperature treatment resulted in the absence of extra-fluorescent metabolites and the continued movement of virus in the absence of necrosis. Further studies with i ascorbate infiltration indicated that irreversible necrotic events were determined as early as 12 tci 18 hrs after viral inoculation. Histochemical tests indicated that callose formation was initiated at this time, and occurred in response to necrotisation. Inhibition of necrosis by either ascorbate infiltration or elevated temp8rature treatment resulted in the absence of callose deposition. Scanning electron'micrographs of infected tissue revealed severe epidermal and palisade cell damage. Histochemical tests indicated extensive callose formation in cells bordering the lesion, and suggested the role of callose iTh the blockage of intercellular connections limiting virus movement. The significance of these cellular changes is discussed. ii

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Screenhouse experiments conducted in Kenya showed that inoculation of cabbage seedlings with Turnip mosaic virus (TuMV), either alone, or in combination with Cauliflower mosaic virus (CaMV), reduced the number and weight of marketable harvested heads. When viruses were inoculated simultaneously, 25% of cabbage heads were non-marketable, representing 20-fold loss compared with control. By contrast, inoculation with CaMV alone had insignificant effects on cabbage yield. This suggests that TuMV is the more detrimental of these pathogens, and its management should be a priority. Early exposure to TuMV produced cabbages that were 50% lighter than non-infected plants, but later infection was less damaging suggesting that controlling virus infection at the seedling stage is more important. TuMV was far less damaging to kale than it was to cabbage; although high proportions of TuMV-inoculated kale plants showed symptoms (> 90%), the marketability and quality of leaves were not significantly reduced, and no clear relationship existed between timing of infection and subsequent crop losses. Early inoculation of Swiss chard with Beet mosaic virus (BtMV) significantly impaired leaf quality (similar to 50% reduction in marketable leaf production), but the impact of disease was greatest in plants that had been inoculated at maturity, where average leaf losses were two and a half times those recorded in virus-free plants. Disease-management of BtMV in Swiss chard is important, therefore, not only at the seedling stage, but particularly when plants are transplanted from nursery to field.

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LMV-Common and LMV-Most are two seed-borne types of Lettuce mosaic virus (LMV), genus Potyvirus. LMV-Most, but not LMV-Common, overcomes the resistance afforded to lettuce by two recessive genes, mo1(1) and mo1(2). An RT-PCR-based assay thought to be specific for LMV-Most also amplified LMV-Tn2, previously typified as LMV-Common. The sequence of selected regions along the genome indicated that LMV-Tn2 is a natural recombinant between LMV-Most and LMV-Common isolates, with a putative recombination site located within the P3 coding region. This is the first evidence of a naturally occurring LMV recombinant isolate.

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Lettuce mosaic virus (LMV)-Most isolates can infect and are seed-borne in cultivars containing the mol gene. A reverse transcription and polymerase chain reaction (RT-PCR)-based test was developed for the specific detection of LMV-Most isolates. Based on the complete genome sequences of three LMV isolates belonging respectively to the Most type, the Common type and neither of these two types, three different assays were compared: (i) presence of a diagnostic restriction site in the region of the genome encoding the variable N-terminus of the capsid protein, in the 3' end of the genome, (ii) RT-PCR using primers designed to amplify a cDNA corresponding to a portion of the P1 coding region, in the 5' end of the genome and (iii) RT-PCR using primers designed to amplify a central region of the genome. The assays were performed against a collection of 21 isolates from different geographical origins and representing the molecular variability of LMV. RT-PCR of the central region of the genome was preferred because its results are expected to be less affected by natural recombination between LMV isolates, and it allows sensitive detection of LMV-Most in situations of single as well as mixed contamination. (C) 2004 Elsevier B.V. All rights reserved.

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A panel of 19 monoclonal antibodies (mAbs) was used to study the immunological variability of Lettuce mosaic virus (LMV), a member of the genus Potyvirus, and to perform a first epitope characterization of this virus. Based on their specificity of recognition against a panel of 15 LMV isolates, the mAbs could be clustered in seven reactivity groups. Surface plasmon resonance analysis indicated the presence, on the LMV particles, of at least five independent recognition/ binding regions, correlating with the seven mAbs reactivity groups. The results demonstrate that LMV shows significant serological variability and shed light on the LMV epitope structure. The various mAbs should prove a new and efficient tool for LIVIV diagnostic and field epidemiology studies.

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The isolate AF199 of Lettuce mosaic virus (LMV, genus Potyvirus) causes local lesions followed by systemic wilting and plant death in the lettuce cultivars Ithaca and Vanguard 75. Analysis of the phenotype of virus chimeras revealed that a region within the PI protein coding region (nucleotides 112-386 in the viral genome) and/or another one within the CI protein coding region (nucleoticles 5496-5855) are sufficient together to cause the lethal wilting in Ithaca, but not in Vanguard 75. This indicates that the determinants of this particular symptom are different in these two lettuce cultivars. The wilting phenotype was not directly correlated with differences in the deduced amino acid sequence of these two regions. Furthermore, transient expression of the LMV-AF 199 proteins, separately or in combination, did not induce local necrosis or any other visible reaction in the plants. Together, these results Suggest that the systemic wilting reaction might be Clue to RNA rather than protein sequences. (c) 2004 Elsevier B.V. All rights reserved.