642 resultados para Tomate cereja
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A hidroponia é uma técnica poderosa na utilização eficiente dos recursos agrícolas, pois permite um ganho quer na produtividade, quer na qualidade do fruto. Atualmente os sistemas hidropónicos utilizados em plantas de médio porte não são os mais adequados, sendo esta uma área a explorar. Neste trabalho criou-se um novo sistema hidropónico (Deep Large Flow Technique- DLFT) para aplicação a plantas de médio porte e avaliou-se o seu impacto no crescimento, produtividade, biomassa e qualidade do tomate cereja (Solanum lycopersicum var. Moscatel RZ). O sistema de cultivo tradicional (solo) e semi-hidropónico (suporte com fibra de coco) serviram como base de comparação. Observou-se que após 31 dias as plantas cultivadas no novo sistema hidropónico obtiveram um crescimento acentuado, apresentando 3x mais frutos. Em termos de produtividade, os sistemas hidropónicos foram iguais, sendo o sistema tradicional 4x inferior. O total de biomassa foi significativamente maior no novo sistema hidropónico, com mais 20% e 88% que o sistema semi-hidropónico e tradicional, respetivamente. As plantas produzidas no sistema DLFT apresentaram frutos com qualidade superior, com um rácio de monossacarídeos/acidez de 6,6 mg/g. O conteúdo total de ácidos gordos nos frutos cultivados com este sistema foi 39% e 44% superior aos do semihidropónico e do tradicional. Contrariamente, o conteúdo de flavonóides foi inferior nos frutos cultivados com o novo sistema hidropónico, tendo os frutos do sistema tradicional e do sistema semi-hidropónico 40% e 10% maior teor desta família de compostos. Os resultados obtidos neste estudo demonstram que a utilização do novo sistema hidropónico na produção de plantas de médio porte, aumenta o crescimento, a acumulação de biomassa e a qualidade do fruto. Assim, permite ao produtor reduzir os custos, rentabilizar a produção (menor tempo de produção), valorizar a biomassa da planta e aumentar a qualidade do produto. Também, através dos teores de carotenóides, ácidos gordos e polifenóis poderá inferir-se que ocorreu um menor impato dos stressses abióticos subjacentes aos sistemas nas plantas produzidas pelo sistema DLFT.
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O objetivo deste trabalho foi avaliar as alterações nas propriedades físicas de substratos em função de sua reutilização para o cultivo do tomateiro do grupo cereja, cultivar Sindy. O delineamento experimental adotado foi em parcelas subdivididas com os sete substratos (nas parcelas) e três épocas de caracterização física dos substratos (nas subparcelas). As parcelas foram agrupadas em blocos casualizados, com quatro repetições. Os sete substratos resultaram da combinação de diferentes proporções volumétricas de três componentes: areia, bagaço de cana-de-açúcar e casca de amendoim. As propriedades físicas dos substratos avaliadas foram submetidas à análise de variância, sendo as médias comparadas pelo teste de Tukey a 5% de probabilidade. A reutilização do substrato composto por partes iguais dos três componentes promoveu aumento da densidade seca e do volume de água facilmente disponível, e redução da porosidade total, do espaço de aeração e do volume de água remanescente.
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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2016
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O experimento foi realizado em Jaboticabal-SP, sob ambiente protegido, objetivando avaliar quatro substratos (Rendimax-Estufa®, areia, solo coberto com filme de polietileno preto e solo descoberto) e quatro híbridos de tomateiro tipo cereja ('Mascot', 'Gisela', 'Cheri' e 'Sweet Million'), sendo os substratos comercial e areia acondicionados em sacos plásticos. O delineamento experimental foi em blocos casualizados, em esquema fatorial 4 x 4, com quatro repetições. Utilizou-se irrigação por gotejamento, sendo a dotação hídrica realizada em função dos dados obtidos em um tanque Classe A. A solução nutritiva utilizada foi a recomendada por Castellane & Araújo (1995) para a cultura do tomateiro. Os frutos foram colhidos semanalmente, durante o período de 24/11/2000 a 24/01/2001, sendo avaliados o número e produtividade diária de frutos. Os cultivos em solo proporcionaram maior produção diária que no substrato comercial e em areia, para os híbridos Gisele e 'Mascot'. O híbrido 'Gisela' mostrou-se mais produtivo nos cultivos em solo, enquanto o híbrido 'Cheri', embora tenha proporcionado menores produções em peso, produziu maior número de frutos por planta. A produtividade dos tratamentos mais produtivos foi satisfatória, estando de acordo com os padrões de produção para a cultura no Brasil.
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Isolados de Botrytis cinerea foram avaliados quanto a sensibilidade a benomyl, ipridione e propiconazol, através do método do fungicida incorporado ao meio de cultura de BDA. Os isolados de B. cinerea foram coletados em cultivos comerciais de cebola, berinjela, morango, crisântemo, batata, e roseira, em diversas localidades do estado de São Paulo. Em cultivos em estufa, foram obtidos isolados de roseira, ciclame, violeta, begonia, pimentão e cultivo hidropônico de tomate cereja. Os resultados demonstraram que esta ocorrendo uma reducao na sensibilidade aos fungicidas testados, especialmente ao benomyl e ipridione, em condições de estufa, quando analisados os valores de ED50 (dose de fungicida suficiente para inibir 50% do crescimento micelial) e MIC (concentracao mínima inibitória. De modo geral, esta ocorrendo uma redução na adaptabilidade das linhagens avaliadas através da taxa diária de crescimento micelial.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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A method to quantify lycopene and β-carotene in freeze dried tomato pulp by high performance liquid chromatography (HLPC) was validated according to the criteria of selectivity, sensitivity, precision and accuracy, and uncertainty estimation of measurement was determined with data obtained in the validation. The validated method presented is selective in terms of analysis, and it had a good precision and accuracy. Detection limit for lycopene and β-carotene was 4.2 and 0.23 mg 100 g-1, respectively. The estimation of expanded uncertainty (K = 2) for lycopene was 104 ± 21 mg 100 g-1 and for β-carotene was 6.4 ± 1.5 mg 100 g-1.
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Tomato postharvest losses are very high in Brazil and the goal of this research was to evaluate the effect of handling and the transport of tomato fruits, cultivar Romana on the steps of harvesting, weight and transportation to the packinghouse, pointing some critical points. Tomatoes were harvested at plastic boxes, weighted and shipped to a packinghouse. Fruits taken directly from the plant were determined as reference. The parameters evaluated were weight loss and mechanical injury and tomato physical quality after storage during 21 days. It was observed an increasing on the weight loss, external damage, and postharvest losses, after storage. Handling and transportation were the cause of an increase in 6.6% in external damage and 1.93% of weight loss after storage, when comparing harvested fruits and fruits evaluated on the packing-house. The main reason for postharvest losses was due to mechanical injury caused during transportation mainly due to the compressure force among fruits and against the plastic boxes.
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The cleanness level in fresh market tomatoes cleaning equipment is essential for consumer acceptance and conservation of product quality. However, the washing process in cleaning current equipments demands an excessive volume of water, leading to serious economic and environmental concerns. The objective of this work was to contribute with technical information for the washing system optimization. The conventional washing system currently used in cleaning equipment, which consists of perforated PVC pipes, was compared with a proposed system which uses commercial sprays. Characteristic curves (flow rate versus pressure) for both systems were determined in lab conditions and the respective water consumptions were compared. The results confirmed the excess of water consumption in the conventional washing systems, and the proposed system proved that is possible to reduce it, and the use of sprays allowed the rational use of the water.
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Quality evaluation of classification was done in two fresh market tomatoes packing house, using electronically and mechanical equipments in two harvest periods, summer and winter seasons. The main goal of this work was to evaluate size and color grading conformity with the standards proposed by the Brazilian Program for Horticulture Modernization and size grading obtainded with the one established by the packer. The cultivar studied was Carmen. The results showed that there was no grade conformity with the fresh tomato quality standards proposed by the Brazilian Program for Horticulture Modernization. The grade conformity obtained when compared with the one programmed by the packer, was only for large sizes, in both equipments. The electronically equipment has presented better performance, over the mechanical, considering grading quality and fruits post-harvest quality. However, the electronically equipment must be constantly monitored to achieve efficiency and investment return. On the other side, for mechanical equipment it will be necessary to review the actual system of size grading, in order to follow the fresh tomato quality standards.
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The post-harvesting cleaning process in fresh market tomatoes production is essential to the consumer acceptance, since the degree of dirtiness of the fruits is directly related to its quality. However, the washing stage of the cleaning process of commercial packinghouse demands an excessive water volume, bringing serious environmental concerns. The objective of this work was to compare the cleaning efficiency in two cleaning systems through the evaluation of different operational conditions of the cleaning process, related with the brush rotation, water flow and fruit standing time under the system. It was compared the conventional system utilized in commercial equipment with a system using commercial sprays. The results showed that the cleaning efficiency was not directly related to the water volume used, but to the water pressure, standing time and brushes rotation. Therefore, the use of commercial sprays can bring benefits to the cleaning efficiency, increasing it up to 13%, and to the environmental, decreasing water consumption.
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Tomatoes are one of the most important vegetable crops grown in Brazil and are among the crops that have one of the highest post-harvest losses indexes in the country. The present work aimed at evaluating impact damage observed in packing lines of fresh tomatoes as well as to determine, under laboratory conditions, quality alterations of tomato fruits submitted to impact damage in different surface types. Critical points evaluation was accomplished using an instrumented sphere. Critical transference points found showed variations in acceleration levels from 30 to 129 G (m s-2). Tests carried out under laboratory conditions showed that padded surfaces reduced up to 31% impact damage. Incidence of severe internal physical damage was evaluated by a subjective scale and increased by 79% on hard surfaces for the highest fall drop. On the other hand, it was observed an effective reduction in physical damage on fruits when padded surfaces were used. When a 10-cm drop was performed, the maximum reduction measured was 10% for hard surfaces and 5% for previously padded surfaces. For quality parameters, it was observed for high drops on hard surfaces, highest values for weight loss, total acidity, lower values for vitamin C and Soluble Solids.
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This work aimed at determining the occurrence of heat resistant molds during the aseptic processing of tomato pulp (8° BRIX). During tomato harvest, 9 lots were sampled (3 at the beginning, 3 at the apex and 3 at the end of harvest) and other 5 lots were sampled between harvest. For each lot, the enumeration of heat resistant molds was carried out in samples collected during the aseptic process. The mean count of heat resistant molds was relatively low, ranging from <1 to 8CFU/100mL of sample. The higher counts were observed in the raw material and the pre-wash and transportation water. Fifty strains of heat resistant molds detected in the enumeration procedure were isolated, codified and stocked. One-month-old spores of each isolate were submitted to different heat shocks to select the most heat resistant mold. The most heat resistant isolated strain (survived 100° C/25 minutes) was identified as Neosartorya fischeri.