997 resultados para producción de banana


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Resumen Analiza la historia de los programas institucionales de fotomejoramiento del banano de exportación y explora las conexiones históricas entre la producción de banano de exportación, la biodiversidad y el consumo de masas. Abstract This article analyzes the history of institutional banana breeding programs and explores the historical connections between export banana production, biodiversity, and mass markets

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El consumo de banano como fruta fresca, supera a todas las demás frutas,solo superado por el consumo de cítricos industriales. El grupo Cavendish es el de mayor produccion en el mundo, com um 47 %, principalmente de los clones Gran Enano(Nanica) y Valery(Nanicao). El Gros Michel representa en el mundo 12 % de la producción, los plátanos de consumo cocido, grupo AAB un 17 %, mientras que los plátanos de tierras altas, conocidos como dulces, cultivados em las regiones tropicales como en el sur de Brasil, norte de Argentina , Islas Canárias y tierras altas de Filipinas han mostrado una gran aceptación. Es el grupo de Prata`. Las importaciones de banano em 2009 fueran de 14,5 miliones de ton, por Europa, EUA-Canada, Japon y otros países. Los principales países exportadores Equador, Filipinas, Costa Rica y otros.La banana orgânica tiene los mejores precios.

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Colombia ha sido tradicionalmente un país exportador de banano, incluso éste producto es uno de los que conforman la canasta de los tradicionales. Ahora bien, con el Tratado de Libre Comercio con la Unión Europea es factible que su posición mejore en este mercado de más de 500 millones de habitantes, sin embargo, y bajo el supuesto que a futuro Ecuador ( el primer productor mundial) y Costa Rica suscriban TLC´S con la Unión Europea . El país ha emprendido una etapa de transformación que tiene como fin convertirla en una economía atractiva, es por esto que el gobierno ha decidido firmar acuerdos que permitan abrir nuevas oportunidades gracias al acceso preferencial a mercados como el de la Unión Europea otorgando así un beneficio para el sector agropecuario y por consiguiente para los productores bananeros. El Tratado de Libre comercio es una herramienta que permite desarrollar la economía del país que acompañado de la globalización que se vive actualmente a nivel mundial permite llevar a cabo procesos de integración entre países con el fin de impulsar el comercio internacional porque este es el motor del crecimiento para alcanzar una economía sostenible.

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El aumento mundial en la demanda de alimentos, especialmente proteína, plantea la necesidad de aplicar estrategias más eficientes y sostenibles de alimentación animal. La capacidad de los rumiantes de utilizar eficientemente la fibra hace posible aprovechar subproductos y residuos agrícolas provenientes de cultivos tropicales como la palma aceitera, banano y mango, los cuales también aportan energía y proteína. Al respecto, Cuenca et al. (2015) mencionan que la harina de almendra de palma posee un valor aproximado de 14.8% de proteína cruda y 8.9% de grasa. Por su parte, Silva et al. (2014) reportan que el uso de harina integral de mango reduce las emisiones de gas y aumenta el contenido de grasa en la leche de cabras Saanen, aunque concentraciones crecientes disminuyen linealmente el volumen de producción. En cuanto a la digestibilidad de estos productos, DiLorenzo et al. (datos no publicados) mencionan que la cascara y fruto maduro del banano presentan una alta digestibilidad in vitro de la materia orgánica (90.45%), superior a la de otros productos del banano, kikuyo y palmiste. Un alimento menos tradicional, el ensilado de pez diablo (EPD) fue incluido en diferentes niveles por Tejeda-Arroyo et al. (2015), en dietas de corderos en crecimiento, obteniendo ganancias de peso de 211.5 g/día (18% EPD) y conversión alimenticia de 6.6 y 6.4 kilogramo de alimento por kilogramo de ganancia de peso (27% EPD y 9% EPD). Se requiere avanzar en la investigación del potencial nutritivo de estos y otros alimentos no tradicionales, así como de las técnicas adecuadas para su mejor utilización, almacenamiento y transporte. El uso de estos subproductos podría reducir los costos de producción y contribuir a disminuir el impacto ambiental de las actividades agrícolas y ganaderas.

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El Hidrógeno producido a partir de la biomasa procedente de los residuos de la planta de banano es considerado como un combustible altamente eficiente. Uno de los métodos más limpios para su obtención es la gasificación catalítica en agua en condiciones supercríticas, en donde se transforman los polisacáridos constitutivos de la biomasa (celulosa, hemicelulosa y lignina) en productos gaseosos de elevado valor. En el desarrollo de la reacción de gasificación es importante el diseño de un reactor de forma que este proporcione el hidrógeno de manera segura y respetuosa con el medio ambiente. De los elementos que determinan el diseño de un reactor, en este artículo se estudiaron la cinética intrínseca y el balance de materia. En la cinetica de la reacción se tomó como compuesto modelo de la biomasa a la glucosa, por ser el grupo estructural representante de la celulosa. Se develaron las diferentes reacciones intermedias que influyen en el rendimiento a hidrógeno. Posteriormente, se plante´o la ecuación de balance diferencial para la glucosa, modelo matemático que fue resuelto mediante Fortran 95 aplicando el algoritmo numérico de Thomas. Los resultados obtenidos revelaron que a fracciones másicas más bajas de glucosa los niveles de conversión son más elevados.

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Different storage conditions can induce changes in the colour and carotenoid profiles and levels in some fruits. The goal of this work was to evaluate the influence of low temperature storage on the colour and carotenoid synthesis in two banana cultivars: Prata and Nanicão. For this purpose, the carotenoids from the banana pulp were determined by HPLC-DAD-MS/MS, and the colour of the banana skin was determined by a colorimeter method. Ten carotenoids were identified, of which the major carotenoids were all-trans-lutein, all-trans-α-carotene and all-trans-β-carotene in both cultivars. The effect of the low temperatures was subjected to linear regression analysis. In cv. Prata, all-trans-α-carotene and all-trans-β-carotene were significantly affected by low temperature (p<0.01), with negative estimated values (β coefficients) indicating that during cold storage conditions, the concentrations of these carotenoids tended to decrease. In cv. Nanicão, no carotenoid was significantly affected by cold storage (p>0.05). The accumulation of carotenoids in this group may be because the metabolic pathways using these carotenoids were affected by storage at low temperatures. The colour of the fruits was not negatively affected by the low temperatures (p>0.05).

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This study had as objective the evaluation of mechanical damages occurred in banana Nanicão during the improvement process, packing and distribution, identifying the probable critical points. The mechanical damages caused by transport, first cleaning; cleanness and sorting; preservation in the packing, transport, and mature were evaluated. The studied packing had been: torito wooden packing (18 kg), wood type ½ box, (13 kg) and cardboard (18 kg). The stage of preservation and transport of the fruits to the distribution center duplicated the light defects and quintupled the serious defects, causing rottenness after the acclimatization. The cardboard packing did not support the piling up and presented deformations, that resulted in the kneading the fruits of the inferior packing, causing a significant increase of the serious defects. The fruits conditioned in the involved packing of plastic bubble had presented an inferior number of serious damages when compared with the others packing, without the plastic.

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This work reports an economic evaluation of the dried banana production from an agroindustry located in Guaraqueçaba - PR State, Brazil. The conventional and the organic banana processings were evaluated by comparing the economic viability pointers. The dried organic banana is exported to the Europe and the dried conventional banana is commercialized in the region of Curitiba - PR. Both processings presented positive economic viability, however the dried organic banana presented better indices (TIR 94%, VPL R$ 486,009.39 and benefit cost relation of 2.11) than the conventional dried banana (TIR 14%, VPL R$ 34,668.00 and benefit cost relation of 1.17). The dried organic banana presented a cost of production of R$ 3.64, being 50.1% relative to the expense with insumos and 27% with labour. The dried conventional banana presented a cost of R$ 3.21, being 45.3% for insumos and 31.2% for labour.

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The association of 0,03 % v/w pectinase (Clarex), 0,6 % v/w invertase (Invertase-S) and 0,5 % w/w glucose isomerase (Taka-sweet) in industrialized banana (Musa cavendishii) pulp, under conditions of hydrolysis 40oC, 15 minutes, was observed and compared to other three enzymatic treatements: 0,03 % v/w pectinase (Clarex); 0,03 % v/w pectinase (Clarex) associated to 0,6 % v/w invertase (Invertase-S); and 0,03 % v/w pectinase (Sigma) associated to 0,03 % cellulase (Sigma) to determine the quality using a group of physical, physico-chemical, chemical, microbiological and sensory properties of the banana juices obtained. These properties had not differ significantly in function of pectinases and celulase employed. The addition of invertase had increased sweetness and decreased viscosity in juice. On the other side, the addition of glucose isomerase in inverted juice was not able in increasing significantly fructose content.

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Introduction. This protocol aims at measuring fruit ethylene production during ripening. It can be used to compare ethylene production between different banana varieties or to compare ethylene production between fruit produced in different pedo-climatic conditions. The principle, key advantages, starting plant material, time required and expected results are presented. Materials and methods. This part describes the required laboratory materials and the three steps necessary for calculating the amount of ethylene produced during banana postharvest ripening. Possible troubleshooting is considered.

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Introduction. This protocol aims at preparing total RNA for gene expression analysis by Northern blots, RT-PCR and real-time quantitative PCR; cDNA isolation by RTPCR; and cDNA library construction. The principle, key advantages, starting plant material, time required for obtaining total RNA and expected results are presented. Materials and methods. This part describes the required materials and the 27 steps necessary for preparing RNA from peel and pulp fruit tissue: preparation of plant tissue powder, preparation of the complete RNA extraction buffer and isolation of RNA from ground banana fruit tissue. Results. Extraction of total RNA by the method described makes it possible to achieve electrophoresis under denatured conditions and in vitro reverse transcription. An example for Northern blot analysis is illustrated.

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Introduction. This protocol aims at ( a) evaluating the resistance to post-harvest diseases within different genotypes of bananas, and ( b) comparing different origins of bananas ( geographic origin, physiological stage, etc.) for their susceptibility to post-harvest diseases. The principle, key advantages, starting plant material, time required and expected results are presented. Materials and methods. Materials required and details of the twelve steps of the protocol ( fruit sampling and inoculum preparation, wound anthracnose resistance study, quiescent anthracnose resistance study and crown-rot resistance study) are described. Results. Typical symptoms of the different diseases are obtained after artificial inoculation.

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Introduction. We present some protocols aiming at partially characterizing banana fruit quality through measurement of some key biochemical parameters. The principle, key advantages, starting plant material, time required and expected results are presented. Materials and methods. This part describes the required laboratory materials and the steps necessary for achieving four protocols making it possible to measure sugar, organic acids and free ACC contents, and in vitro ACC oxidase activity. Results. Standard results obtained by using the protocols described are presented in the figures.

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Introduction. This protocol aims at measuring the storage life potential of banana fruit, and at determining the physiological age of fruit. The principle, key advantages, starting plant material, time required and expected results are presented. Materials and methods. This part describes the required laboratory materials and the five steps necessary for calculating the banana green life duration, which corresponds to the number of days between the fruit harvest and climacteric crisis. Results. The measurement of O-2 and CO2 concentrations allows one to detect the climacteric peak which marks the end of the banana green life.

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Introduction. This protocol aims at measuring the mechanical characteristics of bananas, especially peel and fruit hardness, and pulp firmness; it can also allow the mechanical characterisation of green or ripening fruit of different pedo-climatic origins and/or varieties. Materials and methods. This part describes the required laboratory materials and the three steps necessary for the measurement of the mechanical characteristics of bananas. Results. The data allow the drawing of a curve characterising the firmness of the fruit (slope), hardness of the peel (peak) and hardness of the pulp (plateau).