981 resultados para Musa spp.


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The Sultanate of Oman is located on the south-eastern coast of the Arabian Peninsula, which lies on the south-western tip of the Asian continent. The strategic geographical locations of the Sultanate with its many maritime ports distributed on the Indian Ocean have historically made it one of the Arabian Peninsula leaders in the international maritime trade sector. Intensive trading relationships over long time periods have contributed to the high plant diversity seen in Oman where agricultural production depends entirely on irrigation from groundwater sources. As a consequence of the expansion of the irrigated area, groundwater depletion has increased, leading to the intrusion of seawater into freshwater aquifers. This phenomenon has caused water and soil salinity problems in large parts of the Al-Batinah governorate of Oman and threatens cultivated crops, including banana (Musa spp.). According to the Ministry of Agriculture and Fisheries, the majority of South Al-Batinah farms are affected by salinity (ECe > 4 dS m-1). As no alternative farmland is available, the reclamation of salt-affected soils using simple cultural practices is of paramount importance, but in Oman little scientific research has been conducted to develop such methods of reclamation. This doctoral study was initiated to help filling this research gap, particularly for bananas. A literature review of the banana cultivation history revealed that the banana germplasm on the Arabian Peninsula is probably introduced from Indonesia and India via maritime routes across the Indian Ocean and the Red Sea. In a second part of this dissertation, two experiments are described. A laboratory trial conducted at the University of Kassel, in Witzenhausen, Germany from June to July 2010. This incubation experiment was done to explore how C and N mineralization of composted dairy manure and date palm straw differed in alkaline non-saline and saline soils. Each soil was amended with four organic fertilizers: 1) composted dairy manure, 2) manure + 10% date palm straw, 3) manure + 30% date palm straw or 4) date palm straw alone, in addition to un-amended soils as control. The results showed that the saline soil had a lower soil organic C content and microbial biomass C than the non-saline soil. This led to lower mineralization rates of manure and date palm straw in the saline soil. In the non-saline soil, the application of manure and straw resulted in significant increases of CO2 emissions, equivalent to 2.5 and 30% of the added C, respectively. In the non-amended control treatment of the saline soil, the sum of CO2-C reached only 55% of the soil organic C in comparison with the non-saline soil. In which 66% of the added manure and 75% of the added straw were emitted, assuming that no interactions occurred between soil organic C, manure C and straw C during microbial decomposition. The application of straw always led to a net N immobilization compared to the control. Salinity had no specific effect on N mineralization as indicated by the CO2-C to Nmin ratio of soil organic matter and manure. However, N immobilization was markedly stronger in the saline soil. Date palm straw strongly promoted saprotrophic fungi in contrast to manure and the combined application of manure and date palm straw had synergistic positive effects on soil microorganisms. In the last week of incubation, net-N mineralization was observed in nearly all treatments. The strongest increase in microbial biomass C was observed in the manure + straw treatment. In both soils, manure had no effect on the fungi-specific membrane component ergosterol. In contrast, the application of straw resulted in strong increases of the ergosterol content. A field experiment was conducted on two adjacent fields at the Agricultural Research Station, Rumais (23°41’15” N, 57°59’1” E) in the South of Al-Batinah Plain in Oman from October 2007 to July 2009. In this experiment, the effects of 24 soil and fertilizer treatments on the growth and productivity of Musa AAA cv. 'Malindi' were evaluated. The treatments consisted of two soil types (saline and amended non-saline), two fertilizer application methods (mixed and ring applied), six fertilizer amendments (1: fresh dairy manure, 2: composted dairy manure, 3: composted dairy manure and 10% date palm straw, 4: composted dairy manure and 30% date palm straw, 5: only NPK, and 6: NPK and micronutrients). Sandy loam soil was imported from another part of Oman to amended the soil in the planting holes and create non-saline conditions in the root-zone. The results indicate that replacing the saline soil in the root zone by non-saline soil improved plant growth and yield more than fertilizer amendments or application methods. Particularly those plants on amended soil where NPK was applied using the ring method and which received micronutrients grew significantly faster to harvest (339 days), had a higher average bunch weight (9.5 kg/bunch) and were consequently more productive (10.6 tonnes/hectare/cycle) compared to the other treatments.

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Pós-graduação em Agronomia (Proteção de Plantas) - FCA

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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One approach to reducing the yield losses caused by banana viral diseases is the use of genetic engineering and pathogen-derived resistance strategies to generate resistant cultivars. The development of transgenic virus resistance requires an efficient banana transformation method, particularly for commercially important 'Cavendish' type cultivars such as 'Grand Nain'. Prior to this study, only two examples of the stable transformation of banana had been reported, both of which demonstrated the principle of transformation but did not characterise transgenic plants in terms of the efficiency at which individual transgenic lines were generated, relative activities of promoters in stably transformed plants, and the stability of transgene expression. The aim of this study was to develop more efficient transformation methods for banana, assess the activity of some commonly used and also novel promoters in stably transformed plants, and transform banana with genes that could potentially confer resistance to banana bunchy top nanovirus (BBTV) and banana bract mosaic potyvirus (BBrMV). A regeneration system using immature male flowers as the explant was established. The frequency of somatic embryogenesis in male flower explants was influenced by the season in which the inflorescences were harvested. Further, the media requirements of various banana cultivars in respect to the 2,4-D concentration in the initiation media also differed. Following the optimisation of these and other parameters, embryogenic cell suspensions of several banana (Musa spp.) cultivars including 'Grand Nain' (AAA), 'Williams' (AAA), 'SH-3362' (AA), 'Goldfinger' (AAAB) and 'Bluggoe' (ABB) were successfully generated. Highly efficient transformation methods were developed for both 'Bluggoe' and 'Grand Nain'; this is the first report of microprojectile bombardment transformation of the commercially important 'Grand Nain' cultivar. Following bombardment of embryogenic suspension cells, regeneration was monitored from single transfom1ed cells to whole plants using a reporter gene encoding the green fluorescent protein (gfp). Selection with kanamycin enabled the regeneration of a greater number of plants than with geneticin, while still preventing the regeneration of non-transformed plants. Southern hybridisation confirmed the neomycin phosphotransferase gene (npt II) was stably integrated into the banana genome and that multiple transgenic lines were derived from single bombardments. The activity, stability and tissue specificity of the cauliflower mosaic virus 358 (CaMV 35S) and maize polyubiquitin-1 (Ubi-1) promoters were examined. In stably transformed banana, the Ubi-1 promoter provided approximately six-fold higher p-glucuronidase (GUS) activity than the CaMV 35S promoter, and both promoters remained active in glasshouse grown plants for the six months they were observed. The intergenic regions ofBBTV DNA-I to -6 were isolated and fused to either the uidA (GUS) or gfjJ reporter genes to assess their promoter activities. BBTV promoter activity was detected in banana embryogenic cells using the gfp reporter gene. Promoters derived from BBTV DNA-4 and -5 generated the highest levels of transient activity, which were greater than that generated by the maize Ubi-1 promoter. In transgenic banana plants, the activity of the BBTV DNA-6 promoter (BT6.1) was restricted to the phloem of leaves and roots, stomata and root meristems. The activity of the BT6.1 promoter was enhanced by the inclusion of intron-containing fragments derived from the maize Ubi-1, rice Act-1, and sugarcane rbcS 5' untranslated regions in GUS reporter gene constructs. In transient assays in banana, the rice Act-1 and maize Ubi-1 introns provided the most significant enhancement, increasing expression levels 300-fold and 100-fold, respectively. The sugarcane rbcS intron increased expression about 10-fold. In stably transformed banana plants, the maize Ubi-1 intron enhanced BT6.1 promoter activity to levels similar to that of the CaMV 35S promoter, but did not appear to alter the tissue specificity of the promoter. Both 'Grand Nain' and 'Bluggoe' were transformed with constructs that could potentially confer resistance to BBTV and BBrMV, including constructs containing BBTV DNA-1 major and internal genes, BBTV DNA-5 gene, and the BBrMV coat protein-coding region all under the control of the Ubi-1 promoter, while the BT6 promoter was used to drive the npt II selectable marker gene. At least 30 transgenic lines containing each construct were identified and replicates of each line are currently being generated by micropropagation in preparation for virus challenge.

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Fusarium wilt, caused by Fusarium oxysporum f. sp. cubense (Foc), is one of the most devastating diseases of banana (Musa spp.). Apart from resistant cultivars, there are no effective control measures for the disease. We investigated whether the transgenic expression of apoptosis-inhibition related genes in banana could be used to confer disease resistance. Embryogenic cell suspensions of the banana cultivar, ‘Lady Finger’, were stably transformed with animal genes that negatively regulate apoptosis, namely Bcl-xL, Ced-9 and Bcl-2 3’ UTR, and independently transformed plant lines were regenerated for testing. Following a 12 week exposure to Foc race 1 in small-plant glasshouse bioassays, seven transgenic lines (2 x Bcl-xL, 3 x Ced-9 and 2 x Bcl-2 3’ UTR) showed significantly less internal and external disease symptoms than the wild-type susceptible ‘Lady Finger’ banana plants used as positive controls. Of these, one Bcl-2 3’ UTR line showed resistance that was equivalent to that of wild-type Cavendish bananas that were included as resistant negative controls. Further, the resistance of this line continued for 23 weeks post-inoculation at which time the experiment was terminated. Using TUNEL assays, Foc race 1 was shown to induce apoptosis-like features in the roots of wild-type ‘Lady Finger’ plants consistent with a necrotrophic phase in the lifecycle of this pathogen. This was further supported by the observed reduction of these effects in the roots of the resistant Bcl-2 3’ UTR transgenic line. This is the first report on the generation of transgenic banana plants with resistance to Fusarium wilt.

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An offtype has been identified from micropropagated Lady Finger bananas (Musa spp., AAB group, Pome subgroup) that is characterised by its slow growth and poor bunch size. Bunch weights were approximately 25% those of normal Lady Finger plants and all of the fruit produced was unmarketable. This particular offtype is the most commonly encountered from micropropagated Lady Finger plants and, in 2 instances, blocks of 3000 and 1500 plants were entirely comprised of this single offtype. Detection of offtype plants was possible during establishment and growth of plants in the glasshouse by the presence of chlorotic streaks in the leaves. In more severe cases the streaks coalesced into chlorotic patches that developed thin, necrotic areas that eventually produced holes or splits in the leaves. Symptom expression was not ameliorated by the addition of fertiliser and even though symptoms were similar to severe Ca and B deficiency, both normal and offtype plants had similar levels of these elements in the leaves. The offtype plants were also slow growing in the glasshouse and produced significantly (P<0.05) smaller pseudostems and leaves than normal plants. Offtype plants could be readily detected after 4 weeks deflasking using the presence of chlorotic streaks in the leaves as the main selection criterion. Maximum discrimination was possible between weeks 5–7 and at the 6-leaf stage when all of the offtypes could be detected.

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Cucumber mosaic virus (CMV) was found by reverse transcription polymerase chain reaction (RT-PCR) to be not fully systemic in naturally infected kava (Piper methysticum) plants in Fiji. Twenty-six of 48 samples (54%) from various tissues of three recently infected plants were CMV-positive compared with 7/51 samples (14%) from three long-term infections (plants affected by dieback for more than 1 year). The virus was also found to have a limited ability to move into newly formed stems. CMV was detected in only 2/23 samples taken from re-growth stems arising from known CMV infected/dieback affected plants. Mechanical inoculation experiments conducted in Fiji indicate that the known kava intercrop plants banana (Musa spp.), pineapple (Ananas comosus), peanut (Arachis hypogaea) and the common weed Mikania micrantha are potential hosts for a dieback-causing strain of CMV It was not possible to transmit the virus mechanically to the common kava intercrop plants taro (Colocasia esculenta), Xanthosoma sp., sweet potato (Ipomoea batatas), yam (Dioscorea alata), papaya (Carica papaya) or the weed Momordica charantia. Implications of the results of this research on a possible integrated disease management strategy are discussed.

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El presente trabajo es el producto de una investigación socio económico práctica y metodológica ejecutada en la micro región de Río Blanco y auspiciado por el proyecto PRODERBO cuyo objetivo es fomentar el desarrollo sustentable a partir de estudios previos investigativos que conducen a proponer ejes de desarrollo de intervención. Este estudio se realiza a través de la metodología investigativa de diagnostico bajo el enfoque de análisis de sistema que cubre los aspectos sociales, históricos, culturales, técnicos y económico de la micro región. El análisis se sitúa a varios niveles: nivel de parcela, nivel de sistemas de producción o unidades productivas y nivel de zona. Los pasos metodológicos del estudio comprenden la revisión de fuentes secundarias, el sondeo, la zonificación, historia agraria, pre tipología, diseño del instrumento para el levantamiento de información primaria, la muestra que se hizo a partir de criterio cualitativo y cuantitativo para determinar 32 estudios de finca equivalente al 1% de las familias beneficiadas por el programa PERODERBO distribuidos en toda la Micro Región. El procesamiento y análisis de la información recopilada se realizó sobre la base de indicadores económicos a partir margen bruto, relacionado con el Umbral de Reproducción Simple y Racionalidad económica con estrategias productivas reforzada por antecedentes históricos. La caracterización de los sistemas de producción descansan en general en la articulación de la zonificación y tipología de zona (tomando la homogeneidad de problemática como criterio) y la encuesta. En la micro región se logró caracterizar 3 subzonas; la primera subzona corresponde a Wanawás, Auló, la segunda subzona corresponde a Río Blanco, Bocana de Paiwas, Wasayamba, Ubú norte y sur, en tanto la tercera subzona corresponde a Mulukukú y San Pedro del Norte. Con respecto a la evolución histórica del sistema agrario se logró analizar la historia en tres grandes momentos de la historia reciente de (1920-1998), conocidos como: Inmigración de campesino por el latifundio cafetalero y ganadero (1920-1950}, Inmigración del campesino ganadero (1951-1979) y Pos revolución (1980-1989). En la determinación de la tipología de productores se logró identificar 4 tipos de productores representativos en la zona de estudio. El tipo 1 es el pequeño productor asentado, sin capacidad de reproducción con un nivel de capitalización bajo de SU $1 046.59 dólar, con un área promedio de 72.85 mz donde la actividad ganadera juega un rol muy importante además de las actividades productivas de granos básicos malz (Zea mays), frijol (Phaseolus vulgaris), pequeñas parcelas de cultivos de cacao(Theobroma cacao), café (Coffea arábica), raices y tubérculos, sistema que no es suficiente para cubrir elURS ya que apenas alcanza 68% lo que implica una remuneración baja de sus ingresos agropecuarios. El tipo lA pequeno productor empobrecido sin capacidad de reproducción caracterizado por el mozo colono que le aseguran la mano de obra de los productores tipo 11 y 111 por que dispone del capital más bajo de la tipología identificada con SU $357.57 dólar, con un área promedio 35 mz concentrándose únicamente en la producción de granos básicos maíz (Zea mays), frijol (Phaseolus vulgaris) y algunas especies menores gallina (Gallus gallus) y Cerdo (Sus domesticus) y escasas parcelas de raices y tubérculos como yuca (Manihot esculenta), quequisque (Xanthosomas sagitiffolium) y musaceas (Musa spp), para completar la dieta alimenticia y lograr apenas alcanza un 23% del URS. El tipo 11 productor en equilibrio con carácter intensivo y con capacidad de reproducción, a partir de un sistema de producción diversificado y un área que 88:76 mz promedio trabajadas con cultivos de granos básicos malz (Zea mays), frijol (Phaseolus vulgaris) y cultivos perennes da cacao (Theobroma cacao), café (Coffea arábico) y ganadería extensiva de doble propósito.

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La multiplicación convencional del plátano ( Musa spp.) a través de los hijuelos del cormo, además de la baja tasa de propagación, facilita la diseminación de plagas y enfermedades. La técnica de reproducción acelerada de semillas (TRAS), una alternativa en la producción sana de semilla, fue utilizada para la multiplicación de los cultivares Plátano Enano (PE) y CENSA ¾ (C ¾) en dos viveros comerciales de Rivas y Nandaime donde se establecieron 19 canteros en cada uno. En Rivas se multiplicaron 3 933 cormos de PE y 2 307 de C ¾ a 2.5 cm entre cormos en sustratos de arena de construcción (AC) y arena de playa (AP), riego por microasperción y fertilizacion con completo (15-15-15) NPK. En Nandaime se propagaron 6 952 cormos de PE a 1.5 cm entre cormos en AC. Se regó con regadoras y mangueras y se fertilizó con Súper fértil y Súper calcio. En Rivas las plantas separadas de los cormos se sembraron en bolsas de polietileno, en mezcla de cascarilla de arroz-arena-tierra y en Nandaime en 100% tierra. Se calculó el índice de brotación (IB) de los cormos. En Rivas el IB de PE fue 4 e igualmente para C ¾. El IB de PE en Nandaime fue 3. El mejor IB de PE en Rivas resulta de la utilización inmediata de cormos frescos y yemas en mejor estado físico. El IB de PE en AC fue 5 y 3 en AP, la diferencia la explica el mayor contenido de cenizas volcánicas, minerales y capacidad de absorción de agua de AC. Se produjeron 17 039 plantas de PE y 9 052 de C ¾ en Rivas y 21 637 plantas de PE en Nandaime. Los IB obtenidos son inferiores a los de la guía técnica-UNA. No se siguieron las indicaciones de selección de semilla en el campo, distancia de siembra y momento de corte.

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A banana é um alimento altamente energético (cerca de 100 calorias por 100g de polpa), cujos hidratos de carbono (em torno de 22%) são facilmente assimiláveis. Contém vitaminas C, A, B1 e B2, e pequenas quantidades de vitamina D, e uma maior percentagem de potássio, fósforo, cálcio e ferro, quando comparada com a maçã ou laranja (DE MARTINI et al., 1990).

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A bananeira (Musa spp.) é uma planta monocotiledônea herbácea, apresentando caule subterrâneo (rizoma) de onde saem as raízes, em grupos de três ou quatro, totalizando 200 a 500 raízes. O diâmetro predominante das raízes é de 0,2 mm a 0,3 mm, sendo que 60% do sistema radicular estão concentrados na profundidade de 0 a 30 cm e 80% entre 0 a 50 cm, O pseudocaule é formado por bainhas foliares, terminando por uma copa de folhas compridas e largas, com nervura central desenvolvida. É uma planta cultivada de norte a sul do país, em diversos tipos de solos.

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El mercado de plantas ornamentales tropicales ha mostrado un crecimiento expresivo y la búsqueda por novedades es constante. Actualmente hay pocas variedades de bananos ornamentales disponibles para comercialización, y en su mayoría constituyen el uso directo de especies de las secciones Rhodoclamys (M. ornata y M. velutina) y Callimusa (M. coccinea). La generación de nuevas variedades de banano ornamental para diferentes usos constituye una alternativa para satisfacer esta demanda. La Embrapa Yuca y Frutales mantiene un banco de germoplasma de Musa spp. con 290 accesiones, que contemplan variedades y especies silvestres de la sección Eumusa, con un predominio de M. acuminata y M. balbisiana, con diferentes grados de ploidia y combinaciones de los genomas A y B. La colección también alberga representantes de las secciones Rhodochlamys y Callimusa. Tradicionalmente el uso de este germoplasma estaba direccionado sólo a la producción de cultivares para la alimentación, y ha generado varios cultivares productivos, con frutos de buena calidad y resistentes al mal de Panamá, Sigatoka amarilla y Sigatoka negra.

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A banana (Musa spp.) é atualmente um dos produtos agrícola mais importante do município de Cachoeiras de Macacu, RJ. Nesse município, a localidade de Faraó, situada na microbacia do rio Batatal, figura entre as principais produtoras de banana. O objetivo do presente documento é apresentar os resultados do diagnóstico realizado na localidade de Faraó a fim de identificar as Boas Práticas Agrícolas (BPA) necessárias para a produção local de banana. Foi utilizada uma metodologia participativa para a identificação das principais práticas agrícolas, das fraquezas e das potencialidades dos sistemas de produção adotados. Como resultado, foi possível indicar as melhores práticas agrícolas passíveis de serem adotadas pelos agricultores, dentre as quais se destacam o plantio em nível, a análise de solos, o maior aporte de nutrientes e matéria orgânica no solo, os cuidados fitossanitários e os cuidados especiais no momento da colheita e pós-colheita.

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Este trabalho teve por objetivo estudar a viabilidade econômica da produção consorciada de cacau e banana na região do Perímetro Irrigado Tabuleiro de São Bernardo nos municípios de Magalhães de Almeida e Araioses, estado do Maranhão (MA), tendo em vista a ampla disponibilidade de recursos naturais para o cultivo e a potencialidade de ser uma região de escape das principais doenças que afetam as culturas de cacau e banana. O trabalho verifica a oportunidade de negócio de produção de cacau e banana na região do rio Parnaíba. O estudo utiliza projeções de fluxo de caixa e os desconta para o Valor Presente Líquido (VPL) para aferir a viabilidade econômica do negócio de produção de cacaueiro e bananeira nesta região do Brasil. Foram realizadas pesquisas bibliográficas para analisar as características edafoclimáticas da microrregião, as características fisiológicas do cacaueiro e seu consórcio com a bananeira para o sombreamento temporário necessário durante a fase de crescimento do cacaueiro. Foi sugerido o pacote de alta tecnologia para a produção de cacaueiro, dada a necessidade de irrigação para o seu cultivo. Diferentes produtividades e preços de cacau e banana foram utilizados para analisar a sensibilidade económica deste negócio. Ao projetar um fluxo de caixa, foi possível fazer uma análise sobre o negócio, viabilidade e riscos. Deve-se notar que não há grandes áreas produtoras de cacau na região do rio Parnaíba. Porém, há pequenas áreas de cacau em regiões semiáridas (ou de cerrado). Assim, a produção vegetal carece de comprovação de produção em larga escala para atestar de modo prático algumas das premissas econômico-financeiras adotadas para analisar a viabilidade da produção de cacau e banana no Perímetro Irrigado Tabuleiro de São Bernardo.

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O objetivo deste experimento, realizado na cultura da banana (Musa spp.) no Vale do Ribeira, no município de Registro-SP, foi fazer um cadastramento fitossociológico das espécies de plantas daninhas sob duas formas de manejo do solo. A amostragem das espécies daninhas foi feita em duas áreas distintas de manejo, sendo uma com a cultura implantada em área de várzea drenada a 7 m de altitude e a outra com a bananicultura em área de sequeiro a 16 m de altitude. Na amostragem de um hectare, utilizou-se o método do quadrado inventário para cálculo de frequência, frequência relativa, densidade, densidade relativa, abundância, abundância relativa, índice de valor de importância e índice de importância relativa. em ambas as áreas foram identificadas 10 famílias, distribuídas em 18 gêneros e 21 espécies. Na área de várzea drenada, 38% das famílias identificadas são monocotiledôneas e 62% dicotiledôneas, num total de 15 espécies, distribuídas em nove famílias. Na área de cultivo em sistema de sequeiro, foram identificados 50% de famílias monocotiledôneas e 50% de dicotiledôneas, num total de 11 espécies, distribuídas em seis famílias. As famílias com maior representatividade foram Poaceae, com sete espécies, seguida de Asteraceae, com três. Com o estudo realizado, verificou-se ainda grande diversidade de espécies nas áreas selecionadas.