1000 resultados para Cultivar Marandu


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Populations of the planthopper vector Perkinsiella saccharicida on sugarcane cultivars resistant (cvs Q110 and Q87), moderately resistant (cvs Q90 and Q124) and susceptible (evs NCo310 and Q 102) to Fiji disease with known field resistance scores were monitored on the plant (2000-2001) and ratoon (2001-2002) crops. In both crops, the vector population remained very low, reaching its peak in the autumn. The vector population was significantly higher on cultivars susceptible to Fiji disease than on cultivars moderately resistant and resistant to Fiji disease. The number of R saccharicida adults, nymphs and oviposition sites per plant increased with the increase in the Fiji disease susceptibility. The results suggest that under low vector density, cultivar preference by the planthopper vector mediates Fiji disease resistance in sugarcane. To obtain resistance ratings in the glasshouse that reflect field resistance, glasshouse-screening trials should be conducted under both low and high vector densities, and the cultivar preference of the planthopper vector recorded along with Fiji disease incidence.

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Brazil is the world's second largest producer of cassava, which most of the production is used to make flour and starch, generating large amounts of waste, cassava. In general, this waste is disposed of directly into the soil and waterways, causing serious environmental impacts. In view of this, the aim of this work was to evaluate the use of cassava wastewater water (cassava) as organic fertilizer in Brachiaria brizantha pasture. Marandu. The experiment was conducted at the Campus Macaíba the Federal University of Rio Grande do Norte. The treatments were increasing rates of cassava, applied to the soil as organic fertilizer. The experimental design was a randomized block design with six treatments and four replications. The treatments consist of cassava doses (0, 15, 30, 60 and 120 m³ ha- 1 ) and a treatment with mineral fertilizer (AM) in the form of NPK (140: 30: 120 kg ha-1 ). Three cuts with an interval of 60 days were carried out. The variables evaluated were: plant height; accumulation of morphological components of fodder; Trapping Light (IL); Leaf Area Index (LAI); Total chlorophyll (CT); Feature Production Seca (PMS). The dry matter production at a dose of 120 m³ha-1 had a quantitative increase, with a total production in 2796 kg ha-1 DM in the second cut, providing an increase of 493% compared to control, and the residual effect observed in the third cut caused a 100% increase compared to 0 m³ ha-1 . Comparing the PMS obtained with the use of AM and other treatments it was observed that it was the second cut equivalent to a dose of 120 m³ ha-1 and the third equivalence has been cut at doses 60 and 120 m³ha-1. For the variables plant height, IL, IAF, CT and leaves Mass adding cassava in the soil promoted a positive linear increase for the three cuts. However, with the AM the IAF was superior to the other treatments. The thatched mass reached its highest production (838 kg ha-1 DM) in the second cut when using a dose of 120 m³ha-1 . In dead material mass in the second and third sections, there was increased linearly increased total of 322 and 452% respectively, compared to a dose of 0 m³ha-1 . The use of cassava showed herbicidal effect for the variable mass of the undesirable negative linear response resulting in decreasing the amount of residue with increasing doses. Manipueira can be used as organic fertilizer in Brachiaria brizantha cv. Marandu for improvements in the productive characteristics, as promoted significant increases in 8 most of the variables studied, especially at a dose of 120 m³ha-1 . This benefits the environment by being alternative for disposal of cassava.

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Aimed to identify, for assessing the tillering dynamics and morphogenesis , strategy (s ) suitable ( s) defoliation management to optimize the appearance of tillers and biomass of Urochloa Brizantha syn. Brachiaria brizantha cv. Marandu ( marandugrass ) throughout the year. The experiment was conducted from January 2013 to May 2014 were studied three strategies defoliation: Marandugrass with 30 cm throughout the experimental period (constant height); Marandugrass 15 cm in winter, the spring 30 cm and 45 cm in summer (increasing height); and Marandugrass 45 cm in winter, the spring 30 cm and 15 cm in summer (descending height). The experimental design was completely randomized in a split plot in time, with four replications. In winter, in the spring and summer, the following variables were calculated: appearance rate (TApP), mortality (TMoP) and survival (TSoP) of tillers, balance (BAL) between TApP and TMoP, stability index (IE) numbers of tillers and leaf elongation rates and stem, length of leaf blade and stem, leaf senescence rate, phyllochron and duration of life of the sheet. The TAPP was higher in the early spring and summer. For TMoP, the highest values were in the late spring and summer. The balance between TApP and TMoP was negative in winter and late spring, regardless of defoliation strategy. There was no difference in IE between the heights of the canopy during winter and late spring .. The number of tillers was higher in early spring and summer and lower in winter and late spring. The defoliation strategies have not changed phyllochron, leaf elongation rate. In spring and summer, there were increases in the rates of appearance, elongation and leaf senescence and, furthermore, decreased life span and phyllochron sheet. The plant height with increasing showed a lower rate of senescence and lower culm length in the spring. To increase the number of tillers marandu, it is advantageous to handle the plant with increasing height, ie, 15 cm in autumn and winter, the spring 30 cm and 45 cm in summer.The maintaining of B. brizantha cv. Marandu with fixed height of 30 cm or with variations between 15 and 45cm from the fall/winter to summer, does not influence the appearance and the growth of leaves per tiller, which indicates great flexibility on management defoliation in this forage plant.

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The livestock system in Brazil mainly uses the pastures as source of food to cattle, and the marandu palisade grass is one of the main forage crop plants. In order to supply the demand of these animals in amount of forage, it is necessary to adopt management strategies aimed at increased forage production with adequate characteristics to animal intake. In this context, is requiered to identify management strategies of defoliation that improve tillering of marandu palisade grass during the seasons. There is a chance that the maintenance of lower marandu palisade grass during the fall and winter compared to spring and summer, increase the incidence of light at the base of the plants and, indeed, encourage tillering and modify the structure of the pasture compared to maintain marandu palisade grass with constant height along these stations.

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Mémoire numérisé par la Direction des bibliothèques de l'Université de Montréal.

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Mémoire numérisé par la Direction des bibliothèques de l'Université de Montréal.

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El estudio de microtuberización del cultivar de papa Burren se realizó en el Laboratorio de Cultivo de Tejidos de la Universidad Nacional Agraria entre los meses de junio a diciembre del 2015. Se estudiaron las fases de multiplicación y formación de microtubérculos en Biorreactores Económicos de Inmersión Temporal (BEIT). En la fase de multiplicación se evaluó la formación de plantas completas cuando se sembraron 70 microesquejes en cinco variantes de medios de cultivo. Se empleó un diseño de Bloques Completos al Azar con arreglo unifactorial con réplicas conformadas por 2 BEIT, y para definir las diferencias estadísticas entre las medias (ANDEVA) de los tratamientos se realizó la prueba de rangos múltiples de Duncan-Waller ( = 0.05). En la formación de plantas se evaluaron la longitud de plantas, número de hojas y número de brotes que se les realizó la prueba de medias de diferencia mínima significativa con α = 0.05, se calculó el porcentaje de supervivencia. Como resultado se obtuvo en las variantes de medios de cultivo que contenían 0.20 mg l-1 de GA3 con 0.50 mg l-1 de BAP y 0.10 mg l-1 de GA3 con 1 mg l-1 de BAP, se obtuvieron medias respectivas en número de entrenudos de 6.32-5.7 y en número de hojas por planta de 7.37-6.93. Adiciones de sacarosa de 80 g l-1 y 110 g l-1 favorecieron la formación de microtubérculos de peso fresco con medias entre 0.69-0.75 gramos. La adición de sacarosa entre 80 g l-1 y 120 g l-1 no se registró diferencias estadísticas significativas entre las medias de las variables diámetro y longitud de microtubérculos. Con microtubérculos con diámetro mayor a los 10 mm se obtuvieron medias en longitud de planta, número de hojas y número de brotes de 21, 16.35 y 5.65 cm respectivamente y con diámetros entre 8-10 mm las medias respectivas fueron de 16.37, 11.35 y 5.35 cm.

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Heterodera glycines, the soybean cyst nematode, is the major pathogen of Glycine max (soybean). Effective management of this pathogen is contingent on the use of resistant cultivars, thus screening for resistant cultivars is essential. The purpose of this research was to develop a method to assess infection of soybean roots by H. glycines with real-time quantitative Polymerase Chain Reaction (qPCR), a prelude to differentiation of resistance levels in soybean cultivars. Two experiments were conducted. In the first one, a consistent inoculation method was developed using to provide active second-stage juveniles (J2). Two-day-old soybean roots were infested with 0 and 1000 J2/mL. Twenty-four hours after infestation, the roots were surface sterilized and DNA was extracted with the DNA FastKit (MP Biomedicals, Santa Ana, CA)). For the qPCR assay, primer pair for single copy gene HgSNO, which codes for a protein involved in the production of vitamin B6, was selected for H. glycines DNA amplification within soybean roots. In the second experiment, compatible Lee 74, incompatible Peking and cultivars with different levels of resistance to H. glycines were inoculated with 0 and 1,000 J2/seedlings. Twenty-four hours post inoculation they were transplanted into pasteurized soil. Subsequently they were harvested at 1, 7, 10, 14 and 21 days post inoculation for DNA extraction. With the qPCR assay, the time needed to differentiate highly resistant cultivars from the rest was reduced. Quantification of H. glycines infection by traditional means (numbers of females produced in 30 days) is a time-consuming practice; the qPCR method can replace the traditional one and improve precision in determining infection levels.

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El trabajo se realizó en el laboratorio de cultivo de tejidos de la Universidad Nacional Agraria (UNA) de mayo a septiembre de 2015. El mismo pretende sentar las bases de la producción de semilla básica con un método innovador, al producir microtubérculos de papa del cultivar Banba en BEITs y determinar la mejor variante de medio de cultivo en la fase de multiplicación y microtuberización. Se buscaron las características morfológicas deseadas, mediante el efecto de cinco variantes de medios de cultivos (0.10 y 0.20 mg l -1 de GA3 con 0.5 y 1 mg l -1 de bencilaminopurina (BAP)). Posteriormente se utilizaron cinco variantes de medios con BAP para la etapa de microtuberización en BEIT con 3000 ml de medio de cultivo en condiciones de crecimiento de 20 ± 3 °C, 16 horas luz y 8 de oscuridad con intensidad de luz de 2000 lux. El ensayo se estableció en BCA unifactorial con tres repeticiones. Para determinar las diferencias estadísticas entre las medias de los tratamientos se realizó la prueba de medias de diferencia mínima significativa (LSD) de Fisher con (α = 0.05). En los medios de multiplicación para las características altura de planta y número de brotes axilares, presentó mejor desempeño el medio con 0.10 mg l -1 de GA3 y 0.50 de BAP. Para el número de entrenudos no hubo diferencias significativas y para el número de hojas la mejor respuesta se obtuvo con 0.10 mg l -1 de GA3 y 0.50 g l -1 de BAP. En microtuberización se obtuvieron buenos resultados en microtubérculos por planta, diámetro y longitud en el medio de cultivo con 1 mg l -1 de BAP y 11% de sacarosa, así como microtubérculos esféricos superiores a los 0,6 g de peso en 36%.

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A rapid rate and high percentage of macadamia nut germination, together with production of vigorous seedlings, are required by nurseries and breeding programs. Germination of nuts is typically protracted, however, and rarely reaches 100%. Many studies have been conducted into macadamia germination, but most have assessed percent germination only. This study investigated the effects of various treatments on percent germination, germination rate, and plant, shoot and root dry weights. The treatments tested were combinations of: (i) soaking or not soaking seeds in a dilute fungicide solution prior to planting; (ii) four different planting media; and (iii) leaving seed trays open or placing them inside clear plastic bags. For freshly harvested nuts, sowing in potting mix under clear plastic and without soaking produced the highest percent germination and germination rate, the largest shoots, and longest lateral roots.