998 resultados para Heliothis zea


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Insect cell cultures have been extensively utilised for means of production for heterologous proteins and biopesticides. Spodoptera frugiperda (Sf9) and Trichoplusia ni (High Five(TM)) cell lines have been widely used for the production of recombinant proteins, thus metabolism of these cell lines have been investigated thoroughly over recent years. The Helicoverpa zea cell line has potential use for the production of a biopesticide, specifically the Helicoverpa armigera single-nucleocapsid nucleopolyhedrovirus (HaSNPV). The growth, virus production, nutrient consumption and waste production of this cell line was investigated under serum-free culture conditions, using SF900II and a low cost medium prototype (LCM). The cell growth ( growth rates and population doubling time) was comparable in SF900II and LCM, however, lower biomass and cell specific virus yields were obtained in LCM. H. zea cells showed a preference for asparagine over glutamine, similar to the High Five(TM) cells. Ammonia was accumulated to significantly high levels (16 mM) in SF900II, which is an asparagine and glutamine rich medium. However, given the absence of asparagine and glutamine in the medium ( LCM), H. zea cells adapted and grew well in the absence of these substrates and no accumulation of ammonia was observed. The adverse effect of ammonia on H. zea cells is unknown since good production of biologically active HaSNPV was achieved in the presence of high ammonia levels. H. zea cells showed a preference for maltose even given an abundance supply of free glucose. Accumulation of lactate was observed in H. zea cell cultures.

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Understanding how insect pests forage on their food plants can help optimize management strategies. Helicoverpa armigera (Hubner) (Lep., Noctuidae) is a major polyphagous pest of agricultural crops worldwide. The immature stages feed and forage on crops at all stages of plant development, damaging fruiting and non-fruiting structures, yet very little is known about the influence of host type or stage on the location and behaviour of larvae. Through semi-continuous observation, we evaluated the foraging (movement and feeding) behaviours of H. armigera first instar larvae as well as the proportion of time spent at key locations on mungbean [Vigna radiata (L.) Wilczek] and pigeon pea [Cajanus cajan (L.) Millspaugh] of differing developmental stages: seedling- and mature (flowering/pod fill)-stage plants. Both host type and age affected the behaviour of larvae. Larvae spent more time in the upper parts of mature plants than on seedlings and tended to stay at the top of mature plants if they moved there. This difference was greater in pigeon pea than in mungbean. The proportion of time allocated to feeding on different parts of a plant differed with host and age. More feeding occurred in the top of mature pigeon pea plants but did not differ between mature and seedling mungbean plants. The duration of key behaviours did not differ between plant ages in either crop type and was similar between hosts although resting bouts were substantially longer on mungbeans. Thus a polyphagous species such as H. armigera does not forage in equivalent ways on different hosts in the first instar stage.

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Leaf area growth and nitrogen concentration per unit leaf area, N-a (g m(-2) N) are two options plants can use to adapt to nitrogen limitation. Previous work indicated that potato (Solanum tuberosum L.) adapts the size of leaves to maintain Na and photosynthetic capacity per unit leaf area. This paper reports on the effect of N limitation on leaf area production and photosynthetic capacity in maize, a C4 cereal. Maize was grown in two experiments in pots in glasshouses with three (0.84-6.0 g N pot(-1)) and five rates (0.5-6.0 g pot(-1)) of N. Leaf tip and ligule appearance were monitored and final individual leaf area was determined. Changes with leaf age in leaf area, leaf N content and light-saturated photosynthetic capacity, P a,, were measured on two leaves per plant in each experiment. The final area of the largest leaf and total plant leaf area differed by 16 and 29% from the lowest to highest N supply, but leaf appearance rate and the duration of leaf expansion were unaffected. The N concentration of expanding leaves (N-a or %N in dry matter) differed by at least a factor 2 from the lowest to highest N supply. A hyperbolic function described the relation between P-max and N-a. The results confirm the 'maize strategy': leaf N content, photosynthetic capacity, and ultimately radiation use efficiency is more sensitive to nitrogen limitation than are leaf area expansion and light interception. The generality of the findings is discussed and it is suggested that at canopy level species showing the 'potato strategy' can be recognized from little effect of nitrogen supply on radiation use efficiency, while the reverse is true for species showing the 'maize strategy' for adaptation to N limitation. (c) 2004 Elsevier B.V. All rights reserved.

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Bt transgenic cotton has not shown the same level of resistance to bollworm in China, as in other major Bt cotton growing areas of the world. The objective of this study was to investigate the effects of high temperature on the CryIA insecticidal protein content and nitrogen metabolism, in the leaf of Bt transgenic cotton. The study was undertaken on two transgenic cotton cultivars, one conventional (Xinyang 822) and the other a hybrid (Kumian No. 1), during the 2001 and 2002 growing seasons at the Yangzhou University Farm, Yangzhou, China. In the 2001 study, potted cotton plants were exposed to 37 C for 24 h under glasshouse conditions at three growth stages peak square, peak flowering and peak boll developing periods. Based on the 2001 results, in 2002 the same two cultivars were exposed to the same temperature for 48 h at two growth stages-peak flowering and boll developing periods. The results of the study indicated that the insecticidal protein content of the leaf was not significantly affected by the stress during the square and flowering periods. However, exposure to high temperature for 24h during the boll period reduced the CryIA protein content by approximately 51% in the cultivar Kumian No 1, and 30% in Xinyang 822 in the 2001 study, and by approximately 73 and 63% for 48 h with the same cultivars, respectively, in the 2002 study. Glutamic-pyruvic transaminase (GPT) activity, total free amino acid and soluble protein content, and the activity of protease in the leaf, showed relatively little change in response to high temperature in the flowering period. However, exposure to high temperature in the boll period resulted in the following changes - a reduction of GPT activity, a sharp increase in free amino acid content, a significant decrease in soluble protein content, and significant increases in the activity of protease. The results suggest that high temperature may result in the degradation of soluble protein in the leaf, with a resulting decline in the level of the toxin CryIA. It is believed that this may be the cause of the reduced efficacy of Bt cotton in growing conditions in China, where temperatures during the boll period often reach 36-40° C. © 2004 Elsevier B.V All rights reserved.

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Serial passaging of wild-type Helicoverpa armigera, single-nucleocapsid (HaSNPV) in H. zea (HzAMI) illsect Cell Cultures results ill rapid selection for the few polyhedra (FP) phenotype. A unique HaSNPV mutant (ppC19) was isolated through plaque purification that exhibited a partial many polyhedra (MP) and FP phenotype. Oil serial passaging in suspension cell cultures, ppC19 produced fivefold more polyhedra than a typical FP mutant (FP8AS) but threefold less polyhedra than the wild-type virus. Most importantly, the polyhedra of ppC19 exhibited MP-like virion occlusion. Furthermore, ppC19 produced the same amount of budded virus (BV) as the FP mutant, which was fivefold higher than that of the wild-type virus. This selective advantage was likely to explain its relative stability in polyhedra production for six passages when compared with the wild-type Virus. However, subsequent passaging of ppC19 resulted in a steel) decline in both BV and polyhedra yields, which was also experienced by FP8AS and the wild-type virus Lit high passage numbers. Genomic deoxyribonueleic Licid profiling of the latter suggested that defective interfering particles (DIPS) were implicated in this phenomenon and represented another Undesirable mutation during serial passaging of HaSNPV Hence, a strategy to isolate HaSNPV Clones that exhibited MP-like polyhedra production but FP-like BV production, coupled with low multiplicities of infection during scale-up to avoid accumulation of DIPS, could prove commerically invaluable.

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The population dynamics of Helicoverpa armigera (Hubner) (Lepidoptera: Noctuidae) in the Murrumbidgee Valley, Australia, has been characterized using five highly variable microsatellite loci. In the 2001-2002 growing season, there were very high levels of migration into the Murrumbidgee Valley with no detectable genetic structuring, consistent with previous analyses on a national scale. By contrast, there was significant genetic structuring over the 2002-2003 growing season, with three distinct genetic types detected. The first type corresponded to the first two generations and was derived from local individuals emerging from diapause and their progeny. The second genetic type corresponded to generation 3 and resulted from substantial immigration into the region. There was another genetic shift in generation 4, which accounts for the third genetic type of the season. This genetic shift occurred despite low levels of immigration. During the third generation of the 2002-2003 growing season, different population dynamics was characterized for H. armigera on maize, Zea mays L., and cotton Gossipium hirsutum L. Populations on cotton tended to cycle independently with very little immigration from outside the region or from maize within the region. Maize acted as a major sink for immigrants from cotton and from outside the region. If resistance were to develop on cotton under these circumstances, susceptible individuals from maize or from other regions would not dilute this resistance. In addition, resistance is likely to be transferred to maize and be perpetuated until diapause, from where it may reemerge next season. If low levels of immigration were to occur on transgenic cotton, this may undermine the effectiveness of refugia, especially noncotton refugia.

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El experimento se realizó en el CEVAT, Las Mercedes propiedad de la Universidad Nacional Agraria, ubicada en el km 11 carretera norte, Managua entrada al CARNIC 800 m al Norte. Durante la época seca del año 2015 utilizando riego. El objetivo del experimento fue evaluar el rendimiento de la variedad Nutrinta amarillo con la aplicación de dos tipos de fertilizantes, la fertilización tradicional (completo 12-30-10 y urea 46%), y la fertilización especial (Fertimaiz + Nitro xtend) elaborado por la empresa DISAGRO y un testigo. El ensayo se estableció en un diseño experimental de Bloques Completos al Azar (BCA), con 4 repeticiones y 3 tratamientos. Las dimensión del ensayo fue de 410.8 m2. Los resultados muestran que hubo diferencias significativas para las variables: Altura de la planta (204.5 cm), diámetro del tallo (25.63 mm) altura inserción de la mazorca (60.88 cm), rendimiento (3 937.5 kg ha-1) obteniéndose los mejores resultados en la fertilización especial, mientras que en la variable área foliar (641.27 cm2) el mejor resultado lo obtuvo la fertilización tradicional, se encontró diferencias altamente significativa para las variable número de hojas (12.33), numero de mazorca (2.53) y número de nudos (13.05) obteniendo los mejores resultados la fertilización tradicional, en cambio para las variable número de nudos el mejor resultado fue con la fertilización especial. La eficiencia agronómica demuestra que el tratamiento especial está en el rango óptimo de ganancia productiva con 17.17 kgmaiz/kg/N. La aplicación de fertilizantes especiales (Fertimaiz y Nitro xtend) presento mayor rentabilidad económica indicando que al aplicar estos fertilizantes especiales por cada córdoba invertido se recupera el córdoba invertido más C$ 2.19. Los Principales Insectos encontrados en el cultivo durante la época de verano fueron en su mayoría insectos plagas con un 71% con respecto a un 29% los insectos benéficos, entre las plagas con mayor incidencia tenemos a la chicharrita del maíz (Dalbulus maidis (De Long & Wolcott, 1923)) con un 75% de la población de insectos plagas. Para el análisis de datos se utilizó el programa de INFOSTAT.

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El trabajo de investigación fue realizado en el centro de experimentación y validación de tecnología (CEVAT), Las Mercedes ubicado en el km 11 carretera norte, entrada al CARNIC 800 metros al norte, con coordenadas geográficas 12°10’14” a 12°08’05” de latitud Norte y 86°10’22” a 86°09’44” longitud Oeste a 56 msnm, durante los meses de octubre 2015 a enero 2016. Los suelos de esta zona son derivados de cenizas volcánicas, suelos jóvenes y pertenece a la serie Las Mercedes, con textura franco arcillosa. El objetivo es comparar el efecto que tiene las diferentes fuentes de fertilizantes sintéticos y orgánicos sobre el crecimiento y rendimiento del cultivo de maíz, el primero con fertilizante tradicional (12-30-10 y urea), el segundo con fertilizantes especial (fertimaiz y nitro xtend) y el orgánico (humus de lombriz). Se estableció un arreglo unifactorial en diseño de bloques completo al azar con cuatro repeticiones y tres tratamientos. Los datos fueron analizados con el programa INFOSTAT. La dimensión total del ensayo fue de 410.8 m2. El análisis de los resultados muestra que hubo diferencia significativa en la variable: diámetro del tallo (2.15 cm), largo de la hoja (98.89 cm), altura de inserción de la panoja (225.08 cm), presentando el tratamiento tradicional los mejores resultados, las variables, altura de la planta (215.43 m), numero de hojas (8.58), ancho de la hoja (8.78 cm), área foliar (604.06 cm2). Inserción de la espiga (129.77 cm), longitud de la mazorca (15.03 cm), numero de hileras (14.58), rendimiento (3453.48 kg ha-1) refleja los mejores resultados al fertilizar con el tratamiento especial. La fertilización orgánica no presentó buenos resultados en las variables de crecimiento y rendimiento en el cultivo de maíz generando pérdida económica en el primer ciclo de fertilización orgánica.