961 resultados para Insect Bites


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A protease inhibitor from the seeds of Butea monosperma (BmPI) was purified, characterized and studied for its influence on developmental physiology of Helicover-pa armigera. BmPI on two-dimensional separations indicated the presence of a 14 kDa protein with an isoelectric point in the acidic region (pl 5.6). Multiple Sequence Analysis data suggested that the BmPI contains a sequence motif which is conserved in various trypsin and chymotrypsin inhibitors of Kunitz-type. The inhibitor exhibited trypsin inhibitory activity in a broad range of pH (4-10) and temperature (10-80 degrees C). The enzyme kinetic studies revealed BmPI as a competitive inhibitor with a K-i value of 1.2 x 10(-9) M. In vitro studies with BmPI indicated measurable inhibitory activity on total gut proteolytic enzymes of H. armigera (IC(50)2.0 mu g/ml) and bovine trypsin. BmPI supplemented artificial diet caused dose dependent mortality and reduction in growth and weight. The fertility and fecundity of H. armigera, declined whereas the larval-pupal duration of the insect life cycle extended. These detrimental effects on H. armigera suggest the usefulness of BmPl in insect pest management of food crops. (C) 2014 Elsevier Ltd. All rights reserved.

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Rapid and high wing-beat frequencies achieved during insect flight are powered by the indirect flight muscles, the largest group of muscles present in the thorax. Any anomaly during the assembly and/or structural impairment of the indirect flight muscles gives rise to a flightless phenotype. Multiple mutagenesis screens in Drosophila melanogaster for defective flight behavior have led to the isolation and characterization of mutations that have been instrumental in the identification of many proteins and residues that are important for muscle assembly, function, and disease. In this article, we present a molecular-genetic characterization of a flightless mutation, flightless-H (fliH), originally designated as heldup-a (hdp-a). We show that fliH is a cis-regulatory mutation of the wings up A (wupA) gene, which codes for the troponin-I protein, one of the troponin complex proteins, involved in regulation of muscle contraction. The mutation leads to reduced levels of troponin-I transcript and protein. In addition to this, there is also coordinated reduction in transcript and protein levels of other structural protein isoforms that are part of the troponin complex. The altered transcript and protein stoichiometry ultimately culminates in unregulated acto-myosin interactions and a hypercontraction muscle phenotype. Our results shed new insights into the importance of maintaining the stoichiometry of structural proteins during muscle assembly for proper function with implications for the identification of mutations and disease phenotypes in other species, including humans.

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Ionic polymer metal composites (IPMC) actuator for flapping insect scale wing is advantageous due to its low mass, high deflection and simple actuation mechanism. Some of the factors that affect the actuation of IPMC are the amount of hydration in the polymer membrane and the environmental conditions such as temperature, humidity etc. In structural design, the attachment of wing on the IPMC actuators is an important concern as the attached wing increases the mass of actuators thereby affecting the parameters like displacement, stiffness and resonant frequencies. Such IPMC actuators have to produce sufficient actuation force and frequency to lift and flap the attached wing. Therefore, it is relevant to study the influence of attachment of wing on the actuator parameters (displacement, resonant frequency, block force and stiffness) and performance of the actuators. This paper is divided into two parts; the first part deals with the modeling of the IPMC actuators for its effect on the level of water uptake and temperature using energy based method. The modeling method adapted is validated with the experimental procedure used to actuate the IPMC. The second part deals with the experimental analysis of IPMC actuation at dry, wet and in water conditions. The effect of end mass loading on the performance of 20 Hz, high frequency actuator (HFA) and 8.7 Hz, low frequency IPMC actuators (LFA) and sensors is studied. The IPMC actuators are attached with IPMC flapping wing at its free end and performance analysis on the attached wing is also carried out.

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Piezo-composite membranes have advantages over motorized flapping where frequencies are high and certain coupling between bending and twisting is useful to generate lift and forward flight. We draw examples of fruit fly and bumble bee. Wings with Piezo ceramic PZT coating are realized. The passive mechanical response of the wing is characterized experimentally and validated using finite element simulation. Piezoelectric actuation with uniform electrode coating is characterized and optimal frequencies for flapping are identified. The experimental data are used in an empirical model and advanced ratio for a flapping insect like condition for various angular orientations is estimated.

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The large protein L of negative-sense RNA viruses is a multifunctional protein involved in transcription and replication of genomic RNA. It also possesses enzymatic activities involved in capping and methylation of viral mRNAs. The pathway for mRNA capping followed by the L protein of the viruses in the Morbillivirus genus has not been established, although it has been speculated that these viruses may follow the unconventional capping pathway as has been shown for some viruses of Rhabdoviridae family. We had earlier shown that the large protein L of Rinderpest virus expressed as recombinant L-P complex in insect cells as well as the ribonucleoprotein complex from purified virus possesses RNA triphosphatase (RTPase) and guanylyltransferase activities, in addition to RNA dependent RNA polymerase activity. In the present work, we demonstrate that RTPase as well as nucleoside triphosphatase (NTPase) activities are exhibited by a subdomain of the L protein in the C terminal region (a.a. 1640 1840). The RTPase activity depends absolutely on a divalent cation, either magnesium or manganese. Both the RTPase and NTPase activities of the protein show dual metal specificity. Two mutant proteins having alanine mutations in the glutamic acid residues in motif-A of the RTPase domain did not show RTPase activity, while exhibiting reduced NTPase activity suggesting overlapping active sites for the two enzymatic functions. The RTPase and NTPase activities of the L subdomain resemble those of the Vaccinia capping enzyme D1 and the baculovirus LEF4 proteins. (C) 2015 Elsevier Inc. All rights reserved.

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Post-transcriptional modification of viral mRNA is essential for the translation of viral proteins by cellular translation machinery. Due to the cytoplasmic replication of Paramyxoviruses, the viral-encoded RNA-dependent RNA polymerase (RdRP) is thought to possess all activities required for mRNA capping and methylation. In the present work, using partially purified recombinant RNA polymerase complex of rinderpest virus expressed in insect cells, we demonstrate the in vitro methylation of capped mRNA. Further, we show that a recombinant C-terminal fragment (1717-2183 aa) of L protein is capable of methylating capped mRNA, suggesting that the various post-transcriptional activities of the L protein are located in independently folding domains.

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The nursery pollination mutualism between figs and pollinating fig wasps is based on adaptations that allow wasps to enter the enclosed inflorescences of figs, to facilitate seed set, and to have offspring that develop within the nursery and that leave to enter other inflorescences for pollination. This closed mutualistic system is not immune to parasitic fig wasps. Although the life histories and basic biology of the mutualists have been investigated, the biology of the fig wasp parasites has been severely neglected. This review brings together current knowledge of the many different ways in which parasites can enter the system, and also points to the serious lacunae in our understanding of the intricate interactions between gallers, kleptoparasites, seed eaters and parasitoids within this mutualism.

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La presente investigación se llevó a efecto en el Km 14 de la carretera Norte, en el Centro Nacional de Investigación Agropecuaria (CNIA – INTA), 2 Km. al sur en el municipio de Managua, departamento de Managua. El ensayo se estableció en la época de postrera del 2001, en suelos de origen volcánico y textura franco arenosa. El propósito del experimento fue evaluar de forma preliminar 19 líneas de sorgo Sorghum bicolor (L) Moench por su reacción a la mosquita del sorgo ( Stenodiplosis sorghicola Coquillet), el cogollero ( Spodoptera frugiperda J:E:Smith) y enfermedades. Los materiales utilizados son parte de un ADIN (All Diseases and Insect Nursery). La parcela experimental tuvo un tamaño de 3.75 m 2 y constó de 1 surco de 5 metros lineales (1 línea por surco). El ensayo se estableció utilizando la metodología de la Universidad de Texas A & M con19 tratamientos (líneas) y 2 repeticiones. Las variables evaluadas fueron: a) daño foliar causado por el gusano cogollero ( Spodoptera frugiperda J. E. Smith ), b) días a floración, c) número de mosquitas d el sorgo ( Stenodiplosis sorghicola Coquillett ) por panoja, d) número de parasitoides de mosquita del sorgo ( Aprostocetus diplosidis Crawford) por panoja, e) severidad de las enfermedades foliares y vasculares. Para la primera y la última variable se utilizó la escala de daño propuesta por la Universidad de Texas A & M. A estos datos se les efectuó un análisis estadístico descriptivo. Para las variables b, c y d se realizó un análisis de varianza y prueba de rangos múltiples de Duncan (P ≤ 0.05), además se les efectuó un análisis de correlación de Pearson. En cuanto al daño foliar causado por el gusano cogollero ( Spodoptera frugiperda J. E. Smith ), no existieron diferencias en el comportamiento de las líneas. Este aspecto no representó una incidencia relevante. Con respecto al período de floración, la línea 96CA5986 presentó el mayor número de días a floración, en tanto que la línea Tx2880 presentó el menor número de días a floración. Los resultados obtenidos indican que el comportamiento de las 19 líneas de sorgo [ Sorghum bicolor ( L.) Moench ] ante el ataque de mosquita del sorgo ( Stenodiplosis sorghicola Coquillett ) y la incidencia de su parasitoide ( Aprostocetus diplosidis Crawford ) es similar para cada línea; La línea 98BRON122 fue la que presentó el mayor valor con respecto a esta variable, mientras que la línea que presentó el menor número de mosquitas por panoja fue B9104; Existe relación entre la variable número de mosquitas ( Stenodiplosis sorghicola Coquillett ) por panoja y días a floración y esta relación es afectada por el parasitoide de la mosquita ( Aprostocetus diplosidis Crawford ). Puede identificarse que la Linea 87EO366*9EO328 fue la que presentó la mayor severidad de enfermedades foliares tales como antracnosis ( Colletotrichum graminicola G. W. Wilson ), mancha zonada ( Gloeocercospora sorghi D.Bain.& Edgerton ex Deighton) , mancha gris de la hoja (Cercospora sorghi Ellis y Everth) tizón de la hoja ( Exserohilum turcicum (pass.). La línea que presentó la menor severidad fue 94B1055. La enfermedad que presentó mayor severidad en el ensayo fue Antracnosis.

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Para contribuir a resolver la problemática varietal en el país, se han sumado esfuerzos en evaluar líneas de sorgo por lo que se realizó un experimento en diferentes zonas productoras de sorgo en Nicaragua utilizando un vivero de líneas para evaluar plagas y enfermedades ADIN (All Diseases and Insect Nursery), facilitado por el Dr. Larry E. Claflin, fitopatológo de la Universidad del Estado Kansas (KSU), mediante el programa INTSORMIL (International Sorghum and Millet Project. El estudio se desarrolló de agosto a diciembre del 2003. Se utilizó, parcelas experimentales de 5 m. lineales con un área total de 75 m2 con dos repeticiones en cada localidad; Centro Nacional de Investigaciones Agropecuarias-Instituto Nicaragüense de Tecnología Agropecuaria, (CNIA–INTA), Managua; Tisma, Masaya y Ranchería, Chinandega. Entre las variables estudiadas se evaluó severidad de enfermedades foliares, severidad de mohos en panoja y rendimiento de grano. Para la evaluación de las enfermedades se utilizó una escala de daño que incluye valores de 0 %-100 % de severidad propuesta por (Frederiksen, 2000); modificada por (Pichardo, 2001). Los datos colectados fueron procesados y sometidos aun ANDEVA, y separación de medias utilizando la prueba de Tukey (α=0.05). Se realizó análisis de regresi ón lineal para determinar el rendimiento predictivo por localidad y líneas. Los resultados obtenidos mostraron que existen diferencias estadísticas entre las líneas para las tres localidades. Las líneas evaluadas en Ranchería presentaron los menores niveles o valores de severidad de en fermedades (7-21 %); valores intermedios (15-39%) las líneas evaluadas en Tisma y los más altos valores (39-58 %) las líneas evaluadas en el CNIA–INTA. Las enfermedades presentes en el estudio fueron: mancha gris de la hoja causada por Cercospora sorghi, Ellis & Everth, antracnosis causada por Colletotrichum graminicola G. W. Wilson y mancha zonada de la hoja causada por Gloeocercospora sorghi D. Bain & Edgerton ex Deighton. Los mayores rendimientos fueron obtenidos por la línea Sureño con 9 037.31, 5 296.57 y 3 566.18 kg ha-1 en CNIA-INTA, Tisma y Ranchería respectivamente; y los menores rendimientos por BLD6(w+y) en CNIA-INTA, con 1 184 kg ha-1, B.9955 en Tisma, con 870.53 kg ha-1 y en Ranchería la línea 98BRON122 con 1 352.55 kg ha -1.

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El estudio de investigación se realizo en época de postrera Septiembre-Diciembre 2004. Se establecieron dos ensayos en dos zonas diferentes: Centro Nacional de Investigación Agropecuaria (CNIA-INTA), ubicado en el km 14 de la carretera norte, 2 km al sur en Managua y en Guanacastillo en el km 40 carretera Tipitapa-Masaya, 3 km hacia el oeste. El objetivo fue contribuir a la obtención de materiales resistentes a plagas y enfermedades. Los materiales utilizados son partes de un vivero ADIN (All Diseases and Insect Nursery) El diseño utilizado fue parcelas experimentales con veinticuatro tratamientos y tres repeticiones en cada localidad. Cada tratamiento fue representado por una línea en un surco y a la vez es la parcela útil. El área total para cada ensayo fue de 324mt2 Las variables evaluadas fueron: Daño causado por cogollero (Spodoptera frugiperda J. E. Smith), severidad de las enfermedades foliares y mohos de la panoja. Se realizó un Análisis de varianza (ANDEVA) y prueba de rangos múltiple de Tukey (P =0.05), para la variable cogollero y descriptivo, para la reacción de las enfermedades basada en la escala de severidad. Todas las líneas evaluadas fueron afectadas por gusano cogollero. Las enfermedades foliares que afectaron las líneas de sorgo, en ambas localidades fueron: Mancha gris de la hoja ( Cercospora sorghi Ellis & Everth), Antracnosis (Colletotrichum graminicola (cesati) G. W. Willson ) y Mancha zonada de la hoja ( Gloeocercospora sorghi D. Bain & Edgerton ex Deighton). La enfermedad que predominó por su mayor severidad en las líneas evaluadas fue la Antracnosis, seguido de Mancha zonada y Mancha gris en ambas localidades. De las 24 líneas evaluadas en ambas localidades 6 de ellas no presentaron afectación por enfermedades foliares. Los mayores grados de severidad por mohos en la panoja, se registraron en líneas evaluadas en CNIA-INTA. Los mejores rendimientos fueron obtenidos por las líneas 03LI6134,35, (3224.26 kg/ha, 2612.29 kg/ha), 03LI6196,97, (3112.58 kg/ha, 3662.43 kg/ha), 03LI6210,11 , (2579.35 kg/ha, 2659.24 kg/ha), en CNIA-INTA y Guanacastillo, y los menores rendimientos por 03CS268, (1194.25 kg/ha, 1291.92 kg/ha), 03LI6224,25, (1108.18 kg/ha, 1111.95 kg/ha).

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Detailed investigations on the microstructure and the mechanical properties of the wing membrane of the dragonfly are carried out. It is found that in the direction of the thickness the membrane was divided into three layers rather than a single entity as traditionally considered, and on the surfaces the membrane displays a random distribution rough microstructure that is composed of numerous nanometer scale columns coated by the cuticle wax secreted. The characteristics of the surface structure are measured and described. The mechanical properties of the membranes taken separately from the wings of live and dead dragonflies are investigated by the nanoindentation technique. The Young's moduli obtained here are approximately two times greater than the previous result, and the reasons that yield the difference are discussed.

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Detailed investigations on the microstructure and the mechanical properties of the wing membrane of the dragonfly were carried out. It was found that in the direction of the thickness the membrane was divided into three layers rather than as traditionally considered as a single entity, and on the surfaces the membrane displayed a random distribution rough microstructure that was composed of numerous nanometer scale columns coated by the cuticle wax secreted. The characteristics of the surfaces were accurately measured and a statistical radial distribution function of the columns was presented to describe the structural properties of the surfaces. Based on the surface microstructure, the mechanical properties of the membranes taken separately from the wings of living and dead dragonflies were investigated by the nanoindentation technique. The Young's moduli obtained here are approximately two times greater than the previous result, and the reasons that yield the difference are discussed. (C) 2007 Elsevier B.V. All rights reserved.

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Bamboo reinforced epoxy possesses reasonably good properties to waarrant its use as a structural material, and is fabricated by utilizing bamboo, an abundant material resource, in the technology of fibre composites. Literature on bamboo-plastics composites is rare. This work is an experimental study of unidirectional bamboo-epoxy laminates of varying laminae number, in which tensile, compressive, flexural and interlaminar shear properties are evaluated. Further, the disposition of bamboo fibre, the parenchymatous tissue, and the resin matrix under different loading conditions are examined. Our results show that the specific strength and specific modulus of bamboo-epoxy laminates are adequate, the former being 3 to 4 times that of mild steel. Its mechanical properties are generally comparable to those of ordinary glass-fibre composites. The fracture behaviour of bamboo-epoxy under different loading conditions were observed using both acoustic emission techniques and scanning electron microscopy. The fracture mode varied with load, the fracture mechanism being similar to glass and carbon reinforced composites. Microstructural analyses revealed that natural bamboo is eligibly a fibre composite in itself; its inclusion in a plastic matrix will help solve the problems of cracking due to desiccation and bioerosion caused by insect pests. Furthermore, the thickness and shape of the composite can be tailored during fabrication to meet specific requirements, thereby enabling a wide spectrum of applications.

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This work is an experimental study of unidirectional bamboo-epoxy laminates of varying laminae number, in which tensile, compressive, flexural and interlaminar shear properties are evaluated. Further, the disposition of bamboo fibre, the parenchymatous tissue, and the resin matrix under different loading conditions are examined. Our results show that the specific strength and specific modulus of bamboo-epoxy laminates are adequate, the former being 3 to 4 times that of mild steel. Its mechanical properties are generally comparable to those of ordinary glass-fibre composites. The fracture behaviour of bamboo-epoxy under different loading conditions were observed using both acoustic emission techniques and scanning electron microscopy. The fracture mode varied with load, the fracture mechanism being similar to glass and carbon reinforced composites. Microstructural analyses revealed that natural bamboo is eligibly a fibre composite in itself; its inclusion in a plastic matrix will help solve the problems of cracking due to desiccation and bioerosion caused by insect pests. Furthermore, the thickness and shape of the composite can be tailored during fabrication to meet specific requirements, thereby enabling a wide spectrum of applications.

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The North American weevil ( Euhrychiopsis lecontei (Dietz)) is being considered as a biological control agent for Eurasian watermilfoil ( Myriophyllum spicatum L.). This native insect damages watermilfoil plants and is frequently associated with declining watermilfoil populations