958 resultados para ääni-imago


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Lagochile emarginata (Gyllenhal): morphology of immature and imago, and biological records (Coleoptera, Scarabaeidae, Rutelinae). The last larval instar and pupa of Lagochile emarginata are described. Pupa of the genus Lagochile Hoffmannsegg, 1817 is described for the first time. Redescription of the imago, clarifications on the morphology of immature Scarabaeoidea and biological notes are presented.

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Em experimento de casa de vegetação, realizado em Campinas (SP), no período de janeiro a maio de 1980, estudaram-se os efeitos da peletização do lodo de esgoto, nas doses 0, 1 e 5% (v/v) do material seco, na produção de matéria seca e na absorção de Zn, Cu e Ni pela parte aérea do milho (Zea mays L.), em latossolo roxo (LR), latossolo vermelho-escuro (LE) e latossolo vermelho-amarelo (LV), que receberam ou não adição de CaCO3 suficiente para elevação do pH em água para 6,0. O experimento foi realizado em vasos com dois litros de capacidade, delineados em blocos ao acaso, com três repetições, e os tratamentos arranjados num esquema fatorial. Após 200 dias de incubação dos solos com o lodo e CaCO3, cultivaram-se quatro plantas de milho em cada vaso. A parte aérea foi quantificada 56 dias após a germinação, sendo cortada, seca, pesada e analisada para os elementos Zn, Cu e Ni. Amostras de terra de cada tratamento foram retiradas e tiveram os metais extraídos pelo DTPA. A peletização do lodo de esgoto resultou em diminuição significativa na produção de matéria seca pela parte aérea do milho, nos três solos estudados, em comparação com o lodo não peletizado. A adição de CaCO3 proporcionou aumento significativo na produção de matéria seca do milho apenas nos dois solos mais ácidos (LE e LV) e diminuiu o acúmulo de Zn na parte aérea desse vegetal cultivado no LE, sem distinção quanto ao tipo de lodo aplicado, não se observando diferenças significativas na absorção de Ni, em todos os solos analisados. A incorporação do lodo peletizado , que continha 19% menos Zn e Ni que o não peletizado, resultou em menor absorção de Zn, Cu e Ni nos três solos, exceto para o Ni no LR. Para todos os solos investigados, o método do DTPA mostrou-se mais adequado em prognosticar as quantidades disponíveis de Zn e de Cu para o milho, independentemente do tipo de lodo de esgoto aplicado e da elevação ou não do pH do solo pela adição de CaCO3.

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Foi avaliado o efeito da omissão de N, Ni, Mo, Co e S sobre os teores de N e S em feijoeiros (Phaseolus vulgaris ) inoculados e não inoculados com Rhizobium, em casa de vegetação. O experimento foi realizado em um esquema fatorial com dois tipos de solo (Neossolo Flúvico), dois níveis de inoculação (com e sem), combinados com seis adubações: (a) Completo (N, P, K, Ni, Mo, Co e S); (b) sem N; (c) sem Ni; (d) sem Co; (e) sem Mo; (f) sem S. O delineamento experimental foi inteiramente casualizado com três repetições. Foram fornecidos 126 mg kg-1 de N (parcelados no plantio, aos 10 e 25 dias da emergência - DAE), 248 mg kg-1 de P, 117 de K e 48 de S, aplicados no solo, e 10, 250 e 10 mg L-1 de Ni, Mo e Co, respectivamente, aplicados via foliar aos nove DAE. A colheita foi efetuada aos 35 DAE, separando-se a folha indicadora das demais. A adubação nitrogenada aumentou o crescimento das plantas, indicando serem os solos deficientes em N, bem como reduziu os teores foliares de N e S. A omissão dos demais nutrientes não alterou o crescimento das plantas nem o teor de N foliar, mas a omissão de S reduziu, como esperado, o teor de S foliar.

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Baïn muoán coù moät vieäc laøm. Vaø baïn cuõng coù caoem giaùctin raèng ôoe moät nôi naøo ñoù coù moätngöôøi chuoechuû nhaân ñang caàn moät ngöôøi laømchính xaùc coâng vieäc baïn muoán - moät coâng vieäcñoøi hooei ñuùng kieán thöùc vaø caùc khaoe naêng cuoea baïn, cuõng nhö ñöa ra nhöõng thaùch thöùc vaø côhoäi thaêng tieán. Ñeå tìm ñöôïc coâng vieäc aáy, baïn caàn phaoei laäpkeá hoaïch tìm vieäc moät caùch kyõ caøng vaø thöïc hieän ñuùng keá hoaïch ñoù. Baïn coù theå baùn ñi moätthöù - ñoù laøcoi nhöõng kieán thöùc, kyõ naêng, vaøkinh nghieäm cuoea baïn - töùc - laø chính baïn! - nhölaø moät saûn phaåm caàn “baùn” cho caùc chuû nhaân!.Ñieàu baïn caàn bieát laø laøm theá naøo ñeå chöùng tooenaêng löïc cuoea mình moät caùch coù hieäu quaoe nhaát. Cho duø baïn môùi ra tröôøng hay vaø ñang chuaånbò baét ñaàu moätböôùc ñaàu trong söï nghieäp cuûa mình hay ñang tìm moät coâng vieäc môùi sau 20naêm kinh nghieäm, moät soá phöông phaùp ñöôïctrình baøy trong taäp thoâng tin naøy coù theå giuùpích cho baïn. NOTE: Vietnamese Translation

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MHC-peptide multimers containing biotinylated MHC-peptide complexes bound to phycoerythrin (PE) streptavidin (SA) are widely used for analyzing and sorting antigen-specific T cells. Here we describe alternative T cell-staining reagents that are superior to conventional reagents. They are built on reversible chelate complexes of Ni(2+)-nitrilotriacetic acid (NTA) with oligohistidines. We synthesized biotinylated linear mono-, di-, and tetra-NTA compounds using conventional solid phase peptide chemistry and studied their interaction with HLA-A*0201-peptide complexes containing a His(6), His(12), or 2×His(6) tag by surface plasmon resonance on SA-coated sensor chips and equilibrium dialysis. The binding avidity increased in the order His(6) < His(12) < 2×His(6) and NTA(1) < NTA(2) < NTA(4), respectively, depending on the configuration of the NTA moieties and increased to picomolar K(D) for the combination of a 2×His(6) tag and a 2×Ni(2+)-NTA(2). We demonstrate that HLA-A2-2×His(6)-peptide multimers containing either Ni(2+)-NTA(4)-biotin and PE-SA- or PE-NTA(4)-stained influenza and Melan A-specific CD8+ T cells equal or better than conventional multimers. Although these complexes were highly stable, they very rapidly dissociated in the presence of imidazole, which allowed sorting of bona fide antigen-specific CD8+ T cells without inducing T cell death as well as assessment of HLA-A2-peptide monomer dissociation kinetics on CD8+ T cells.

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Ultramafic rocks, mainly serpentinized peridotites of mantle origin, are mostly associated with the ophiolites of Mesozoic age that occur in belts along three of the margins of the Caribbean plate. The most extensive exposures are in Cuba. The ultramafic-mafic association (ophiolites) were formed and emplaced in several different tectonic environments. Mineralogical studies of the ultramafic rocks and the chemistry of the associated mafic rocks indicate that most of the ultramafic-mafic associations in both the northern and southern margins of the plate were formed in arc-related environments. There is little mantle peridotite exposed in the ophiolitic associations of the west coast of Central America, in the south Caribbean in Curacao and in the Andean belts in Colombia. In these occurrences the chemistry and age of the mafic rocks indicates that this association is mainly part of the 89 Ma Caribbean plateau province. The age of the mantle peridotites and associated ophiolites is probably mainly late Jurassic or Early Cretaceous. Emplacement of the ophiolites possibly began in the Early Cretaceous in Hispaniola and Puerto Rico, but most emplacement took place in the Late Cretaceous to Eocene (e.g. Cuba). Along the northern South America plate margin, in the Caribbean mountain belt, emplacement was by major thrusting and probably was not completed until the Oligocene or even the early Miocene. Caribbean mantle peridotites, before serpentinization, were mainly harzburgites, but dunites and lherzolites are also present. In detail, the mineralogical and chemical composition varies even within one ultramafic body, reflecting melting processes and peridotite/melt interaction in the upper mantle. At least for the northern Caribbean, uplift (postemplacement tectonics) exposed the ultramafic massifs as a land surface to effective laterization in the beginning of the Miocene. Tectonic factors, determining the uplift, exposing the peridotites to weathering varied. In the northern Caribbean, in Guatemala, Jamaica, and Hispaniola, uplift occurred as a result of transpresional movement along pre-existing major faults. In Cuba, uplift occurred on a regional scale, determined by isostatic adjustment. In the south Caribbean, uplift of the Cordillera de la Costa and Serrania del Interior exposing the peridotites, also appears to be related to strike-slip movement along the El Pilar fault system. In the Caribbean, Ni-laterite deposits are currently being mined in the central Dominican Republic, eastern Cuba, northern Venezuela and northwest Colombia. Although apparently formed over ultramafic rocks of similar composition and under similar climatic conditions, the composition of the lateritic soils varies. Factors that probably determined these differences in laterite composition are geomorphology, topography, drainage and tectonics. According to the mineralogy of principal ore-bearing phases, Dominican Ni-laterite deposits are classified as the hydrous silicate-type. The main Ni-bearing minerals are hydrated Mg-Ni silicates (serpentine and ¿garnierite¿) occurring deeper in the profile (saprolite horizon). In contrast, in the deposits of eastern Cuba, the Ni and Cooccurs mainly in the limonite zone composed of Fe hydroxides and oxides as the dominant mineralogy in the upper part of the profile, and are classified as the oxide-type.

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Abstract: Women's voices and peripheral politics : feminist interpretations of the transition of stage in the Ireland of the 1990's

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Birnessites precipitated by bacteria are typically poorly crystalline Mn(IV) oxides enmeshed within biofilms to form complex biomass-birnessite assemblages. The strong sorption affinity of bacteriogenic birnessites for environmentally important trace metals is relatively well understood mechanistically, but the role of bacterial cells and extracellular polymeric substances appears to vary among trace metals. To assess the role of biomass definitively, comparison between metal sorption by biomass at high metal loadings in the presence and absence of birnessite is required. We investigated the biomass effect on Ni sorption through laboratory experiments utilizing the birnessite produced by the model bacterium, Pseudomonas putida. Surface excess measurements at pH 6?8 showed that birnessite significantly enhanced Ni sorption at high loadings (up to nearly 4-fold) relative to biomass alone. This apparent large difference in affinity for Ni between the organic and mineral components was confirmed by extended X-ray absorption fine structure spectroscopy, which revealed preferential Ni binding to birnessite cation vacancy sites. At pH >= 7, Ni sorption involved both adsorption and precipitation reactions. Our results thus support the view that the biofilm does not block reactive mineral surface sites; instead, the organic material contributes to metal sorption once high-affinity sites on the mineral are saturated.

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We have measured the adiabatic elastic constants of two Cu-Al-Ni martensitic alloys using ultrasonic methods and we have compared the results to recent neutron-scattering experiments. It is shown that the elastic behavior of Cu-Al-Ni alloys follows the same trends exhibited by other Cu-based alloys; in particular, the TA2 long-wavelength acoustic modes are softer than all other modes.