9 resultados para continuous gradient elation chromatography

em Repositório Institucional UNESP - Universidade Estadual Paulista "Julio de Mesquita Filho"


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Schizomeris Kützing é uma alga filamentosa sem ramificações e com sistema basal de fixação diferenciado. O gênero contém a espécie-tipo Schizomeris leibleinii Kützing e duas espécies pouco conhecidas, S. irregularis Fritsch & Rich e S. indicum (Ghose) Fritsch & Rich. As espécies são diferenciadas, principalmente, através do tipo de sistema basal de fixação. Contudo, a taxonomia específica do gênero é confusa. Estudos morfométricos e morfológicos foram realizados em populações identificadas como S. leibleinii de acordo com duas abordagens. Na primeira, foram analisadas 11 populações de diferentes localidades e na segunda, duas populações distintas através de coletas mensais durante 11 meses. O diâmetro de filamentos multisseriados, diâmetro e comprimento de células de filamentos multi e unisseriados, presença de constrição, ápice dos filamentos e tipo de sistema basal foram analisados em ambas abordagens. Além disso, estudos cariológicos foram efetuados para complementar as informações taxonômicas. Os resultados revelaram ampla variação morfológica, sendo mais acentuada entre as populações de localidades diferentes que nas mesmas populações ao longo do tempo, mas as características mostraram um gradiente contínuo. Os diferentes tipos de sistemas basais descritos para as espécies do gênero (claviforme, apressório, lobado e rizóides) foram encontrados nas populações estudadas. Esses resultados sugerem que a distinção entre as três espécies é muito frágil e não pode ser apoiada pela diferenciação do sistema basal ou por características métricas. Acredita-se que, por essas razões, o gênero Schizomeris seja composto por uma única espécie. A análise cariológica resultou em n = 12, diferindo de estudos anteriores e algumas possíveis explicações são apresentadas.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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A simple method was developed to determine carbofuran and 3-hydroxycarbofuran in coconut water. The procedure involved solid-phase extraction using C-18 cartridges with acetonitrile for elution. The analysis of these compounds was carried out by liquid chromatography with UV detection at 275 nm using a gradient solvent system. The method was validated with fortified samples at different concentration levels (0.01-2.5 mu g/mL). Average recoveries ranged from 81 to 95% with relative standard deviation between 1.6 and 12.5%. Each recovery analysis was repeated at least five times. Detection limits ranged from 0.008 to 0.01 mu g/mL. The analytical procedure was applied to coconut water samples from palms submitted to treatment with commercial formulation under field conditions.

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A method for the isolation of three compounds from the infusion of leaves of Byrsonima basiloba A. Juss. by high-speed counter-current chromatography (HSCCC) was developed. This technique led to the separation of a novel compound, quercetin 3-O-alpha-L-rhamnopyranosyl-(1 -> 3)-O-[alpha-L-rhamnopyranosyl-(1 -> 6)]-beta-D-allopyranoside, and two known compounds quercetin3-O-(X-L-rhamnopyranosyl-(1 -> 6)-beta-D-galactopyranoside and (+)-catechin in 4 h with purities of over 92%. The structures of the compounds were determined by one- and two-dimensional NMR spectroscopy and HPLC.

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A simple method was developed for the determination of fluquinconazole, pyrimethanil, and clofentezine in whole fruit; peel; and pulp of mango, apple, and papaya. These compounds were extracted from fruit samples with a mixture of ethyl acetate-n-hexane (1 + 1, v/v). An aliquot (2 mL) of the extract was evaporated to near dryness under a stream of nitrogen, and the residue was dissolved with 2 mL methanol. The analysis was performed by means of liquid chromatography with ultraviolet detection at 254 nm using a gradient solvent system. The method was validated with fortified fruit samples at concentration levels of 0.05, 0.10, 0.20, and 0.50 mg/kg. Average recoveries (4-8 replicates) ranged from 80 to 95% with relative standard deviations between 3.5 and 12.7%. Detection limits ranged from 0.03 to 0.05 mg/kg for fruit pulp and 0.03 mg/kg for whole fruit. The quantitation limits ranged from 0.05 to 0.10 mg/kg for fruit pulp and 0.05 mg/kg for whole fruit. The analytical method was applied to fruit samples obtained from local markets.

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Overhunting has caused severe decline or local extinction in many large-bodied mammals with direct consequences on plant regeneration, yet little is known about indirect impacts of selective defaunation on commensal species. Cascading effects of species extinction across dependent species groups are likely to occur in coprophagous beetles, because these invertebrates rely on mammal dung for food and nesting material. Both mammals and dung beetles provide important ecosystem services and cascading effects are likely to lead to rapid functional losses. In this study, we described changes in dung beetle communities across a gradient of selective defaunation in continuous Brazilian Atlantic rain forest. We compared the dung beetle assemblages in seven sites with different mammalian biomass and composition. The reduction in the mammalian biomass had a major effect on dung beetle communities by (1) increasing dung beetle abundance with decreasing overall mammal, primate and large mammal biomasses, (2) decreasing dung beetle species richness with decreasing overall mammal biomass and (3) decreasing dung beetle size with decreasing large mammal biomass. Moreover, our study demonstrated the importance of the composition of mammal communities in structuring dung beetle communities. This study documented how selective changes in mammalian biomass and composition affect dung beetle species communities, which in turn may have cascading consequences for the ecosystem. Since most of tropical ecosystems are facing dramatic changes in mammalian composition, it is urgent to evaluate the functional losses associated with such co-extinctions. © 2013 Elsevier Ltd.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)