960 resultados para phenolic-idioblasts
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Previous studies on legume pulvini suggest that the vascular system plays an important role in the redistribution of ions and transmission of stimuli during leaf's movements. However, the number of anatomical and ultrastructural studies is limited to few species. The aim of this paper is to investigate the structure and cellular features of the pulvinus vascular system of nine legume species from Brazilian cerrado, looking for structural traits pointing to its participation in the leaf's movements. Samples were excised from the medial region of opened pulvinus of Bauhinia rufa, Copaifera langsdorffii, Senna rugosa (Caesalpinioideae), Andira humilis, Dalbergia miscolobium, Zornia dilphylla (Faboideae), Mimosa rixosa, Mimosa flexuosa and Stryphnodendron polyphyllum (Mimosoideae), and were prepared following light microscopy, transmission electron microscopy and histochemical standard techniques. The vascular system occupies a central position, comprises phloem and xylem and is delimited by a living sheath of septate fibers in all the species studied. This living cells sheath connects the cortex to the vascular tissues via numerous plasmodesmata. The absence of fibers and sclereids, the presence of phenolic idioblasts and the abundance and diversity of protein inclusions in the sieve tube members are remarkable features of the phloem. Pitted vessel elements, parenchyma cells with abundant cytoplasm and living fibriform elements characterize the xylem. The lack of lignified tissues and extensive symplastic continuity by plasmodesmata are remarkable features of the vascular system of pulvini of the all studied species. (c) 2007 Elsevier Ltd. All rights reserved.
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Brosimum gaudichaudii Trécul, popularmente conhecida como mama-cadela, é uma espécie arbórea comum nos cerrados brasileiros, de grande importância na alimentação e na medicina popular. A polpa amarela dos frutos é muito apreciada pelas crianças por ser semelhante à goma de mascar. Neste trabalho é apresentada a caracterização morfoanatômica e histoquímica da inflorescência, fruto e semente de B. gaudichaudii. O material foi processado segundo técnicas usuais para estudos anatômicos e ultra-estruturais. As inflorescências são captadas, globosas, pedunculadas, pendentes, predominantemente aos pares nas axilas foliares e recobertas por brácteas peltadas densamente pilosas. Cada inflorescência é composta por várias flores masculinas e uma flor feminina. As flores masculinas são constituídas por um estame envolvido por bractéolas. A flor feminina é constituída por um pistilo com ovário ínfero penta-carpelar, entretanto um só lóculo se desenvolve. É comum a presença de dois óvulos no lóculo desenvolvido; entretanto somente um óvulo se desenvolve em semente. O óvulo é pêndulo, hemianátropo e bitegumentado apenas na região micropilar. No fruto maduro, identificam-se: a polpa, correspondente a parte comestível, e endocarpo; na semente, o tegumento é membranáceo e o embrião não apresenta endosperma secundário. O tecido parenquimático da polpa apresenta muitos espaços intercelulares, repletos de conteúdo aquoso. O endocarpo é esclerificado e encontra-se bem diferenciado no fruto maduro. Os laticíferos são do tipo não-articulado ramificado, com paredes espessas e ocorrem no receptáculo da inflorescência, são abundantes no pedúnculo e na polpa do fruto maduro e no embrião. Os idioblastos fenólicos estão distribuídos na inflorescência e no fruto.
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Brosimum gaudichaudii, conhecida como mamacadela, é espécie comum nos cerrados, com grande valor na medicina popular e na indústria de medicamentos. A casca da raiz e do caule é empregada no tratamento do vitiligo, sendo o bergapteno e psoraleno, duas furanocumarinas, responsáveis pela ação farmacológica. Neste trabalho são apresentadas a caracterização morfoanatômica e a histoquímica de órgãos vegetativos de B. gaudichaudii, com informações sobre o embrião e o desenvolvimento pós-seminal. Amostras foram processadas segundo técnicas usuais em anatomia e ultra-estrutura vegetal. O embrião é do tipo total e invaginado, a plântula cripto-hipogéia e o sistema radicular do tirodendro é composto por raiz primária pouco desenvolvida em relação às raízes laterais. Plantas adultas apresentam raízes gemíferas longas, plagiotrópicas originando ramos caulinares aéreos; tais raízes possuem periderme com súber desenvolvido e floema secundário abundante em relação ao xilema, sendo facilmente destacados quando manipulados. O caule jovem e a folha apresentam epiderme unisseriada, grande densidade de tricomas tectores unicelulares e tricomas glandulares. Laticíferos não-articulados ramificados ocorrem em todos os órgãos, podendo invadir os elementos de vaso. Idioblastos fenólicos ocorrem em abundância em todos tecidos e órgãos analisados. O valor das características anatômicas observadas no controle de qualidade da droga é discutido.
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The floral anatomy of Cephalostemon, Monotrema, Rapatea, Spathanthus, and Stegolepis was studied for taxonomic purposes. All species studied share colleters between the floral parts; sepals, petals, anthers, and style covered by an ornamented cuticle; short epidermal cells with sinuous walls on the abaxial surface of the petals; tetrasporangiate anthers with phenolic idioblasts in the epidermis; endothecium with spiral thickenings; incompletely septate ovary; and anatropous, bitegmic ovules. The floral anatomy is useful not only for characterizing the family, but also for delimiting the subfamilies and genera. Sepals with silica bodies in the epidermal cells; mature anther wall composed of epidermis, endothecium, and middle layer; absence of phenolic idioblasts in the sepals, filaments, and ovary; and stylar epidermal cells with thickened external periclinal wall support Rapateoideae. Cephalostemon and Rapatea show a great number of similarities, corroborating their close relationship indicated in the phylogenetic analyses of the family. Monotrema shares few characters with the genera of Rapateoideae, corroborating its placement in Monotremoideae. Stegolepis shows several distinctive characters, probably related to the greater diversity found in this genus. © 2012 Springer-Verlag Wien.
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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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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In Brazil, the consumption of extra-virgin olive oil (EVOO) is increasing annually, but there are no experimental studies concerning the phenolic compound contents of commercial EVOO. The aim of this work was to optimise the separation of 17 phenolic compounds already detected in EVOO. A Doehlert matrix experimental design was used, evaluating the effects of pH and electrolyte concentration. Resolution, runtime and migration time relative standard deviation values were evaluated. Derringer's desirability function was used to simultaneously optimise all 37 responses. The 17 peaks were separated in 19min using a fused-silica capillary (50μm internal diameter, 72cm of effective length) with an extended light path and 101.3mmolL(-1) of boric acid electrolyte (pH 9.15, 30kV). The method was validated and applied to 15 EVOO samples found in Brazilian supermarkets.
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Genipap fruits, native to the Amazon region, were classified in relation to their stage of ripeness according to firmness and peel color. The influence of the part of the genipap fruit and ripeness stage on the iridoid and phenolic compound profiles was evaluated by HPLC-DAD-MS(n), and a total of 17 compounds were identified. Geniposide was the major compound in both parts of the unripe genipap fruits, representing >70% of the total iridoids, whereas 5-caffeoylquinic acid was the major phenolic compound. In ripe fruits, genipin gentiobioside was the major compound in the endocarp (38%) and no phenolic compounds were detected. During ripening, the total iridoid content decreased by >90%, which could explain the absence of blue pigment formation in the ripe fruits after their injury. This is the first time that the phenolic compound composition and iridoid contents of genipap fruits have been reported in the literature.
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Ceylon gooseberry is a deep-purple exotic berry that is being produced in Brazil with great market potential. This work aimed to determine major phenolic compounds in this specie by HPLC-PDA-ESI/MS. Samples were collected in two different seasons. Pulp and skin were analyzed separately. Non-acylated rutinoside derivatives of delphinidin (∼60-63%) and cyanidin (∼17-21%) were major anthocyanins tentatively identified. All anthocyanins had higher concentration in skin than in pulp (64-82 and 646-534mg of cyaniding-3-glucoside equivalents/100g skin and pulp, respectively). Moreover, anthocyanin profile changed between sampling dates (p<0.05). Mainly for delphinidin-3-rutinoside which could be a result of season variation. In this specie, non-anthocyanin polyphenols represent less than 35% of total extracted polyphenols. The tentative identification proposed a flavonol and three ellagitannins as major compounds of the non-anthocyanin phenolics fraction. Finally, anthocyanin is the major phenolic class in this fruit and its composition and content are significantly affected by season.