10 resultados para Araucariaceae


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As células compartimentadas do gênero Araucaria Juss. foram primeiramente descritas como células incomuns, caracterizadas pela ocorrência de partições pécticas no lume celular, formando um sistema de compartimentos. Entretanto, várias questões sobre essas células ainda não haviam sido esclarecidas, por isso, o presente trabalho envolveu a observação e descrição dos estádios de desenvolvimento das células compartimentadas nas plantas jovens e adultas da espécie Araucaria angustifolia, sob microscopia óptica e eletrônica, além de elucidar as funções e a dinâmica celular desempenhada pelas mesmas. A diferenciação das células compartimentadas ocorria ainda no ápice caulinar, iniciando quando a célula aumentava de volume (estádio 1). A mucilagem era continuamente secretada, através do Golgi e retículo endoplasmático rugoso, preenchendo o citoplasma e reduzindo o vacúolo (estádio 2). A quantidade citoplasmática se reduzia, praticamente, em torno do núcleo (estádio 3). Finalmente, a célula era totalmente preenchida de mucilagem, constituída por uma rede lamelar, perdendo sua forma poligonal (estádio 4). Núcleo e citoplasma degeneravam. Com base nesses resultados, constatou-se que as células compartimentadas de Araucaria angustifolia eram semelhantes às células de mucilagem de algumas famílias de dicotiledôneas. A função de controle hídrico foi comprovada, baseado, principalmente, nos resultados obtidos pelo traçador apoplástico HPTS (hidroxi-ácido pirenetrissulfônico), que demonstrou a rota de translocação e regulação hídrica na folha. A morte celular programada também mostrou-se evidente com a degeneração do vacúolo, condensação e descromatização do núcleo e degeneração geral do sistema de membranas A utilização de anticorpos monoclonais para determinados epitopos pécticos, são importantes ferramentas nos estudos da dinâmica da parede celular. Ao longo do desenvolvimento das células compartimentadas (células mucilaginosas), havia um gradiente de distribuição com relação a rápida de-esterificação, ao aumento da concentração de galactanos e ligações de cálcio e diminuição nas concentrações de arabinanos e de proteínas arabinogalactanos (AGPs). Alguns resultados mostraram-se diferentes nas células parenquimáticas, justificando as diferenças na elasticidade da parede celular nas células mucilaginosas de Araucaria angustifolia. Observou-se que proteínas arabinogalactanos e pectinas com alto grau de metil-esterificação estavam presentes na mucilagem. A degeneração das AGPs na maturidade das células mucilaginosas, tanto na parede celular, como na mucilagem, poderia estar envolvida no processo de morte celular programada.

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A small population of tall slender conifers was discovered in 1994 in a deep rainforest canyon of the Wollemi National Park, New SouthWales, Australia. The living trees closely resembled fossils that were more than 65 million years old, and this ‘living fossil’ was recognised as a third extant genus in the Araucariaceae (Araucaria, Agathis and now Wollemia). The species was named the Wollemi pine (W. nobilis). Extensive searches uncovered very few populations, with the total number of adult trees being less than 100. Ex situ collections were quickly established in Sydney as part of the Wollemi Pine Recovery Plan. The majority of the ex situ population was later transferred to our custom-built facility in Queensland for commercial multiplication. Domestication has relied very heavily on the species’ amenability to vegetative propagation because seed collection from the natural populations is dangerous, expensive, and undesirable for conservation reasons. Early propagation success was poor, with only about 25% of cuttings producing roots. However, small increases in propagation success have a very large impact on a domestication program because plant production can be modelled on an exponential curve where each rooted cutting develops into a mother plant that, in turn, provides more rooted cuttings. An extensive research program elevated rooting percentages to greater than 80% and also provided in vitro methods for plant multiplication. These successes have enabled international release of the Wollemi pine as a new and attractive species for ornamental horticulture.

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Araucaria angustifolia is an endangered Brazilian native conifer tree. The aim of the present work was to identify differentially expressed proteins between mature and germinated embryos of A. angustifolia, using one and two dimensional gel electrophoresis approaches followed by protein identification by tandem mass spectrometry. The identities of 32 differentially expressed protein spots from two dimensional gel maps were successfully determined, including proteins and enzymes involved in storage mobilization such as the vicilin-like storage protein and proteases. A label free approach, based on spectral counts, resulted in detection of 10 and 14 mature and germinated enriched proteins, respectively. Identified proteins were mainly related to energetic metabolism pathways, translational processes. oxidative stress regulation and cellular signaling. The integrated use of both strategies permitted a comprehensive protein expression overview of changes in germinated embryos in relation to matures, providing insights into the this process in a recalcitrant seed species. Applications of the data generated on the monitoring and control of in vitro somatic embryos were discussed. Published by Elsevier Ltd.

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Ultraviolet radiation is one of the most deleterious forms of radiation to terrestrial organisms and is involved in formation of mutagenic pyrimidine dimers and oxidized nucleotides. The biflavonoid fraction (BFF), extracted from needles of Araucaria angustifolia was capable of protecting calf thymus DNA from damage induced by UV radiation. This occurred through prevention of cyclobutane thymine dimer and 8-oxo-7,8-dihydro-2`-deoxyguanosine formation, this being quantified by high-performance liquid chromatography coupled to tandem mass spectrometry (HPLC-MS/MS) in a multiple reaction monitoring mode (MRM) and by HPLC-coulometric detection, respectively. (C) 2009 Elsevier Ltd. All rights reserved.

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Angiosperm and gymnosperm plants evolved from a common ancestor about 300 million years ago. Apart from morphological and structural differences in embryogenesis and seed origin, a set of embryogenesis-regulating genes and the molecular mechanisms involved in embryo development seem to have been conserved alike in both taxa. Few studies have covered molecular aspects of embryogenesis in the Brazilian pine, the only economically important native conifer in Brazil. Thus eight embryogenesis-regulating genes, viz.,ARGONAUTE 1, CUP-SHAPED COTYLEDON 1, WUSCHEL-related WOX, S-LOCUS LECTIN PROTEIN KINASE, SCARECROW-like, VICILIN 7S, LEAFY COTYLEDON 1, and REVERSIBLE GLYCOSYLATED POLYPEPTIDE 1, were analyzed through semi-quantitative RT-PCR during embryo development and germination. All the eight were found to be differentially expressed in the various developmental stages of zygotic embryos, seeds and seedling tissues. To our knowledge, this is the first report on embryogenesis-regulating gene expression in members of the Araucariaceae family, as well as in plants with recalcitrant seeds.

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Brazilian pine (Araucaria angustifolia (Bert) O. Ktze) is the only native conifer species with economic importance in Brazil. Recently, due to intensive exploitation Brazilian pine was included in the official list of endangered Brazilian plants, under the "vulnerable" category. Biotechnology tools like somatic embryogenesis (SE) are potentially useful for mass clonal propagation and ex situ conservation strategies of commercial and endangered plant species. In spite of that, numerous obstacles still hamper the full application of SE technology for a wider range of species, including Brazilian pine. To enhance somatic embryogenesis in Brazilian pine and to gain a better understanding of the molecular events associated with somatic embryo development, we analyzed the steady-state transcript levels of genes known to regulate somatic embryogenesis using semiquantitative reverse transcription polymerase chain reaction (sqRT-PCR). These genes included Argonaute (AaAGO), Cup-shaped cotyledon1 (AaCUC), wushel-related WOX (AaWOX), a S-locus lectin protein kinase (AaLecK), Scarecrow- like (AaSCR), Vicilin 7S (AaVIC), Leafy Cotyledon 1 (AaLEC), and a Reversible glycosylated polypeptide (AaRGP). Expression patterns of these selected genes were investigated in embryogenic cultures undergoing different stages of embryogenesis, and all the way to maturation. Up-regulation of AaAGO, AaCUC, AaWOX, AaLecK, and AaVIC was observed during transition of somatic embryos from stage I to stage II. During the maintenance phase of somatic embryogenesis, expression of AaAGO and AaSCR, but not AaRPG and AaLEC genes was influenced by presence/ absence of plant growth regulators, both auxins and cytokinins. The results presented here provide new insights on the molecular mechanisms responsible for somatic embryo formation, and how selected genes may be used as molecular markers for Brazilian pine embryogenesis.

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Uno de los efectos de la catástrofe que en mil novecientos cuarenta y cuatro, destruyera la ciudad de San Juan, ha sido el de poner en descubierto la flora endrológica cultivada en los predio urbanos, que no podía ser vista por el viajero, antes de aquella fecha. El autor hace una clasificación preliminar de la misma, ocupándose de forma preferente de la flora autóctona representada por diez y siete especies indígenas que enumera, muchas de las cuales están documentadas con ejemplares de herbario, citado, o fotografías que ilustran el trabajo. Una corta lista de veinticuatro especies no indígenas, cultivadas, totalizan cuarenta y una especie arbóreas cultivadas, que menciona, en forma preliminar, para la ciudad de San Juan.