295 resultados para Lycopersicon pennellii
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Sementes de tomate, sendo dois lotes comerciais do cultivar Petomech e dois lotes do cultivar Santa Clara, foram estudados com o objetivo de se avaliar as variações nos resultados de teste de condutividade elétrica, em função do período de embebição (6, 12, 18 e 24 horas) e do número de sementes utilizadas no teste (25, 50 e 100), procurando-se relacionar os resultados com a emergência das plântulas e o desempenho das sementes em outros testes, em tres épocas de avaliação. Os resultados obtidos mostraram comportamento diferenciado dos cultivares, com valores mais altos de condutividade elétrica para as sementes do cultivar Petomech. Observaram-se também diferenças acentuadas entre os dois lotes do cultivar Petomech em termos de condutividade. Os acréscimos dos valores de condutividade com o decorrer da embebição corresponderam a queda no vigor das sementes independentemente do cultivar.
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O objetivo do presente trabalho foi verificar os efeitos dos reguladores vegetais GA3 50 mg.l-1, NAA 100 mg.l-1, CCC 1500 mg.l-1 e SADH 3000 mg.l-1 em folhas de tomate, Lycopersicon esculentum Mill. cv. 'Ângela Gigante'. Os promotores de crescimento aumentaram o número de estômatos por milímetro quadrado na epiderme adaxial e diminuíram o número de células epidérmicas em ambos os lados da folha. em relação ao controle, os retardantes de crescimento aumentaram em maior nível a espessura do parênquima lacunoso do que os promotores de crescimento.
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The effects of plant growth regulators GA(3) 50 mg. L-1, NAA 100 mg. L-1, CCC 1500 mg.L-1 and SADH 3000 mg.L-1 on stem anatomy of Lycopersicon esculentum Mill cv. Angela Gigante were studied. Two sets of experiments were carried out in greenhouse during two separte periods. Anatomical studies,revealed that growth promoters induced increased xylem thickness and increased the number of tracheary elements while the growth retardants decreased xylem thickness and induced fiber formation.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Pós-graduação em Agronomia - FEIS
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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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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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The synthesis of the plant cell wall is very complex, and understanding how this process occurs will lead to many benefits for future research and industries dependent upon cell walls for their products. The recent discovery of the functions of AtMUR3 and AtGT18 in Arabidopsis thaliana as xyloglucan galactosyltransferases has led to the identification of many more putative glycosyltransferases in the Arabidopsis genome. Due to the structural differences between the xyloglucans of Arabidopsis and solanaceous plants, we decided to search for putative arabinosyltransferases in the Solanaceae. Solanaceous xyloglucan is substituted by one to two arabinosyl residues at the second xylose position, and sometimes contains an arabinose at the first xylose position. In contrast, Arabidopsis xyloglucan does not contain arabinose, and is substituted by galactose at the second and third xylose position. Furthermore, the second galactose residue in Arabidopsis xyloglucan is usually fucosylated, a modification not found in solanaceous plants. Searching the database of expressed sequence tags (dbEST), we identified many likely glycosyltransferases in solanaceous plants, including tomato (Lycopersicon esculentum). AtMUR3 and AtGT18 search queries resulted in the identification of three putative glycosyltransferases in L. esculentum, which were tentatively designated LeGT1, Le1GT18, and Le2GT18. Based on phylogenetic considerations, Le2GT18 was thought to be a putative arabinosyltransferase. The gene was transformed into atmur3-3 and atgt18 mutant plants, and the resulting plants will be screened for homozygous plants with the inserted gene. The homozygous T2 plants can then be screened for changes in the composition of their cell walls. Because Le2GT18 is thought to be an arabinosyltransferase, the levels of arabinose may be increased in the xyloglucan fraction of the cell wall. If so, further testing can be performed to reveal the true function of Le2GT18.
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La resistencia de la piel es un factor determinante de la resistencia mecánica de los frutos de tomate. Los ensayos de punción se han mostrado muy útiles para el conocimiento de las diferencias entre las variedades en ese aspecto. El estudio histológico de las zonas epidérmica e hipodérmica de este mismo material muestra la importancia de la cutícula y de la forma de las células epidérmicas en relación a la resistencia a la punción.
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Systemin-mediated defense signaling in tomato (Lycopersicon esculentum) plants is analogous to the cytokine-mediated inflammatory response in animals. Herein, we report that the initiation of defense signaling in suspension-cultured cells of Lycopersicon peruvianum by the peptide systemin, as well as by chitosan and β-glucan elicitor from Phytophtora megasperma, is inhibited by the polysulfonated naphtylurea compound suramin, a known inhibitor of cytokine and growth factor receptor interactions in animal cells. Using a radioreceptor assay, we show that suramin interfered with the binding of the systemin analog 125I-Tyr-2,Ala-15-systemin to the systemin receptor with an IC50 of 160 μM. Additionally, labeling of the systemin receptor with a photoaffinity analog of systemin was inhibited in the presence of suramin. Receptor-mediated tyrosine phosphorylation of a 48-kDa mitogen-activated protein kinase and alkalinization of the medium of suspension-cultured cells in response to systemin and carbohydrate elicitors were also inhibited by suramin. The inhibition of medium alkalinization by suramin was reversible in the presence of high concentrations of systemin and carbohydrate elicitors. Calyculin A and erythrosin B, intracellular inhibitors of phosphatases and plasma membrane proton ATPases, respectively, both induce medium alkalinization, but neither response was inhibited by suramin. The polysulfonated compound heparin did not inhibit systemin-induced medium alkalinization. NF 007, a suramin derivative, induced medium alkalinization, indicating that neither NF 007 nor heparin interact with elicitor receptors like suramin. The data indicate that cell-surface receptors in plants show some common structural features with animal cytokine and growth factor receptors that can interact with suramin to interfere with ligand binding.
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"July 1940."