992 resultados para zea-mays


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O presente trabalho teve como objetivo estudar os efeitos da aplicação de zinco em duas unidades de solos originalmente cobertas com vegetação de cerrado, classificadas como Latossolo Vermelho Amarelo-fase arenosa e Areias Quartzosas, que ocorrem no Município de São Simão no Estado de São Paulo Foram feitas determinações químicas do zinco solúvel em HCl 0,1 N, em amostras de solos antes e depois de terem recebido a calagem. As determinações de zinco foram complementadas com o teste microbiológico do Aspergilus niger Simultaneamente, foram conduzidos ensaios de campo com milho (Zea mays L.) e feijão Phaseolus vulgaris L.) para estudar os efeitos da aplicação de zinco nas duas unidades de solo. Outros experimentos com milho foram desenvolvidos sob condições controladas, em casa de vegetação, para estudos de aplicação de zinco. As conclusões do trabalho foram as seguintes: 1. Os resultados dos ensaios microbiológicos mostraram boa concordância com os testes químicos e com a resposta do milho a aplicação de zinco em condições de campo. 2. A cultura do milho deu boas respostas a aplicação de zinco quando cultido nos solos Areias Quartzosas, correspondendo a uma dose econômica de 2,4 kg/ha de zinco. 3. Não houve efeito do zinco para o milho quando este foi cultivado no Latossolo Vermelho Amarelo-fase arenosa. 4. Não houve efeitos do zinco na produção do feijoeiro nas duas unidades de solos. 5. O ensaio de vasos usando o milho como planta teste não foi eficiente na resposta dos solos as aplicações de zinco.

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Novos estimulantes vegetais têm merecido estudos por possuírem alto potencial para melhorarem a produtividade de culturas. Triacontanol, um álcool alifático primário de cadeia longa isolado de vegetais encontra-se dentre essas substâncias. Com o objetivo de verificar o efeito deste estimulante vegetal sob condições de laboratório, sementes de Zea mays cv. C-525 e Lycopersicon esculentum cv. Kada foram submetidas aos efeitos de 10 ml de triacontanol 0,01, 0,1 e 1 mg. 1-1, além do controle, em caixas de Petri. Observações realizadas 7 e 14 dias após a instalação do ensaio mostraram que concentrações crescentes de triacontanol tendem a aumentar o crescimento da radícula e do hipocótilo do tomateiro, 14 dias após a aplicação. Nesta data notou-se também que concentrações crescentes de triacontanol tendem a incrementar o desenvolvimento do hipocótilo do milho.

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De uma plantação bem conduzida de milho doce (Zea mays var. saahirata) cv. Contibrasil situada sobre um Latossolo Vermelho Escuro Orto, série "Luiz de Queiroz" de alta fertilidade natural no município de Piracicaba, SP, foram coletadas plantas aos 45, 60, 75, 90 e 105 dias após a germinação. As plantas foram divididas em folhas novas, velhas, colmo, pendão e espigas. O material após sofrer os processos necessários foi seco, pesado e analisado para N, P, K, Ca, Mg, S, B, Cu, Fe, Mn e Zn por métodos convencionais de laboratório. Os autores concluíram que: aumento de peso de matéria seca total é contínua até o final do ciclo; a acumulação de macronutrientes pela planta inteira obedece a seguinte ordem decrescente: N, K, P,Ca=S e Mg; o maior acúmulo de macronutrientes no final do ciclo ocorre no colmo, com exceção do N que é acumulado em maior quantidade nas espigas; o acúmulo de micronutrientes pela planta inteira obedece a seguinte ordem decrescente: Fe, Mn, Cu, Zn e B; o maior acúmulo de micronutrientes no final do ciclo ocorre no colmo; a exportação de nutrientes pela espiga representa 26,15% do total de nutrientes contidos na plantação.

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Membranes of maize (Zea mays L., cv LG 11) roots were fractionated by sucrose (in presence or absence of Mg2+) or dextran density gradient centrifugations and the locations of organelles were determined using marker enzymes. Latent UDPase was used as a Golgi marker, catalase for the peroxysomes, cytochrome c oxidase for the mitochondria, UDP-Gal-galactosyltransferase for the amyloplast membranes and NADH-cytochrome c reductase for the ER. Two markers were selected for the plasmalemma, the vanadate-sensitive ATPase and UDP-Glc-sterolglucosyltransferase. The distributions of the PPase and vacuolar ATPase were found to be similar after density gradient centrifugation. The PPase and vacuolar ATPase activities were clearly separated from almost all the other markers tested, however, a partial association of both activities with the ER cannot be completely ruled out. The PPase of maize roots is more active and easier to measure than the vacuolar ATPase and is therefore an excellent candidate for use as a tonoplast marker.

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Calcium uptake by tonoplast enriched membrane vesicles from maize (Zea mays L. cv. LG 11) primary roots was studied. A pH gradient, measured by the fluorescence quenching of quinacrine, was generated across sealed vesicles driven by the pyrophosphate-dependent proton pump. The fluorescence quenching was strongly inhibited by Ca2+; moreover, when increasing Ca2+ concentrations were added to vesicles at steady-state, a concomitant decrease in the proton gradient was observed. Ca2+ uptake using Ca-45(2+) was linear from 10 min when oxalate (10 mM) was present, while Ca2+ uptake was completely inhibited with proton ionophores (FCCP and monensin), indicating a Ca2+/H+ antiport. Membranes were further fractionated using a linear sucrose density gradient (10-45%) and were identified with marker enzymes. Ca2+ uptake co-migrated with the tonoplast pyrophosphate-dependent proton pumping, pyrophosphatase and ATPase activities: the Ca2+/H+ antiport is consequently located at the tonoplast.

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The subcellular localization of a calmodulin-stimulated calcium (Ca2+)-ATPase activity from maize roots (Zea mays L., cv LG 11) was studied. For this purpose, an efficient procedure was developed to prepare sealed plasma membrane vesicles allowing the measurement of proton and Ca2+ transport activities. Two-day-old root membranes were fractionated by sucrose and dextran density gradient centrifugation. Marker enzymes were used to study the distribution of the different membranes in the gradients and a filtration technique was developed to measure Ca-45(2+) transport in sealed vesicles. Most of the ATP-dependent Ca2+ transport activity was associated with the ER. However, a small part of this activity was associated with the tonoplast (corresponding to the activity of the H+/Ca2+ antiport) and the plasma membrane. When the Ca2+ transport was measured in the presence of exogenous calmodulin (1 muM), a 3-5-fold increase of uptake was measured. The calmodulin-stimulated activity was associated with the tonoplast vesicles only. This activity was insensitive to monensin, a proton ionophore, ruling out a direct effect of calmodulin on the H+/Ca2+ antiport. In conclusion, four different Ca2+ transporters are present in young maize root cells. A Ca2+/H+ antiport system is present on the tonoplast, whereas, the plasma membrane and the ER possess each a calmodulinin-sensitive Ca2+-ATPase. Finally, a calmodulin-stimulated Ca2+-ATPase is associated with the tonoplast.

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The tonoplast calcium Ca2+/H+ antiport system of maize (Zea mays L. cv LG 11) roots was characterized using the ''pH jump'' technique in order to avoid interference from the tonoplast proton and Ca2+ pumps. Ca2+ uptake was recorded in the presence of different inhibitors and divalent ions. Chemical modification of amino acid residues of the antiport was used to elucidate the amino acid residues participating in the Ca2+ transport activity. The Ca2+/H+ antiport activity was found to be strongly inhibited by ruthenium red and verapamil, whereas diethylstilbestrol was less effective. Vanadate, erythrosin B, cyclopiazonic acid, bafilomycin, thapsigargin, N,N'-dicyclohexylcarbodiimide (DCCD) and 4,4'-diisothiocyanatostilbene-2,2'-disulfonate (DIDS) were without effect. Lanthanum and divalent ions were strongly inhibitory (Cd2+ > Mn2+ > Sr2+ > Ba2+). While reagents modifying sulfhydryl groups (N-ethylmaleimide and 5,5'-dithio-bis(2-nitrobenzoate)) did not affect the antiport activity, modification of trytophan residues (N-bromosuccinimide) was strongly inhibitory. We conclude that ruthenium red, verapamil, lanthanum and divalent cations directly inhibit Ca2+ uptake independent of the function of the proton and Ca2+ pumps. Moreover, the results of chemically modified amino acid residues suggest that sulfhydryl groups are not involved in Ca2+ transport, while tryptophan residues seem important for this translocation.

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Quantitative analyses of abscisic acid in the elongating zone of a single maize root (Zea mays L. cv LG 11) were performed by gas chromatography-mass spectrometry using negative chemical ion ionization. Data showed that the more abscisic acid, the slower the growth, but a large dispersion of individual values was observed. We assume that abscisic acid is perhaps not correlated only to the growth rate.

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A maize (Zea mays L. cv LG 11) root homogenate was prepared and centrifuged to sediment the mitochondria. The pellet (6 KP) and the supernatant (6 KS) were collected and fractionated on linear sucrose density gradients. Marker enzymes were used to study the distribution of the different cell membranes in the gradients. The distribution of the ATP- and pyrophosphate-dependent proton pumping activities was similar after 3 hours of centrifugation of the 6 KS or the 6 KP fraction. The pumps were clearly separated from the mitochondrial marker cytochrome c oxidase and the plasmalemma marker UDP-glucose-sterolglucosyl-transferase. The pyrophosphate-dependent proton pump might be associated with the tonoplast, as the ATP-dependent pump, despite the lack of a specific marker for this membrane. However, under all the conditions tested, the two pumps overlapped the Golgi markers latent UDPase and glucan synthase I and the ER marker NADH-cytochrome c reductase. It is therefore not possible to exclude the presence of proton pumping activities on the Golgi or the ER of maize root cells. The two pumps (but especially the pyrophosphate-dependent one) were more active (or more abundant) in the tip than in the basal part of maize roots, indicating that these activities might be important in growth processes.

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Tonoplast-enriched membranes were prepared from maize (Zea mays L. cv LG 11) primary roots, using sucrose nonlinear gradients. The functional molecular size of the tonoplast ATP-and PPi-dependent proton pumps were analyzed by radiation inactivation. Glucose-6-phosphate dehydrogenase (G6PDH) was added as an internal standard. Frozen samples (-196 degrees C) of the membranes were irradiated with (60)Co for different periods of time. After thawing the samples, the activities of G6PDH, ATPase, and PPase were tested. By applying target theory, the functional sizes of the ATPase and PPase in situ were found to be around 540 and 160 kilodaltons, respectively. The two activities were solubilized and separated by gel filtration chromatography. The different polypeptides copurifying with the two pumps were analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Two bands (around 59 and 65 kilodaltons) were associated with the ATPase activity, whereas a double band (around 40 kilodaltons) was recovered with the PPase activity.

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ABSTRACT Production of the polyketide antimicrobial metabolite 2,4-diacetyl-phloroglucinol (DAPG) is a key factor in the biocontrol activity of Pseudomonas fluorescens CHA0. Strain CHA0 carrying a translational phlA'-'lacZ fusion was used to monitor expression of the phl biosynthetic genes in vitro and in the rhizosphere. Expression of the reporter gene accurately reflected actual production of DAPG in vitro and in planta as determined by direct extraction of the antimicrobial compound. In a gnotobiotic system containing a clay and sand-based artificial soil, reporter gene expression was significantly greater in the rhizospheres of two monocots (maize and wheat) compared with gene expression in the rhizospheres of two dicots (bean and cucumber). We observed this host genotype effect on bacterial gene expression also at the level of cultivars. Significant differences were found among six additional maize cultivars tested under gnotobiotic conditions. There was no difference between transgenic maize expressing the Bacillus thuringiensis insecticidal gene cry1Ab and the near-isogenic parent line. Plant age had a significant impact on gene expression. Using maize as a model, expression of the phlA'-'lacZ reporter gene peaked at 24 h after planting of pregerminated seedlings, and dropped to a fourth of that value within 48 h, remaining at that level throughout 22 days of plant growth. Root infection by Pythium ultimum stimulated bacterial gene expression on both cucumber and maize, and this was independent of differences in rhizosphere colonization on these host plants. To our knowledge, this is the first comprehensive evaluation of how biotic factors that commonly confront bacterial inoculants in agricultural systems (host genotype, host age, and pathogen infection) modulate the expression of key biocontrol genes for disease suppression.

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The coreid Leptoglossus zonatus (Dallas, 1852) is commonly found in corn (Zea mays L.) fields in Brazil, and it has been observed flying and landing on objects or persons near these fields. During January, 1995, this behavior was studied in corn plantations. Results indicated that the bugs concentrated on objects (plastic cylinders traps) introduced into their habitat and that their number increased during the first 24 hs. However, as time passed (8 days), this possible territorial or recognition behavior gradually decreased, and tended to disappear.

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The biology of nymphs and adults of the neotropical pentatomid, Dichelops melacanthus (Dallas), feeding on the natural foods, soybean, Glycine max (L.) Merrill immature pods, and corn, Zea mays L. immature seeds, and on an artificial dry diet, was studied in the laboratory. Nymph developmental time was shorter on the natural foods (ca. 21-22 days) than on the artificial diet (28 days), and most nymphs reached adulthood on the food plants (55% on soybean and 73% on corn) than on the artificial diet (40%). Fresh body weight at adult emergence was similar and higher for females raised as nymphs on the natural foods, compared to females from nymphs raised on the artificial diet; for males, weights were similar on all foods. Mean (female and male) survivorship up to day 20, decreased from 55% on soybean to 40% on corn, down to 0% on the artificial diet. Total longevity for females was higher on soybean, while for males was similar on all foods. About three times more females oviposited on soybean than on corn, but fecundity/female was similar on both foods. On the artificial diet, only one out of 30 females oviposited. Fresh body weight of adults increased significantly during the first week of adult life, and at the end of the 3rd week, weight gain was similar on all foods.

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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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Com o objetivo de avaliar a contribuição do fluxo de massa e da difusão no transporte de enxofre à superfície das raízes de milho, desenvolveu-se um ensaio em casa de vegetação, entre dezembro de 1991 e janeiro de 1992, utilizando-se amostras superficiais (0-20 cm) de três solos ácidos dos municípios mineiros de Viçosa, Paracatu e Lassance. Essas amostras apresentavam, respectivamente, 5,0, 1,2 e 1,4 mg dm-3 de S disponível, obtidos pelo extrator Ca(H2PO4)2, 500 mg L-1 de P em HOAc 2 mol L-1. O experimento correspondeu a um fatorial 3 x 5, sendo três solos e cinco doses de enxofre (0, 20, 40, 80 e 160 mg dm-3), estando os tratamentos dispostos em blocos casualizados, com quatro repetições. A umidade, controlada pelo uso de um tensiômetro por vaso, foi mantida próxima a -10 kPa durante todo o ensaio. Colhido o experimento, determinaram-se as concentrações de enxofre na planta e na solução do solo. A contribuição do fluxo de massa foi determinada, multiplicando-se a concentração de enxofre no extrato da pasta de saturação pelo volume de água transpirada pela planta. O enxofre transportado por difusão foi calculado, subtraindo-se do enxofre total acumulado na planta o valor correspondente ao enxofre transportado por fluxo de massa. O fluxo de massa foi o principal mecanismo de transporte de enxofre para a superfície radicular do milho. Quando a concentração de enxofre na solução do solo foi alta, esse mecanismo supriu quantidades de enxofre superiores às absorvidas pela planta. A contribuição da difusão para o suprimento de enxofre ocorreu, apenas, em baixa concentração desse nutriente na solução do solo.