981 resultados para Turion germination


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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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Soybeans seeds with different levels of vigour, treated and or no with fungicide were submitted to the test of germination in the sand and roll substrates of paper and the test of sanity. In test of germination, there were only significant differences between treatments that used soybeans with high vigour and with low vigour, regardless of the presence or absence of fungicide treatment, in the two substrates. The soybeans with low vigour no treated provided the largest percentages of seed contaminated with fungi, in contrast, the seeds with high vigour treated. There was only a slight contamination in soybeans with low vigour treated, unlike seeds with low vigour untreated, which showed the incidence of most fungi found. In the germination of seedlings normal, there are differences between treatments that used seeds with high vigour and low vigour, and is independent of the fungicide treatment and the type of substratum used. The effect of a fungicide depends of the vigour of seeds when of the occurrence of fungi associated to the soybean seeds of the cultivar analyzed.

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Dypsis leptocheilos (Hodel) Beentje & J. Dransf. palms are widely used in landscaping, however there is a lack of studies about its biology, especially on the morphology of its seedling disseminules and the ideal seed storage time without loss of viability. The objectives of this work were to describe the morphological aspects and to study the storage effect on the germination of D. leptocheilos seeds. The experiments were performed at FCAV/UNESP, Jaboticabal Campus, São Paulo State, Brazil. In order to obtain a morphology description 100 disseminules were sowed in vermiculite. The external and internal sides of the disseminules as well as the representative phases of the germination process were sketched with the help of a light chamber attached to a stereomicroscope. Five treatments were arranged in order to study the storage effects on the seeds (four months of storage and straight after harvest), with four replicates with 25 disseminules each (seeds with attached endocarp) in a completely randomized design. The germination test was conducted over a 140 days period and noted every two days. In order to calculate the germination percentage (% G) and the Germination Speed Index (GSI), the seeds were considered germinated when the germinative button appeared. The data were submitted to a polynomial regression analysis to verify the behavior of the variables over the storage period. The D. leptocheilos seeds have rounded shape, ruminate endosperm and hard consistency. The embryo is lateral, peripheral and relatively undifferentiated, with approximately 3 mm long and conical shape. The germination percentage increased from 17% for seeds sowed straight after harvest to 73% for those stored over a three-month period. For the GSI the increase was about 0.85%. It was concluded that the germination of D. leptocheilos is of an adjacent ligulate type. Furthermore, the seeds stored for 3 months at 14 degrees C showed both higher percentage and germination speed.

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The work had as objective to evaluate the provenances of seeds to verify the efficiency of different tests of vigor for identification of the physiological potential in four lots of seeds of mutamba (Guazuma ulmifolia Lam.). The study it was developed in the Laboratory of Analysis of Seeds and in the Experimental Fishery of Ornamental and Forest Plants - UNESP, Jaboticabal, SP. Four lots of seeds proceeding from three São Paulo localities had been used: lots I and II, collected in the city of Jaboticabal in 2000 and 2001, respectively, lot III: collected in Saint Rita do Passo Quatro and it crowds IV: collected in Luiz Antonio, both in 2001. The seeds used in all the tests had been escarificadas with sulfuric acid during 50 minutes, and washed in current water during 15 minutes. They had been evaluated: seed moisture, test of germination, test of first counting, index of germination speed, emergency in fishery, index of emergency speed. The seeds moisture of the seeds in the different lots had presented small variations (9,2 10.0%). Statistical differences for the germination percentage, emergency in fishery and index of speed of emergency in the different studied lots had not been verified. The tests of first counting and index of germination speed had revealed adequate for evaluation of the physiological potential of the lots. The seeds of lot III proceeding from the city of Santa Rita do Passo Quatro, had presented superior physiological potential to the too much studied lots.

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Official rules for seed analysis don't establish criteria to execute germination tests for all species. This way, the aim of this research was to determinate the substrate, temperature and counting time for the germination test of physic nut seeds. For the germination test, four replications of 20 seeds were used, evaluating daily the normal seedlings until the end of germination. Initially, the substrates with sowing in vermiculite, were evaluated in rolled paper towels, in sand and in soil using alternating temperature of 20-30 degrees C. The most favorable substrates for germination were evaluated with another stage, using constant temperatures of 25, 30 and 35 degrees C and alternating ones, of 15-35 degrees C, 20-35 degrees C and 20-30 degrees C. One concluded that the germination test of physic nut seeds must be performed with the alternating temperature of 20-30 degrees C in sand or paper towel and with final counting 10 days after sowing.

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The aim of this research was to identify methods for breaking dormancy and promoting germination of Stryphnodendron adstringens and S. polyphyllum seeds. Seeds of both species were submitted to the following treatments for breaking dormancy: control; mechanical scarification (sandpaper number 220); hot water (initial temperature of 87 degrees C) for 5 and 15 minutes; chemical scarification with H(2)SO(4) (95%) for 30, 45, 60, 75, 90 and 105 minutes; thermal shock 1 (0 degrees C and 50% RH for 1 h and thereafter 10 minutes into water Ti=85 degrees C, Tf=57 degrees C); thermic shock 2 (40 degrees C and 40% RH for 6 h and thereafter 10 minutes into water, Ti=0 degrees C, Tf=3 degrees C); thermal shock 3 (40 degrees C and 40% RH for 6h and thereafter 10 minutes into water, Ti=25 degrees C, Tf=25 degrees C). We concluded that seeds belonging to same genus but from different species answered differently to some treatments for breaking dormancy. Chemical scarification with H(2)SO(4) (45 minutes) and mechanical scarification with sandpaper are methods that can be employed with efficiency to break dormancy and promote germination for both species.

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The electrical conductivity test is still an excellent tool to evaluate the effect of seeds of various forest and agricultural species and recent studies have been conducted aiming at verifying its application in forest seeds. The objective of this study was to establish a specific methodology to test the electrical conductivity of forest seeds of Zeyheria tuberculosis. Four lots of seeds were used, which were submitted to the germination test, evaluating the percentage of germination, germination speed index and dry mass of seedlings. For the electrical conductivity test, five replicates of 20 seeds installed in three volumes of deionized water (75, 100 and 125 mL) were used and eight periods for seed imbibitions (2, 4, 6, 12, 18, 24, 48 and 72 hour) at 25 degrees C were allowed. The statistical design used was completely random; the comparison of means was performed by Tukey test at 5 % probability. Lot II showed higher germination percentage and speed. The electrical conductivity test allows discrimination of the same batch by the germination test under laboratory conditions. It was possible to separate the seed lot presenting better physiological quality (lot II) from among the other lots. It was recommended the use of 75 or 125 mL of deionized water at a temperature of 25 degrees C to perform the electrical conductivity test.

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

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

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O objetivo do trabalho foi estudar o efeito de combinações de inseticidas e de fungicidas sobre a conservação de sementes de milho durante o armazenamento. Os tratamentos aplicados e respectivas doses, para 1000kg de sementes, foram os seguintes: 1) testemunha; 2) anilina (936mL); 3) anilina (936mL) + Thiabendazole (120g) + Dicarboximida (187,5g) + Pirimifos- methyl (6,25mL) + Deltamethrin (0,75mL); 4) anilina (936mL) + Thiabendazole (240g) + Dicarboximida (375,0g) + Pirimifos- methyl (12,50mL) + Deltamethrin (1,50mL); 5) anilina (936mL) + Thiabendazole (480g) + Dicarboximida (750,0g)+ Pirimifos- methyl (25,00mL) + Deltamethrin (3,00mL); 6) anilina (936mL) + Thiabendazole (960g) + Dicarboximida (1500,0g) + Pirimifos- methyl (50,00mL) + Deltamethrin (6,00mL). As sementes foram analisadas quanto ao teor de água, germinação e vigor (testes de envelhecimento acelerado e de frio com solo) aos 0, 6, 9 e 12 meses de armazenamento. Os dados obtidos permitiram concluir que os tratamentos químicos aplicados tendem, com o aumento das dosagens, a gerar efeitos latentes, desfavoráveis ao desempenho das sementes, intensificados com o prolongamento do período de armazenamento.

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Este trabalho foi conduzido com o objetivo estudar diferentes substratos e temperaturas para germinação de sementes de faveleira. Foram testadas as temperaturas constantes de 25º e 30ºC e alternadas com amplitudes de 5ºC (30-35ºC), 10ºC (20-30º e 25-35ºC) e 15ºC (20-35ºC), e fotoperíodo de oito horas para a temperatura mais elevada e dezesseis horas para a temperatura mais baixa. Os substratos papel de filtro, areia, vermiculita e papel germitest, foram umedecidos com solução de nistatina 0,2%. Para o teste de germinação em laboratório para sementes de faveleira pode-se recomendar os substratos areia, vermiculita, papel germitest e papel filtro combinado com temperaturas alternadas de 20ºC -30ºC. Para o teste de vigor, velocidade de germinação de sementes de faveleira, pode-se recomendar o substrato papel filtro combinado com as temperaturas alternadas de 20ºC -30ºC.

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A semente de milho doce é leve e rugosa. A rugosidade torna difícil a classificação das sementes quanto à forma e ao tamanho e isso dificulta a semeadura. Uma solução para esse problema seria a utilização da técnica de revestimento. Assim, este trabalho teve por objetivo avaliar diferentes materiais de enchimento, cimentantes e corantes na peletização de sementes de milho superdoce e verificar quais combinações de materiais seriam eficientes na manutenção da qualidade fisiológica das sementes após o armazenamento e que permitissem vazão e distribuição uniformes durante a semeadura. Foram então testados doze materiais de enchimento (calcários 1 e 2, caulim, carvão vegetal ativado, areia, vermiculita, fubá de milho, farinha de trigo, polvilho de mandioca, amido de milho, celite e terra de diatomáceas), dois cimentantes (goma arábica e cascorez extra) e seis corantes (tintas guache, acrílica, plástica e para tecido, corante para alimento e gelatina). As avaliações da qualidade física e fisiológica das sementes revestidas e nuas foram efetuadas por meio dos testes: teor de água, fragmentação, peso de mil sementes, volume aparente e plantabilidade, germinação, primeira contagem da germinação e emergência de plântulas em campo. O revestimento de sementes de milho superdoce proporciona homogeneidade de forma e tamanho às sementes, melhora a vazão e a distribuição dos péletes na semeadura e não compromete a emergência de plântulas em campo depois de quatro meses de armazenamento.

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A técnica para a determinação da viabilidade de sementes de amendoim por meio do tetrazólio (TZ) é, atualmente, aquela pela qual as sementes, após embebição em água, têm o tegumento removido. A seguir as sementes são, em grupo, imersas na solução de TZ. Essa técnica dificulta o contato entre os tecidos das faces internas dos cotilédones e a solução de TZ em virtude de que o período prévio de embebição em água não é suficiente para que os cotilédones das sementes de amendoim se separem. Assim, o acesso da solução de TZ aos tecidos das faces internas dos cotilédones e ao próprio eixo embrionário, que fica entre as duas faces cotiledonares internas, é consideravelmente dificultado. Na suposição de que este procedimento levaria a resultados de testes de TZ que se correlacionam mal com o desempenho germinativo das sementes no campo, tentou-se uma nova técnica pela qual as sementes, após a embebição em água, além de terem o tegumento removido, são manualmente separadas em seus cotilédones, com o eixo embrionário ligado a um deles, e os cotilédones de uma determinada semente, agora separados, imersos na solução de TZ contida em uma célula individual de uma bandeja de PVC. A hipótese aqui formulada mostrou-se correta : a técnica alternativa de submissão das sementes de amendoim à solução de tetrazólio permitiu a obtenção de resultados que, comparados com os da técnica convencional, refletiram de modo mais preciso o desempenho germinativo das sementes no campo.

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