994 resultados para Forest seeds


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The objective of this study was to analyze the germination of seeds of Albizia hassleri under different temperatures. A completely random design arranged as a split plot for temperatures regimes, with 11 seed lots and four replications of 15 seeds was used. The plot was represented by the various lots and the sub plots for different temperatures. The means were compared by Scott-Knott test at 5% probability. The temperatures used were: a) constant: 20, 25 and 30 degrees C, and b) alternating: 20-30 and 25-35 degrees C. For all 11 seed lots the mean germination was 90%, speed germination index (IVG) was 5.059, fresh matter of seedlings (MMF) was 0.0628 g and dry matter (MMS) 0.0499 g. The variation coefficient (CV) between plots ranged from 8.48% for germination to 51.71% for dry matter of seedlings and sub plot of 6.77% to 60.45% for germination and MMS. These high values of CV, tested for MMS and MMF, indicate low repeatability of results within each treatment. In general, the IVG obtained at temperatures of 20 and 25 degrees C was lower than those in temperatures of 30, 20-30 and 25-35 degrees C. The best temperature for IVG was the alternating 25-35 degrees C and constant 30 degrees C. The germination test can be conducted at 30, 20-30 and 25-35 degrees C for 19 days.

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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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Soil seed banks are considered an important mechanism for natural regeneration in tropical forest ecosystems. This paper investigated the soil seed bank in two semideciduous seasonal tropical forest fragments with different disturbance histories in Botucatu, southeastern Brazil. In each study site, 40 superficial soil samples (30 cm × 30 cm × 5 cm) were taken at the end of both the dry and rainy seasons. The seeds were estimated by the germination method. Average soil seed density was 588.6 and 800.3 seeds m-2, respectively, for site 1 (less disturbed) and site 2 (more disturbed). Seed density and diversity (H′) were significantly higher in site 2 in both seasons. Non-woody taxa predominated in both fragments, but pioneer tree species were better represented in the less disturbed forest. Both ecosystems have a potential for regeneration from soil seed banks, but this potential is higher in the less disturbed site. Low richness and density of pioneer tree species in the seed bank indicate that the ecosystem has lost its resilience. The seed bank is not as important in these ecosystems as in other forests. Results indicate that management strategies to restore these forests should take into account the possibility of recovering soil seed bank processes and dynamics. © 2007 Elsevier B.V. All rights reserved.

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The objective of this work was to develop a methodology for seed processing and X-ray analysis and to study imbibition pattern in seeds of candeia (Eremanthus incanus). Seeds were gathered in 2001 and 2002 in Morro do Pilar and Lavras respectively, processed and stored in a cold chamber (5ºC/60%RH) until the start of experiments. In order to identify unfilled seeds, a protocol was developed for X-ray use combining radiation energy (Kv) and exposure time (seconds). For elimination of unfilled seeds, an experiment was conducted using a South Dakota seed blower whereby different opening settings and ventilation times were combined. Original seed lots and categorized lots following radiograph viewing were tested by germination tests, with seeds being cleansed in sodium hypochlorite and scattered over blotting paper in 'gerboxes' and then taken to germinators with alternating temperatures of 20º-30ºC and 10 hours of light, for up to 15 days. Imbibition curves were determined under the conditions 30ºC, 20º-30ºC/10 hours of light and 30º-20ºC/10 hours of light. The X-ray protocol that best allowed viewing of internal seed structures was 30Kv for 45 seconds. Seed separation using the blower setting at a 3.0 opening for 30 seconds raised the number of embryonic seeds to values exceeding 99%, also raising the germination rates as a consequence. The imbibition pattern is three-phased and the germination process is completed in 72 hours. Under alternate temperatures, primary root growth is favored.

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In forestry, availability of healthy seeds is an important factor in raising planting stock. Initial seed health and storage conditions are the major factors governing the germinability of seeds. Like seeds of agricultural and horticultural crops, forest tree seeds are also liable to be affected by micro-organisms during storage, which affects the germination, and reduces the viability. Further introduction of seed-borne diseases into newly sown crops/areas on account of using unhealthy seeds is also not ruled out. Availability of healthy stock of seedlings is intrinsic for raising plantations and to meet this requirement elimination of nursery diseases by appropriate chemicals is of prime imortance. As exotic tree species may become susceptible to various native pathogens, it is generally considered better to select indigenous tree species for large scale plantations as they are well adapted to local environment. However, before taking up large scale afforestation progranme involving any indigenous tree species, it is essential to have knowledge about seed disorders and seedling diseases and their management. with a View to select appropriate tree species with fewer seed disorders and seedling disease problems for use in further plantation programme, four indigenous tree species such as Albizia odoratissima (L.f) Benth., Lagerstroemia microcazpa Wt., Pterocazpus marsupiwn Roxb. and Xylia xylocarpa (Roxb.) Taub. were evaluated to meet the above parameters

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Com o objetivo de estudar a influência da posição e da profundidade de semeadura sobre a emergência de plântulas e o vigor de sementes de mulungu foram instalados testes de germinação em areia sob ambiente protegido. Os tratamentos, representados pela posição e pela profundidade de semeadura das sementes em relação ao substrato foram os seguintes: semente com o hilo voltado para baixo, para cima e para o lado nas profundidades de 1 a 5cm. Cada um dos tratamentos constou de quatro repetições de 25 sementes, avaliados pelo teste de emergência, vigor da primeira contagem, velocidade de emergência, comprimento e massa seca do hipocótilo e das raízes. Os resultados mostraram que, para o mulungu, a profundidade de semeadura dever ser entre 1 e 2cm e, a melhor posição foi aquela em que as sementes ficaram com o hilo voltado para baixo.

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Estudou-se a germinação das sementes de aroeira (Myracrodruon urundeuvaAllemão) na presença e na ausência de luz, submetidas às temperaturas constantes de 10, 15, 20, 25, 30, 35 e 40 ºC e alternadas de 20-25, 20-30 e 20-35 ºC. Os parâmetros avaliados foram a porcentagem, a velocidade e a freqüência relativa de germinação. As sementes de aroeira germinaram na presença e na ausência de luz, mas se revelaram fotoblásticas negativas preferenciais. A germinação foi nula a 10 e a 40 ºC, e a faixa de germinabilidade foi de 15 a 35 ºC. No regime de temperatura constante, a faixa ótima para germinação das sementes foi de 20 a 30 ºC. No regime de temperatura alternada, a melhor flutuação térmica para germinação das sementes foi a de 20-30 ºC.

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O objetivo desta pesquisa foi estudar o estabelecimento da dormência nas sementes de sabiá (Mimosa caesalpiniifolia Benth.) durante o processo de maturação. Foram realizadas 16 colheitas semanais de frutos e sementes, na localidade de Engenho Bujari, município de Areia, PB, no período de 9 de agosto a 22 de novembro de 2001. As colheitas ocorreram aos 105 dias após a antese (d.a.a.) e se estenderam até os 210 d.a.a., sendo avaliadas as porcentagens de germinação, sementes dormentes, vigor (primeira contagem de germinação, comprimento e massas fresca e seca das plântulas). Concluiu-se que a colheita deverá ser efetuada aos 154 d.a.a., quando a germinação se apresenta com aproximadamente 80% e o acúmulo de massa seca nas sementes atinge o máximo

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O trabalho teve como objetivo estudar a eficiência dos testes de vigor para identificação do potencial fisiológico em sementes de Guazuma ulmifolia Lam. O estudo foi desenvolvido no Laboratório de Análise de Sementes – UNESP/Jaboticabal/SP, utilizando-se quatro lotes de sementes: sendo lotes I e II, coletados no município de Jaboticabal em 2000 e 2001, respectivamente lote III em Santa Rita do Passo Quatro e lote IV, em Luiz Antonio, ambos em 2001. Para superação da dormência, realizou-se a escarificação das sementes com ácido sulfúrico durante 50 minutos e lavagem em água corrente durante 20 minutos. Foram avaliados: teor de água, percentual de germinação, primeira contagem, índice de velocidade de germinação e condutividade elétrica, realizada com diferentes quantidades de sementes (50, 75, 100), postas para embeber em copos de plástico contendo 50 e 75mL de água deionizada, durante 72 horas à 250 C. As sementes do lote III apresentaram potencial fisiológico superior às sementes dos demais lotes estudados. Para o teste de condutividade elétrica são necessários outros estudos, visando à possibilidade de uso como teste padrão de vigor para a espécie, enquanto que os testes de primeira contagem e índice de velocidade de germinação mostraram-se adequados para avaliação do vigor dos lotes.

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

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Este trabalho teve como objetivos padronizar a metodologia do teste de tetrazólio e avaliar a aplicabilidade deste para estimar a viabilidade de sementes de Gleditschia amorphoides. Inicialmente, foram avaliados os seguintes tratamentos de pré-condicionamento: semente intacta, escarificação mecânica, escarificação seguida de 24 ou 48 horas de embebição em água, com e sem posterior retirada do tegumento. em seguida, as sementes foram submetidas a 1, 3 ou 6 horas de coloração em solução de 2, 3, 5 trifenil cloreto de tetrazólio às concentrações de 0,025; 0,050; 0,075 ou 0,10% a 35ºC, no escuro. Sementes escarificadas e embebidas por 48 horas, com retirada do tegumento, imersas em solução de tetrazólio a 0,075% por 3 horas apresentaram coloração ideal, possibilitando a identificação das sementes em viáveis e inviáveis. Utilizando o protocolo acima descrito, avaliou-se a adequação do teste de tetrazólio em estimar a viabilidade de sementes de Gleditschia amorphoides através da comparação com o teste de germinação. A comparação não resultou em diferenças significativas entre eles. O teste de tetrazólio utilizando solução a 0,075% por 3 horas pode ser utilizado na estimativa da viabilidade de sementes de Gleditschia amorphoides.

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This paper aims to evaluate the physiological quality of Sebastiania commersoniana seeds stored in cloth bag, plastic bag and glass container and kept in two conditions: laboratory workbench and cold chamber (4 ± 2°C e 80% relative humidity - RH) for 531 days. Periodically, samples were taken in order to determine the moisture content and to perform germination tests. The experimental design was completely randomized, in factorial scheme of 3 × 2 (wrappings × conditions), for each period of storage evaluated (0, 158, 271, 389 and 531 days of storage). Supplementary, a polynomial regression was adjusted in order to describe the physiological quality of the seeds for the different conditions during the experimental period. The results lead to the following considerations: a) storage under variable temperature and air humidity (laboratory workbench) can be used for periods of over five and a half months, with the seeds stored in cloth bag, plastic bag or glass container; b) the physiological quality of the seeds was not hardly altered when stored in cold chamber in cloth bag, plastic bag and glass container for over 18 months.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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This research aimed to standardize the tetrazolium test for evaluation of viability of Copaifera langsdorffii Desf. and Schizolobium parahyba Vell. Blake seeds. It evaluated the following methodologies: seeds scarificated mechanically and soaked up by 24 and 48 hours, with posterior seed coat removal and immersed in tetrazolium solution at 0.075; 0.10 and 0.20% for 2, 3 and 4 hours, 35 °C, the dark one. The evaluated methodologies that had been efficient in the attainment of satisfactory coloration, allowing the differentiation of tissues, and in the evaluation of the physiological quality of the seeds when compared with the germination test, had been: for the species Copaifera langsdorffii, seeds scarificated and soaked up by 24 hours, 35 °C, with posterior seed coat removal, submitted to the tetrazolium solution 0.20% for 4 hours, 35 °C, in the dark one, and for the species guapuruvu, seeds scarificated and soaked up by 48 hours, 35 °C, with posterior seed coat removal, submitted to the tetrazolium solution 0.10% for 4 hours, 35 °C, in the dark one.

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