571 resultados para Saguinus bicolor
Resumo:
A major constraint to agricultural production in acid soils of tropical regions is the low soil P availability, due to the high adsorption capacity, low P level in the source material and low efficiency of P uptake and use by most of the modern varieties grown commercially. This study was carried out to evaluate the biomass production and P use by forage grasses on two soils fertilized with two P sources of different solubility. Two experiments were carried out, one for each soil (Cambisol and Latosol), using pots filled with 4 dm³ soil in a completely randomized design and a 4 x 2 factorial scheme. The treatments consisted of a combination of four forage plants (Brachiaria decumbens, Brachiaria brizantha, Pennisetum glaucum and Sorghum bicolor) with two P sources (Triple Superphosphate - TSP and Arad Reactive Phosphate - ARP), with four replications. The forage grasses were harvested at pre-flowering, when dry matter weight and P concentrations were measured. Based on the P concentration and dry matter production, the total P accumulation was calculated. With these data, the following indices were calculated: the P uptake efficiency of roots, P use efficiency, use efficiency of available P, use efficiency of applied P and agronomic efficiency. The use of the source with higher solubility (TSP) resulted, generally, in higher total dry matter and total P accumulation in the forage grasses, in both soils. For the less reactive source (ARP), the means found in the forage grasses, for use efficiency and efficient use of available P, were always higher when grown in Latosol, indicating favorable conditions for the solubility of ARP. The total dry matter of Brachiaria brizantha was generally higher, with low P uptake, accumulation and translocation, which indicated good P use efficiency for both P sources and soils. The forage plants differed in the P use potential, due to the sources of the applied P and of the soils used. Less than 10 % of the applied P was immobilized in the forage dry matter. Highest values were observed for TSP, but this was not reflected in a higher use efficiency of P from this source.
Resumo:
Em lavouras sob plantio direto ou em sistemas integração lavoura-pecuária, é comum o cultivo do feijoeiro em sucessão a gramíneas. Em função do sistema radicular diferenciado e da secreção de compostos orgânicos diversos pelas raízes e pela decomposição da palhada, as gramíneas podem alterar a disponibilidade de P no solo e a aquisição e aproveitamento de fontes de P aparentemente de baixa eficiência agronômica para as culturas em sucessão. Este trabalho teve por objetivo avaliar a utilização do P e a produção do feijoeiro cultivado em sucessão às gramíneas forrageiras adubadas com diferentes fontes desse nutriente. Para isso, conduziram-se dois experimentos em solos distintos, um em Cambissolo e outro em Latossolo, utilizando-se vasos com 4 dm³ de solo. O delineamento experimental, para cada solo, foi inteiramente casualizado, em esquema fatorial 5 x 2, sendo cinco tratamentos de cobertura dos solos, representados pelo cultivo prévio de quatro gramíneas forrageiras (Brachiaria decumbens - braquiária; Sorghum bicolor - sorgo; Brachiaria brizantha - braquiarão; Pennisetum glaucum - milheto) mais o solo sem cultivo prévio e duas fontes de P de diferentes solubilidades (superfosfato triplo - SFT e fosfato reativo de Arad - FRA), com quatro repetições. As gramíneas forrageiras foram colhidas na fase de pré-florescimento, sendo o feijoeiro cultivado em seguida sobre as suas raízes e palhadas. Observou-se, de maneira geral, em ambos os solos adubados com a fonte de P de menor solubilidade (FRA), que a sucessão de culturas proporcionou maiores crescimento, produção, acúmulo de P, utilização do P e aproveitamento do efeito residual do P aplicado no feijoeiro; o mesmo não foi observado para a fonte mais solúvel (SFT). Em ambos os solos, sem o cultivo prévio de gramíneas forrageiras, o SFT foi superior ao FRA para todas as variáveis avaliadas. Das gramíneas forrageiras estudadas, não se observou efeito definido do seu cultivo prévio sobre as variáveis no feijoeiro cultivado em sucessão.
Resumo:
Soil water availability to plants is affected by soil compaction and other variables. The Least Limiting Water Range (LLWR) comprises soil physical variables affecting root growth and soil water availability, and can be managed by either mechanical or biological methods. There is evidence that effects of crop rotations could last longer than chiseling, so the objective of this study was to assess the effect of soil chiseling or growing cover crops under no-till (NT) on the LLWR. Crop rotations involving triticale (X Triticosecale) and sunflower (Helianthus annuus) in the fall-winter associated with millet (Pennisetum glaucum), sorghum (Sorghum bicolor) and sunn hemp (Crotalaria juncea) as cover crops preceding soybean (Glycine max) were repeated for three consecutive years. In the treatment with chiseling (performed only in the first year), the area was left fallow between the fall-winter and summer crops. The experiment was carried out in Botucatu, São Paulo State, Brazil, from 2003 to 2006 on a Typic Rhodudalf. The LLWR was determined in soil samples taken from the layers 0-20 cm and 20- 40 cm, after chemical desiccation of the cover crops in December of the first and third year of the experiment. Chiseling decreases soil bulk density in the 0-20 cm soil layer, increasing the LLWR magnitude by lowering the soil water content at which penetration resistance reaches 2.0 MPa; this effect is present up to the third year after chiseling and can reach to a depth of 0.40 m. Crop rotations involving sunflower + sunn hemp, triticale + millet and triticale + sunn hemp for three years prevented soil bulk density from exceeding the critical soil bulk density in the 0- 0.20 m layer. This effect was observed to a depth of 0.40 m after three years of chiseling under crop rotations involving forage sorghum. Hence, chiseling and some crop rotations under no tillage are effective in increasing soil quality assessed by the LLWR.
Resumo:
A mudança no tipo de uso da terra, se não devidamente planejada e conduzida, poderá resultar em solos com capacidade produtiva diminuída e com propensão à erosão aumentada, o que irá diminuir o rendimento das culturas e prejudicar a conservação do solo e da água. Esta pesquisa teve como objetivo avaliar a erosão hídrica pluvial do solo em área originalmente de campo nativo, nos seus segundo e terceiro anos de cultivo com culturas anuais em fileira (respectivamente, feijão-miúdo - Vigna unguiculata - e sorgo - Sorghum bicolor), nos métodos de preparo do solo reduzido (escarificação) e sem preparo (semeadura direta) e nos tipos de adubação mineral (fertilizante NPK) e orgânica (cama de aviário), além de uma condição sem adubação (tratamento testemunha). O estudo foi desenvolvido em campo, na EEA/UFRGS, em Eldorado do Sul (RS), nos verões de 2007/2008 e 2008/ 2009. Usou-se chuva simulada e um Argissolo Vermelho distrófico típico com textura franco-arenosa na camada superficial e declividade média de 0,13 m m- 1. Realizaram-se dois testes de erosão em cada ciclo cultural: o primeiro, logo após o preparo do solo e a semeadura das culturas; e o segundo, cerca de 90 dias mais tarde (estádio fenológico de enchimento de legumes, no caso do feijão-miúdo, e de maturação, no do sorgo). As chuvas foram aplicadas com o simulador de braços rotativos, na intensidade planejada de 64 mm h-1 e com duração de 1,5 h cada uma. Os resultados evidenciaram que a mudança no tipo de uso da terra, excluída a condição sem adubação, não ocasionou perdas relevantes de solo e água por erosão hídrica. A mobilização do solo pela escarificação, na maior parte dos casos, favoreceu a infiltração e a retenção superficial da água da chuva e, em decorrência, reduziu a enxurrada, ao mesmo tempo em que satisfatoriamente controlou a erosão. Por sua vez, a ausência de mobilização do solo na semeadura direta, também na maior parte dos casos, induziu a formação de maior enxurrada, porém controlou melhor a erosão. Comparadas à condição sem adubação, a adubação mineral e a adubação orgânica contribuíram para reduzir a enxurrada e a erosão nos dois métodos de preparo do solo investigados, sem diferenças definidas entre elas em qualquer um destes últimos.
Resumo:
Soil compaction can be minimized either mechanically or biologically, using plant species with vigorous root systems. An experiment was carried out with soybean (Glycine max) in rotation with triticale (X Triticosecale) and sunflower (Helianthus annuus) in fall-winter associated with pearl millet (Pennisetum glaucum), grain sorghum (Sorghum bicolor) or sunn hemp (Crotalaria juncea) in spring. Crop rotation under no-till was compared with mechanical chiseling. The experiment was carried out in Botucatu, São Paulo State, Brazil. Soil quality was estimated using the S index and soil water retention curves (in the layers of 0-0.05, 0.075-0.125, 0.15-0.20, 0.275-0.325, and 0.475-0.525 m deep). Crop rotation and chiseling improved soil quality, increasing the S index to over 0.035 to a depth of 20 cm in the soil profile. The improved soil quality, as shown by the S index, makes the use of mechanical chiseling unnecessary, since after 3 years the soil physical quality under no-tilled crop rotation and chiseling was similar.
Resumo:
The feasibility of no-tillage in the Cerrado (Savanna-like vegetation of Brazil) depends on the production of sufficient above-ground crop residue, which can be increased by corn-forage intercropping. This study evaluated how above-ground crop residue production and yields of soybean and late-season corn in a soybean-corn rotation were influenced by the following crops in the year before soybean: corn (Zea mays L.) intercropped with Brachiaria (Urochloa) brizantha cv. Marandu, B. decumbens cv. Basilisk, B. ruziziensis, cv. comum., Panicummaximum cv. Tanzânia, sunn hemp (Crotalaria juncea L.), pigeon pea [Cajanus cajan (L.) Millsp]; sole corn, forage sorghum [Sorghum bicolor (L.) Moench (cv. Santa Elisa)], and ruzi grass. In March 2005, corn and forage species were planted in alternate rows spaced 0.90 m apart, and sole forage species were planted in rows spaced 0.45 m apart. In October 2005, the forages were killed with glyphosate and soybean was planted. After the soybean harvest in March 2006, sole late-season corn was planted in the entire experimental area. Corn grain and stover yields were unaffected by intercropping. Above-ground crop residue was greater when corn was intercropped with Tanzania grass (10.7 Mg ha-1), Marandu (10.1 Mg ha-1), and Ruzi Grass (9.8 Mg ha-1) than when corn was not intercropped (4.0 Mg ha-1). The intercropped treatments increased the percentage of soil surface covered with crop residue. Soybean and corn grain yields were higher after sole ruzi grass and intercropped ruzi grass than after other crops. The intercropping corn with Brachiaria spp. and corn with Panicum spp. increases above-ground crop residue production and maintains nutrients in the soil without reducing late-season corn yield and the viability of no-till in the midwestern region of Brazil.
Resumo:
The no-till system with complex cropping sequences may improve the structural quality and carbon (C) sequestration in soils of the tropics. Thus, the objective of this study was to evaluate the effects of cropping sequences after eight years under the no-till system on the physical properties and C sequestration in an Oxisol in the municipality of Jaboticabal, Sao Paulo, Brazil. A randomized split-block design with three replications was used. The treatments were combinations of three summer cropping sequences - corn/corn (Zea mays L.) (CC), soybean/soybean (Glycine max L. Merryll) (SS), and soybean-corn (SC); and seven winter crops - corn, sunflower (Helianthus annuus L.), oilseed radish (Raphanus sativus L.), pearl millet (Pennisetum americanum (L.) Leeke), pigeon pea (Cajanus cajan (L.) Millsp), grain sorghum (Sorghum bicolor (L.) Moench), and sunn hemp (Crotalaria juncea L.). Soil samples were taken at the 0-10 cm depth after eight years of experimentation. Soil under SC and CC had higher mean weight diameter (3.63 and 3.55 mm, respectively) and geometric mean diameter (3.55 and 2.92 mm) of the aggregates compared to soil under SS (3.18 and 2.46 mm). The CC resulted in the highest soil organic C content (17.07 g kg-1), soil C stock (15.70 Mg ha-1), and rate of C sequestration (0.70 Mg ha-1 yr-1) among the summer crops. Among the winter crops, soil under pigeon pea had the highest total porosity (0.50 m³ m-3), and that under sunn hemp had the highest water stable aggregates (93.74 %). In addition, sunn hemp did not differ from grain sorghum and contained the highest soil organic C content (16.82 g kg-1) and also had the highest rate of C sequestration (0.67 Mg ha-1 yr-1). The soil resistance to penetration was the lower limit of the least limiting water range, while the upper limit was air-filled porosity for soil bulk densities higher than 1.39 kg dm-3 for all cropping sequences. Within the SC sequence, soil under corn and pigeon pea increased least limiting water range by formation of biopores because soil resistance to penetration decreased with the increase in soil bulk density.
Resumo:
Cover plants are essential for the sustainability of no-tillage systems in tropical regions. However, information on the effects of these plants and N fertilization on soil organic matter fractions is still scarce. This study evaluated the effect of cover crops with different chemical composition and of N topdressing on the labile and humified organic matter fractions of an Oxisol of the Cerrado (savanna-like vegetation). The study in a randomized complete block design was arranged in split-plots with three replications. Four cover species were tested in the plots and the presence or absence of N topdressing in the subplot. The following cover species were planted in succession to corn for eight years: Urochloa ruziziensis; Canavalia brasiliensis M. ex Benth; Cajanus cajan (L.) Millsp; and Sorghum bicolor (L.) Moench. In general, the cultivation of U. ruziziensis increased soil C levels, particularly of C in the humic acid and particulate organic C fractions, which are quality indicators of soil organic matter. The C in humic substances and mineral organic C accounted for the highest proportions of total organic C, demonstrating the strong interaction between organic matter, Fe and Al oxides and kaolinite, which are predominant in these weathered soils of the Cerrado.
Resumo:
Phytotoxicity and transfer of potentially toxic elements, such as cadmium (Cd) or barium (Ba), depend on the availability of these elements in soils and on the plant species exposed to them. With this study, we aimed to evaluate the effect of Cd and Ba application rates on yields of pea (Pisum sativum L.), sorghum (Sorghum bicolor L.), soybean (Glycine max L.), and maize (Zea mays L.) grown under greenhouse conditions in an Oxisol and an Entisol with contrasting physical and chemical properties, and to correlate the amount taken up by plants with extractants commonly used in routine soil analysis, along with transfer coefficients (Bioconcentration Factor and Transfer Factor) in different parts of the plants. Plants were harvested at flowering stage and measured for yield and Cd or Ba concentrations in leaves, stems, and roots. The amount of Cd accumulated in the plants was satisfactorily evaluated by both DTPA and Mehlich-3 (M-3). Mehlich-3 did not relate to Ba accumulated in plants, suggesting it should not be used to predict Ba availability. The transfer coefficients were specific to soils and plants and are therefore not recommended for direct use in risk assessment models without taking soil properties and group of plants into account.
Resumo:
O Sorghum bicolor (L.) Moech é uma importante forrageira de alta produção, que cresce no cenário brasileiro ainda de forma lenta em substituição ao cultivo de milho safrinha. A cultura do sorgo seria alternativa no período da seca na produção de silagem para o período das águas; contudo, o crescimento e desenvolvimento das plantas pode ser influenciado por alterações nos atributos do solo, como textura, porosidade e estrutura do solo. O objetivo deste trabalho foi analisar e caracterizar a dependência e variabilidade espacial entre atributos do solo e a cultura do sorgo forrageiro, em um Planossolo Hidromórfico no ecótono Cerrado-Pantanal. Para tanto, estimaram-se a produtividade de matérias verde e seca de forragem (MVF e MSF) de sorgo forrageiro e os atributos do solo, como macroporosidade (Ma), microporosidade (Mi), porosidade total (Pt), diâmetro médio geométrico, diâmetro médio ponderado, índice de estabilidade de agregados (IEA) e teor de carbono orgânico total do solo (COT), em duas profundidades: 1 (0,00-0,10 m) e 2 (0,10-0,20 m). Em relação à malha geoestatística, foram realizadas 50 coletas de atributos de planta e solo em 40 ha. Isso possibilitou detectar a elevada variabilidade espacial dos atributos de planta (MVF e MSF) e também os atributos do solo que mais variaram espacialmente. Com relação às variáveis que apresentaram dependência espacial, o coeficiente de determinação (r2) decresceu na seguinte ordem: IEA1, silte2, Ma1, Pt1, areia2, silte1, MSF, argila1, MVF e IEA2. Com isso, verificou-se que IEA1 apresentou o melhor ajuste semivariográfico (r2 = 0,926), com alcance de 677,0 m, e o avaliador da dependência espacial (50,6 %) moderado. O silte1, porém, evidenciou o menor alcance (111,0 m) e, assim, recomenda-se que em estudos posteriores o alcance mínimo a ser adotado, para esse tipo de avaliação, não deve ser inferior a esse valor em Planossolo Hidromórfico sob preparo convencional. A correlação linear foi significativa e elevada para MVF e MSF, ao passo que entre atributos de planta versus solo houve correlações positiva e negativa. No âmbito da cokrigagem, a argila1 foi o melhor indicador para estimar a variabilidade espacial da produtividade de massa seca de forragem de sorgo de correlação significativa e negativa (r = -0,292*).
Resumo:
ABSTRACT Increasing attention has recently been given to sweet sorghum as a renewable raw material for ethanol production, mainly because its cultivation can be fully mechanized. However, the intensive use of agricultural machinery causes soil structural degradation, especially when performed under inadequate conditions of soil moisture. The aims of this study were to evaluate the physical quality of aLatossolo Vermelho Distroférrico (Oxisol) under compaction and its components on sweet sorghum yield forsecond cropsowing in the Brazilian Cerrado (Brazilian tropical savanna). The experiment was conducted in a randomized block design, in a split plot arrangement, with four replications. Five levels of soil compaction were tested from the passing of a tractor at the following traffic intensities: 0 (absence of additional compaction), 1, 2, 7, and 15 passes over the same spot. The subplots consisted of three different sowing times of sweet sorghum during the off-season of 2013 (20/01, 17/02, and 16/03). Soil physical quality was measured through the least limiting water range (LLWR) and soil water limitation; crop yield and technological parameters were also measured. Monitoring of soil water contents indicated a reduction in the frequency of water content in the soil within the limits of the LLWR (Fwithin) as agricultural traffic increased (T0 = T1 = T2>T7>T15), and crop yield is directly associated with soil water content. The crop sown in January had higher industrial quality; however, there was stalk yield reduction when bulk density was greater than 1.26 Mg m-3, with a maximum yield of 50 Mg ha-1 in this sowing time. Cultivation of sweet sorghum as a second crop is a promising alternative, but care should be taken in cultivation under conditions of pronounced climatic risks, due to low stalk yield.
Resumo:
ABSTRACT The use of cover crops has recently increased and represents an essential practice for the sustainability of no-tillage systems in the Cerrado region. However, there is little information on the effects of nitrogen fertilization and cover crop use on nitrogen soil fractions. This study assessed changes in the N forms in soil cropped to cover crops prior to corn growing. The experiment consisted of a randomized complete block design arranged in split-plots with three replications. Cover crops were tested in the plots, and the N topdressing fertilization was assessed in the subplots. The following cover species were planted in succession to corn for eight years: Urochloa ruziziensis, Canavalia brasiliensis M. ex Benth, Cajanus cajan (L.) Millsp, and Sorghum bicolor (L.) Moench. After corn harvesting, the soil was sampled at depths of 0.00-0.10 and 0.10-0.20 m. The cover crops showed different effects at different soil depths. The soil cultivated with U. ruziziensis showed higher contents of total-N and particulate-N than the soil cultivated with C. cajan. Particulate-N was the most sensitive to changes in the soil management among the fractions of N assessed. The soil under N topdressing showed a lower content of available-N in the 0.10-0.20 m layer, which may be caused by the season in which the sampling was conducted or the greater uptake of the available-N by corn.
Resumo:
O objetivo do presente trabalho foi estudar o crescimento de plantas de seis genótipos de sorgo (Sorghum bicolor (L.) Moench), a saber: dois sacarinos, dois graníferos e dois forrageiros, cultivadas com as linhas de plantio orientadas no sentido Norte-Sul e Leste-Oeste. Instalou-se, em setembro de 1994, o ensaio em área experimental da Faculdade de Ciências Agrárias e Veterinárias (FCAVJ) - UNESP, utilizando delineamento em blocos casualizados, com doze tratamentos e três repetições. As avaliações foram feitas mediante amostragens semanais, determinando-se massa seca acumulada, área foliar e distribuição da massa seca nas diferentes partes da planta. Os materiais sacarinos cresceram mais que os graníferos, e os graníferos tiveram ciclo mais curto que os demais. A distribuição de massa seca caracterizou aptidão de cada genótipo, ou seja, alta eficiência na exportação de material para os colmos nos sacarinos, exportação preferencialmente para os grãos nos graníferos, e exportação para colmos e grãos, evidenciando dupla aptidão, nos forrageiros. O padrão de distribuição de massa seca não foi afetado pela orientação das linhas de plantio.
Resumo:
Crop rotation and cover crop can be important means for enhancing crop yield in rainfed areas such as the lower Coastal Bend Region of Texas, USA. A trial was conducted in 1995 as part of a long-term cropping experiment (7 years) to investigate the effect of oat (Avena sativa L.) cover and rotation on soil water storage and yield of sorghum (Sorghum bicolor L.). The trial design was a RCB in a split-plot arrangement with four replicates. Rotation sequences were the main plots and oat cover crop the subplots. Cover crop reduced sorghum grain yield. This effect was attributed to a reduced concentration of available soil N and less soil water storage under this treatment. By delaying cover termination, the residue with a high C/N acted as an N sink through competition and/or immobilization instead of an N source to sorghum plants. Crop rotation had a significantly positive effect on sorghum yield and this effect was attributed to a significantly larger amount of N concentration under these rotation sequences.
Resumo:
Diversas amostras de sementes de sorgo (Sorghum bicolor L. Moench.), cultivar BR 303, com diferentes níveis de danos mecânicos, foram analisadas com o objetivo de determinar o efeito imediato de danos mecânicos sobre a qualidade fisiológica. Os percentuais de dano mecânico foram determinados pelo teste de verde rápido, e a qualidade fisiológica das sementes pelos testes de germinação, envelhecimento acelerado, teste de frio, índice de velocidade de emergência e população inicial de plântulas. O experimento foi conduzido no Laboratório de Análises de Sementes da Embrapa-Centro Nacional de Pesquisa de Milho e Sorgo (CNPMS), em Sete Lagoas, MG. Através da análise de regressão, verificou-se que houve redução significativa da germinação e do vigor quando as sementes apresentaram até 5% de dano; de 5% a 15% de dano a redução na qualidade fisiológica não foi significativa. Acima de 15% até 23% de dano a germinação e o vigor sofreram um decréscimo de 22,5%, em comparação com o controle. O efeito prejudicial imediato dos danos mecânicos sobre a qualidade fisiológica das sementes de sorgo pôde ser detectada pelos testes aplicados.