999 resultados para fermentação ruminal


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O trabalho foi conduzido em Bento Gonçalves, RS, com uvas Cabernet Sauvignon, cultivar destacada no Brasil pela produção de vinhos tintos de guarda. Como outras cultivares na Serra Gaúcha, possui, em determinadas safras, dificuldades para uma adequada maturação, dificultando a elaboração de vinhos estruturados. Dentre as estratégias para minimizar esse problema, está um adequado manejo do vinhedo, aliado a determinadas operações enológicas. Nesse contexto, objetivou-se estudar a aplicação de taninos enológicos na composição físico-química do vinho Cabernet Sauvignon. Na safra 2004, foram usados taninos de quebracho e castanheira, aplicados em três dosagens (5,0, 10,0, 20,0 g.hL-1) e em três momentos de aplicação (maceração, 2 dias após o esmagamento; descuba, 8 dias após o esmagamento; após a fermentação malolática, 4 meses após o esmagamento). Nos vinhos estabilizados, realizaram-se as análises físico-químicas clássicas, mais características cromáticas e polifenóis. Em função das boas condições meteorológicas apresentadas nesta safra, no que concerne às características físico-químicas clássicas, de modo geral, se verificou que a adição dos taninos teve pouca influência na composição do vinho. Aquelas variáveis que seriam, hipoteticamente, mais influenciáveis, como antocianinas e índices de cor, mostraram, da mesma forma, poucas mudanças significativas, enquanto o I 280 e os teores de taninos totais foram afetados.

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O cacau em pó é obtido a partir da pasta de cacau, preparada com sementes que passaram pelos processos de fermentação, secagem, torrefação, moagem e prensa (para separação da manteiga de cacau). Nos últimos anos, houve aumento na oferta de gorduras substitutas à manteiga de cacau, diminuindo a dependência da indústria alimentícia em relação a esta, mas aumentando a demanda por cacau em pó. Nos países líderes de produção, o preço do cacau é afetado pelo clima, pragas e fatores políticos. Substitutos de cacau são substâncias que podem entrar na formulação de produtos que utilizam cacau em pó para substituí-lo parcial ou totalmente, com a finalidade de reduzir o preço do produto final, garantir a qualidade dos produtos dependentes de cacau na entressafra ou mesmo na possível ausência do cacau em pó no mercado. Os substitutos avaliados foram: farinha tostada de alfarroba, cupuaçu em pó, composto da semente de cacau e aromas. O objetivo neste trabalho foi avaliar fisicamente o cacau e seus substitutos por meio das análises de compactação, densidade, ângulo de repouso, isoterma de adsorção de umidade, tamanho de partícula, molhabilidade e umidade crítica relativa. Concluiu-se que os produtos analisados apresentaram diferentes propriedades físicas daquelas do cacau, sendo estas refletidas nas formulações em que serão aplicados e no melhor tipo de embalagem a ser utilizada.

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O presente trabalho teve como objetivo a produção de lipase a partir de Pseudomona cepacia por fermentação líquida em biorreator do tipo Bioflo III. As fermentações foram conduzidas a 150 rpm durante 96 horas a 30 °C. Analisou-se a atividade enzimática em diferentes condições de temperatura (20 a 50 °C) e pH (3,0 a 11,0), e obtiveram-se 37 °C e 8,0, as condições ótimas, respectivamente. Para avaliar a estabilidade térmica, a enzima foi incubada em temperaturas de 40, 50 e 60 °C durante 120 minutos. Em uma segunda etapa, foram realizados experimentos preliminares para verificar as condições adequadas de partição da enzima, bem como sua estabilidade e condições ótimas de hidrólise frente às modificações de temperatura e pH. Foram preparadas soluções de PEG 1500, 4000 e 6000 a 50% p/p e soluções tampão fosfato de pHs 6, 7 e 8. Foi feita a caracterização de um sistema bifásico aquoso (SBA) a partir da preparação de soluções estoques de PEG com massas molares de 1500, 4000 e 6000 (50% w/w) e tampão fosfato pH 6,7 e 8,0 (20% w/w de KH2PO4/K2HPO4). Esta caracterização do SBA posteriormente poderá ser utilizada para partição de lipases, bem como de biomoléculas que estejam dentro dessa faixa de pH.

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Com o objetivo de avaliar o efeito de dois métodos de extração de arilo e cinco concentrações de ethephon em sementes de Passiflora giberti N.E.Brown, empregou-se o teste de germinação e de tetrazólio para a realização deste experimento, no Laboratório de Tecnologia de Sementes da Universidade Estadual do Oeste do Paraná - UNIOESTE, campus de Marechal Cândido Rondon, no período de 01/06 a 03/07/01. O delineamento foi o inteiramente casualizado com cinco repetições de 25 sementes por parcela. Os frutos foram coletados em Marechal Cândido Rondon e os tratamentos foram constituídos pela combinação de dois tipos de extração do arilo e embebição das sementes em cinco concentrações de ethephon por cinco horas. A semeadura para o teste de germinação foi realizada em rolos de papel germitest mantidos em câmara de germinação com temperatura alternada (25-30ºC). O teste de tetrazólio foi feito no lote de sementes antes da instalação do experimento e no final do teste de germinação, 30 dias após a semeadura. Os resultados demonstram que ocorerram interações significativas entre os métodos de extração do arilo e as concentrações de ethephon para a vitalidade de sementes. Pode-se observar que somente na extração por fermentação com a concentração de 600mg.l-1 verificou-se diminuição significativa na vitalidade das sementes, diferindo dos demais tratamentos. Na extração do arilo por fricção com pano todas as concentrações demonstraram-se semelhantes. Os métodos de extração do arilo não afetaram a vitalidade das sementes de Passiflora giberti N.E. Brown com presença de dormência, exceto quando se empregou 600mg.l-1 de ethephon. Tratamentos com ethephon não foram adequados para proporcionar a germinação das sementes.

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O presente trabalho foi conduzido no Laboratório de Pesquisa em Sementes da Universidade Federal de Viçosa com objetivo de estudar o efeito de diferentes materiais (sementes com 48-49, 31-32, 18-19 e 13-14% de umidade e frutos), embalagens (permeável e impermeável) e ambientes de armazenamento (temperaturas de 7, 15 e 25°C) na conservação de sementes de café arábica, cultivar Catuai IAC 44. Para tanto, após a colheita dos frutos no estádio cereja foi retirada uma amostra e o restante despolpado mecanicamente e as sementes degomadas por fermentação natural durante 24 horas. Para atingir os graus de umidade desejados as sementes foram submetidas à secagem a sombra e em estufa com ventilação forçada. Em seguida, os materiais (sementes com diferentes graus de umidade e os frutos recém colhidos) foram tratados quimicamente, acondicionados nas duas embalagens e armazenados em ambientes com diversas temperaturas. Antes (mês zero) e após três, seis e nove meses de armazenamento, os frutos restantes foram despolpados e as sementes de todos os tratamentos avaliadas quanto a germinação e vigor (envelhecimento acelerado e comprimento de radícula), além da determinação do grau de umidade. Pelos resultados obtidos verificou-se que as sementes conservaram-se melhor quando armazenadas com 18,5% de umidade, em ambiente de baixa temperatura (7°C), independente da embalagem. Sementes com 31,5% de umidade também podem ser armazenadas por nove meses, a 7°C, quando acondicionadas em embalagem permeável. Com umidade ainda mais elevada (48,5%), as sementes conservaram-se bem até o sexto mês de armazenamento quando acondicionadas em embalagem permeável e em temperatura de 15°C. O armazenamento de frutos em diferentes temperatura e de sementes a 25°C promove queda drástica na germinação e no vigor de sementes de cafeeiro, já aos três meses de armazenamento.

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A completely randomised study was completed to examine the influence of fibrolytic enzymes derived from psychrophilic, (F), mesophilic, (L) or thermophilic (Ta) sources, applied at ensiling, on the chemical characteristics and in vitro rumen fermentation of maize silage, assessed using the Reading Pressure Technique (RPT). Treatments, all in triplicate, consisted of untreated maize forage or treated with preparations F, L, Ta or a mixture (1: 1, v/v) of F and L (FL), at two levels each, and ensiled for 210 days in plastic mini-silos. Addition of enzymes L decreased (P < 0.05) silage pH relative to the control, whereas enzyme Ta tended (P < 0.10) to reduce it. Preparations F, L and Ta tended to reduce (P < 0.10) the fibre contents of the silages, with effects being attributable to a decrease in the cellulose fraction. Starch contents were reduced (P < 0.05) in the treatments including enzyme F. End-point (96 h) gas production (GP) values did not differ among treatments, suggesting that enzymes did not change the total amount of fermentable substrate. However, consistent with the decrease in starch contents, adding enzyme F reduced (P < 0.05) GP at most incubation times. Addition of enzymes increased (P < 0.05) the initial (6 h) organic matter degradation (OMD) levels in all but one treatment (F), with increases of 14, 19, and 26% for preparations L, Ta, and FL, respectively, averaged across levels. Furthermore, the addition of enzymes increased (P < 0.05) the soluble OM losses, however, these increases did not fully account for the initial increase in OMD. The latter suggests that enzymes increased solubility and also altered silage structure, making it more amenable to degradation by ruminal microorganisms. As a result of the increase in OMD, without a concomitant increase in GP, the fermentation efficiency was greatly increased (P < 0.05) in enzyme treatments. Addition of enzymes to maize at ensiling, particularly those from the mesophilic and thermophilic sources used here, have the potential to increase the initial rate of silage OMD. (C) 2003 Elsevier B.V. All rights reserved.

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A method is proposed to determine the extent of degradation in the rumen involving a two-stage mathematical modeling process. In the first stage, a statistical model shifts (or maps) the gas accumulation profile obtained using a fecal inoculum to a ruminal gas profile. Then, a kinetic model determines the extent of degradation in the rumen from the shifted profile. The kinetic model is presented as a generalized mathematical function, allowing any one of a number of alternative equation forms to be selected. This method might allow the gas production technique to become an approach for determining extent of degradation in the rumen, decreasing the need for surgically modified animals while still maintaining the link with the animal. Further research is needed before the proposed methodology can be used as a standard method across a range of feeds.

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This paper considers the various complex changes that occur to nitrogen (N) containing compounds in forages through the processes of ensiling, rumen degradation and microbial synthesis, post-ruminal digestion and absorption and synthesis into milk protein. Particular emphasis is placed on reviewing recent data on the efficiency of utilisation of N-containing compounds in silages by rumen microbes, since low efficiency here is believed to be a major cause of large N losses to the environment on some silage-based diets. Data are reviewed which show that although rumen degradation of N compounds in silage is rapid and extensive, up to 10% of the soluble N can escape the rumen by being associated with the liquid phase. There is now firm evidence that the composition of the amino acids (AAs) absorbed is heavily dependent on the process of ensiling and that witting or use of certain silage additives conserve the initial amino acid profile of the forage. This provides an opportunity to manipulate the amino acid supply to better match demand thus potentially enhancing utilisation. This review confirms that utilisation of the N fractions in grass and legume silages in particular, is poor and the efficiency of microbial protein synthesis (EMPS) is consistently higher on maize silage-based diets. It is concluded that the way in which grass and legume silages in particular are produced and used in the future needs a radical rethink. New research needs to be aimed at enhancing the utilisation of N in the rumen through a better understanding of N/carbohydrate relationships and the ability of forages to supply degraded carbohydrate. Also more emphasis is needed on understanding of the potentially different role of the different N fractions that exist in silages. (C) 2004 Elsevier B.V. All rights reserved.

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Three goats provided with oesophageal and ruminal cannulae were used to determine variations in dry matter (DM) and neutral-detergent fibre (NDF) degradability of the forage consumed when grazing thorn scrubland in the semi-arid region of north Mexico, during two consecutive dry and wet periods. Ingesta samples were incubated intraruminally, the data were fitted to the exponential equation P = a + b (1-e(-ct)) and statistically analysed using a randomized-block design. Organic matter and crude protein (CP) contents were higher (P < 0.05) in the wet seasons. Values of NDF were similar in dry and wet season of both years whereas higher numerical values of acid-detergent fibre (ADF), lignin and cellulose were registered in the dry seasons. DM and NDF degradabilities after 24 and 48 h of ruminal incubation were higher (P < 0.05) in the wet seasons. Higher values (P < 0.05) in DM and NDF bag losses at zero time (A fraction) were registered in the two wet seasons. The insoluble but fermentable DM and NDF (B fractions) were higher (P < 0.05) in the 1999 wet season and variable in the rest of the studied period. Numerically higher values of DM and NDF c fraction were found in wet periods, whereas DM and NDF potential degradabilities were higher (P < 0.05) in the wet season in 1999 and similar across seasons in 2000. Lowest (P < 0.05) contents of CP in grazed forage, DM and NDF degradabilities after 48 h of ruminal incubation, and A, and B, and c fractions were observed in the dry seasons. Thus, these results may be related to both the lower feeding value of forage consumed by the animals and lower performance of livestock during this period. Then, the DM and NDF degradability after 48 h, together with the insoluble but fermentable matter and the c fraction permit the nutritive value of the forage consumed by grazing goats to be accurately described.

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In the past decade, a number of mechanistic, dynamic simulation models of several components of the dairy production system have become available. However their use has been limited due to the detailed technical knowledge and special software required to run them, and the lack of compatibility between models in predicting various metabolic processes in the animal. The first objective of the current study was to integrate the dynamic models of [Brit. J. Nutr. 72 (1994) 679] on rumen function, [J. Anim. Sci. 79 (2001) 1584] on methane production, [J. Anim. Sci. 80 (2002) 2481 on N partition, and a new model of P partition. The second objective was to construct a decision support system to analyse nutrient partition between animal and environment. The integrated model combines key environmental pollutants such as N, P and methane within a nutrient-based feed evaluation system. The model was run under different scenarios and the sensitivity of various parameters analysed. A comparison of predictions from the integrated model with the original simulation models showed an improvement in N excretion since the integrated model uses the dynamic model of [Brit. J. Nutr. 72 (1994) 6791 to predict microbial N, which was not represented in detail in the original model. The integrated model can be used to investigate the degree to which production and environmental objectives are antagonistic, and it may help to explain and understand the complex mechanisms involved at the ruminal and metabolic levels. A part of the integrated model outputs were the forms of N and P in excreta and methane, which can be used as indices of environmental pollution. (C) 2004 Elsevier B.V All rights reserved.

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Three sheep fitted with a ruminal cannula and an abomasal catheter were used to study water kinetics and absorption of VFA infused continuously into the rumen. The effects of changing VFA concentrations in the rumen by shifting VFA infusion rates were investigated in an experiment with a 3 x 3 Latin square design. On experimental days, the animals received the basal infusion rate of VFA (271 mmol/h) during the first 2 h. Each animal then received VFA at a different rate (135, 394, or 511 mmol/h) for the next 7.5 h. Using soluble markers (polyethylene glycol and Cr-EDTA), ruminal volume, liquid outflow, apparent water absorption, and VFA absorption rates were estimated. There were no significant effects of VFA infusion rate on ruminal volume and water kinetics. As the VFA infusion rate was increased, VFA concentration and osmolality in the rumen were increased and pH was decreased. There was a biphasic response of liquid outflow to changes in the total VFA concentration in the rumen, as both variables increased together up to a total VFA concentration of 80.1 mM, whereas, beyond that concentration, liquid outflow remained stable at an average rate of 407 mL/h. There were significant linear (P = 0.003) and quadratic (P = 0.001) effects of VFA infusion rate on the VFA absorption rate, confirming that VFA absorption in the rumen is mainly a concentration-dependent process. The proportion of total VFA supplied that was absorbed in the rumen was 0.845 (0.822, 0.877, and 0.910 for acetate, propionate, and butyrate, respectively). The molar proportions of acetate, propionate, and butyrate absorbed were affected by the level of VFA infusion in the rumen, indicating that this level affected to a different extent the absorption of the different acids.

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The microbial fermentability, ruminal degradability and digestibility of 48 maize silages were determined using in vitro gas production (GP), in situ degradability and in vitro digestibility procedures. The silages were produced from forage maize harvested throughout the summer of 1998, and represent a wide range of physiological maturities. Large variations among samples were observed for all biological parameters, with the exception of in vitro digestibility and the asymptote of in vitro GP. The potential of near infrared reflectance spectroscopy (NIRS) to predict the biological parameters measured was determined by regression of the biological data against the respective spectral profile. NIRS demonstrated only a moderate ability (R-2 > 0.60-0.80) to predict in vitro digestibility, modelled kinetics of gas production (excluding the asymptote of gas production) and the modelled ruminally soluble dry matter (DM) fraction. Calibration statistics for remaining biological parameters were unacceptably poor (R-2 = 0.60). (C) 2004 Elsevier B.V. All rights reserved.

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This Study was designed to investigate impact of tannins on in vitro ruminal fermentation parameters as well as relationships between concentration and in vitro biological activity of tannins present in tree fruits. Dry and mature fruits of known phenolic content harvested from Acacia nilotica, A. erubescens, A. erioloba, A. sieberiana, Piliostigima thonningii and Dichrostachys cinerea tree species were fermented with rumen fluid in vitro with or without polyethylene glycol (PEG). Correlation between in vitro biological activity and phenolic concentration was determined. Polyethylene glycol inclusion increased Cumulative gas production from all fruit substrates. The largest Increase (225%) after 48 h incubation was observed in D. cinerea fruits while the least (12.7%) increase was observed in A. erubescens fruits. Organic matter degradability (48 h) was increased by PEG inclusion for all tree species except A. erubescens and P. thonningii. For D. cinerea fruits, colorimetric assays were poorly correlated to Increases In gas production due to PEG treatment. Ytterbium precipitable phenolics (YbPh) were also poorly correlated with response to PEG for A. erioloba and P. thonningii fruits. However, YbPh were strongly and positively correlated to the increase In Cumulative gas production due to PEG for A. erubescens and A. nilotica. Folin-Ciocalteau assayed phenolics (SPh) were not correlated to response to PEG in P. thonningii and A. sieberiana. It was Concluded that the PEG effect oil in vitro fermentation was closely related to some measures of phenolic concentration but the relationships varied with tree species.

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This study investigated the potential of the goat's ruminal adaptation to reduce the negative effect of tannins on in vitro fermentation. Rumen fluid was obtained from goats fed a mixture of tannin-containing tree fruits (adapted rumen fluid) or tannin-free commercial protein supplements (unadapted rumen fluid) for 85 days. Dry, mature fruits of Acacia nilotica, Acacia erubescens, Acacia erioloba, Dichrostachys cinerea and Piliostigma thonningii were used as substrates for the in vitro fermentation. The effectiveness of adapted rumen fluid to ferment tannin-containing substrates was compared to the extent of fermentation when tannins were inactivated with polyethylene glycol (PEG), a known tannin-binding agent. Adapted rumen fluid (P < 0.05) increased gas production from all five substrates between 15.8% and 73.7%. In A. nilotica, D. cinerea and P thonningii, this increase was less than that obtained through PEG treatment. When PEG was added to adapted rumen fluid a further improvement in extent of fermentation was observed in four out of the five fruit samples. The largest PEG effect when incubated with adapted rumen fluid was observed in A. nilotica (43.1%) and D. cinerea (42.9%) fruits. It is concluded that some tannin-rich feedstuffs may still benefit from treatment even when these are offered to adapted animals. (c) 2006 Elsevier B.V. All rights reserved.

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The objective was to determine the presence or absence of transgenic and endogenous plant DNA in ruminal fluid, duodenal digesta, milk, blood, and feces, and if found, to determine fragment size. Six multiparous lactating Holstein cows fitted with ruminal and duodenal cannulas received a total mixed ration. There were two treatments (T). In T1, the concentrate contained genetically modified (GM) soybean meal (cp4epsps gene) and GM corn grain (cry1a[b] gene), whereas T2 contained the near isogenic non-GM counterparts. Polymerase chain reaction analysis was used to determine the presence or absence of DNA sequences. Primers were selected to amplify small fragments from single-copy genes (soy lectin and corn high-mobility protein and cp4epsps and cry1a[b] genes from the GM crops) and multicopy genes (bovine mitochondrial cytochrome b and rubisco). Single-copy genes were only detected in the solid phase of rumen and duodenal digesta. In contrast, fragments of the rubisco gene were detected in the majority of samples analyzed in both the liquid and solid phases of ruminal and duodenal digesta, milk, and feces, but rarely in blood. The size of the rubisco gene fragments detected decreased from 1176 bp in ruminal and duodenal digesta to 351 bp in fecal samples.