44 resultados para FATS


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A água é vital para as plantas. Uma redução na disponibilidade de água pode afetar a transpiração e o crescimento foliar das culturas. O objetivo deste trabalho foi determinar a resposta da transpiração e do crescimento foliar ao conteúdo de água disponível no solo, representado pela fração de água transpirável no solo (FATS), em dois clones de batata (um antigo e um recente) adaptados ao Sul do Brasil. Foram realizados três experimentos em ambiente protegido por abrigo telado em Santa Maria, RS, dois deles na primavera (cultivo de safra), com plantios em 20/08/2008 (E1) e 20/10/2008 (E2), e um experimento no outono (cultivo de safrinha), com plantio em 25/03/2009 (E3), usando-se dois clones de batata: um antigo ('Macaca') e um recente ('SMINIA793101-3'). A água disponível, representada pela FATS, a transpiração e o crescimento foliar foram medidos diariamente durante o período de imposição da deficiência hídrica. A FATS crítica que começa a alterar a transpiração, indicativo do início do fechamento estomático, foi de 0,39, 0,47 e 0,28 no clone 'Macaca' e de 0,47, 0,49 e 0,33 no clone 'SMINIA793101-3', para os experimentos E1, E2 e E3, respectivamente, enquanto o crescimento foliar começou a ser reduzido, com valor de FATS crítica maior para o clone 'Macaca', indicando que o clone 'SMINIA793101-3' é mais tolerante ao déficit hídrico no solo que o clone 'Macaca'.

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A cultura da mandioca geralmente é exposta a mais de um período de deficiência hídrica durante a estação de crescimento. O objetivo deste trabalho foi verificar se há diferença na Fração de Água Transpirável do Solo (FATS) crítica para transpiração e crescimento foliar em plantas de mandioca submetidas a um e dois períodos de deficiência hídrica no solo. Foram conduzidos dois experimentos com a cultura da mandioca, cultivar Fepagro RS 13. Os tratamentos foram quatro regimes hídricos subdivididos em dois períodos, período 1 (P1) e período 2 (P2): regimes hídricos RH1 e RH2 (sem e com deficiência hídrica nos dois períodos, respectivamente) e regimes hídricos RH3 e RH4 (com deficiência hídrica no P1 e P2, respectivamente). Usou-se o método da FATS para indicar os pontos críticos para transpiração e crescimento foliar. A FATS crítica foi 0,35, 0,38 e 0,37 para crescimento foliar e 0,28; 0,26; e 0,28 para transpiração no P1 do RH2 e RH3 e P2 do RH4, respectivamente. No P2 do RH2, a FATS crítica para crescimento foliar e transpiração foi 0,09 e 0,13, respectivamente. Concluiu-se que há diminuição na FATS crítica em mandioca no segundo período comparado ao primeiro período de deficiência hídrica no solo, que pode ser explicada pela menor área foliar, o que permitiu que o período de turgescência das folhas fosse maior e, com isso, demoraram mais a ativar seus mecanismos de controle estomático. A implicação prática desses resultados é que esses podem ser utilizados como parâmetros para irrigação da cultura, e também, na seleção de cultivares mais tolerantes à deficiência hídrica.

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O objetivo deste trabalho foi determinar a transpiração e o crescimento foliar de duas cultivares de mandioca, em resposta ao conteúdo de água disponível no solo representado pela fração de água transpirável no solo (FATS). Foram realizados dois experimentos, em vasos de 8 L, com as cultivares Fécula Branca e Fepagro RS 13. O plantio foi feito em 11/9/2009 e 8/9/2010, em delineamento experimental inteiramente casualizado. A água disponível, a transpiração e o crescimento foliar foram medidos diariamente, em cada experimento,durante o período de imposição da deficiência hídrica. A FATS crítica, em que a transpiração começa a serreduzida, foi de 0,45 para 'Fécula Branca' e 0,50 para 'Fepagro RS 13'. A redução do crescimento foliar começou quando a FATS atingiu 0,51 para 'Fécula Branca' e 0,49 para 'Fepagro RS 13'. A FATS crítica para transpiração e crescimento foliar difere em condições de atmosfera com baixa e com alta demanda evaporativa do ar, conforme a cultivar de mandioca utilizada.

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Inositol is a polyalcohol required for the proper formation of cell membranes. In the body, its plays an important role in the transmission of nerve impulses, its also helps in the transporting of fats within the body. In mammals, inositol exists as phosphorylated derivatives, various phosphoinositides, and in its free form. Agonist stimulated hydrolysis of phosphatidylinositol 4,5-bisphosphate [PI(4,5)P2] is the first step in the transmembrane signalling mechanism when cells respond to external stimuli. Under control of activated phospholipase C (PLC) via G-protein, two second messengers D-myo-inositol 1,4,5-triphosphate [Ins(1,4,5)P3] and diacylglycerol are released into the cell. From Ins(1,4,5)P3, enzymatic process under phosphatases or kinases control affords subsequent inositol phosphate metabolites. During the last decade the synthesis of modified inositol phosphate derivatives has been strongly investigated. This paper reviews principal aspects about synthesis and biological functions of these biomolecules.

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The oleochemical industry has a permanent interested in controlling the physical, functional and organoleptical properties of their products and in producing useful derivatives from their raw materials. The potential of biotechnology for developing novel or well-known products at more competitive costs meets the need of this industrial segment in expanding their goals. In this work some technical aspects, problems and perspectives related to the production of oil and fat derivatives using biotransformation techniques are discussed. Particular emphasis is given to the description of biotransformation processes using lipase as catalyst, in view of the great versatility of this enzyme class to mediate typical reactions in this technological sector.

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The process of anaerobic digestion has been greatly developed during the last decades for the treatment of wastewater from food industries as for example, wastewaters from sugar and starch manufacturing and from breweries. However, for wastewaters which contain high amounts of fats and proteins, such as those from slaughterhouses and dairies, anaerobic digestion was found to be troublesome, due to the potential of sludge flotation, the formation of scum layers of lipids at the surface of the reactor, which are not digested and the toxicity of the intermediate compounds (long chain fatty acids) generated during the anaerobic digestion of the wastewater. The addition of hydrolytic enzymes, such as lipases prior to the anaerobic digestion can minimize these problems. In this work, this strategy is reviewed and the technical issues that must be considered in determining its feasibility are discussed.

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Free fatty acids are a measure of evaluating fats and oils, submitted to abusive conditions, besides being a quality characteristic of edible vegetable oils. The official method of determination (AOCS Ca 5a-40, 2004) is based on titration, using phenolphthalein as an indicator. For crude and degummed oils, the titration end point is difficult to be observed due to the high level of pigments, resulting in dark solutions. In this case and others, such as self-life studies, in which sample quantities are limited, potentiometric titration may be a very good alternative.

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The function of lipids in human nutrition has been intensively debated in the last decade.This context reinforces the concern about controlling the trans fat ingestion, due to its negative implications on health. Interesterification provides an important alternative to modify the consistency of oils and fats without causing formation of trans isomers. This article reports research done towards production of zero trans fats by chemical interesterification, for different industrial purposes. Aspects related to the effect of trans fats on diet, their impact on health and modifications in Brazilian legislation are also covered.

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The aim of the present work is to investigate the effects of blending and chemical interesterification reactions on the softening and melting behavior of chicken fat, its stearin and medium chain triacylglycerols, and blends thereof in various ratios. Chemical interesterification is a promising alternative to the current processes of modifying the physical properties of fats. In the experimental design 7 samples corresponding to 7 different blend proportions were used. The results were represented in triangular diagrams. The addition of stearin influenced the softening and melting points. The mixture response surface methodology proved to be an extremely useful tool for the optimization of the fat mixtures.

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Monoglycerides (MAG) are non-ionic surfactants, widely used in the pharmaceutical, food and cosmetic industries. Although MAGs are manufactured on an industrial scale by chemical glycerolysis of oils and fats, new developments in lipase catalyzed synthesis have been studied as an alternative to the classical method seeking to use clean technology and green chemistry. In this work, different methods such as glycerolysis, selective hydrolysis of fats and oils, and esterification of fatty acids or transesterification of esters with glycerol are presented. The properties and applications of the monoglycerides are also included in this review.

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Periodically, during petroleum shortage, fatty acids and their derivatives have been used as alternative fuels to those derived from petroleum. Different approaches have been proposed, including the use of neat fats and oils or their derivatives. Indeed, the utilization of biodiesel produced by alcoholysis of triacilglycerides or esterification of fatty acids, or hydrocarbons obtained from cracking of fatty materials were studied and used in several countries. Increasing concerns about energy security and climate changes have lead several countries, including Brazil, to start up biofuels programs. Different technologies are currently being developed in order to produce biofuels with economical feasibility. In this work are discussed alternative fatty raw-materials and processing technologies that are currently being studied in order to produce fuels suitable to sustainable substitute diesel fuel.

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Chemical interesterification is an important alternative to produce zero trans fats. In practice, however, excessive reaction times are used to ensure complete randomization. This work evaluated the influence of the reaction time on the interesterification of soybean oil/fully hydrogenated soybean oil blend, carried out in the following conditions: 100 ºC, 500 rpm stirring speed, 0.4% (w/w) sodium methoxide catalyst. The triacylglycerol composition, solid fat content and melting point analysis showed that the reaction was very fast, reaching the equilibrium within 5 min. This result suggests the interesterification can be performed in substantially lower times, with reduction in process costs.

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The use of antioxidants either to prevent or retard food's lipids oxidation was approved after inquires that verified their security within a daily intake limit. In this study, the methodology was developed and validated for the analysis of synthetic antioxidants: propylgallate (PG), tert-butylhydroquinone (TBHQ), butylhydroxyanisole (BHA), octylgallate (OG) and butylhydroxytoluene (BHT) in vegetables oils, margarine and hydrogenated fats by high performance liquid chromatographic. The methodology revealed itself efficient, with recovery rates above 90% for all antioxidant substances, besides good linearity in concentration range of 40-240 mg kg-1 (r = 0,999), repeatability with CV < 3,7% and limit of quantification 16.55, 10.32, 1.40, 3.76 and 9.30 mg/kg for BHT, BHA, PG, OG and TBHQ, respectively.

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Recent advances for improving physicochemical and nutritional properties of lipids are reviewed, with emphasis on products attaining by biochemical processing of natural fats and oils. Enzymatic interesterification provides an important route to modify physical and nutritional properties of milkfat without generating trans isomers. This process makes use of lipases, a versatile class of enzyme that is able to perform efficiently the target modification in both solvent and solvent free systems. The present review covers important features of lipases, lipase-catalyzed interesterification reactions and their effects on the composition and texture of the resulting product.

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The Energy Value (EV) corresponds to the sum of the energetic contributions from food macronutrients (proteins, carbohydrates and fats) and is required on the labels of pre-packaged foods. The determinations of these parameters are based on distinct analytical procedures, each one being time-consuming, laborious and producing residues. This work presents multivariate models to determine the EV contents of industrialized foods for human consumption by using X-ray fluorescence spectra of samples with known parameters, determined through conventional methods. The proposed method is an alternative to conventional analytical methods and does not require any reagent, given the demands of the "green chemistry".