27 resultados para Glucanases
Resumo:
Botryosphaeran, a (1 -> 3; 1 -> 6)-beta-D-glucan produced by Botryosphaeria rhodina, and laminarin were hydrolysed by two fungal beta-glucanases predominantly of the 1,3-type produced by B. rhodina and Trichoderma harzianum Rifai grown on botryosphaeran as sole carbon source. Both beta-glucanase preparations presented different modes of attack on botryosphaeran and laminarin. Laminarin was hydrolysed to the extent of similar to 50% in 1 hand 100% within 24 h, and its hydrolysis products were mainly glucose and gentiobiose, and lesser amounts of laminaribiose and oligosaccharides of DP 3-4 during the early stages of hydrolysis, while botryosphaeran 'yielded mainly glucose and gentiobiose with some trisaccharide, but no laminaribiose or tetrasaccharide when hydrolysed by the T. harzianum enzyme. By contrast, B. rhodina beta-1,3-glucanases produced predominantly glucose during all stages of botryosphaeran hydrolysis. Some physicochemical properties of the 1,3- and 1,6-beta-glucanases, and beta-glucosidases contained in the two fungal P-glucanase preparations are also described for the first time. (c) 2006 Elsevier Ltd. All rights reserved.
Resumo:
Botryosphaeria rhodina and Trichoderma harzianum Rifai were grown on botryosphaeran (an exopolysaccharide (EPS) of the beta-1,3; 1,6-D-Glucan type produced by B. rhodina) as sole carbon source with the objective of producing beta-glucanases of the beta-type. Conditions for beta-1,3-glucanase production by T harzianum were examined by a statistical response surface method, and showed maximal enzyme production at 5 days growth in media containing 1.5 g/1 of EPS. Good agreement was obtained between the experimental values of beta-1, 3-glucanase activity and the corresponding values predicted by the mathernatical model. The crude beta-1,3-glucanase preparations were active towards a number of different beta-1,3-glucans and beta-glucosides. The mycelium of B. rhodina also proved to be a good substrate for beta-1,3-glucanase production by both fungal species. (c) 2005 Published by Elsevier Ltd.
Resumo:
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
Resumo:
Pós-graduação em Ciências Biológicas (Microbiologia Aplicada) - IBRC
Resumo:
β-(1→3)-Glucanases were produced by Trichoderma harzianum Rifai PAMB-86 cultivated on botryosphaeran in a bench-fermenter and optimised by the response surface method. Maximal enzyme titres occurred at 5 days, initial pH 5.5 and aeration of 1.5vvm. β-(1→3)-The β-glucanolytic enzyme complex produced by T. harzianum Rifai PAMB- 86 was fractionated by gel filtration into 2 fractions (F-I, F-II), and employed to produce gluco-oligosaccharides from algal paramylon ((1→3)-β-D-glucan) and lichen pustulan ((1→6)-β-D-glucan). Both enzymes attacked paramylon to the extent of ~15-20% in 30 min releasing glucose and laminaribiose as major end-products, and laminarioligosaccharides of degree of polymerization (DP) ≥3. Only F-I degraded pustulan resulting in ~2% degradation at 30 min, with glucose, gentiobiose and gentio-oligosaccharides of DP ≥4 as major products. The difference in the nature of the hydrolysis products can be explained by the substrate specificities of each enzyme fraction, and the structural differences of the β-D-glucans attacked.
Resumo:
Pathogenesis-related proteins, chitinases (CHT) and β-1,3-glucanases (GLU), are stress proteins up-regulated as response to extrinsic environmental stress in plants. It is unknown whether these PR proteins are also influenced by inbreeding, which has been suggested to constitute intrinsic genetic stress, and which is also known to affect the ability of plants to cope with environmental stress. We investigated activities of CHT and GLU in response to inbreeding in plants from 13 Ragged Robin (Lychnis flos-cuculi) populations. We also studied whether activities of these enzymes were associated with levels of herbivore damage and pathogen infection in the populations from which the plants originated. We found an increase in pathogenesis-related protein activity in inbred plants from five out of the 13 investigated populations, which suggests that these proteins may play a role in how plants respond to intrinsic genetic stress brought about by inbreeding in some populations depending on the allele frequencies of loci affecting the expression of CHT and the past levels of inbreeding. More importantly, we found that CHT activities were higher in plants from populations with higher levels of herbivore or pathogen damage, but inbreeding reduced CHT activity in these populations disrupting the increased activities of this resistance-related enzyme in populations where high resistance is beneficial. These results provide novel information on the effects of plant inbreeding on plant–enemy interactions on a biochemical level.
Resumo:
Two cDNA clones encoding endo-β-1,4-glucanases (EGases) were isolated from a radiata pine (Pinus radiata) cDNA library prepared from immature female strobili. The cDNAs PrCel1 (Pinus radiata cellulase 1) and PrCel2 encode proteins 509 and 515 amino acids in length, respectively, including putative signal peptides. Both proteins contain domains conserved in plant and bacterial EGases. The proteins PRCEL1 and PRCEL2 showed strong similarity to each other (76% amino acid identity), and higher similarity to TPP18 (73 and 67%, respectively), an EGase cloned from tomato (Lycopersicon esculentum) pistils, than to any other reported EGases. Northern-blot analyses indicated that both genes displayed a similar pattern of expression. The only significant difference was in the level of expression. In situ hybridizations were used to demonstrate that, within differentiating pine reproductive structures, PrCel1 expression was greatest in microsporangia in pollen strobili and near the developing ovule in the seed strobili. Expression was also found in vegetative tissues, especially in regions experiencing cell elongation, such as the elongating region of root tips. Both proteins have an ability to degrade carboxymethylcellulose in vitro. Genomic-blot analysis indicated the presence of a family of EGase genes in the radiata pine genome, and that PrCel1 and PrCel2 are transcribed from distinct one-copy genes.
Resumo:
Microbes have a decisive role in the barley-malt-beer chain. A major goal of this thesis was to study the relationships between microbial communities and germinating grains during malting. Furthermore, the study provided a basis for tailoring of malt properties with natural, malt-derived microbes. The malting ecosystem is a dynamic process, exhibiting continous change. The first hours of steeping and kilning were the most important steps in the process with regard to microbiological quality. The microbial communities consisting of various types of bacteria, yeasts and filamentous fungi formed complex biofilms in barley tissues and were well-protected. Inhibition of one microbial population within the complex ecosystem led to an increase of non-suppressed populations, which must be taken into account because a shift in microbial community dynamics may be undesirable. Both bacterial and fungal communities should be monitored simultaneously. Using different molecular approaches we showed that the diversity of microbes in the malting ecosystem was greater than expected. Even some new microbial groups were found in the malting ecosystem. Suppression of Gram-negative bacteria during steeping was advanategous for grain germination and malt brewhouse performance. Fungal communities including both filamentous fungi and yeasts significantly contributed to the production of microbial beta-glucanases and xylanases, and were also involved in proteolysis. Well-characterized lactic acid bacteria (Lactobacillus plantarum VTT E-78076 and Pediococcus pentosaceus VTT E-90390) proved to be an effective way of balancing the microbial communities in malting. Furthermore, they had positive effects on malt characteristics and notably improved wort separation. Previously the significance of yeasts in the malting ecosystem has been largely underestimated. This study showed that yeast community was an important part of the industrial malting ecosystem. Yeasts produced extracellular hydrolytic enzymes with a potentially positive contribution to malt processability. Furthermore, several yeasts showed strong antagonistic activity against field and storage moulds. Addition of a selected yeast culture (Pichia anomala VTT C-04565) into steeping restricted Fusarium growth and hydrophobin production and thus prevented beer gushing. Addition of P. anomala C565 into steeping water tended to retard wort filtration, but the filtration was improved when the yeast culture was combined with L. plantarum E76. The combination of different microbial cultures offers a possibility to use ther different properties, thus making the system more robust. Improved understanding of complex microbial communities and their role in malting enables a more controlled process management and the production of high quality malt with tailored properties
Resumo:
Potenciais agentes de biocontrolo foram isolados a partir da microbiota epifítica de folhas e frutos, de citrinos e pomóideas, de diferentes pomares, durante diferentes campanhas e de distintas condições de armazenamento. A atividade antagonista de 1465 microrganismos isolados foi testada em ensaios in vivo em pomóideas face a Penicillium expansum (104 esporos/ml) e em citrinos face a P. digitatum (105 esporos/ml) em frutos feridos e inoculados artificialmente. Aproximadamente 7,6% dos isolados reduziu a severidade (diâmetro da podridão) e a incidência (% podres) em mais de 25%, menos de 3% reduziu ambos os parâmetros em mais de 50%, mas apenas 4 microrganismos preencheram os critérios de seleção, redução da incidência e severidade em mais de 75%. Dos 4 e pelos resultados obtidos em ensaios de seleção secundária e de determinação da concentração mínima eficaz, destacaram-se e selecionaram-se 2 microrganismos, uma bactéria isolada de laranjas „Valencia late‟ e identificada como pertencente ao grupo das Enterobactérias, Pantoea agglomerans PCB-1 e uma levedura isolada a partir da superfície de maças 'Bravo de Esmolfe' identificada como Metschnikowia andauensis PBC-2, com o objetivo de usar dois modelos distintos de agentes de biocontrol, uma bactéria e uma levedura. P. agglomerans é um agente de biocontrolo já conhecido. A estirpe PBC-1 isolada neste trabalho mostrou ter elevada eficácia face aos principais agentes patogénicos na póscolheita de citrinos e pomóideas. M. andauensis é uma levedura recentemente descoberta e a estirpe PBC-2 diz respeito à primeira referência desta espécie como agente de biocontrolo, a qual foi recentemente objeto de concessão de Patente de Invenção Nacional nº 105210, como uma nova estirpe desta espécie para uso como agente de biocontrolo das doenças de póscolheita de frutos. A concentração mínima eficaz dos antagonistas revelou estar dentro dos limites para o seu desenvolvimento comercial. M. andauensis PBC-2 quando aplicada à concentração de 5×106 ufc/ml, permitiu uma redução da incidência e da severidade de 62 e 70%, respetivamente, e quando aplicada a 1×107 ufc/ml, uma redução de 90% de incidência e de 95% de severidade. P. agglomerans PBC-1 aplicada a 1 × 108 ufc/ml em maçãs e em citrinos no controlo de P. expansum e P. digitatum, respetivamente, propiciaram uma redução significativa de cerca de 86% de cada um dos agentes patogénicos. O espectro de ação de M. andauensis PBC-2 foi avaliado, verificando-se o controlo efetivo face a Rhizopus stolonifer, P. expansum e Botritys cinerea, em pera 'Rocha' e em diferentes cultivares de maçã e contra P. digitatum e Penicillium italicum em clementinas e laranjas de diferentes cultivares. Durante 4 épocas, a eficácia de M. andauensis PBC-2, foi avaliada e comparada com o fungicida sintético mais usado comercialmente, Imazalil, em ensaios semicomerciais. Os resultados assemelharam-se aos obtidos com o fungicida, a redução da incidência do bolor azul foi de 90% em maças armazenadas durante 3 meses a 1±0.5 ºC, seguido de 7 dias à temperatura ambiente, para simular o tempo de prateleira. Em ensaios do estudo da dinâmica populacional, verificou-se que o agente de biocontrolo M. andauensis PBC-2 tem uma excelente capacidade colonizadora e que consegue crescer e sobreviver nas feridas, mas também na superfície dos frutos, armazenados à temperatura ambiente e em condições de frio. Pelo contrário, M. andauensis PBC- não apresentou capacidade de sobrevivência no suco gástrico simulado, começando a população a diminuir imediatamente após exposição e passadas 48 h não restava população viável. Diferentes meios de cultura usualmente descritos na produção de leveduras foram testados na produção de M. andauensis PBC-2. Aquele que apresentou a maior população viável ao fim de 40 h de incubação foi o meio YPD, entretanto escolhido para estudos posteriores. O pH mais favorável ao crescimento foi de 6,5, não se observando diferenças significativas entre os crescimentos a 25 e 30 ºC. Estudou-se ainda o efeito da concentração das duas fontes de azoto do meio YPD e elegeu-se a combinação de 10 g/l de extrato de levedura e 20 g/l de peptona. Nos estudos de produção de biomassa dos dois potenciais agentes de biocontrolo, analisou-se o efeito da sacarose, frutose e glucose, como fontes de carbono e otimizou-se a concentração destes açúcares no crescimento em Erlenmeyer. Após 20 h de incubação a população viável de P. agglomerans PBC-1 atingiu 3.9×109, 1.5×109, 3.9×109 ufc/ml, respetivamente. No caso de M. andauensis PBC-2, foi obtida a população de 1.2×108, 5.3×108 e 1,3×108 ufc/ml, com glucose, sacarose e frutose, após 40 h. Os resultados permitem concluir que os dois agentes têm capacidade de metabolizar os açúcares testados, contudo e atendendo à produtividade de biomassa, rendimento, disponibilidade e custo, optou-se por usar a sacarose como fonte de carbono nos restantes ensaios, nomeadamente na transição de Erlenmeyer para reator biológico. Na produção de P. agglomerans PBC-1 escolheu-se o meio SAC (5 g/l sacarose e 5 g/l extrato de levedura). O meio YPS (12.5g/l sacarose, 10 g/l extrato de levedura, 20 g/l peptona) foi usado no aumento de escala de M. andauensis PBC-2. A otimização da produção em reator biológico de P. agglomerans PCB-1 foi realizada submetendo o microrganismo a diferentes condições hidrodinâmicas, testando-se arejamentos, dois tipos de turbina (hélice; rusthon) e dispersores (poroso, em L). Foram igualmente estudados, o efeito da concentração inicial do inoculo e a adição programada da fonte de carbono. Embora tenham sido testadas diferentes variações, o perfil dos diferentes parâmetros analisados foi idêntico, a população máxima viável foi de 3-5×109 ufc/ml. A diferença mais notória foi observada na fermentação com concentração inicial de 107 cfu/ml, que permitiu encurtar em cinco horas a fase lag, o que pode significar uma redução de tempo de fermentação, e consequentemente uma redução de custos. Visando a produção de biomassa a baixo custo, fator importante na implementação de um sistema de controlo biológico, estudou-se a possibilidade de utilizar subprodutos e resíduos da indústria alimentar no crescimento dos agentes de biocontrolo. Subprodutos da indústria de alfarroba e subprodutos e resíduos da indústria de sumos de citrinos foram utilizados na produção de P. agglomerans PBC-1 e de M. andauensis PBC-2, respetivamente. Desta forma, para além de uma redução dos custos de produção, pretendeu-se a valorização de um subproduto (no caso de alfarroba e do bagaço de citrinos) e mitigar os efeitos nefastos de um resíduo (licor), com elevada carga poluente, que gera graves problemas ambientais e que pode ditar o encerramento desta unidade industrial, com efeitos devastadores para a economia local. Realizaram-se extrações de subprodutos da indústria de alfarroba, a diferentes razões sólido/líquido, tempos e temperaturas, de forma a maximizar a extração de açúcares. A potencialidade de utilizar o extrato de açúcares obtido, na produção de P. agglomerans PBC-1 foi avaliada, em ensaios de crescimento em Erlenmeyer, com consequente transição para reator mecanicamente agitado. Os perfis de crescimento da cultura crescida com subprodutos da indústria de alfarroba assemelharam-se aos observados com sacarose como fonte de carbono. A biomassa viável produzida com subprodutos da indústria de alfarroba, foi de 4- 7×109 ufc/ml, o que permite concluir que é uma alternativa viável à produção deste microrganismo. A produção de M. andauensis PBC-2 com subprodutos da indústria de sumos de citrinos, foi estudada em Erlenmeyer tendo como objetivo conhecer os perfis de crescimento do microrganismo, bem como, estudar a melhor combinação desta fonte de carbono e sua concentração. O bagaço de citrinos e um resíduo líquido, que se denominou de licor, foram testados com resultados comparáveis à produção obtida com meio usado como standard, (YPS), sem comprometer a atividade antagonista do agente de biocontrolo. Posteriormente, foi realizada a produção em reator mecanicamente agitado, escolhendo-se para tal o meio YL (10 g/l extrato de levedura e licor à concentração de açúcares de 12.5 g/l). Os parâmetros de crescimento da cultura foram semelhantes aos obtidos com a fonte de carbono comercial. Após aproximadamente 40 h de incubação, a população viável de M. andauensis PCB-2 atingiu 3.1×108 ufc/ml. A produtividade de biomassa e rendimento foi de 0.435 g/l.h e 1.502 g/g, respetivamente, comparável a produtividade de biomassa (0.432 g/l.h) e rendimento (1.4416 g/g) observado no meio YPS. Os resultados obtidos, são uma base sólida para o aumento de escala a um nível laboratorial e semi-industrial, permitiram concluir que é exequível produzir M. andauensis a baixo custo e representam uma possível alternativa para um resíduo. Em estudos dos possíveis modos de ação, de M. andauensis PBC-2, conclui-se que, este agente de biocontrolo, não tem como modos de ação a produção de antibióticos ou de voláteis, uma vez que, não se verificou inibição do crescimento dos agentes patogénicos. A competição por ferro e a produção de enzimas líticas por M. andauensis PBC-2 foi estudada em meios com diferentes concentrações de ferro e em um meio de cultura, com paredes celulares de fungos, como única fonte de carbono. Os resultados obtidos neste estudo sugerem que a produção e secreção de enzimas líticas não é o principal ou o mais importante modo de ação do agente de controlo biológico PBC-2, uma vez que a produção de quitinase observada ao 5 e 7º dia de incubação foi muito baixa, e não foi observada a produção de β-1,3- glucanases e proteases.
Resumo:
In plant tissues the extracellular environment or apoplast, incorporating the cell wall, is a highly dynamic compartment with a role in many important plant processes including defence, development, signalling and assimilate partitioning. Soluble apoplast proteins from Arabidopsis thaliana, Triticum aestivum and Oryza sativa were separated by two-dimensional electrophoresis. The molecular weights and isoelectric points for the dominant proteins were established prior to excision, sequencing and identification by matrix-assisted laser-desorption ionisation time of flight mass spectrometry (MALDI - TOF MS). From the selected spots, 23 proteins from O. sativa and 25 proteins from A. thaliana were sequenced, of which nine identifications were made in O. sativa (39%) and 14 in A. thaliana (56%). This analysis revealed that: (i) patterns of proteins revealed by two-dimensional electrophoresis were different for each species indicating that speciation could occur at the level of the apoplast, (ii) of the proteins characterised many belonged to diverse families reflecting the multiple functions of the apoplast and (iii), a large number of the apoplast proteins could not be identified indicating that the majority of extracellular proteins are yet to be assigned. The principal proteins identified in the aqueous matrix of the apoplast were involved in defence, i.e. germin-like proteins or glucanases, and cell expansion, i.e. β-D-glucan glucohydrolases. This study has demonstrated that proteomic analysis can be used to resolve the apoplastic protein complement and to identify adaptive changes induced by environmental effectors.
Resumo:
Hydroponic isotope labelling of entire plants (HILEP) is a cost-effective method enabling metabolic labelling of whole and mature plants with a stable isotope such as N-15. By utilising hydroponic media that contain N-15 inorganic salts as the sole nitrogen source, near to 100% N-15-labelling of proteins can be achieved. In this study, it is shown that HILEP, in combination with mass spectrometry, is suitable for relative protein quantitation of seven week-old Arabidopsis plants submitted to oxidative stress. Protein extracts from pooled N-14- and N-15-hydroponically grown plants were fractionated by SDS-PAGE, digested and analysed by liquid chromatography electrospray ionisation tandem mass spectrometry (LC-ESI-MS/MS). Proteins were identified and the spectra of N-14/N-15 peptide pairs were extracted using their m/z chromatographic retention time, isotopic distributions, and the m/z difference between the N-14 and N-15 peptides. Relative amounts were calculated as the ratio of the sum of the peak areas of the two distinct N-14 and N-15 peptide isotope envelopes. Using Mascot and the open source trans-proteomic pipeline (TPP), the data processing was automated for global proteome quantitation down to the isoform level by extracting isoform specific peptides. With this combination of metabolic labelling and mass spectrometry it was possible to show differential protein expression in the apoplast of plants submitted to oxidative stress. Moreover, it was possible to discriminate between differentially expressed isoforms belonging to the same protein family, such as isoforms of xylanases and pathogen-related glucanases (PR 2). (C) 2008 Elsevier Ltd. All rights reserved.
Resumo:
Spodoptera frugiperda beta-1,3-glucanase (SLam) was purified from larval midgut. It has a molecular mass of 37.5 kDa, an alkaline optimum pH of 9.0, is active against beta-1,3-glucan (laminarin), but cannot hydrolyze yeast beta-1,3-1,6-glucan or other polysaccharides. The enzyme is an endoglucanase with low processivity (0.4), and is not inhibited by high concentrations of substrate. In contrast to other digestive beta-1,3-glucanases from insects, SLam is unable to lyse Saccharomyces cerevisae cells. The cDNA encoding SLam was cloned and sequenced, showing that the protein belongs to glycosyl hydrolase family 16 as other insect glucanases and glucan-binding proteins. Multiple sequence alignment of beta-1,3-glucanases and beta-glucan-binding protein supports the assumption that the beta-1,3-glucanase gene duplicated in the ancestor of mollusks and arthropods. One copy originated the derived beta-1,3-glucanases by the loss of an extended N-terminal region and the beta-glucan-binding proteins by the loss of the catalytic residues. SLam homology modeling suggests that E228 may affect the ionization of the catalytic residues, thus displacing the enzyme pH optimum. SLam antiserum reacts with a single protein in the insect midgut. Immunocytolocalization shows that the enzyme is present in secretory vesicles and glycocalyx from columnar cells. (C) 2010 Elsevier Ltd. All rights reserved.
Resumo:
The major beta-1,3-glucanase from Tenebrio molitor (TLam) was purified to homogeneity (yield, 6%; enrichment, 113 fold; specific activity, 4.4 U/mg). TLam has a molecular weight of 50 kDa and a pH optimum of 6. It is an encloglucanase that hydrolyzes beta-1,3-glucans as laminarin and yeast beta-1,3-1,6-glucan, but is inactive toward other polysaccharides (as unbranched beta-1,3-glucans or mixed beta-1,3-1,4-glucan from cereals) or disaccharides. The enzyme is not inhibited by high substrate concentrations and has low processivity (0.6). TLam has two ionizable groups involved in catalysis, and His, Tyr and Arg residues plus a divalent ion at the active site. A Cys residue important for TLam activity is exposed after laminarin binding. The cDNA coding for this enzyme was cloned and sequenced. It belongs to glycoside hydrolase family 16, and is related to other insect glucanases and glucan-binding proteins. Sequence analysis and homology modeling allowed the identification of some residues (E174, E179, H204, Y304, R127 and R181) at the active site of the enzyme, which may be important for TLam activity. TLam efficiently lyses fungal cells, suggesting a role in making available walls and cell contents to digestion and in protecting the midgut from pathogen infections. (C) 2009 Elsevier Ltd. All rights reserved.
Resumo:
Botryosphaeran, a new exopolysaccharide from the endophytic fungus Botryosphaeria rhodina MAMB-05, and algal laminarin were hydrolyzed by partially-fractionated enzymes of the beta-glucanolytic complex from Trichoderma harzianum Rifai. beta-Glucanase fractions (F-I and F-II) separated by gel permeation chromatography presented different modes of attack on botryosphaeran and laminarin. Botryosphaeran was hydrolyzed to the extent of 66% (F-I) and 98% (F-II) within 30 min, and its main hydrolysis products were gluco-oligosaccharides of DP >= 4, with lesser amounts of glucose, di- and tri-saccharides. The action of enzyme fractions I and II on laminarin resulted in 15% conversion to glucose, while the percentage of saccharification was radically different (70% for F-I and 25% for F-II). The different product arrays within the polysaccharide hydrolysates can be explained by the difference in the enzymes' specificities within each enzyme fraction, and the molecular structures of the polysaccharides and their complexity.
Resumo:
Botryosphaeria rhodina MAMB-05 produced β-1,3-glucanases and botryosphaeran when grown on glucose, while Trichoderma harzianum Rifai only produced the enzyme. A comparison of long-term cultivation (300h) by B. rhodina demonstrated a correlation between the formation of botryosphaeran (48h) and its consumption (after 108h), and de-repression of β-1,3-glucanase synthesis when glucose was depleted from the nutrient medium, whereas for T. harzianum enzyme production commenced during exponential growth. Growth profiles and levels of β-1,3-glucanases produced by both fungi on botryosphaeran also differed, as well as the production of β-1,3-glucanases and β-1,6-glucanases on glucose, lactose, laminarin, botryosphaeran, lasiodiplodan, curdlan, Brewer's yeast powder and lyophilized fungal mycelium, which were dependent upon the carbon source used. A statistical mixture-design used to optimize β-1,3-glucanase production by both fungi evaluated botryosphaeran, glucose and lactose concentrations as variables. For B. rhodina, glucose and lactose promoted enzyme production at the same levels (2.30UmL -1), whereas botryosphaeran added to these substrates exerted a synergic effect favorable for β-glucanase production by T. harzianum (4.25UmL -1). © 2010 Elsevier B.V.