32 resultados para CHITINASES
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The aim of this work was the partial purification and subsequent evaluation of chitinase expression during the various growth phases of Paracoccidioides brasiliensis. Initially, PbCTS1r was expressed as a recombinant protein and displayed enzymatic activity against 4-MU-[N-acetylglucosamine (GlcNAc)]3 and 4-MU-(GlcNAc)2. Two proteins, 45 kDa and 39 kDa in size, were partially purified from P. brasiliensis yeast crude extract using cation-exchange chromatography coupled with HPLC and were characterised as PbCTS1 and PbCTS2, respectively. Anti-PbCTS1r antibody recognised two proteins in the crude extracts of yeast and the transitional stage between mycelial and yeast phases. In crude extracts of mycelium, only the 45 kDa protein was detected. However, quantitative real-time polymerase chain reaction led to the detection of small quantities of Pbcts2 transcript in the mycelial phase. In the yeast cell wall extract, only the 39 kDa protein was detected. Moreover, both proteins were secreted by the yeast parasitic phase, suggesting that these proteins participate in the modulation of the fungal environment. Phylogenetic analysis of the predicted PbCTS1 and PbCTS2 proteins indicated that they code for distinct chitinases in P. brasiliensis. During evolution, P. brasiliensis could have acquired the paralogues Pbcts1 and Pbcts2 for growth and survival in diverse environments in both saprophytic and parasitic phases.
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Citrus sudden death (CSD) is a disease of unknown etiology that greatly affects sweet oranges grafted on Rangpur lime rootstock, the most important rootstock in Brazilian citriculture. We performed a proteomic analysis to generate information related to this plant pathogen interaction. Protein profiles from healthy, CSD-affected and CSD-tolerant stem barks, were generated using two-dimensional gel electrophoresis. The protein spots were well distributed over a pI range of 3.26 to 9.97 and a molecular weight (MW) range from 7.1 to 120 kDa. The patterns of expressed proteins on 2-DE gels made it possible to distinguish healthy barks from CSD-affected barks. Protein spots with MW around 30 kDa and pI values ranging from 4.5 to 5.2 were down-regulated in the CSD-affected rootstock bark. This set of protein spots was identified as chitinases. Another set of proteins, ranging in pI from 6.1 to 9.6 with an MW of about 20 kDa, were also suppressed in CSD-affected rootstock bark; these were identified as miraculin-like proteins, potential trypsin inhibitors. Downregulation of chitinases and proteinase inhibitors in CSD-affected plants is relevant since chitinases are well-known pathogenesis-related protein, and their activity against plant pathogens is largely accepted.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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The enzyme chitinase from Moniliophthora perniciosa the causative agent of the witches' broom disease in Theobroma cacao, was partially purified with ammonium sulfate and filtration by Sephacryl S-200 using sodium phosphate as an extraction buffer. Response surface methodology (RSM) was used to determine the optimum pH and temperature conditions. Four different isoenzymes were obtained: ChitMp I, ChitMp II, ChitMp III and ChitMp IV. ChitMp I had an optimum temperature at 44-73ºC and an optimum pH at 7.0-8.4. ChitMp II had an optimum temperature at 45-73ºC and an optimum pH at 7.0-8.4. ChitMp III had an optimum temperature at 54-67ºC and an optimum pH at 7.3-8.8. ChitMp IV had an optimum temperature at 60ºC and an optimum pH at 7.0. For the computational biology, the primary sequence was determined in silico from the database of the Genome/Proteome Project of M. perniciosa, yielding a sequence with 564 bp and 188 amino acids that was used for the three-dimensional design in a comparative modeling methodology. The generated models were submitted to validation using Procheck 3.0 and ANOLEA. The model proposed for the chitinase was subjected to a dynamic analysis over a 1 ns interval, resulting in a model with 91.7% of the residues occupying favorable places on the Ramachandran plot and an RMS of 2.68.
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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.
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By using molecular dynamics simulations, we have examined the binding of a hexaNAG substrate and two potential hydrolysis intermediates (an oxazoline ion and an oxocarbenium ion) to a family 19 barley chitinase. We find the hexaNAG substrate binds with all sugars in a chair conformation, unlike the family 18 chitinase which causes substrate distortion. Glu 67 is in a position to protonate the anomeric oxygen linking sugar residues D and E whereas Asn 199 serves to hydrogen bond with the C2′ N-acetyl group of sugar D, thus preventing the formation of an oxazoline ion intermediate. In addition, Glu 89 is part of a flexible loop region allowing a conformational change to occur within the active site to bring the oxocarbenium ion intermediate and Glu 89 closer by 4–5 Å. A hydrolysis product with inversion of the anomeric configuration occurs because of nucleophilic attack by a water molecule that is coordinated by Glu 89 and Ser 120. Issues important for the design of inhibitors specific to family 19 chitinases over family 18 chitinases also are discussed.
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Many pathogen recognition genes, such as plant R-genes, undergo rapid adaptive evolution, providing evidence that these genes play a critical role in plant-pathogen coevolution. Surprisingly, whether rapid adaptive evolution also occurs in genes encoding other kinds of plant defense proteins is unknown. Unlike recognition proteins, plant chitinases attack pathogens directly, conferring disease resistance by degrading chitin, a component of fungal cell walls. Here, we show that nonsynonymous substitution rates in plant class I chitinase often exceed synonymous rates in the plant genus Arabis (Cruciferae) and in other dicots, indicating a succession of adaptively driven amino acid replacements. We identify individual residues that are likely subject to positive selection by using codon substitution models and determine the location of these residues on the three-dimensional structure of class I chitinase. In contrast to primate lysozymes and plant class III chitinases, structural and functional relatives of class I chitinase, the adaptive replacements of class I chitinase occur disproportionately in the active site cleft. This highly unusual pattern of replacements suggests that fungi directly defend against chitinolytic activity through enzymatic inhibition or other forms of chemical resistance and identifies target residues for manipulating chitinolytic activity. These data also provide empirical evidence that plant defense proteins not involved in pathogen recognition also evolve in a manner consistent with rapid coevolutionary interactions.
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Proteins found in the root exudates are thought to play a role in the interactions between plants and soil organisms. To gain a better understanding of protein secretion by roots, we conducted a systematic proteomic analysis of the root exudates of Arabidopsis thaliana at different plant developmental stages. In total, we identified 111 proteins secreted by roots, the majority of which were exuded constitutively during all stages of development. However, defense-related proteins such as chitinases, glucanases, myrosinases, and others showed enhanced secretion during flowering. Defense-impaired mutants npr1-1 and NahG showed lower levels of secretion of defense proteins at flowering compared with the wild type. The flowering-defective mutants fca-1, stm-4, and co-1 showed almost undetectable levels of defense proteins in their root exudates at similar time points. In contrast, root secretions of defense-enhanced cpr5-2 mutants showed higher levels of defense proteins. The proteomics data were positively correlated with enzymatic activity assays for defense proteins and with in silico gene expression analysis of genes specifically expressed in roots of Arabidopsis. In conclusion, our results show a clear correlation between defense-related proteins secreted by roots and flowering time.
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Lytic enzymes such as beta-1,3 glucanases, proteases and chitinases are able to hydrolyse, respectively, beta-1,3 glucans, mannoproteins and chitin, as well as the cell walls of many yeast species. Lytic enzymes are useful in a great variety of applications including the preparation of protoplasts; the extraction of proteins, enzymes, pigments and functional carbohydrates; pre-treatment for the mechanical rupture of cells; degradation of residual yeast cell mass for the preparation of animal feed; analysis of the yeast cell wall structure and composition; study of the yeast cell wall synthesis and the control of pathogenic fungi. This review presents the most important aspects with respect to lytic enzymes, especially their production, purification, cloning and application.
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Chitinase is produced by a wide variety of plants as a defense against peste attacks. In this study, grape chitinases were purified 16 times by fractionation in 80% ammonium sulfate followed by dialysis and filtration. Purified chitinases exhibited enzymatic activity toward chitin azure. The yield of purified chitinase was 229 mg/L with chitinase activity of 563 U/g. Chitinases had molecular masses of 24 and 30 kDa, as evaluated by SDS-PAGE 12.5%. Two pH optima were determined 3.0 and 6.0. The optimal temperature was 42 °C. Pre hydrolysis of crystalline shrimp chitin by chitinases caused in an increase in the deacetylation ratio triggered by chitin deacetylase producing chitooligosaccharides with DA (degree acetylation) of 58.8%.
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Green mould is a serious disease of commercially grown mushrooms, the causal agent being attributed to the filamentous soil fungus Triclzodenna aggressivum f. aggressivu11l and T. aggressivum f. ellropaellm. Found worldwide, and capable of devastating crops, this disease has caused millions of dollars in lost revenue within the mushroom industry. One mechanism used by TricllOdenlla spp. in the antagonism of other fungi, is the secretion of lytic enzymes such as chitinases, which actively degrade a host's cell wall. Therefore, the intent of this study was to examine the production of chitinase enzymes during the host-parasite interaction of Agaricus bisporus (commercial mushroom) and Triclzodemza aggressivum, focusing specifically on chitinase involvement in the differential resistance of white, off-white, and brown commercial mushroom strains. Chitinases isolated from cultures of A. bisporus and T. aggressivu11l grown together and separately, were identified following native PAGE, and analysis of fluorescence based on specific enzymatic cleavage of 4-methylumbelliferyl glucoside substrates. Results indicate that the interaction between T. aggressivulll and A. bisporus involves a complex enzyme battle. It was determined that T. aggressivum produces a number of chitinases that appear to correlate to those isolated in previous studies using biocontrol strains of T. Izarziallilm. A 122 kDa N-acetylglucosaminidase of T. aggressivu11l revealed the highest and most variable activity, and is therefore believed to be an important predictor of antifungal activity. Furthermore, results indicate that brown strain resistance of mushrooms may be related to high levels of a 96 kDa N-acetylglucosaminidase, which showed elevated activity in both solitary and dual cultures with T. aggressivum. Overall, each host-parasite combination produced unique enzyme profiles, with the majority of the differences seen between day 0 and day 6 for the extracellular chitinases. Therefore, it was concluded that the antagonistic behaviour of T. aggressivli1ll does not involve a typical response, always producing the same types and levels of enzymes, but that mycoparasitism, specifically in the form of chitinase production, may be induced and regulated based on the host presented.
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The thesis is proposed to study the occurrence and distribution of chitinoclasts in water, sediment and fauna as related to site characteristics such as temperature, salinity, depth of water, pH, etc. Since no information is available on the chitinolytic properties of coastal strains, it is also proposed to study the chitinolytic activity of the bacterial isolates in relation to various environmental conditions. It is also planned to work out the taxonomy of some of the representative isolates and certain kinetic properties of their chitinases. It is expected that the results of the study would yield a comprehensive information-on the chitinoclastic bacteria in the southern coastal zone of west coast of India.
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Molts bacteris del grup fluorescent del gènere Pseudomonas són capaços de controlar malalties de les plantes causades per fongs i bacteris fitopatògens (ACBs) o mostren activitat com a bacteris promotors del creixement de les plantes (BPCPs). S'han descrit diversos metabòlits que intervenen de manera important en la seva activitat com a ACBs i BPCPs entre els quals en destaquen el 2,4-diacetilfloroglucinol (Phl), àcid fenazin-1-carboxílic (PCA), Pirrolnitrina (Prn), àcid cianhídric (HCN), àcid 3-indolacètic (IAA), sideròfors i quitinases. L'objectiu principal del nostre treball ha estat la comparació de les característiques d'un grup de Pseudomonas del grup fluorescent utilitzant una aproximació polifàsica amb la finalitat d'establir possibles relacions entre algunes de les característiques i la capacitat d'actuar com a ACB o BPCP. Atesa la importància en el biocontrol de la producció de metabòlits com Phl, PCA i Prn, l'objectiu preliminar ha estat la recerca i obtenció de soques productores d'aquests metabòlits. Per assolir aquest objectiu s'ha emprat una aproximació molecular basada en la detecció dels gens biosintètics implicats en la seva producció en lloc de la detecció directa dels metabòlits per evitar els efectes que poden tenir les condicions de cultiu en la inducció o repressió de la seva síntesi. S'han realitzat diferents protocols basats (i) en la cerca assistida de productors mitjançant l'ús de marcadors fenotípics i posterior confirmació per PCR i, (ii) en l'ús de la PCR per a la detecció dels gens directament dels extractes bacterians, d'enriquiments d'aquests extractes i la realització de la hibridació en colònies per al posterior aïllament. La cerca assistida de productors de Phl mitjançant marcadors fenotípics i posteriorment la utilització de tècniques moleculars (amplificació per PCR del gen phlD), ha estat el millor mètode en el tipus de mostres processades en el nostre treball, on la proporció de productors és relativament baixa. En total s'han aïllat a partir de diversos ambients 4 soques portadores dels gens de la síntesi de PCA, 15 de Phl i 1 de Prn. S'ha constituït una col·lecció de 72 soques de Pseudomonas del grup fluorescent que inclou 18 aïllats propis portadors dels gens biosintètics necessaris per la producció de Phl PCA i Prn; 6 soques de referència procedents de col·leccions de cultius tipus, 14 soques productores dels diferents antibiòtics cedides per altres investigadors i una selecció de 34 soques procedents d'un treball previ realitzat en el nostre grup de recerca. A la col·lecció s'hi troben soques candidates a ACB i BPCP de diverses malalties i plantes. Les 72 soques s'han caracteritzat fenotípica i genotípicament. La caracterització fenotípica s'ha portat a terme mitjançant la identificació a nivell d'espècie amb galeries API 20NE i proves bioquímiques específiques; la producció de metabòlits com PCA, Phl, Prn, IAA, HCN, quitinases i sideròfors mitjançant l'ús de diferents tècniques; antagonisme in vitro en diversos medis enfront dos fongs (Stemphylium vesicarium i Penicillium expansum) i tres bacteris fitopatògens (Erwinia amylovora, Pseudomonas syringae pv. syringae i Xanthomonas arboricola pv. juglandis); l'eficàcia de la inhibició de la infecció en bioassaigs in vivo sobre material vegetal enfront els fongs P. expansum en poma i S. vesicarium en fulles de perera i enfront el bacteri E. amylovora en fruits immadurs de perera i, finalment, en assaigs de promoció de creixement en dos portaempelts comercials de Prunus. Cal destacar que P. expansum causa la podridura blava en pomes i peres en postcollita, S. vesicarium la taca bruna de la perera i E. amylovora el foc bacterià de les rosàcies. El nombre de soques de Pseudomonas, sobre el total de les 72 estudiades, productores d'IAA (4) i quitinases (6) és baix, mentre que és elevat en el cas del HCN (32), que a més està associat a la producció de Phl. Els resultats obtinguts en l'antagonisme in vitro han mostrat en el cas dels bacteris que és dependent del patogen indicador i del medi de cultiu. La presència o absència de ferro no sembla ser un factor que potencií l'antagonisme. En el cas dels fongs no s'ha observat però, influència del medi de cultiu emprat. En el total de 72 soques s'ha observat un percentatge baix de soques que manifesten antagonisme en tots els medis assajats vers 3 o 4 dels patògens (7). Solament 2 d'aquestes 7 soques han mostrat ser també efectives en bioassaigs d'inhibició de les infeccions causades per 2 dels 3 patògens assajats. Algunes de les soques efectives en els bioassaigs no són antagonistes in vitro en cap dels medis assajats enfront el mateix patogen. En el cas de la promoció del creixement, s'han observat més soques promotores del creixement del portaempelts de prunera Marianna 2624 que no en l'híbrid de presseguer-ametller GF677 i les eficàcies assolides són també majors en el cas de Marianna 2624, detectant una elevada especificitat soca/portaempelts La caracterització genotípica s'ha realitzat mitjançant l'anàlisi dels polimorfismes en la longitud dels fragments de restricció de DNA ribosomal (RFLP-rDNA) i l'anàlisi dels polimorfismes en la longitud dels fragments de macrorestricció genòmica de DNA cromosòmic separats per electroforesi en camp polsant (MRFLP-PFGE). Ambdues anàlisis van mostrar una gran heterogeneïtat genètica entre les soques caracteritzades i no s'ha pogut relacionar les agrupacions obtingudes amb les característiques fenotípiques o capacitat d'actuar com a ACB o BPCP. Els patrons de macrorestricció genòmica (MRFLP-PFGE) del bacteri model P. fluorescens EPS288 són estables en el temps i independents de les condicions de cultiu assajades al laboratori o en mostres naturals, mostrant ser una tècnica eficaç en la identificació de reaïllats de mostres naturals inoculades prèviament amb el bacteri. Una selecció de soques que comparteixen el fet de produir floroglucinol s'han caracteritzat mitjançant RFLP i seqüenciació del gen phlD. S'ha establert una relació entre les agrupacions obtingudes en les anàlisis RFLP-rDNA, RFLP-phlD i les seqüències del gen. En l'anàlisi filogenètica de les seqüències del gen phlD s'ha observat un elevat grau de polimorfisme obtenint-se 3 agrupacions principals. Les agrupacions semblen relacionar-se amb els patrons de producció de metabòlits (Phl, HCN i Prn en una primera agrupació; Phl i HCN en la segona i solament Phl en la tercera), però aquestes no s'han pogut relacionar amb l'origen geogràfic de les soques o la seva activitat com a ACBs i/o BPCP. Amb les dades obtingudes de la caracterització fenotípica i genotípica s'ha realitzat una anàlisi multivariant (correspondències, correlacions d'Spearman i de freqüències amb variables categòriques). S'ha demostrat la importància de disposar d'una tècnica que permeti depurar una col·lecció de soques descartant les soques genèticament idèntiques, ja que influeixen en els resultats de les anàlisis. Pels tres patògens assajats com a indicadors i els dos portaempelts emprats, no s'ha observat cap correlació entre la inhibició de la infecció o la promoció del creixement amb les característiques fenotípiques i genotípiques de les soques que fos significatiu i consistent en les tres tècniques emprades.
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It is known that roots can respond to patches of fertility; however, root proliferation is often too slow to exploit resources fully, and organic nutrient patches may be broken down and leached, immobilized or chemically fixed before they are invaded by the root system. The ability of fungal hyphae to exploit resource patches is far greater than that of roots due to their innate physiological and morphological plasticity, which allows comprehensive exploration and rapid colonization of resource patches in soils. The fungal symbionts of ectomycorrhizal plants excrete significant quantities of enzymes such as chitinases, phosphatases and proteases. These might allow the organic residue to be tapped directly for nutrients such as N and P. Pot experiments conducted with nutrient-stressed ectomycorrhizal and control willow plants showed that when high quality organic nutrient patches were added, they were colonized rapidly by the ectomycorrhizal mycelium. These established willows (0.5 m tall) were colonized by Hebeloma syrjense P. Karst. for 1 year prior to nutrient patch addition. Within days after patch addition, colour changes in the leaves of the mycorrhizal plants (reflecting improved nutrition) were apparent, and after I month the concentration of N and P in the foliage of mycorrhizal plants was significantly greater than that in non-mycorrhizal plants subject to the same nutrient addition. It seems likely that the mycorrhizal plants were able to compete effectively with the wider soil microbiota and tap directly into the high quality organic resource patch via their extra-radical mycelium. We hypothesize that ectomycorrhizal plants may reclaim some of the N and P invested in seed production by direct recycling from failed seeds in the soil. The rapid exploitation of similar discrete, transient, high-quality nutrient patches may have led to underestimations when determining the nutritional benefits of ectomycorrhizal colonization.
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Chitin degradation is a key step in the cycling of nutrients in marine ecosystems and chitinolytic bacteria are the primary agents of this process. Chitinases, produced by bacteria, have potential applications in agriculture, medicine and in a wide range of biotechnological processes. We utilized a simple, rapid and cost-effective method of colloidal chitin preparation and a culture medium, in which colloidal chitin is the sole carbon source for the purpose of counting and isolating chitinolytic bacteria from seawater and plankton. This culture medium could be useful to isolate bacteria with the ability to produce extracellular chitinases for biotechnological applications.