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1.
Braz. j. microbiol ; 49(4): 840-847, Oct.-Dec. 2018. graf
Article in English | LILACS | ID: biblio-974284

ABSTRACT

ABSTRACT Anthracnose is a crop disease usually caused by fungi in the genus Colletotrichum or Gloeosporium. These are considered one of the main pathogens, causing significant economic losses, such as in peppers and guarana. The current forms of control include the use of resistant cultivars, sanitary pruning and fungicides. However, even with the use of some methods of controlling these cultures, the crops are not free of anthracnose. Additionally, excessive application of fungicides increases the resistance of pathogens to agrochemicals and cause harm to human health and the environment. In order to find natural antifungal agents against guarana anthracnose, endophytic fungi were isolated from Amazon guarana. The compounds piliformic acid and cytochalasin D were isolated by chromatographic techniques from two Xylaria spp., guided by assays with Colletotrichum gloeosporioides. The isolated compounds were identified by spectrometric techniques, as NMR and mass spectrometry. This is the first report that piliformic acid and cytochalasin D have antifungal activity against C. gloeosporioides with MIC 2.92 and 2.46 µmol mL-1 respectively. Captan and difenoconazole were included as positive controls (MIC 16.63 and 0.02 µmol mL-1, respectively). Thus, Xylaria species presented a biotechnological potential and production of different active compounds which might be promising against anthracnose disease.


Subject(s)
Plant Diseases/prevention & control , Xylariales/chemistry , Paullinia/microbiology , Endophytes/chemistry , Fungicides, Industrial/pharmacology , Phylogeny , Plant Diseases/microbiology , Mass Spectrometry , Xylariales/isolation & purification , Xylariales/genetics , Xylariales/metabolism , Molecular Structure , Colletotrichum/drug effects , Colletotrichum/physiology , Endophytes/isolation & purification , Endophytes/genetics , Endophytes/metabolism , Fungicides, Industrial/isolation & purification , Fungicides, Industrial/chemistry
2.
Braz J Microbiol ; 49(4): 840-847, 2018.
Article in English | MEDLINE | ID: mdl-29631892

ABSTRACT

Anthracnose is a crop disease usually caused by fungi in the genus Colletotrichum or Gloeosporium. These are considered one of the main pathogens, causing significant economic losses, such as in peppers and guarana. The current forms of control include the use of resistant cultivars, sanitary pruning and fungicides. However, even with the use of some methods of controlling these cultures, the crops are not free of anthracnose. Additionally, excessive application of fungicides increases the resistance of pathogens to agrochemicals and cause harm to human health and the environment. In order to find natural antifungal agents against guarana anthracnose, endophytic fungi were isolated from Amazon guarana. The compounds piliformic acid and cytochalasin D were isolated by chromatographic techniques from two Xylaria spp., guided by assays with Colletotrichum gloeosporioides. The isolated compounds were identified by spectrometric techniques, as NMR and mass spectrometry. This is the first report that piliformic acid and cytochalasin D have antifungal activity against C. gloeosporioides with MIC 2.92 and 2.46µmolmL-1 respectively. Captan and difenoconazole were included as positive controls (MIC 16.63 and 0.02µmolmL-1, respectively). Thus, Xylaria species presented a biotechnological potential and production of different active compounds which might be promising against anthracnose disease.


Subject(s)
Endophytes/chemistry , Fungicides, Industrial/pharmacology , Paullinia/microbiology , Plant Diseases/prevention & control , Xylariales/chemistry , Colletotrichum/drug effects , Colletotrichum/physiology , Endophytes/genetics , Endophytes/isolation & purification , Endophytes/metabolism , Fungicides, Industrial/chemistry , Fungicides, Industrial/isolation & purification , Mass Spectrometry , Molecular Structure , Phylogeny , Plant Diseases/microbiology , Xylariales/genetics , Xylariales/isolation & purification , Xylariales/metabolism
3.
Microorganisms ; 5(4)2017 Dec 12.
Article in English | MEDLINE | ID: mdl-29231891

ABSTRACT

Treating infections organized in biofilms is a challenge due to the resistance of the pathogens against antibiotics and host immune cells. Many fungi grow in a wet environment, favorable for the growth of bacterial biofilms, and we speculated that fungi possess some strategies to control these bacterial biofilms. A fungus identified as Hypoxylon fragiforme, was collected in the Harz Mountains, Germany, and its mycelial culture was fermented in different culture media for 67 days to test its biological potential against bacterial biofilms. Sclerin, sclerin diacid and its 3-methyl monoester (methyl 1-(5-hydroxy-6-carboxylic-2,3,4-trimethylphenyl) propionate) are here described for the first time from this fungus. Sclerin and its diacid interfered with the biofilm formation of the pathogen Staphylococcus aureus, inhibiting 86% and 80% of the biofilm at 256 µg mL-1, respectively, but not killing the bacterium. Interestingly, the monomethylester of sclerin diacid was inactive. Although these compounds did not possess any activity against a pre-formed biofilm, they prevented its formation at subtoxic concentrations. Furthermore, sclerin and its diacid displayed a high specificity against Staphylococcus aureus, indicating a good strategy against pathogenic biofilms when combined with antibiotics.

4.
Biol Chem ; 399(1): 13-28, 2017 12 20.
Article in English | MEDLINE | ID: mdl-28822220

ABSTRACT

Eremophilanes are sesquiterpenes with a rearranged carbon skeleton formed both by plants and fungi, however, almost no plant eremophilanes are found in fungi. These eremophilanes possess mainly phytotoxic, antimicrobial, anticancer and immunomodulatory properties and in this review fungal eremophilanes with bioactivities of potential medicinal applications are reviewed and discussed. A special focus is set on natural products bearing highly functionalized fatty acids at C-1 or C-3 position of the eremophilane backbone. Many of these fatty acids seem to contribute to the bioactivity of the metabolites enhancing the activity of the sesquiterpene moieties. Several approaches for optimization of these natural products for clinical needs and testing of the resulting derivatives are presented and discussed. The combination of identification of bioactive natural products with their subsequent improvement using a variety of genetical or chemical tools and the pharmacokinetic assessment of the products is presented here as a promising approach to new drugs.


Subject(s)
Anti-Inflammatory Agents/pharmacology , Enzyme Inhibitors/pharmacology , Fungi/chemistry , Sesquiterpenes/pharmacology , Animals , Anti-Inflammatory Agents/chemistry , Anti-Inflammatory Agents/metabolism , Enzyme Inhibitors/chemistry , Enzyme Inhibitors/metabolism , Fungi/metabolism , Humans , Sesquiterpenes/chemistry , Sesquiterpenes/metabolism
5.
Biomed Res Int ; 2013: 728735, 2013.
Article in English | MEDLINE | ID: mdl-23762855

ABSTRACT

In recent decades, xylanases have been used in many processing industries. This study describes the xylanase production by Penicillium glabrum using brewer's spent grain as substrate. Additionally, this is the first work that reports the purification and characterization of a xylanase using this agroindustrial waste. Optimal production was obtained when P. glabrum was grown in liquid medium in pH 5.5, at 25 °C, under stationary condition for six days. The xylanase from P. glabrum was purified to homogeneity by a rapid and inexpensive procedure, using ammonium sulfate fractionation and molecular exclusion chromatography. SDS-PAGE analysis revealed one band with estimated molecular mass of 18.36 kDa. The optimum activity was observed at 60 °C, in pH 3.0. The enzyme was very stable at 50 °C, and high pH stability was verified from pH 2.5 to 5.0. The ion Mn(2+) and the reducing agents ß -mercaptoethanol and DTT enhanced xylanase activity, while the ions Hg(2+), Zn(2+), and Cu(2+) as well as the detergent SDS were strong inhibitors of the enzyme. The use of brewer's spent grain as substrate for xylanase production cannot only add value and decrease the amount of this waste but also reduce the xylanase production cost.


Subject(s)
Endo-1,4-beta Xylanases/biosynthesis , Endo-1,4-beta Xylanases/isolation & purification , Industrial Waste/analysis , Penicillium/enzymology , Waste Products/analysis , Carbohydrates/pharmacology , Carbon/pharmacology , Chromatography, Gel , Electrophoresis, Polyacrylamide Gel , Endo-1,4-beta Xylanases/metabolism , Enzyme Stability/drug effects , Hydrogen-Ion Concentration/drug effects , Substrate Specificity/drug effects , Temperature , Time Factors
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