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1.
Chinese Journal of Biotechnology ; (12): 4630-4643, 2022.
Article in Chinese | WPRIM | ID: wpr-970336

ABSTRACT

Natamycin is a safe and efficient antimycotics which is widely used in food and medicine industry. The polyene macrolide compound, produced by several bacterial species of the genus Streptomyces, is synthesized by type Ⅰ polyketide synthases using acetyl-CoA, malonyl-CoA, and methylmalonyl-CoA as substrates. In this study, four pathways potentially responsible for the supply of the three precursors were evaluated to identify the effective precursor supply pathway which can support the overproduction of natamycin in Streptomyces gilvosporeus, a natamycin-producing wild-type strain. The results showed that over-expressing acetyl-CoA synthetase and methylmalonyl-CoA mutase increased the yield of natamycin by 44.19% and 20.51%, respectively, compared with the wild type strain under shake flask fermentation. Moreover, the yield of natamycin was increased by 66.29% compared with the wild-type strain by co-overexpression of acetyl-CoA synthetase and methylmalonyl-CoA mutase. The above findings will facilitate natamycin strain improvement as well as development of strains for producing other polyketide compounds.


Subject(s)
Natamycin/metabolism , Methylmalonyl-CoA Mutase/metabolism , Acetyl Coenzyme A/metabolism , Streptomyces/genetics , Polyketide Synthases/metabolism
2.
Electron. j. biotechnol ; 50: 1-9, Mar. 2021. ilus, tab, graf
Article in English | LILACS | ID: biblio-1292302

ABSTRACT

BACKGROUND: Phospholipase D (PLD) is used as the biocatalyst for phosphatidylserine (PS) production. In general, PLD was expressed in insoluble form in Escherichia coli. High-level soluble expression of PLD with high activity in E. coli is very important for industrial production of PLD. RESULTS: Streptomyces chromofuscus PLD coding gene was codon-optimized, cloned without signal peptide, and expressed in E. coli. The optimal recombinant E. coli pET-28a+PLD/BL21(DE3) was constructed with pET-28a without His-tag. The highest PLD activity reached 104.28 ± 2.67 U/mL in a 250-mL shake flask after systematical optimization. The highest PLD activity elevated to 122.94 ± 1.49 U/mL by feeding lactose and inducing at 20 C after scaling up to a 5.0-L fermenter. Substituting the mixed carbon source with 1.0 % (w/v) of cheap dextrin and adding a feeding medium could still attain a PLD activity of 105. 81 ± 2.72 U/mL in a 5.0-L fermenter. Fish peptone from the waste of fish processing and dextrin from the starch are both very cheap, which were found to benefit the soluble PLD expression. CONCLUSIONS: After combinatorial optimization, the high-level soluble expression of PLD was fulfilled in E. coli. The high PLD activity along with cheap medium obtained at the fermenter level can completely meet the requirements of industrial production of PLD.


Subject(s)
Phospholipases/metabolism , Streptomyces/enzymology , Solubility , Streptomyces/genetics , Temperature , Codon , Combinatorial Chemistry Techniques , Escherichia coli
3.
Chinese Journal of Biotechnology ; (12): 2127-2146, 2021.
Article in Chinese | WPRIM | ID: wpr-887786

ABSTRACT

Streptomyces are major sources of bioactive natural products. Genome sequencing reveals that Streptomyces have great biosynthetic potential, with an average of 20-40 biosynthetic gene clusters each strain. However, most natural products from Streptomyces are produced in low yields under regular laboratory cultivation conditions, which hamper their further study and drug development. The production of natural products in Streptomyces is controlled by the intricate regulation mechanisms. Manipulation of the regulatory systems that govern secondary metabolite production will strongly facilitate the discovery and development of natural products of Streptomyces origin. In this review, we summarize progresses in pathway-specific regulators from Streptomyces in the last five years and highlight their role in improving the yields of corresponding natural products.


Subject(s)
Biological Products , Multigene Family , Secondary Metabolism , Streptomyces/genetics
4.
Chinese Journal of Biotechnology ; (12): 2116-2126, 2021.
Article in Chinese | WPRIM | ID: wpr-887785

ABSTRACT

Carrimycin (CAM) is a new antibiotics with isovalerylspiramycins (ISP) as its major components. It is produced by Streptomyces spiramyceticus integrated with a heterogenous 4″-O-isovaleryltransferase gene (ist). However, the present CAM producing strain carries two resistant gene markers, which makes it difficult for further genetic manipulation. In addition, isovalerylation of spiramycin (SP) could be of low efficiency as the ist gene is located far from the SP biosynthesis gene cluster. In this study, ist and its positive regulatory gene acyB2 were inserted into the downstream of orf54 gene neighboring to SP biosynthetic gene cluster in Streptomyces spiramyceticus 1941 by using the CRISPR-Cas9 technique. Two new markerless CAM producing strains, 54IA-1 and 54IA-2, were obtained from the homologous recombination and plasmid drop-out. Interestingly, the yield of ISP in strain 54IA-2 was much higher than that in strain 54IA-1. Quantitative real-time PCR assay showed that the ist, acyB2 and some genes associated with SP biosynthesis exhibited higher expression levels in strain 54IA-2. Subsequently, strain 54IA-2 was subjected to rifampicin (RFP) resistance selection for obtaining high-yield CAM mutants by ribosome engineering. The yield of ISP in mutants resistant to 40 μg/mL RFP increased significantly, with the highest up to 842.9 μg/mL, which was about 6 times higher than that of strain 54IA-2. Analysis of the sequences of the rpoB gene of these 7 mutants revealed that the serine at position 576 was mutated to alanine existed in each sequenced mutant. Among the mutants carrying other missense mutations, strain RFP40-6-8 which carries a mutation of glutamine (424) to leucine showed the highest yield of ISP. In conclusion, two markerless novel CAM producing strains, 54IA-1 and 54IA-2, were successfully developed by using CRISPR-Cas9 technique. Furthermore, a novel CAM high-yielding strain RFP40-6-8 was obtained through ribosome engineering. This study thus demonstrated a useful combinatory approach for improving the production of CAM.


Subject(s)
CRISPR-Cas Systems/genetics , Genetic Engineering , Ribosomes , Spiramycin , Streptomyces/genetics
5.
Arq. Inst. Biol ; 87: e0142020, 2020. tab
Article in English | VETINDEX, LILACS | ID: biblio-1130108

ABSTRACT

The genus Streptomyces is associated with the ability to produce and excrete a variety of bioactive compounds, such as antibiotic, antifungal and antiviral. Biological active polyketide and peptide compounds with applications in medicine, agriculture and biochemical research are synthesized by PKS-I and NRPS genes. The evaluation of the presence of these genes associated with the biosynthesis of secondary metabolites in different phytopathogenic Streptomyces strains were performed using degenerated primers. The positive signal was observed in 58/63 Streptomyces strains for NRPS gene, 43/63 for PKS-I, and for PKS-II all the 63 strains showed positive signal of amplification. These strains also were tested with double layer agar-well technique against bacterial with clinical importance, and it was possible to observe the Streptomyces spp. strains were able to inhibit the growth of 14, 20, 13 and 3 isolates Gram-positive and Gram-negative bacteria, Staphylococcus aureus (ATCC 25923), Bacillus cereus (ATCC 14579), Pseudomonas aeruginosa (ATCC 27853) and Escherichia coli (ATCC 11775) respectively. The Streptomyces sp. strains IBSBF 2019 and IBSBF 2397 showed antibacterial activity against all four bacteria-target tested.(AU)


O gênero Streptomyces apresenta alta capacidade de produzir e excretar uma grande variedade de compostos biologicamente ativos, como antibióticos, antifúngicos e antivirais. Compostos biologicamente ativos de policetídeos e peptídeos com aplicações na medicina, agricultura e pesquisas bioquímicas são sintetizados pelos genes PKS-I e NRPS. A avaliação da presença desses genes associados à biossíntese de metabólitos secundários em diferentes linhagens de Streptomyces fitopatogênicas foi realizada através do uso de primers degenerados. O sinal positivo foi observado em 58/63 linhagens de Streptomyces para o gene NRPS, 43/63 para o gene PKS-I e, para o gene PKS-II, todas as 63 linhagens apesentaram o sinal positivo de amplificação. Essas linhagens também foram testadas através da técnica de dupla camada contra bactérias de importância clínica e foi possível observar que as linhagens de Streptomyces spp. foram capazes de inibir o crescimento de 14, 20, 13 e 3 isolados de bactérias Gram-positivas e Gram-negativas, Staphylococcus aureus (ATCC 25923), Bacillus cereus (ATCC 14579), Pseudomonas aeruginosa (ATCC 27853) e Escherichia coli (ATCC 11775), respectivamente. As linhagens de Streptomyces sp. ISBSF 2019 e 2397 apresentaram atividade antibacteriana contra todas as bactérias-alvo testadas.(AU)


Subject(s)
Pseudomonas aeruginosa/growth & development , Staphylococcus aureus/growth & development , Streptomyces/metabolism , Bacillus cereus/growth & development , Escherichia coli/growth & development , Anti-Bacterial Agents/metabolism , Peptide Synthases/genetics , Streptomyces/genetics , Gene Amplification , Polymerase Chain Reaction , Sequence Analysis, DNA , DNA Primers , Polyketide Synthases/genetics , Anti-Bacterial Agents/pharmacology
6.
Braz. j. microbiol ; 49(4): 816-822, Oct.-Dec. 2018. tab, graf
Article in English | LILACS | ID: biblio-974289

ABSTRACT

ABSTRACT Fifty seven soil-borne actinomycete strains were assessed for the antibiotic production. Two of the most active isolates, designed as Streptomyces ST-13 and DK-15 exhibited a broad range of antimicrobial activity and therefore they were selected for HPLC fractionation against the most suppressed bacteria Staphylococcus aureus (ST-13) and Chromobacterium violaceum (DK-15). LC/MS analysis of extracts showed the presence of polyketides factumycin (DK15) and tetrangomycin (ST13). The taxonomic position of the antibiotic-producing actinomycetes was determined using a polyphasic approach. Phenotypic characterization and 16S rRNA gene sequence analysis of the isolates matched those described for members of the genus Streptomyces. DK-15 strain exhibited the highest 16S rRNA gene sequence similarity to Streptomyces globosus DSM-40815 (T) and Streptomyces toxytricini DSM-40178 (T) and ST-13 strain to Streptomyces ederensis DSM-40741 (T) and Streptomyces phaeochromogenes DSM-40073 (T). For the proper identification, MALDI-TOF/MS profile of whole-cell proteins led to the identification of S. globosus DK-15 (accession number: KX527570) and S. ederensis ST13 (accession number: KX527568). To our knowledge, there is no report about the production of these antibiotics by S.globosus and S. ederensis, thus isolates DK15 and ST13 identified as S. globosus DK-15 and S.ederensis ST-13 can be considered as new sources of these unique antibacterial metabolites.


Subject(s)
Streptomyces/isolation & purification , Streptomyces/metabolism , Anti-Bacterial Agents/biosynthesis , Phylogeny , Pyridones/metabolism , Soil Microbiology , Streptomyces/classification , Streptomyces/genetics , Benz(a)Anthracenes/metabolism , DNA, Bacterial/genetics , Bacterial Typing Techniques
7.
Braz. j. microbiol ; 49(4): 731-741, Oct.-Dec. 2018. tab, graf
Article in English | LILACS | ID: biblio-974291

ABSTRACT

ABSTRACT A bacterium isolated from Sterkfontein dam was confirmed to produce bioflocculant with excellent flocculation activity. The 16S rDNA nucleotide sequence analyses revealed the bacteria to have 99% similarity to Streptomyces platensis strain HBUM174787 and the sequence was deposited in the Genbank as Streptomyces platensis with accession number FJ 486385.1. Culture conditions for optimal production of the bioflocculant included glucose as a sole carbon source, resulting in flocculating activity of 90%. Other optimal conditions included: peptone as nitrogen source; presence of Mg2+ as cations and inoculum size of 1.0% (v/v) at neutral pH of 7. Optimum dose of the purified bioflocculant for the clarification of 4 g/L kaolin clay suspension at neutral pH was 0.2 mg/mL. Energy Dispersive X-ray analysis confirmed elemental composition of the purified bioflocculant in mass proportion (%w/w): carbon (21.41), oxygen (35.59), sulphur (26.16), nitrogen (0.62) and potassium (7.48). Fourier Transform Infrared Spectroscopy (FTIR) indicated the presence of hydroxyl, carboxyl, methoxyl and amino group in the bioflocculant. The bioflocculant produced by S. platensis removed chemical oxygen demand (COD) in river water and meat processing wastewater at efficiencies of 63.1 and 46.6% respectively and reduced their turbidity by 84.3 and 75.6% respectively. The high flocculating rate and removal efficiencies displayed by S. platensis suggests its industrial application in wastewater treatment.


Subject(s)
Streptomyces/chemistry , Bacterial Proteins/metabolism , Wastewater/chemistry , Streptomyces/isolation & purification , Streptomyces/genetics , Streptomyces/metabolism , Bacterial Proteins/genetics , Water Microbiology , Carbon/metabolism , Water Purification , Rivers/chemistry , Flocculation , Nitrogen/metabolism
8.
Braz. j. microbiol ; 49(4): 832-839, Oct.-Dec. 2018. tab, graf
Article in English | LILACS | ID: biblio-974313

ABSTRACT

ABSTRACT Clavulanic acid is a β-lactam compound with potent inhibitory activity against β-lactamases. Studies have shown that certain amino acids play essential roles in CA biosynthesis. However, quantitative evaluations of the effects of these amino acids are still needed in order to improve CA production. Here, we report a study of the nutritional requirements of Streptomyces clavuligerus for CA production. Firstly, the influence of the primary nitrogen source and the salts composition was investigated. Subsequently, soybean protein isolate was supplemented with arginine (0.0-3.20 g L-1), threonine (0.0-1.44 g L-1), ornithine (0.0-4.08 g L-1), and glutamate (0.0-8.16 g L-1), according to a two-level central composite rotatable design. A medium containing ferrous sulfate yielded CA production of 437 mg L-1, while a formulation without this salt produced only 41 mg L-1 of CA. This substantial difference suggested that Fe2+ is important for CA biosynthesis. The experimental design showed that glutamate and ornithine negatively influenced CA production while arginine and threonine had no influence. The soybean protein isolate provided sufficient C5 precursor for CA biosynthesis, so that supplementation was unnecessary. Screening of medium components, together with experimental design tools, could be a valuable way of enhancing CA titers and reducing the process costs.


Subject(s)
Streptomyces/metabolism , Clavulanic Acid/biosynthesis , Culture Media/metabolism , Ornithine/analysis , Ornithine/metabolism , Streptomyces/genetics , Glutamic Acid/analysis , Glutamic Acid/metabolism , Culture Media/chemistry , Nitrogen/analysis , Nitrogen/metabolism
9.
Braz. j. microbiol ; 49(2): 207-209, Apr.-June 2018. tab
Article in English | LILACS | ID: biblio-889240

ABSTRACT

Abstract Streptomycetes remain as one of the important sources for bioactive products. Isolated from the mangrove forest, Streptomyces gilvigriseus MUSC 26T was previously characterised as a novel streptomycete. The high quality draft genome of MUSC 26T contained 5,213,277 bp with G + C content of 73.0%. Through genome mining, several gene clusters associated with secondary metabolites production were revealed in the genome of MUSC 26T. These findings call for further investigations into the potential exploitation of the strain for production of pharmaceutically important compounds.


Subject(s)
Streptomyces/genetics , Genome, Bacterial , Environmental Microbiology , Streptomyces/isolation & purification , Base Composition , Biological Products/metabolism , Sequence Analysis, DNA , Computational Biology , Wetlands , Metabolic Networks and Pathways/genetics , Secondary Metabolism
10.
Braz. j. microbiol ; 49(1): 13-15, Jan.-Mar. 2018. tab, graf
Article in English | LILACS | ID: biblio-889194

ABSTRACT

ABSTRACT As the largest genus in Actinobacteria family, Streptomyces species have the ability to synthesize numerous compounds of diverse structures with bioactivities. Streptomyces mangrovisoli MUSC 149T was previously isolated as a novel streptomycete from mangrove forest in east coast of Peninsular Malaysia. The high quality draft genome of MUSC 149T comprises 9,165,825 bp with G + C content of 72.5%. Through bioinformatics analysis, 21 gene clusters identified in the genome were associated with the production of bioactive secondary metabolites. The presence of these biosynthetic gene clusters in MUSC 149T suggests the potential exploitation of the strain for production of medically important compounds.


Subject(s)
Streptomyces/isolation & purification , Genome, Bacterial , Geologic Sediments/microbiology , Phylogeny , Streptomyces/classification , Streptomyces/genetics , Bacterial Proteins/genetics , Bacterial Proteins/metabolism , Base Composition , DNA, Bacterial/genetics , Molecular Sequence Data , Base Sequence , Malaysia
11.
Braz. j. microbiol ; 48(4): 612-614, Oct.-Dec. 2017. tab
Article in English | LILACS | ID: biblio-889174

ABSTRACT

ABSTRACT Here, we show the draft genome sequence of Streptomyces sp. F1, a strain isolated from soil with great potential for secretion of hydrolytic enzymes used to deconstruct cellulosic biomass. The draft genome assembly of Streptomyces sp. strain F1 has 69 contigs with a total genome size of 8,142,296 bp and G + C 72.65%. Preliminary genome analysis identified 175 proteins as Carbohydrate-Active Enzymes, being 85 glycoside hydrolases organized in 33 distinct families. This draft genome information provides new insights on the key genes encoding hydrolytic enzymes involved in biomass deconstruction employed by soil bacteria.


Subject(s)
Bacterial Proteins/genetics , Genome, Bacterial , Glycoside Hydrolases/genetics , Soil Microbiology , Streptomyces/enzymology , Streptomyces/isolation & purification , Bacterial Proteins/metabolism , Base Composition , Brazil , Glycoside Hydrolases/metabolism , Multigene Family , Phylogeny , Streptomyces/classification , Streptomyces/genetics
12.
Electron. j. biotechnol ; 28: 41-46, July. 2017. tab, ilus, graf
Article in English | LILACS | ID: biblio-1015839

ABSTRACT

Background: Streptomyces clavuligerus was the producer of clavulanic acid, claR, a pathway-specific transcriptional regulator in S. clavuligerus, positively regulates clavulanic acid biosynthesis. In this study, the promoter-less kanamycin resistance gene neo was fused with claR to obtain strain NEO from S. clavuligerus F613-1. The claR-neo fusion strain NEO was mutated using physical and chemical mutagens and then screened under high concentrations of kanamycin for high-yield producers of clavulanic acid. Results: The reporter gene neo was fused downstream of claR and used as an indicator for expression levels of claR in strain NEO. After three rounds of continuous treatment and screening, the high-yield clavulanic acid-producing strain M3-19 was obtained. In the shaking flask model, the clavulanic acid titer of M3-19 reached 4.33 g/L, which is an increase of 33% over the titer of 3.26 g/L for the starting strains S. clavuligerus F613-1 and NEO. Conclusions: Our results indicate that neo can be effectively used as a reporter for the expression of late-stage biosynthetic genes when screening for high-yield strains and that this approach has strong potential for improving Streptomyces strains of industrial value.


Subject(s)
Streptomyces/genetics , Streptomyces/metabolism , Kanamycin , Clavulanic Acid/biosynthesis , Transcription Factors/genetics , Transcription, Genetic , Biological Assay , Recombinant Proteins , Chromatography, High Pressure Liquid , Mutagenesis , Promoter Regions, Genetic , Genes, Reporter , Gene Fusion , Fermentation , Real-Time Polymerase Chain Reaction
13.
Braz. j. microbiol ; 48(1): 32-36, Jan.-Mar. 2017. tab, graf
Article in English | LILACS | ID: biblio-839352

ABSTRACT

Abstract Actinobacteria occur in many environments and have the capacity to produce secondary metabolites with antibiotic potential. Identification and taxonomy of actinobacteria that produce antimicrobial substances is essential for the screening of new compounds, and sequencing of the 16S region of ribosomal DNA (rDNA), which is conserved and present in all bacteria, is an important method of identification. Melanized fungi are free-living organisms, which can also be pathogens of clinical importance. This work aimed to evaluate growth inhibition of melanized fungi by actinobacteria and to identify the latter to the species level. In this study, antimicrobial activity of 13 actinobacterial isolates from the genus Streptomyces was evaluated against seven melanized fungi of the genera Exophiala, Cladosporium, and Rhinocladiella. In all tests, all actinobacterial isolates showed inhibitory activity against all isolates of melanized fungi, and only one actinobacterial isolate had less efficient inhibitory activity. The 16S rDNA region of five previously unidentified actinobacterial isolates from Ilha do Mel, Paraná, Brazil, was sequenced; four of the isolates were identified as Streptomyces globisporus subsp. globisporus, and one isolate was identified as Streptomyces aureus. This work highlights the potential of actinobacteria with antifungal activity and their role in the pursuit of novel antimicrobial substances.


Subject(s)
Actinobacteria/physiology , Fungi/physiology , Antibiosis , Phylogeny , Streptomyces/classification , Streptomyces/genetics , Brazil , RNA, Ribosomal, 16S/genetics , Actinobacteria/isolation & purification , Actinobacteria/classification , Actinobacteria/genetics
14.
Braz. j. microbiol ; 44(4): 1049-1057, Oct.-Dec. 2013. ilus, graf, tab
Article in English | LILACS | ID: lil-705270

ABSTRACT

Clavulanic acid (CA) is a powerful inhibitor of the beta-lactamases, enzymes produced by bacteria resistants to penicillin and cefalosporin. This molecule is produced industrially by strains of Streptomyces clavuligerus in complex media which carbon and nitrogen resources are supplied by inexpensive compounds still providing high productivity. The genetic production improvement using physical and chemical mutagenic agents is an important strategy in programs of industrial production development of bioactive metabolites. However, parental strains are susceptible to loss of their original productivity due genetic instability phenomenona. In this work, some S. clavuligerus mutant strains obtained by treatment with UV light and with MMS are compared with the wild type (Streptomyces clavuligerus ATCC 27064). The results indicated that the random mutations originated some strains with different phenotypes, most divergent demonstrated by the mutants strains named AC116, MMS 150 and MMS 54, that exhibited lack of pigmentation in their mature spores. Also, the strain MMS 150 presented a larger production of CA when cultivated in semi-synthetics media. Using other media, the wild type strain obtained a larger CA production. Besides, using the modifed complex media the MMS 150 strain showed changes in its lipolitic activity and a larger production of CA. The studies also allowed finding the best conditions for a lipase activity exhibited by wild type S. clavuligerus and the MMS150 mutant.


Subject(s)
Clavulanic Acid/metabolism , Metabolic Engineering , Mutagenesis , Mutation , Streptomyces/metabolism , Culture Media/chemistry , Lipase/metabolism , Methyl Methanesulfonate , Streptomyces/drug effects , Streptomyces/genetics , Streptomyces/radiation effects , Ultraviolet Rays
15.
Braz. j. microbiol ; 41(1): 173-178, Jan.-Mar. 2010. tab
Article in English | LILACS | ID: lil-531749

ABSTRACT

L-asparaginase is an anti-neoplastic agent used in the lymphoblastic leukaemia chemotherapy. In the present study a novel strain, Streptomyces gulbargensis was explored for the production of extra-cellular L-asparaginase using groundnut cake extract. The optimum pH, temperature, inoculum size and agitation speed for enzyme production were pH 8.5, 40ºC, 1x10(8)spores/ml and 200 rev/min respectively. Maltose (0.5 percent) and L-asparagine (0.5 percent) proved to be the best carbon and nitrogen sources respectively. The enzyme was purified 82.12 fold and the apparent molecular weight of the enzyme was found to be 85 kDa. The optima pH and temperature for the enzyme were 9.0 and 40ºC respectively. The enzyme was more stable at the alkaline pH than at the acidic one and it retained 55 percent of the activity at 80ºC for 60 min.


Subject(s)
Asparaginase/analysis , Asparaginase/isolation & purification , Precursor Cell Lymphoblastic Leukemia-Lymphoma/drug therapy , Streptomyces/genetics , Streptomyces/isolation & purification , Enzyme Activation , Food Samples , Methods , Methods
16.
J Genet ; 2001 Apr; 80(1): 31-8
Article in English | IMSEAR | ID: sea-114330

ABSTRACT

Daunorubicin and its derivative doxorubicin are antitumour anthracycline antibiotics produced by Streptomyces peucetius. In this study we report isolation of stable mutants of S. peucetius blocked in different steps of the daunorubicin biosynthesis pathway. Mutants were screened on the basis of colony colour since producer strains are distinctively coloured on agar plates. Different mutants showed accumulation of aklaviketone, epsilon-rhodomycinone, maggiemycin or 13-dihydrocarminomycin in their culture filtrates. These results indicate that the mutations in these isolates affect steps catalysed by dnrE (mutants SPAK and SPMAG), dnrS (SPFS and SPRHO) and doxA (SPDHC) gene products.


Subject(s)
Bacillus subtilis/genetics , Daunorubicin/biosynthesis , Mutation , Streptomyces/genetics
17.
Indian J Biochem Biophys ; 1994 Aug; 31(4): 280-7
Article in English | IMSEAR | ID: sea-27059

ABSTRACT

The chromosome of Streptomyces coelicolor A3(2) carries unstable DNA sequences hybridising with DNA sequences from an unstable chromosomal region of the related species S. lividans. These S. coelicolor sequences are nearly identical to those of S. lividans TK23 in organisation but differ from those of S. lividans 66 TK64 which harbours a tandem duplication of these sequences. Southern hybridisations using heterologous probes and S. coelicolor DNA cleaved with a variety of restriction enzymes permitted us to construct a partial restriction map of the unstable region of the chromosome of S. coelicolor. Genetic analysis shows that the unstable region yields distinguishable variants with several distinct DNA rearrangements.


Subject(s)
Base Sequence , Chromosome Deletion , Chromosomes, Bacterial , DNA, Bacterial/genetics , Gene Amplification , Gene Rearrangement , Streptomyces/genetics
18.
Rev. cuba. farm ; 24(1): 27-33, ene.-abr. 1990. tab
Article in Spanish | LILACS | ID: lil-92553

ABSTRACT

Se llevó a cabo la fusión de protoplastos de cepas auxotróficas y la regeneración de protoplastos de la cepa parental en algunos casos previamente tratados con polietilenglicol (PEG) pm=6 000 al 50 %, antes de ser efectuada la siembra en medio completo R2YE, con vistas a estudiar el efecto de este agente en condiciones no selectivas. En ambos casos las colonias más productoras de antibiótico fueron seleccionadas mediante determinación de actividad antibiótica en medio sólido y una segunda selección en medio líquido de producción específico para el antibiótico actinomicina D. Además, en la población de protoplastos regenerados, algunas colonias presentaban variaciones en su morfología, en sus requerimientos nutricionales y en los marcadores de resistencia a diferentes antibióticos probados. El análisis de ADN cromosómico de algunas variantes genéticas seleccionadas demostró la no existencia de reordenamientos cromosómicos que pudieran explicar estas variaciones


Subject(s)
Dactinomycin/biosynthesis , Protoplasts , Streptomyces/genetics
19.
Rev. cuba. farm ; 23(1/2): 15-24, ene.-ago. 1989. ilus, tab
Article in Spanish | LILACS | ID: lil-84791

ABSTRACT

Se estudia el comportamiento de una cepa de S. erythreus productora de antibiótico ante los agentes mutagénicos: acriflavina, luz ultravioleta, nitrosoguanidina y combinación de éstos, y se obtienen mutantes con alteraciones tanto morfológicas como fisiológicas. Se discute, especialmente, los cambios observados en la esporulación, color del micelio aéreo y vegetativo, producciòn de pigmento, así como la producción antibiótica de éstos en relación con la cepa parental


Subject(s)
Anti-Bacterial Agents/biosynthesis , Mutation , Streptomyces/genetics
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