AbstractMany bacterial secondary metabolites, including pharmacologically promising compounds, are synthesized by polyketide syntha'/> Diversity of Polyketide Synthase Genes in the Genomes of Heterotrophic Microorganisms Isolated from Epilithic Biofilms of Lake Baikal
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Diversity of Polyketide Synthase Genes in the Genomes of Heterotrophic Microorganisms Isolated from Epilithic Biofilms of Lake Baikal

机译:从贝加尔湖上癫痫生物膜中分离的异养微生物基因组中聚酮化合成酶基因的多样性

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AbstractMany bacterial secondary metabolites, including pharmacologically promising compounds, are synthesized by polyketide synthases (PKS) enzyme complexes. In the present work, nucleotide sequences of the genes encoding 16S rRNA and PKS of heterotrophic bacterial strains isolated from epilithic biofilms of the littoral zone of Lake Baikal were determined. On the basis of molecular phylogenetic analysis of the 16S rRNA genes, six heterotrophic strains were identified:Serratia fonticola1А and 10А,Pseudomonas umsongensisK10-2 and K10-3,Rheinheimera tilapiaeK18, andFlavobacteriumsp. 43-09. Sequencing of cloned amplification products for PKS gene cluster revealed 33 sequences. Genes involved in biosynthesis of antibiotics (difficidine, erythromycin, curacin, mixalamide, corallopyronin, and myxothiazol) and cytostatics (romidepsin, spiruchostatin, and disorazol) were found among homologous sequences. The low homology (50–83%) of the PKS amino acid sequences of Baikal bacteria with sequences from GenBank attests to the potential capability of strains to produce new, not yet studied bioactive compounds. The obtained results show that the studied strains may be of practical interest for biotechnological application.]]>
机译:<![cdata [ <标题>抽象 ara>许多细菌次级代谢物,包括药理学上有希望的化合物,由聚酮化合成酶(PKS)酶配合物合成。在本作本作中,测定编码16S rRNA和从贝加尔湖湖泊湖壁板中分离的异养细菌菌株的基因的核苷酸序列。在16S rRNA基因的分子系统发育分析的基础上,鉴定了六种异养菌株:<重点型=“斜体”> Serratia Fonticola 1А和10а,<重点型=“斜体”>假单胞菌UMSongensis K10-2和K10-3,<重点型=“斜体”> rheinheimera tilapiae K18,以及<重点型=“斜体”>黄酮杆菌 Sp。 43-09。 PKS基因簇的克隆扩增产物的测序揭示了33个序列。在同源序列中发现了涉及抗生素生物合成(牛仔酰胺,红霉素,Coracin,Mixalamide,Corallopyronin,Cytostatics(Romidepsin,Sporuchostatin和DisorazoL)的基因。贝氏菌细菌的低同源性(50-83%)PKS氨基酸序列,来自Genbank的序列证明了菌株的潜在能力,以产生新的,尚未研究的生物活性化合物。得到的结果表明,研究的菌株可能对生物技术应用的实际兴趣。 ]]>

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