Pre_GI: BLASTP Hits

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Query: NC_003155:7979050:8001187 Streptomyces avermitilis MA-4680, complete genome

Start: 8001187, End: 8002227, Length: 1041

Host Lineage: Streptomyces avermitilis; Streptomyces; Streptomycetaceae; Actinomycetales; Actinobacteria; Bacteria

General Information: This strain (ATCC 31267) was isolated and characterized in 1978 by R. Burg and colleagues from a soil sample collected in Shizuoka Prefecture, Japan. Antibiotic-producing bacterium. The characteristic earthy smell of freshly plowed soil is actually attributed to the aromatic terpenoid geosmin produced by species of Streptomyces. There are currently 364 known species of this genus, many of which are the most important industrial producers of antibiotics and other secondary metabolites of antibacterial, antifungal, antiviral, and antitumor nature, as well as immunosuppressants, antihypercholesterolemics, etc. Streptomycetes are crucial in the soil environment because their diverse metabolism allows them to degrade the insoluble remains of other organisms, including recalcitrant compounds such as lignocelluloses and chitin. Streptomycetes produce both substrate and aerial mycelium. The latter shows characteristic modes of branching, and in the course of the streptomycete complex life cycle, these hyphae are partly transformed into chains of spores, which are often called conidia or arthrospores. An important feature in Streptomyces is the presence of type-I peptidoglycan in the cell walls that contains characteristic interpeptide glycine bridges. Another remarkable trait of streptomycetes is that they contain very large (~8 million base pairs which is about twice the size of most bacterial genomes) linear chromosomes with distinct telomeres. These rearrangements consist of the deletion of several hundred kilobases, often associated with the amplification of an adjacent sequence, and lead to metabolic diversity within the Streptomyces group. Sequencing of several strains of Streptomyces is aimed partly on understanding the mechanisms involved in these diversification processes. This organism is a well known producer of the anti-parasitic agent avermectin which is widely used to rid livestock of worm and insect infestations and to protect large numbers of people from river blindness in sub-Saharan Africa.




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SubjectStartEndLengthSubject Host DescriptionCDS descriptionE-valueBit score
NC_013093:2471574:249031724903172491282966Actinosynnema mirum DSM 43827, complete genomeputative transcriptional regulator protein2e-28126
NC_013729:5497814:549928354992835500260978Kribbella flavida DSM 17836, complete genometranscriptional regulator protein-like protein1e-26120
NC_019978:922978:938698938698939693996Halobacteroides halobius DSM 5150, complete genomeputative transcriptional regulator5e-0755.8
NC_006177:1422932:143753414375341438253720Symbiobacterium thermophilum IAM 14863, complete genomehypothetical protein7e-0755.1
NC_013501:1881692:1906452190645219074951044Rhodothermus marinus DSM 4252, complete genomeHelix-turn-helix type 11 domain protein3e-0653.1
NC_010546:1175979:119407511940751195073999Cyanothece sp. ATCC 51142 chromosome circular, complete sequencehypothetical protein5e-0652.4
NC_007775:723925:742311742311743219909Synechococcus sp. JA-3-3Ab, complete genomehypothetical protein5e-0652.4
NC_006350:1084930:1091418109141810924401023Burkholderia pseudomallei K96243 chromosome 1, complete sequenceputative DeoR family regulatory protein8e-0651.6