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DC Field | Value | Language |
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dc.contributor.author | Duangupama T. | |
dc.contributor.author | Intaraudom C. | |
dc.contributor.author | Pittayakhajonwut P. | |
dc.contributor.author | Suriyachadkun C. | |
dc.contributor.author | Tadtong S. | |
dc.contributor.author | Sirirote P. | |
dc.contributor.author | Tanasupawat S. | |
dc.contributor.author | Thawai C. | |
dc.date.accessioned | 2022-03-10T13:17:09Z | - |
dc.date.available | 2022-03-10T13:17:09Z | - |
dc.date.issued | 2021 | |
dc.identifier.issn | 14665026 | |
dc.identifier.other | 2-s2.0-85108965899 | |
dc.identifier.uri | https://ir.swu.ac.th/jspui/handle/123456789/17463 | - |
dc.identifier.uri | https://www.scopus.com/inward/record.uri?eid=2-s2.0-85108965899&doi=10.1099%2fijsem.0.004857&partnerID=40&md5=e60bc87b2c2bc5b8abdc86629fb117e7 | |
dc.description.abstract | An actinobacterium, strain CH5-8T, which formed spiral chains of spore arising from the aerial mycelium, was isolated from rhizosphere soil of Musa spp. The organism exhibited vivid greenish yellow substrate mycelium and easily produced the medium grey aerial spore mass on ISP2 medium. The typical chemotaxonomic properties of members of the genus Streptomyces were observed for strain CH5-8T, e.g. ll-diaminopimelic acid in cell peptidoglycan, MK-9(H8), MK-9(H6), and MK-9(H4) as major menaquinones and anteiso-C15:0, iso-C16:0, and anteiso-C17:0 as major fatty acids. Diphosphatidylglycerol, phosphatidylethanola-mine, hydroxyphosphatidylethanolamine, phosphatidylglycerol, phosphatidylinositol and phosphatidylinositol mannoside were detected in the cells. A combination of morphological and chemotaxonomic data supported the assignment to the genus Strep-tomyces. The analysis result obtained for the 16S rRNA gene sequence confirmed the taxonomic affiliation at the genus level of this strain. The novel strain CH5-8T showed the highest 16S rRNA gene sequence values to Streptomyces echinatus NBRC 12763T (98.9%), followed by Streptomyces actinomycinicus RCU-197T (98.9%). The average nucleotide identity by blast (ANIb) and digital DNA–DNA hybridization values between CH5-8T and its closest relatives, S. echinatus CECT 3313T and S. actinomycinicus RCU-197T, were ≤91.6% and ≤47.4%, respectively. The digital DNA G+C content of genomic DNA was 72.1 mol%. On the basis of these phenotypic and genotypic data, strain CH5-8T represents a novel species, for which the name Streptomyces musisoli sp. nov. is proposed. The type strain is CH5-8T (=TBRC 9950T=NBRC 113997T). © 2021 The Authors. | |
dc.language | en | |
dc.subject | acetylglucosaminidase | |
dc.subject | alkaline phosphatase | |
dc.subject | alpha galactosidase | |
dc.subject | alpha glucosidase | |
dc.subject | alpha levo fucosidase | |
dc.subject | arabinose | |
dc.subject | aryl acylamidase | |
dc.subject | beta galactosidase | |
dc.subject | beta glucosidase | |
dc.subject | beta glucuronidase | |
dc.subject | cardiolipin | |
dc.subject | cellobiose | |
dc.subject | cellulose | |
dc.subject | chymotrypsin | |
dc.subject | chymotrypsin trypsin | |
dc.subject | cysteine | |
dc.subject | cystine | |
dc.subject | dextran | |
dc.subject | diaminopimelic acid | |
dc.subject | enzyme | |
dc.subject | farnoquinone | |
dc.subject | fatty acid | |
dc.subject | fructose | |
dc.subject | galactose | |
dc.subject | galactosidase | |
dc.subject | genomic DNA | |
dc.subject | glucose | |
dc.subject | histidine | |
dc.subject | hydroxyproline | |
dc.subject | hypoxanthine | |
dc.subject | inositol | |
dc.subject | inulin | |
dc.subject | lactose | |
dc.subject | mannitol | |
dc.subject | mannose | |
dc.subject | mannoside | |
dc.subject | melibiose | |
dc.subject | menaquinone | |
dc.subject | methionine | |
dc.subject | n acetyl beta glucosaminidase | |
dc.subject | nitrogen | |
dc.subject | nucleotide | |
dc.subject | peptidoglycan | |
dc.subject | phenylalanine | |
dc.subject | phosphatase | |
dc.subject | phosphatidylethanolamine | |
dc.subject | phosphatidylglycerol | |
dc.subject | phosphatidylinositol | |
dc.subject | phospholipid | |
dc.subject | proline | |
dc.subject | raffinose | |
dc.subject | rhamnose | |
dc.subject | ribitol | |
dc.subject | RNA 16S | |
dc.subject | salicin | |
dc.subject | sucrose | |
dc.subject | xanthine | |
dc.subject | xylose | |
dc.subject | bacterial DNA | |
dc.subject | diaminopimelic acid | |
dc.subject | farnoquinone | |
dc.subject | fatty acid | |
dc.subject | menaquinone | |
dc.subject | peptidoglycan | |
dc.subject | phospholipid | |
dc.subject | RNA 16S | |
dc.subject | Article | |
dc.subject | bacterium isolation | |
dc.subject | chemotaxonomy | |
dc.subject | controlled study | |
dc.subject | DNA base composition | |
dc.subject | DNA DNA hybridization | |
dc.subject | gene sequence | |
dc.subject | genotype | |
dc.subject | mycelium | |
dc.subject | nonhuman | |
dc.subject | phenotypic variation | |
dc.subject | soil | |
dc.subject | Streptomyces | |
dc.subject | Streptomyces actinomycinicus | |
dc.subject | Streptomyces echinatus | |
dc.subject | Streptomyces musisoli | |
dc.subject | bacterium identification | |
dc.subject | chemistry | |
dc.subject | classification | |
dc.subject | DNA sequence | |
dc.subject | genetics | |
dc.subject | isolation and purification | |
dc.subject | microbiology | |
dc.subject | Musa | |
dc.subject | phylogeny | |
dc.subject | rhizosphere | |
dc.subject | Streptomyces | |
dc.subject | Thailand | |
dc.subject | Bacterial Typing Techniques | |
dc.subject | Base Composition | |
dc.subject | Diaminopimelic Acid | |
dc.subject | DNA, Bacterial | |
dc.subject | Fatty Acids | |
dc.subject | Musa | |
dc.subject | Mycelium | |
dc.subject | Peptidoglycan | |
dc.subject | Phospholipids | |
dc.subject | Phylogeny | |
dc.subject | Rhizosphere | |
dc.subject | RNA, Ribosomal, 16S | |
dc.subject | Sequence Analysis, DNA | |
dc.subject | Soil Microbiology | |
dc.subject | Streptomyces | |
dc.subject | Thailand | |
dc.subject | Vitamin K 2 | |
dc.title | Streptomyces musisoli sp. nov., an actinomycete isolated from soil | |
dc.type | Article | |
dc.rights.holder | Scopus | |
dc.identifier.bibliograpycitation | International Journal of Systematic and Evolutionary Microbiology. Vol 71, No.7 (2021) | |
dc.identifier.doi | 10.1099/ijsem.0.004857 | |
Appears in Collections: | Scopus 1983-2021 |
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