Adlercreutzia equolifaciens subsp. equolifaciens (Maruo et al. 2008) =CCUG 54925 =DSM 19450. Adlercreutzia equolifaciens. Type strain [7332,12227,12325].
Adlercreutzia_equolifaciens_DSM_19450_uid223286 Advenella_kashmirensis_WT001_uid80859 Aequorivita_sublithincola_DSM_14238_uid168181
DOB: 11/06/1958. Adlercreutzia equolifaciens DSM 19450, 7,8-DMMK6, 8-MMK6, BAN75994 ( Aequ0025), BAN76985 (Aequ1016), This study, [20]. Eggerthella lenta JCM 9979 T Jun 27, 2016 Adlercreutzia and Collinsella were less abundant in RRMS patients compared to controls. Among Adlercreutzia equolifaciens DSM 19450T. Oct 5, 2016 DSM 50255. 116, 58165, 14, 71313 1422, 60310, Adlercreutzia equolifaciens DSM 19450, 1384484.3, 2,862,526, Complete.
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(Type species of the genus.) Type strain: (see also Global Catalogue of Microorganisms) FJC-B9 = CCUG 54925 = DSM 19450 = JCM 14793. Sequence accession no. (16S rRNA gene) for the type strain: AB306661. Adlercreutzia equolifaciens DSM 19450(T) was isolated from human feces and is able to metabolize daidzeins (soybean isoflavonoids) to equol. Here, we report the finished and annotated genome sequence of this organism. Select to display Genome Domains Proteins; No Yes : ALL: 494679: 494679: No Yes : Homo sapiens 76_38: Human: 5: 5: No Yes : Pan troglodytes 76_2.1.4: Chimpanzee: 2: 2 Adlercreutzia equolifaciens, Bifidobacterium pseudocatenulatum, Eggerthella lenta, Faecalibacterium prausnitzii, and Slackia equolifaciens were grown anaerobically under N 2 atmosphere in Hungates in DSM 339 (German collection of microorganisms and cell cultures; Deutsche Sammlung von Mikroorganismen und Zellkulturen, www.dsmz.de). 2020-06-10 · Similarly, the type strains of Asaccharobacter celatus and Adlercreutzia equolifaciens are consistent with a single species and genus (97.0% ANI, 99.9% 16S rRNA) (Nouioui et al., 2018).
Feb 25, 2013 Senegalemassilia anaerobia JC110T shares motility with Gordonibacter pamelae, in contrast with Adlercreutzia equolifaciens, Enterorhabdus
@ref: 8024 BacDive-ID: 3073 DSM-Number: 19450 keywords: gram-positive, mesophilic, anaerobe, Bacteria, 16S sequence, genome sequence, ovoid-shaped description: Adlercreutzia equolifaciens FJC-B9 is an anaerobe, mesophilic, gram-positive bacterium that was isolated from human faeces. Draft Genome Sequence of Adlercreutzia equolifaciens IPLA 37004, a Human Intestinal Strain That Does Not Produce Equol from Daidzein equolifaciens DSM 19450. T. involved in equol formation (9 Adlercreutzia equolifaciens subsp.
Adlercreutzia equolifaciens DSM19450 T is a human intestinal bacterium—for which the whole genome sequence is publicly available—that produces equol from the daidzein isoflavone. In the present work, daidzein (between 50 to 200 μM) was completely metabolized by cultures of A. equolifaciens DSM19450 T after 10 h of incubation.
In the present work, daidzein (between 50 to 200 μM) was completely metabolized by cultures of A. equolifaciens DSM19450T after 10 h of incubation. Proteomes - Adlercreutzia equolifaciens DSM 19450. "Complete Genome Sequence of the Equol-Producing Bacterium Adlercreutzia equolifaciens DSM 19450T." Toh H., Adlercreutzia equolifaciens subsp. equolifaciens (Maruo et al.
ABSTRACT Adlercreutzia equolifaciens DSM 19450T was isolated from human feces and is able to metabolize daidzeins (soybean isoflavonoids) to equol.
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Help Data source record id: GCF_000478885.1 (NCBI assembly accession): Data source organism name: Adlercreutzia equolifaciens DSM 19450: NCBI BioSample: SAMD00061014: NCBI BioProject: Complete Genome Sequence of the Equol-Producing Bacterium Adlercreutzia equolifaciens DSM 19450 T Genome Announc 2013 1 4 Adlercreutzia equolifaciens gen. nov., sp. nov., an equol-producing bacterium isolated from human faeces, and emended description of the genus Eggerthella. Adlercreutzia equolifaciens DSM 19450: NCBI Tax ID 1384484.
Customer Name: Customer Name: Daniel Winegarden. DOB: 11/06/1958.
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HH130629-09, Saccharothrix espanaensis DSM 44229, Actinosynnema mirum Cryptobacterium curtum DSM 15641, Adlercreutzia equolifaciens DSM 19450,
Genome Original Genome Size Original Number of Scaffolds Shredded Genome Size* Shredded Number of Contigs; Acidaminococcus sp. D21: 2,238,973: 79: 2,249,017 Fingerprint Dive into the research topics of 'Complete genome sequence of the equol-producing bacterium Adlercreutzia equolifaciens DSM 19450T'.
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Species[edit]. The genus contains a single species, namely A. equolifaciens ( Maruo et al. 2008, type species of
Genome [Clostridium] methylpentosum DSM 5476, phosphopantothenate biosynthesis I. [ Clostridium] Adlercreutzia equolifaciens DSM 19450 (GCF_000478885.1) Adlercreutzia equolifaciens. 71, Adlercreutzia equolifaciens DSM 19450, 2,862,526, AP013105 · AP013105 · PRJDB1443, n/a.
The complete genome sequence of A. equolifaciens DSM 19450T wasdeterminedbyawhole-genomeshotgunstrategywith the Sanger method. Genomic libraries containing 3-kb inserts wereconstructedandsequenced,and31,648sequencesweregen-erated, giving 7.5-fold coverage from both ends of the genomic clones. Sequence reads were assembled with the Phred-Phrap-
Genome [Clostridium] methylpentosum DSM 5476, phosphopantothenate biosynthesis I. [ Clostridium] Adlercreutzia equolifaciens DSM 19450 (GCF_000478885.1) Adlercreutzia equolifaciens. 71, Adlercreutzia equolifaciens DSM 19450, 2,862,526, AP013105 · AP013105 · PRJDB1443, n/a. Advenella kashmirensis. 79583, +, Ser, GGA, [ENA], ○. >C141000298 · AP013105, Actinobacteria, Adlercreutzia equolifaciens DSM 19450, 2814357, 2814266, -, Ser, GGA, [Ensembl] human stools, 13070, 13162, +, Ser, CGA, [ENA], ◯.
2020-06-10 · Similarly, the type strains of Asaccharobacter celatus and Adlercreutzia equolifaciens are consistent with a single species and genus (97.0% ANI, 99.9% 16S rRNA) (Nouioui et al., 2018). Newly isolated strains consistent with this clade were assigned to A. celatus based on their closest alignment to this type strain at the time of genome sequencing. Select to display Genome Domains Proteins; No Yes : ALL: 229581: 229581: No Yes : Homo sapiens 76_38: Human: 9: 9: No Yes : Pan troglodytes 76_2.1.4: Chimpanzee: 1: 1 Gut microbiota contribute to the metabolism of dietary polyphenols and affect the bioavailability of both the parent polyphenols and their metabolites. Although there is a large number of reports of specific polyphenol metabolites, relatively little is known regarding the chemistry and enzymology of the metabolic pathways utilized by specific microbial species and taxa, which is the focus of tion Potsdam-Rehbruecke).