Literature DB >> 26515885

Bifidobacterium myosotis sp. nov., Bifidobacterium tissieri sp. nov. and Bifidobacterium hapali sp. nov., isolated from faeces of baby common marmosets (Callithrix jacchus L.).

Samanta Michelini1, Kaihei Oki2, Emiko Yanokura3, Yasuhisa Shimakawa3, Monica Modesto1, Paola Mattarelli1, Bruno Biavati4, Koichi Watanabe5.   

Abstract

In a previous study on bifidobacterial distribution in New World monkeys, six strains belonging to the Bifidobacteriaceae were isolated from faecal samples of baby common marmosets (Callithrix jacchus L.). All the isolates were Gram-positive-staining, anaerobic, asporogenous and fructose-6-phosphate phosphoketolase-positive. Comparative analysis of 16S rRNA gene sequences revealed relatively low levels of similarity (maximum identity 96 %) to members of the genus Bifidobacterium, and placed the isolates in three independent clusters: strains of cluster I (MRM_5.9T and MRM_5.10) and cluster III (MRM_5.18T and MRM_9.02) respectively showed 96.4 and 96.7 % 16S rRNA gene sequence similarity to Bifidobacterium callitrichos DSM 23973T, while strains of cluster II (MRM_8.14T and MRM_9.14) showed 95.4 % similarity to Bifidobacterium stellenboschense DSM 23968T. Phylogenetic analysis of partial hsp60 and clpC gene sequences supported an independent phylogenetic position of each cluster from each other and from the related type strains B. callitrichos DSM 23973T and B. stellenboschense DSM 23968T. Clusters I, II and III respectively showed DNA G+C contents of 64.9-65.1, 56.4-56.7 and 63.1-63.7 mol%. The major cellular fatty acids of MRM_5.9T were C14 : 0, C16 : 0 and C18 : 1ω9c dimethylacetal, while C16 : 0 was prominent in strains MRM_5.18T and MRM_8.14T, followed by C18 : 1ω9c and C14 : 0. Biochemical profiles and growth parameters were recorded for all the isolates. Based on the data provided, the clusters represent three novel species, for which the names Bifidobacterium myosotis sp. nov. (type strain MRM_5.9T = DSM 100196T = JCM 30796T), Bifidobacterium hapali sp. nov. (type strain MRM_8.14T = DSM 100202T = JCM 30799T) and Bifidobacterium tissieri sp. nov. (type strain MRM_5.18T = DSM 100201T = JCM 30798T) are proposed.

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Year:  2015        PMID: 26515885     DOI: 10.1099/ijsem.0.000708

Source DB:  PubMed          Journal:  Int J Syst Evol Microbiol        ISSN: 1466-5026            Impact factor:   2.747


  6 in total

1.  Tracking the Taxonomy of the Genus Bifidobacterium Based on a Phylogenomic Approach.

Authors:  Gabriele Andrea Lugli; Christian Milani; Sabrina Duranti; Leonardo Mancabelli; Marta Mangifesta; Francesca Turroni; Alice Viappiani; Douwe van Sinderen; Marco Ventura
Journal:  Appl Environ Microbiol       Date:  2018-01-31       Impact factor: 4.792

2.  Comparative genomics of Bifidobacterium species isolated from marmosets and humans.

Authors:  Celeste J Brown; Dorah Mtui; Benjamin P Oswald; James T Van Leuven; Eric J Vallender; Nancy Schultz-Darken; Corinna N Ross; Suzette D Tardif; Steven N Austad; Larry J Forney
Journal:  Am J Primatol       Date:  2019-05-06       Impact factor: 2.371

3.  Breast milk urea as a nitrogen source for urease positive Bifidobacterium infantis.

Authors:  Patrick Schimmel; Lennart Kleinjans; Roger S Bongers; Jan Knol; Clara Belzer
Journal:  FEMS Microbiol Ecol       Date:  2021-03-08       Impact factor: 4.194

4.  Individual variations and effects of birth facilities on the fecal microbiome of laboratory-bred marmosets (Callithrix jacchus) assessed by a longitudinal study.

Authors:  Yuko Shigeno; Hong Liu; Chie Sano; Ryo Inoue; Kimie Niimi; Kentaro Nagaoka
Journal:  PLoS One       Date:  2022-08-30       Impact factor: 3.752

5.  The comparative genomics of Bifidobacterium callitrichos reflects dietary carbohydrate utilization within the common marmoset gut.

Authors:  Korin Albert; Asha Rani; David A Sela
Journal:  Microb Genom       Date:  2018-06-15

6.  Captive Common Marmosets (Callithrix jacchus) Are Colonized throughout Their Lives by a Community of Bifidobacterium Species with Species-Specific Genomic Content That Can Support Adaptation to Distinct Metabolic Niches.

Authors:  Lifeng Zhu; Qinnan Yang; Mallory J Suhr Van Haute; Car Reen Kok; Joao Carlos Gomes-Neto; Natasha Pavlovikj; Resmi Pillai; Rohita Sinha; Haley Hassenstab; Aaryn Mustoe; Etsuko N Moriyama; Robert Hutkins; Jeffrey French; Andrew K Benson
Journal:  mBio       Date:  2021-08-03       Impact factor: 7.867

  6 in total

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