Literature DB >> 25829331

Microbacterium enclense sp. nov., isolated from sediment sample.

Rahul R Mawlankar1, Poonam Mual2, Vidya V Sonalkar1, Meghana N Thorat1, Ashish Verma2, Krishnamurthi Srinivasan2, Syed G Dastager1.   

Abstract

A novel bacterium (strain NIO-1002(T)) belonging to the genus Microbacterium was isolated from a marine sediment sample in Chorao Island, Goa Province, India. Its morphology, physiology, biochemical features and 16S rRNA gene sequence were characterized. Cells of this strain were Gram-stain-positive, non-motile, non-spore-forming rods that formed yellow-pigmented colonies. It grew in 0-12% (w/v) NaCl and at 25-37 °C, with optimal growth at 30 °C. Phylogenetic analysis based on 16S rRNA gene sequences indicated that strain NIO-1002(T) is associated with members of the genus Microbacterium, with highest sequence similarity with Microbacterium hominis CIP 105731(T) (98.1%) and Microbacterium testaceum KCTC 9103(T) (98.0%). Within the phylogenetic tree, this novel strain shared a branching point with M. hominis CIP 105731(T). The DNA G+C content was 66.5 mol% and DNA-DNA hybridization relatedness between NIO-1002(T), M. hominis CIP 105731(T) and M. testaceum KCTC 9103(T) was 39.0 ± 2.0% and 41.0 ± 2.0%, respectively. The major fatty acids were ai-C15 : 0, i-C16 : 0 and ai-C17 : 0 and the diamino acid in the cell-wall peptidoglycan of NIO-1002(T) was lysine. Data obtained from DNA-DNA hybridization and chemotaxonomic phenotypic analysis support the conclusion that strain NIO-1002(T) represents a novel species within the genus Microbacterium. The name Microbacterium enclense sp. nov. is proposed, with NIO-1002(T) ( = NCIM 5454(T) = DSM 25125(T) = CCTCC AB 2011120(T)) as the type strain.

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Year:  2015        PMID: 25829331     DOI: 10.1099/ijs.0.000221

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


  7 in total

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Journal:  Front Microbiol       Date:  2018-08-22       Impact factor: 5.640

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6.  Improved Draft Genome Sequence of Microbacterium sp. Strain LKL04, a Bacterial Endophyte Associated with Switchgrass Plants.

Authors:  Mohammad Radhi Sahib; Piao Yang; Norbert Bokros; Nicole Shapiro; Tanja Woyke; Nikos C Kyrpides; Ye Xia; Seth DeBolt
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7.  Shallow-Water Hydrothermal Vents as Natural Accelerators of Bacterial Antibiotic Resistance in Marine Coastal Areas.

Authors:  Erika Arcadi; Eugenio Rastelli; Michael Tangherlini; Carmen Rizzo; Monique Mancuso; Marilena Sanfilippo; Valentina Esposito; Franco Andaloro; Teresa Romeo
Journal:  Microorganisms       Date:  2022-02-21
  7 in total

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