Literature DB >> 28408667

Draft Genome Sequence of Roseomonas mucosa Strain AU37, Isolated from a Peripheral Intravenous Catheter.

Md Abu Choudhury1,2,3, Alexander M Wailan3, Hanna E Sidjabat3, Li Zhang1, Nicole Marsh1,4, Claire M Rickard1,4, Mark R Davies5, David J McMillan6.   

Abstract

Roseomonas mucosa is an opportunistic pathogen that causes infections in humans and is often associated with vascular catheter-related bacteremia. Here, we report the draft genome sequence of Roseomonas mucosa strain AU37, isolated from a peripheral intravenous catheter tip.
Copyright © 2017 Abu Choudhury et al.

Entities:  

Year:  2017        PMID: 28408667      PMCID: PMC5391405          DOI: 10.1128/genomeA.00128-17

Source DB:  PubMed          Journal:  Genome Announc


GENOME ANNOUNCEMENT

Roseomonas mucosa is a nonfermenting opportunistic pathogen belonging to the newly established genus of Roseomonas. R. mucosa is characterized as a fastidious, aerobic, oxidase-positive, and Gram-negative rod which forms mucoidal, almost runny, and pink-pigmented colonies (1). Initially grouped with Roseomonas gilardii, R. mucosa was designated a new species in 2003 (1). The natural reservoir of Roseomonas spp. remains unknown. However, Roseomonas spp. have been recovered from environmental sources, such as water and soil (2, 3), as well as multiple sterile and nonsterile clinical sites, including blood, wounds, peritoneal dialysis fluid, genitourinary sites, corneal scrapings, and bone (1, 4 – 7). Although Roseomonas spp. generally have low pathogenicity with regard to human infection, some species have been reported to cause clinically significant or even fatal diseases in immunocompromised patients (4). R. mucosa has also recently been reported to be associated with vascular catheter-related bacteremia (8, 9). Genomic analysis of clinical Roseomonas isolates is rare. Here, we present the genomic sequence of R. mucosa strain AU37, isolated from a peripheral intravenous catheter (PIVC) tip that was positioned in the left arm of 53-year-old male patient admitted at the Royal Brisbane and Women’s Hospital (RBWH). Prior to PIVC insertion, the skin was decontaminated with alcoholic chlorhexidine gluconate. The PIVC was left in place for 7 days and secured with standard polyurethane dressing. The patient was treated with cephalosporin antibiotics during the period of PIVC dwell for a condition unrelated to the PIVC and did not display any systemic infection with R. mucosa or other bacteria. After removal, the AU37 PIVC tip was cultured by rolling the tip back and forth on the surface of a blood agar plate, according to the method of Maki et al. (10). The R. mucosa paired-end whole-genome library was prepared via Illumina Nextera XT and sequenced via the Illumina HiSeq 2000, with a read length of 100 bp. De novo assembly was performed with the Shovill pipeline version 0.2, which uses SPAdes version 3.9.0 (https://github.com/tseemann/shovill). The resulting 249 contigs (>500 bp), with an N50 of 48,204 bp, were initially annotated using RAST (http://rast.nmpdr.org) (11). The draft genome of R. mucosa (AU37) consisted of 4,741,868 bp (coverage, >~80×), with a G+C content of 70.5%. A total of 4,331 coding sequences (CDSs) were predicted to be present in the genome, 3,353 (79%) of which were assigned putative functions. Eight hundred eighty (21%) CDSs were annotated as hypothetical proteins. The genome contains multiple genes encoding multidrug antibiotic resistance proteins, beta-lactamase and other penicillin-binding proteins, tripartite multidrug resistance, quaternary ammonium compound resistance, organic solvent tolerance proteins, as well as copper and arsenical resistance proteins. These data confirm that R. mucosa AU37 possesses genetic determinants predicted to confer resistance to antibiotics commonly used in hospitals and has increased tolerance to antiseptics used for skin decolonization at catheter insertion sites. These findings have implication for the appropriate clinical management of Roseomonas infection. The genomic information of the R. mucosa AU37 will provide insights into molecular mechanisms underpinning the virulence of this opportunistic pathogen and the acquisition of antibiotic resistance in this species.

Accession number(s).

This whole-genome shotgun project has been deposited at DDBJ/ENA/GenBank under the accession no. LLWF00000000. The version described in this paper is version LLWF02000000. The BioProject no. is PRJNA298945, and the BioSample no. is SAMN04169051.
  11 in total

1.  Opportunistic Roseomonas keratitis.

Authors:  G Tabin; C Danenhower; D Reardon; J Dimmig; G McCormick
Journal:  Cornea       Date:  2001-10       Impact factor: 2.651

2.  Roseomonas mucosa isolated from bloodstream of pediatric patient.

Authors:  J Dien Bard; J G Deville; P H Summanen; M A Lewinski
Journal:  J Clin Microbiol       Date:  2010-06-09       Impact factor: 5.948

3.  Roseomonas aquatica sp. nov., isolated from drinking water.

Authors:  Virginia Gallego; Cristina Sánchez-Porro; Maria Teresa García; Antonio Ventosa
Journal:  Int J Syst Evol Microbiol       Date:  2006-10       Impact factor: 2.747

4.  Central line-related bacteremia due to Roseomonas mucosa in a patient with diffuse large B-cell non-Hodgkin's lymphoma.

Authors:  Salah Elshibly; Jiru Xu; Robert B McClurg; Paul J Rooney; B Cherie Millar; H Denis Alexander; Paul Kettle; John E Moore
Journal:  Leuk Lymphoma       Date:  2005-04

5.  A case of peritonitis caused by Roseomonas gilardii in a patient undergoing continuous ambulatory peritoneal dialysis.

Authors:  J A Sandoe; H Malnick; K W Loudon
Journal:  J Clin Microbiol       Date:  1997-08       Impact factor: 5.948

6.  Central line-related bacteraemia due to Roseomonas mucosa in a neutropenic patient with acute myeloid leukaemia in Piraeus, Greece.

Authors:  G B Christakis; S Perlorentzou; P Alexaki; A Megalakaki; I K Zarkadis
Journal:  J Med Microbiol       Date:  2006-08       Impact factor: 2.472

7.  A semiquantitative culture method for identifying intravenous-catheter-related infection.

Authors:  D G Maki; C E Weise; H W Sarafin
Journal:  N Engl J Med       Date:  1977-06-09       Impact factor: 91.245

8.  Bacteriologic characterization of 36 strains of Roseomonas species and proposal of Roseomonas mucosa sp nov and Roseomonas gilardii subsp rosea subsp nov.

Authors:  Xiang Y Han; Audrey S Pham; Jeffrey J Tarrand; Kenneth V Rolston; Leta O Helsel; Paul N Levett
Journal:  Am J Clin Pathol       Date:  2003-08       Impact factor: 2.493

9.  Clinical significance of Roseomonas species isolated from catheter and blood samples: analysis of 36 cases in patients with cancer.

Authors:  Indra Dé; Kenneth V I Rolston; Xiang Y Han
Journal:  Clin Infect Dis       Date:  2004-05-07       Impact factor: 9.079

10.  The RAST Server: rapid annotations using subsystems technology.

Authors:  Ramy K Aziz; Daniela Bartels; Aaron A Best; Matthew DeJongh; Terrence Disz; Robert A Edwards; Kevin Formsma; Svetlana Gerdes; Elizabeth M Glass; Michael Kubal; Folker Meyer; Gary J Olsen; Robert Olson; Andrei L Osterman; Ross A Overbeek; Leslie K McNeil; Daniel Paarmann; Tobias Paczian; Bruce Parrello; Gordon D Pusch; Claudia Reich; Rick Stevens; Olga Vassieva; Veronika Vonstein; Andreas Wilke; Olga Zagnitko
Journal:  BMC Genomics       Date:  2008-02-08       Impact factor: 3.969

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  1 in total

1.  Roseomonas mucosa bacteremia in a neutropenic child: A case report and literature review.

Authors:  Keigo Kimura; Hideharu Hagiya; Isao Nishi; Hisao Yoshida; Kazunori Tomono
Journal:  IDCases       Date:  2018-11-13
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