Literature DB >> 29146861

Whole-Genome Sequence of Pantoea americana Strain VS1, an Extended-Spectrum β-Lactamase-Producing Epibiont Isolated from Magnolia grandiflora.

Pushpa Lata1, Subramaniam S Govindarajan2, Feng Qi3, Jian-Liang Li3, Santosh K Maurya4, Malaya K Sahoo5.   

Abstract

Pantoea americana strain VS1, an extended-spectrum β-lactamase-producing epibiont, was isolated from Magnolia grandiflora in central Florida, USA. Here, we report the de novo whole-genome sequence of this strain, which consists of a total of 191 contigs spanning 5,412,831 bp, with a GC content of 57.3% and comprising 4,836 predicted coding sequences.
Copyright © 2017 Lata et al.

Entities:  

Year:  2017        PMID: 29146861      PMCID: PMC5690338          DOI: 10.1128/genomeA.01285-17

Source DB:  PubMed          Journal:  Genome Announc


GENOME ANNOUNCEMENT

Earlier, we published the whole-genome sequence of Pantoea latae strain AS1, which was isolated from the rhizosphere of a cycad, Zamia floridana (1). Many members of the genus Pantoea have been used as a biocontrol agent against some plant pathogens and also for bioremediation and degradation of toxic herbicides (2, 3). In this study, novel Pantoea americana strain VS1, an extended-spectrum β-lactamase-producing epibiont, was isolated from Magnolia grandiflora in central Florida, USA. Here, we report the de novo-sequenced whole genome of Pantoea americana strain VS1. The genomic DNA was isolated using the QIAamp DNA minikit (Qiagen, Germantown, MD), according to the manufacturer’s instructions. DNA quality was checked by NanoDrop spectrophotometer (Thermo Scientific) and quantitated by a Qubit 2.0 fluorometer (Life Technologies) and Agilent 2100 Bioanalyzer (Agilent Technologies, Santa Clara, CA). The genomic DNA was fragmented and tagged with sequencing adapters in a single-tube enzymatic reaction using a Nextera XT DNA library preparation kit (Illumina, San Diego, CA). The resulting library was sequenced using the Illumina MiSeq sequencing platform (Illumina, San Diego, CA) and generated 2.9 million reads for Pantoea americana strain VS1. The reads were assembled using Minia version 2.0.3 with default parameters and a k-mer size of 121 (4). A total of 191 contigs were obtained, and the N50 value of the contigs was 151,591 bp. The maximum length of the contig was 601,327 bp, with a total genome length of 5,412,831 bp. The GC content of the genome was 57.3%. The protein-coding regions were predicted by the NCBI Prokaryotic Genome Annotation Pipeline (release 2013; https://www.ncbi.nlm.nih.gov/genome/annotation_prok/). In total, 4,836 coding genes were identified in the 5.4-Mb genome of Pantoea americana, and it shows 85.3% symmetrical identity with the Pantoea dispersa genome. Seventy-five tRNA, 29 rRNA (8 5S rRNA, 8 16S rRNA, 13 23S rRNA), and 7 noncoding RNA (ncRNA) genes and class C and D β-lactamases have putative functions assigned on the basis of the annotation.

Accession number(s).

This whole-genome shotgun project has been deposited at DDBJ/ENA/GenBank under the accession no. NHZE00000000. The version described in this paper is NHZE01000000.
  4 in total

1.  Isolation of mesotrione-degrading bacteria from aquatic environments in Brazil.

Authors:  Marcos Pileggi; Sônia Alvim Veiga Pileggi; Luiz Ricardo Olchanheski; Paulo Augusto Garbugio da Silva; Ana M Munoz Gonzalez; Willian C Koskinen; Brian Barber; Michael Jay Sadowsky
Journal:  Chemosphere       Date:  2012-01-13       Impact factor: 7.086

2.  Assessment of Environmental Factors Influencing Growth and Spread of Pantoea agglomerans on and Among Blossoms of Pear and Apple.

Authors:  K B Johnson; V O Stockwell; T L Sawyer; D Sugar
Journal:  Phytopathology       Date:  2000-11       Impact factor: 4.025

3.  De Novo Whole-Genome Sequence of Pantoea latae Strain AS1, Isolated from Zamia floridana Rhizosphere in Central Florida, USA.

Authors:  Pushpa Lata; Subramaniam S Govindarajan; Feng Qi; Jian-Liang Li; Santosh K Maurya; Malaya K Sahoo
Journal:  Genome Announc       Date:  2017-07-13

4.  Space-efficient and exact de Bruijn graph representation based on a Bloom filter.

Authors:  Rayan Chikhi; Guillaume Rizk
Journal:  Algorithms Mol Biol       Date:  2013-09-16       Impact factor: 1.405

  4 in total

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