e asburiae atcc 35953  (ATCC)


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    ATCC e asburiae atcc 35953
    Digital DNA–DNA hybridization (dDDH) for species determination of Enterobacter sp. HSTU-ASh6 depends on whole genome sequences.
    E Asburiae Atcc 35953, supplied by ATCC, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    1) Product Images from "Unveiling chlorpyrifos mineralizing and tomato plant-growth activities of Enterobacter sp. strain HSTU-ASh6 using biochemical tests, field experiments, genomics, and in silico analyses"

    Article Title: Unveiling chlorpyrifos mineralizing and tomato plant-growth activities of Enterobacter sp. strain HSTU-ASh6 using biochemical tests, field experiments, genomics, and in silico analyses

    Journal: Frontiers in Microbiology

    doi: 10.3389/fmicb.2022.1060554

    Digital DNA–DNA hybridization (dDDH) for species determination of Enterobacter sp. HSTU-ASh6 depends on whole genome sequences.
    Figure Legend Snippet: Digital DNA–DNA hybridization (dDDH) for species determination of Enterobacter sp. HSTU-ASh6 depends on whole genome sequences.

    Techniques Used: DNA-DNA Hybridization

    e asburiae atcc 35953  (ATCC)


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    ATCC e asburiae atcc 35953
    Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.
    E Asburiae Atcc 35953, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    e asburiae atcc 35953 - by Bioz Stars, 2023-11
    86/100 stars

    Images

    1) Product Images from "Molecular epidemiology and genomic characterization of a plasmid-mediated mcr-10 and bla NDM-1 co-harboring multidrug-resistant Enterobacter asburiae"

    Article Title: Molecular epidemiology and genomic characterization of a plasmid-mediated mcr-10 and bla NDM-1 co-harboring multidrug-resistant Enterobacter asburiae

    Journal: Computational and Structural Biotechnology Journal

    doi: 10.1016/j.csbj.2023.08.004

    Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.
    Figure Legend Snippet: Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.

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    e asburiae atcc 35953  (ATCC)


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    ATCC e asburiae atcc 35953
    Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.
    E Asburiae Atcc 35953, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    86/100 stars

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    1) Product Images from "Molecular epidemiology and genomic characterization of a plasmid-mediated mcr-10 and bla NDM-1 co-harboring multidrug-resistant Enterobacter asburiae"

    Article Title: Molecular epidemiology and genomic characterization of a plasmid-mediated mcr-10 and bla NDM-1 co-harboring multidrug-resistant Enterobacter asburiae

    Journal: Computational and Structural Biotechnology Journal

    doi: 10.1016/j.csbj.2023.08.004

    Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.
    Figure Legend Snippet: Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.

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    e asburiae atcc 35953  (ATCC)


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    ATCC e asburiae atcc 35953
    Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.
    E Asburiae Atcc 35953, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/e asburiae atcc 35953/product/ATCC
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    e asburiae atcc 35953 - by Bioz Stars, 2023-11
    86/100 stars

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    1) Product Images from "Molecular epidemiology and genomic characterization of a plasmid-mediated mcr-10 and bla NDM-1 co-harboring multidrug-resistant Enterobacter asburiae"

    Article Title: Molecular epidemiology and genomic characterization of a plasmid-mediated mcr-10 and bla NDM-1 co-harboring multidrug-resistant Enterobacter asburiae

    Journal: Computational and Structural Biotechnology Journal

    doi: 10.1016/j.csbj.2023.08.004

    Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.
    Figure Legend Snippet: Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.

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    e asburiae atcc 35953  (ATCC)


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    ATCC e asburiae atcc 35953
    Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.
    E Asburiae Atcc 35953, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/e asburiae atcc 35953/product/ATCC
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    e asburiae atcc 35953 - by Bioz Stars, 2023-11
    86/100 stars

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    1) Product Images from "Molecular epidemiology and genomic characterization of a plasmid-mediated mcr-10 and bla NDM-1 co-harboring multidrug-resistant Enterobacter asburiae"

    Article Title: Molecular epidemiology and genomic characterization of a plasmid-mediated mcr-10 and bla NDM-1 co-harboring multidrug-resistant Enterobacter asburiae

    Journal: Computational and Structural Biotechnology Journal

    doi: 10.1016/j.csbj.2023.08.004

    Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.
    Figure Legend Snippet: Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.

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    reference strain e asburiae atcc 35953  (ATCC)


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    ATCC reference strain e asburiae atcc 35953
    Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.
    Reference Strain E Asburiae Atcc 35953, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/reference strain e asburiae atcc 35953/product/ATCC
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    reference strain e asburiae atcc 35953 - by Bioz Stars, 2023-11
    86/100 stars

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    1) Product Images from "Molecular epidemiology and genomic characterization of a plasmid-mediated mcr-10 and bla NDM-1 co-harboring multidrug-resistant Enterobacter asburiae"

    Article Title: Molecular epidemiology and genomic characterization of a plasmid-mediated mcr-10 and bla NDM-1 co-harboring multidrug-resistant Enterobacter asburiae

    Journal: Computational and Structural Biotechnology Journal

    doi: 10.1016/j.csbj.2023.08.004

    Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.
    Figure Legend Snippet: Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.

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    e asburiae atcc 35953  (ATCC)


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    ATCC e asburiae atcc 35953
    Digital DNA–DNA hybridization (dDDH) for species determination of Enterobacter sp. HSTU-ASh6 depends on whole genome sequences.
    E Asburiae Atcc 35953, supplied by ATCC, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    1) Product Images from "Unveiling chlorpyrifos mineralizing and tomato plant-growth activities of Enterobacter sp. strain HSTU-ASh6 using biochemical tests, field experiments, genomics, and in silico analyses"

    Article Title: Unveiling chlorpyrifos mineralizing and tomato plant-growth activities of Enterobacter sp. strain HSTU-ASh6 using biochemical tests, field experiments, genomics, and in silico analyses

    Journal: Frontiers in Microbiology

    doi: 10.3389/fmicb.2022.1060554

    Digital DNA–DNA hybridization (dDDH) for species determination of Enterobacter sp. HSTU-ASh6 depends on whole genome sequences.
    Figure Legend Snippet: Digital DNA–DNA hybridization (dDDH) for species determination of Enterobacter sp. HSTU-ASh6 depends on whole genome sequences.

    Techniques Used: DNA-DNA Hybridization

    e asburiae strain jcm6051  (ATCC)


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    ATCC e asburiae strain jcm6051
    E Asburiae Strain Jcm6051, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    e asburiae strain jcm6051  (ATCC)


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    ATCC e asburiae strain jcm6051
    E Asburiae Strain Jcm6051, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    e asburiae a  (ATCC)


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    ATCC e asburiae a
    E Asburiae A, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    e asburiae strain atcc 35953  (ATCC)


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    ATCC e asburiae strain atcc 35953
    E Asburiae Strain Atcc 35953, supplied by ATCC, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    ATCC e asburiae atcc 35953
    Digital DNA–DNA hybridization (dDDH) for species determination of Enterobacter sp. HSTU-ASh6 depends on whole genome sequences.
    E Asburiae Atcc 35953, supplied by ATCC, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/e asburiae atcc 35953/product/ATCC
    Average 93 stars, based on 1 article reviews
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    ATCC reference strain e asburiae atcc 35953
    Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.
    Reference Strain E Asburiae Atcc 35953, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    ATCC e asburiae strain jcm6051
    Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.
    E Asburiae Strain Jcm6051, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    ATCC e asburiae a
    Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.
    E Asburiae A, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    ATCC e asburiae strain atcc 35953
    Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.
    E Asburiae Strain Atcc 35953, supplied by ATCC, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Digital DNA–DNA hybridization (dDDH) for species determination of Enterobacter sp. HSTU-ASh6 depends on whole genome sequences.

    Journal: Frontiers in Microbiology

    Article Title: Unveiling chlorpyrifos mineralizing and tomato plant-growth activities of Enterobacter sp. strain HSTU-ASh6 using biochemical tests, field experiments, genomics, and in silico analyses

    doi: 10.3389/fmicb.2022.1060554

    Figure Lengend Snippet: Digital DNA–DNA hybridization (dDDH) for species determination of Enterobacter sp. HSTU-ASh6 depends on whole genome sequences.

    Article Snippet: The genome of Enterobacter sp. HSTU-ASh6 was further compared with four recently published nearest homologs, viz., E. cloacae A1137 (NZ_CP021851), E. sichuanensis SGAir0282 (NZ_CP027986), E. roggenkampii Ecl 20 981 (CP048650), and E. asburiae ATCC 35953 (CP011863), by multiple genomic analysis using the progressive Mauve software .

    Techniques: DNA-DNA Hybridization

    Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.

    Journal: Computational and Structural Biotechnology Journal

    Article Title: Molecular epidemiology and genomic characterization of a plasmid-mediated mcr-10 and bla NDM-1 co-harboring multidrug-resistant Enterobacter asburiae

    doi: 10.1016/j.csbj.2023.08.004

    Figure Lengend Snippet: Mass spectra of lipid A in colistin-susceptible and colistin-resistant E. asburiae strains. (A) MS analysis of the colistin-susceptible strain ATCC 35953. Peaks at m/z 1797, m/z 1825 represent the base lipid A structure along with a two-carbon reduction of an acyl chain and the base lipid A structure, respectively. (B) MS analysis of the colistin-resistant strain 5549. Mass shift, m/z 1825–2063 ( ∆ m/z 238) represents the addition of palmitate to lipid A. (C) Lipid A chemical structure for base peak in Enterobacter spp. (D) Palmitoylation of the C-1acyl-oxo-acyl chain in the chemical structure of lipid A.

    Article Snippet: The relative expression levels in comparison with the reference strain E. asburiae ATCC 35953 were calculated by the 2 − ∆ ∆ CT method.

    Techniques: