29906 swarm colonies  (ATCC)


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    ATCC 29906 swarm colonies
    Swarming zones of the <t>P.</t> <t>mirabilis</t> measured over time. The error values equal the standard deviations. Statistical significance is indicated as * ( p -value ≤ 0.05), ** ( p -value ≤ 0.01), *** ( p -value ≤ 0.001), and ns means not significant ( p -value > 0.05). Panels A show images of the elongated P. mirabilis rods produced by phase-contrast microscopy (magnification = 600×, scale bar = 5 µm). Panels B show a characteristic swarming pattern, formed by Proteus sp. The ATCC <t>29906</t> (1) and 1984 (2) strains are presented in both panels.
    29906 Swarm Colonies, 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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    Images

    1) Product Images from "Adjustment in the Composition and Organization of Proteus mirabilis Lipids during the Swarming Process"

    Article Title: Adjustment in the Composition and Organization of Proteus mirabilis Lipids during the Swarming Process

    Journal: International Journal of Molecular Sciences

    doi: 10.3390/ijms242216461

    Swarming zones of the P. mirabilis measured over time. The error values equal the standard deviations. Statistical significance is indicated as * ( p -value ≤ 0.05), ** ( p -value ≤ 0.01), *** ( p -value ≤ 0.001), and ns means not significant ( p -value > 0.05). Panels A show images of the elongated P. mirabilis rods produced by phase-contrast microscopy (magnification = 600×, scale bar = 5 µm). Panels B show a characteristic swarming pattern, formed by Proteus sp. The ATCC 29906 (1) and 1984 (2) strains are presented in both panels.
    Figure Legend Snippet: Swarming zones of the P. mirabilis measured over time. The error values equal the standard deviations. Statistical significance is indicated as * ( p -value ≤ 0.05), ** ( p -value ≤ 0.01), *** ( p -value ≤ 0.001), and ns means not significant ( p -value > 0.05). Panels A show images of the elongated P. mirabilis rods produced by phase-contrast microscopy (magnification = 600×, scale bar = 5 µm). Panels B show a characteristic swarming pattern, formed by Proteus sp. The ATCC 29906 (1) and 1984 (2) strains are presented in both panels.

    Techniques Used: Produced, Microscopy

    The time-dependent spreading of the ATCC 29906 (1) and 1984 (2) swarmer cells across an agar surface presented by a sequence of phase-contrast microscope images. Swarm fronts are shown in A panels (magnification = 40×; scale bar = 20 µm). Course of the edge of the swarm colony over a four-minute is shown in B panels (magnification = 200×; scale bar = 20 µm).
    Figure Legend Snippet: The time-dependent spreading of the ATCC 29906 (1) and 1984 (2) swarmer cells across an agar surface presented by a sequence of phase-contrast microscope images. Swarm fronts are shown in A panels (magnification = 40×; scale bar = 20 µm). Course of the edge of the swarm colony over a four-minute is shown in B panels (magnification = 200×; scale bar = 20 µm).

    Techniques Used: Sequencing, Microscopy

    Relative abundances (%) of phospholipids isolated from the swarmer and non-swarmer cells of the P.  mirabilis  strains.
    Figure Legend Snippet: Relative abundances (%) of phospholipids isolated from the swarmer and non-swarmer cells of the P. mirabilis strains.

    Techniques Used: Isolation

    Relative abundances (%) of fatty acids determined in the swarmer and non-swarmer cells of the P.  mirabilis  strains.
    Figure Legend Snippet: Relative abundances (%) of fatty acids determined in the swarmer and non-swarmer cells of the P. mirabilis strains.

    Techniques Used:

    Ability to form ordered-state bilayers by the P. mirabilis lipids, as assayed by the Förster resonance energy transfer technique. The values of fractions of energy transfer are located at the bottom of the bars. The error bars equal the standard deviations. Statistical significance is indicated as *** ( p -value ≤ 0.001). The confocal microscopy images present short- ( A ) and long-form cells ( B ) of the ATCC 29906 (1) and 1984 (2) strains stained with a membrane probe Rhod PE (magnification = 1000×; scale bar = 5 µm). Red arrows indicate morphologically differentiated bacterial rods of P. mirabilis labeled with the fluorescent probe.
    Figure Legend Snippet: Ability to form ordered-state bilayers by the P. mirabilis lipids, as assayed by the Förster resonance energy transfer technique. The values of fractions of energy transfer are located at the bottom of the bars. The error bars equal the standard deviations. Statistical significance is indicated as *** ( p -value ≤ 0.001). The confocal microscopy images present short- ( A ) and long-form cells ( B ) of the ATCC 29906 (1) and 1984 (2) strains stained with a membrane probe Rhod PE (magnification = 1000×; scale bar = 5 µm). Red arrows indicate morphologically differentiated bacterial rods of P. mirabilis labeled with the fluorescent probe.

    Techniques Used: Förster Resonance Energy Transfer, Confocal Microscopy, Staining, Membrane, Labeling

    p mirabilis 1984  (ATCC)


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    ATCC p mirabilis 1984
    Relative abundances (%) of phospholipids isolated from the swarmer and non-swarmer cells of the <t> P. mirabilis </t> strains.
    P Mirabilis 1984, 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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    Images

    1) Product Images from "Adjustment in the Composition and Organization of Proteus mirabilis Lipids during the Swarming Process"

    Article Title: Adjustment in the Composition and Organization of Proteus mirabilis Lipids during the Swarming Process

    Journal: International Journal of Molecular Sciences

    doi: 10.3390/ijms242216461

    Relative abundances (%) of phospholipids isolated from the swarmer and non-swarmer cells of the  P. mirabilis  strains.
    Figure Legend Snippet: Relative abundances (%) of phospholipids isolated from the swarmer and non-swarmer cells of the P. mirabilis strains.

    Techniques Used: Isolation

    Relative abundances (%) of fatty acids determined in the swarmer and non-swarmer cells of the  P. mirabilis  strains.
    Figure Legend Snippet: Relative abundances (%) of fatty acids determined in the swarmer and non-swarmer cells of the P. mirabilis strains.

    Techniques Used:

    h 1  (ATCC)


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    ATCC h 1
    H 1, 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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    h 1 - by Bioz Stars, 2023-12
    86/100 stars

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    1984 short form rods  (ATCC)


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    ATCC 1984 short form rods
    Swarming zones of the P. mirabilis measured over time. The error values equal the standard deviations. Statistical significance is indicated as * ( p -value ≤ 0.05), ** ( p -value ≤ 0.01), *** ( p -value ≤ 0.001), and ns means not significant ( p -value > 0.05). Panels A show images of the elongated P. mirabilis rods produced by phase-contrast microscopy (magnification = 600×, scale bar = 5 µm). Panels B show a characteristic swarming pattern, formed by Proteus sp. <t>The</t> <t>ATCC</t> 29906 (1) and <t>1984</t> (2) strains are presented in both panels.
    1984 Short Form Rods, 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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    Images

    1) Product Images from "Adjustment in the Composition and Organization of Proteus mirabilis Lipids during the Swarming Process"

    Article Title: Adjustment in the Composition and Organization of Proteus mirabilis Lipids during the Swarming Process

    Journal: International Journal of Molecular Sciences

    doi: 10.3390/ijms242216461

    Swarming zones of the P. mirabilis measured over time. The error values equal the standard deviations. Statistical significance is indicated as * ( p -value ≤ 0.05), ** ( p -value ≤ 0.01), *** ( p -value ≤ 0.001), and ns means not significant ( p -value > 0.05). Panels A show images of the elongated P. mirabilis rods produced by phase-contrast microscopy (magnification = 600×, scale bar = 5 µm). Panels B show a characteristic swarming pattern, formed by Proteus sp. The ATCC 29906 (1) and 1984 (2) strains are presented in both panels.
    Figure Legend Snippet: Swarming zones of the P. mirabilis measured over time. The error values equal the standard deviations. Statistical significance is indicated as * ( p -value ≤ 0.05), ** ( p -value ≤ 0.01), *** ( p -value ≤ 0.001), and ns means not significant ( p -value > 0.05). Panels A show images of the elongated P. mirabilis rods produced by phase-contrast microscopy (magnification = 600×, scale bar = 5 µm). Panels B show a characteristic swarming pattern, formed by Proteus sp. The ATCC 29906 (1) and 1984 (2) strains are presented in both panels.

    Techniques Used: Produced, Microscopy

    The time-dependent spreading of the ATCC 29906 (1) and 1984 (2) swarmer cells across an agar surface presented by a sequence of phase-contrast microscope images. Swarm fronts are shown in A panels (magnification = 40×; scale bar = 20 µm). Course of the edge of the swarm colony over a four-minute is shown in B panels (magnification = 200×; scale bar = 20 µm).
    Figure Legend Snippet: The time-dependent spreading of the ATCC 29906 (1) and 1984 (2) swarmer cells across an agar surface presented by a sequence of phase-contrast microscope images. Swarm fronts are shown in A panels (magnification = 40×; scale bar = 20 µm). Course of the edge of the swarm colony over a four-minute is shown in B panels (magnification = 200×; scale bar = 20 µm).

    Techniques Used: Sequencing, Microscopy

    Ability to form ordered-state bilayers by the P. mirabilis lipids, as assayed by the Förster resonance energy transfer technique. The values of fractions of energy transfer are located at the bottom of the bars. The error bars equal the standard deviations. Statistical significance is indicated as *** ( p -value ≤ 0.001). The confocal microscopy images present short- ( A ) and long-form cells ( B ) of the ATCC 29906 (1) and 1984 (2) strains stained with a membrane probe Rhod PE (magnification = 1000×; scale bar = 5 µm). Red arrows indicate morphologically differentiated bacterial rods of P. mirabilis labeled with the fluorescent probe.
    Figure Legend Snippet: Ability to form ordered-state bilayers by the P. mirabilis lipids, as assayed by the Förster resonance energy transfer technique. The values of fractions of energy transfer are located at the bottom of the bars. The error bars equal the standard deviations. Statistical significance is indicated as *** ( p -value ≤ 0.001). The confocal microscopy images present short- ( A ) and long-form cells ( B ) of the ATCC 29906 (1) and 1984 (2) strains stained with a membrane probe Rhod PE (magnification = 1000×; scale bar = 5 µm). Red arrows indicate morphologically differentiated bacterial rods of P. mirabilis labeled with the fluorescent probe.

    Techniques Used: Förster Resonance Energy Transfer, Confocal Microscopy, Staining, Membrane, Labeling

    1984 rods  (ATCC)


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    ATCC 1984 rods
    Swarming zones of the P. mirabilis measured over time. The error values equal the standard deviations. Statistical significance is indicated as * ( p -value ≤ 0.05), ** ( p -value ≤ 0.01), *** ( p -value ≤ 0.001), and ns means not significant ( p -value > 0.05). Panels A show images of the elongated P. mirabilis rods produced by phase-contrast microscopy (magnification = 600×, scale bar = 5 µm). Panels B show a characteristic swarming pattern, formed by Proteus sp. <t>The</t> <t>ATCC</t> 29906 (1) and <t>1984</t> (2) strains are presented in both panels.
    1984 Rods, 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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    Images

    1) Product Images from "Adjustment in the Composition and Organization of Proteus mirabilis Lipids during the Swarming Process"

    Article Title: Adjustment in the Composition and Organization of Proteus mirabilis Lipids during the Swarming Process

    Journal: International Journal of Molecular Sciences

    doi: 10.3390/ijms242216461

    Swarming zones of the P. mirabilis measured over time. The error values equal the standard deviations. Statistical significance is indicated as * ( p -value ≤ 0.05), ** ( p -value ≤ 0.01), *** ( p -value ≤ 0.001), and ns means not significant ( p -value > 0.05). Panels A show images of the elongated P. mirabilis rods produced by phase-contrast microscopy (magnification = 600×, scale bar = 5 µm). Panels B show a characteristic swarming pattern, formed by Proteus sp. The ATCC 29906 (1) and 1984 (2) strains are presented in both panels.
    Figure Legend Snippet: Swarming zones of the P. mirabilis measured over time. The error values equal the standard deviations. Statistical significance is indicated as * ( p -value ≤ 0.05), ** ( p -value ≤ 0.01), *** ( p -value ≤ 0.001), and ns means not significant ( p -value > 0.05). Panels A show images of the elongated P. mirabilis rods produced by phase-contrast microscopy (magnification = 600×, scale bar = 5 µm). Panels B show a characteristic swarming pattern, formed by Proteus sp. The ATCC 29906 (1) and 1984 (2) strains are presented in both panels.

    Techniques Used: Produced, Microscopy

    The time-dependent spreading of the ATCC 29906 (1) and 1984 (2) swarmer cells across an agar surface presented by a sequence of phase-contrast microscope images. Swarm fronts are shown in A panels (magnification = 40×; scale bar = 20 µm). Course of the edge of the swarm colony over a four-minute is shown in B panels (magnification = 200×; scale bar = 20 µm).
    Figure Legend Snippet: The time-dependent spreading of the ATCC 29906 (1) and 1984 (2) swarmer cells across an agar surface presented by a sequence of phase-contrast microscope images. Swarm fronts are shown in A panels (magnification = 40×; scale bar = 20 µm). Course of the edge of the swarm colony over a four-minute is shown in B panels (magnification = 200×; scale bar = 20 µm).

    Techniques Used: Sequencing, Microscopy

    Ability to form ordered-state bilayers by the P. mirabilis lipids, as assayed by the Förster resonance energy transfer technique. The values of fractions of energy transfer are located at the bottom of the bars. The error bars equal the standard deviations. Statistical significance is indicated as *** ( p -value ≤ 0.001). The confocal microscopy images present short- ( A ) and long-form cells ( B ) of the ATCC 29906 (1) and 1984 (2) strains stained with a membrane probe Rhod PE (magnification = 1000×; scale bar = 5 µm). Red arrows indicate morphologically differentiated bacterial rods of P. mirabilis labeled with the fluorescent probe.
    Figure Legend Snippet: Ability to form ordered-state bilayers by the P. mirabilis lipids, as assayed by the Förster resonance energy transfer technique. The values of fractions of energy transfer are located at the bottom of the bars. The error bars equal the standard deviations. Statistical significance is indicated as *** ( p -value ≤ 0.001). The confocal microscopy images present short- ( A ) and long-form cells ( B ) of the ATCC 29906 (1) and 1984 (2) strains stained with a membrane probe Rhod PE (magnification = 1000×; scale bar = 5 µm). Red arrows indicate morphologically differentiated bacterial rods of P. mirabilis labeled with the fluorescent probe.

    Techniques Used: Förster Resonance Energy Transfer, Confocal Microscopy, Staining, Membrane, Labeling

    p mirabilis 1984  (ATCC)


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    ATCC p mirabilis 1984
    Relative abundances (%) of phospholipids isolated from the swarmer and non-swarmer cells of the <t> P. mirabilis </t> strains.
    P Mirabilis 1984, 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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    p mirabilis 1984 - by Bioz Stars, 2023-12
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    Images

    1) Product Images from "Adjustment in the Composition and Organization of Proteus mirabilis Lipids during the Swarming Process"

    Article Title: Adjustment in the Composition and Organization of Proteus mirabilis Lipids during the Swarming Process

    Journal: International Journal of Molecular Sciences

    doi: 10.3390/ijms242216461

    Relative abundances (%) of phospholipids isolated from the swarmer and non-swarmer cells of the  P. mirabilis  strains.
    Figure Legend Snippet: Relative abundances (%) of phospholipids isolated from the swarmer and non-swarmer cells of the P. mirabilis strains.

    Techniques Used: Isolation

    Relative abundances (%) of fatty acids determined in the swarmer and non-swarmer cells of the  P. mirabilis  strains.
    Figure Legend Snippet: Relative abundances (%) of fatty acids determined in the swarmer and non-swarmer cells of the P. mirabilis strains.

    Techniques Used:

    29906 strains  (ATCC)


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    ATCC 29906 strains
    Swarming zones of the P. mirabilis measured over time. The error values equal the standard deviations. Statistical significance is indicated as * ( p -value ≤ 0.05), ** ( p -value ≤ 0.01), *** ( p -value ≤ 0.001), and ns means not significant ( p -value > 0.05). Panels A show images of the elongated P. mirabilis rods produced by phase-contrast microscopy (magnification = 600×, scale bar = 5 µm). Panels B show a characteristic swarming pattern, formed by Proteus sp. The ATCC <t>29906</t> (1) <t>and</t> <t>1984</t> (2) strains are presented in both panels.
    29906 Strains, 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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    Images

    1) Product Images from "Adjustment in the Composition and Organization of Proteus mirabilis Lipids during the Swarming Process"

    Article Title: Adjustment in the Composition and Organization of Proteus mirabilis Lipids during the Swarming Process

    Journal: International Journal of Molecular Sciences

    doi: 10.3390/ijms242216461

    Swarming zones of the P. mirabilis measured over time. The error values equal the standard deviations. Statistical significance is indicated as * ( p -value ≤ 0.05), ** ( p -value ≤ 0.01), *** ( p -value ≤ 0.001), and ns means not significant ( p -value > 0.05). Panels A show images of the elongated P. mirabilis rods produced by phase-contrast microscopy (magnification = 600×, scale bar = 5 µm). Panels B show a characteristic swarming pattern, formed by Proteus sp. The ATCC 29906 (1) and 1984 (2) strains are presented in both panels.
    Figure Legend Snippet: Swarming zones of the P. mirabilis measured over time. The error values equal the standard deviations. Statistical significance is indicated as * ( p -value ≤ 0.05), ** ( p -value ≤ 0.01), *** ( p -value ≤ 0.001), and ns means not significant ( p -value > 0.05). Panels A show images of the elongated P. mirabilis rods produced by phase-contrast microscopy (magnification = 600×, scale bar = 5 µm). Panels B show a characteristic swarming pattern, formed by Proteus sp. The ATCC 29906 (1) and 1984 (2) strains are presented in both panels.

    Techniques Used: Produced, Microscopy

    The time-dependent spreading of the ATCC 29906 (1) and 1984 (2) swarmer cells across an agar surface presented by a sequence of phase-contrast microscope images. Swarm fronts are shown in A panels (magnification = 40×; scale bar = 20 µm). Course of the edge of the swarm colony over a four-minute is shown in B panels (magnification = 200×; scale bar = 20 µm).
    Figure Legend Snippet: The time-dependent spreading of the ATCC 29906 (1) and 1984 (2) swarmer cells across an agar surface presented by a sequence of phase-contrast microscope images. Swarm fronts are shown in A panels (magnification = 40×; scale bar = 20 µm). Course of the edge of the swarm colony over a four-minute is shown in B panels (magnification = 200×; scale bar = 20 µm).

    Techniques Used: Sequencing, Microscopy

    Ability to form ordered-state bilayers by the P. mirabilis lipids, as assayed by the Förster resonance energy transfer technique. The values of fractions of energy transfer are located at the bottom of the bars. The error bars equal the standard deviations. Statistical significance is indicated as *** ( p -value ≤ 0.001). The confocal microscopy images present short- ( A ) and long-form cells ( B ) of the ATCC 29906 (1) and 1984 (2) strains stained with a membrane probe Rhod PE (magnification = 1000×; scale bar = 5 µm). Red arrows indicate morphologically differentiated bacterial rods of P. mirabilis labeled with the fluorescent probe.
    Figure Legend Snippet: Ability to form ordered-state bilayers by the P. mirabilis lipids, as assayed by the Förster resonance energy transfer technique. The values of fractions of energy transfer are located at the bottom of the bars. The error bars equal the standard deviations. Statistical significance is indicated as *** ( p -value ≤ 0.001). The confocal microscopy images present short- ( A ) and long-form cells ( B ) of the ATCC 29906 (1) and 1984 (2) strains stained with a membrane probe Rhod PE (magnification = 1000×; scale bar = 5 µm). Red arrows indicate morphologically differentiated bacterial rods of P. mirabilis labeled with the fluorescent probe.

    Techniques Used: Förster Resonance Energy Transfer, Confocal Microscopy, Staining, Membrane, Labeling

    appearance edge  (ATCC)


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    ATCC appearance edge
    Appearance Edge, 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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    bacillus subtilis py79 strain  (ATCC)


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    ATCC bacillus subtilis py79 strain
    Bacillus Subtilis Py79 Strain, 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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    paenibacillus azotofixans  (ATCC)


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    ATCC paenibacillus azotofixans
    Paenibacillus Azotofixans, 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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