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Difco complex nutrient broth medium
<t>Rhamnolipid</t> production of B. glumae strains in minimal vs. complex media. (A) While the wild-type strain produces rhamnolipids during culture in MSMG medium, the tofI – mutant is not capable of producing rhamnolipids. The wild-type production level is restored upon exogenous addition of 8 μM C 8 -HSL to tofI – mutant culture medium. (B) In contrast, in NBG medium the tofI – mutant is capable of producing rhamnolipids at wild-type levels. The error bars indicate the standard deviation of the mean for three independent cultures. Insert graphs show the growth data plotted against time for the all the strains.
Complex Nutrient Broth Medium, supplied by Difco, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/complex nutrient broth medium/product/Difco
Average 90 stars, based on 1 article reviews
complex nutrient broth medium - by Bioz Stars, 2026-04
90/100 stars

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1) Product Images from "Adaptive Significance of Quorum Sensing-Dependent Regulation of Rhamnolipids by Integration of Growth Rate in Burkholderia glumae : A Trade-Off between Survival and Efficiency"

Article Title: Adaptive Significance of Quorum Sensing-Dependent Regulation of Rhamnolipids by Integration of Growth Rate in Burkholderia glumae : A Trade-Off between Survival and Efficiency

Journal: Frontiers in Microbiology

doi: 10.3389/fmicb.2016.01215

Rhamnolipid production of B. glumae strains in minimal vs. complex media. (A) While the wild-type strain produces rhamnolipids during culture in MSMG medium, the tofI – mutant is not capable of producing rhamnolipids. The wild-type production level is restored upon exogenous addition of 8 μM C 8 -HSL to tofI – mutant culture medium. (B) In contrast, in NBG medium the tofI – mutant is capable of producing rhamnolipids at wild-type levels. The error bars indicate the standard deviation of the mean for three independent cultures. Insert graphs show the growth data plotted against time for the all the strains.
Figure Legend Snippet: Rhamnolipid production of B. glumae strains in minimal vs. complex media. (A) While the wild-type strain produces rhamnolipids during culture in MSMG medium, the tofI – mutant is not capable of producing rhamnolipids. The wild-type production level is restored upon exogenous addition of 8 μM C 8 -HSL to tofI – mutant culture medium. (B) In contrast, in NBG medium the tofI – mutant is capable of producing rhamnolipids at wild-type levels. The error bars indicate the standard deviation of the mean for three independent cultures. Insert graphs show the growth data plotted against time for the all the strains.

Techniques Used: Mutagenesis, Standard Deviation



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<t>Rhamnolipid</t> production of B. glumae strains in minimal vs. complex media. (A) While the wild-type strain produces rhamnolipids during culture in MSMG medium, the tofI – mutant is not capable of producing rhamnolipids. The wild-type production level is restored upon exogenous addition of 8 μM C 8 -HSL to tofI – mutant culture medium. (B) In contrast, in NBG medium the tofI – mutant is capable of producing rhamnolipids at wild-type levels. The error bars indicate the standard deviation of the mean for three independent cultures. Insert graphs show the growth data plotted against time for the all the strains.
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<t>Rhamnolipid</t> production of B. glumae strains in minimal vs. complex media. (A) While the wild-type strain produces rhamnolipids during culture in MSMG medium, the tofI – mutant is not capable of producing rhamnolipids. The wild-type production level is restored upon exogenous addition of 8 μM C 8 -HSL to tofI – mutant culture medium. (B) In contrast, in NBG medium the tofI – mutant is capable of producing rhamnolipids at wild-type levels. The error bars indicate the standard deviation of the mean for three independent cultures. Insert graphs show the growth data plotted against time for the all the strains.
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<t>Rhamnolipid</t> production of B. glumae strains in minimal vs. complex media. (A) While the wild-type strain produces rhamnolipids during culture in MSMG medium, the tofI – mutant is not capable of producing rhamnolipids. The wild-type production level is restored upon exogenous addition of 8 μM C 8 -HSL to tofI – mutant culture medium. (B) In contrast, in NBG medium the tofI – mutant is capable of producing rhamnolipids at wild-type levels. The error bars indicate the standard deviation of the mean for three independent cultures. Insert graphs show the growth data plotted against time for the all the strains.
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Image Search Results


Rhamnolipid production of B. glumae strains in minimal vs. complex media. (A) While the wild-type strain produces rhamnolipids during culture in MSMG medium, the tofI – mutant is not capable of producing rhamnolipids. The wild-type production level is restored upon exogenous addition of 8 μM C 8 -HSL to tofI – mutant culture medium. (B) In contrast, in NBG medium the tofI – mutant is capable of producing rhamnolipids at wild-type levels. The error bars indicate the standard deviation of the mean for three independent cultures. Insert graphs show the growth data plotted against time for the all the strains.

Journal: Frontiers in Microbiology

Article Title: Adaptive Significance of Quorum Sensing-Dependent Regulation of Rhamnolipids by Integration of Growth Rate in Burkholderia glumae : A Trade-Off between Survival and Efficiency

doi: 10.3389/fmicb.2016.01215

Figure Lengend Snippet: Rhamnolipid production of B. glumae strains in minimal vs. complex media. (A) While the wild-type strain produces rhamnolipids during culture in MSMG medium, the tofI – mutant is not capable of producing rhamnolipids. The wild-type production level is restored upon exogenous addition of 8 μM C 8 -HSL to tofI – mutant culture medium. (B) In contrast, in NBG medium the tofI – mutant is capable of producing rhamnolipids at wild-type levels. The error bars indicate the standard deviation of the mean for three independent cultures. Insert graphs show the growth data plotted against time for the all the strains.

Article Snippet: For rhamnolipid production, complex nutrient broth (NB) medium (BD Difco, Mississauga, ON, Canada) supplemented with 4% (w/v) glycerol or mineral salt medium supplemented with 2% (w/v) glycerol and 0.1 M urea was used.

Techniques: Mutagenesis, Standard Deviation