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mops minimal medium  (Teknova)


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    Structured Review

    Teknova mops minimal medium
    Growth analyses of <t>C.</t> <t>japonicus</t> strains grown in <t>MOPS</t> defined media supplemented with 0.5% (w/v) of (A) mannobiose, (B) mannotriose, (C) mannosyl‐glucose, (D) cellobiose, (E) glucomannan, (F) carob galactomannan, (G) guar galactomannan, or (H) linear mannan. Notably, panels A—D were grown on a separate microplate from panels E—F and are shown together for ease of visualization. Growth analyses were conducted using an EPOCH2 microplate reader (Biotek) in biological triplicate for 48 h. Error bars depict standard deviation but are too small to be observed in some graphs. Complete growth statistics are available in Table .
    Mops Minimal Medium, supplied by Teknova, used in various techniques. Bioz Stars score: 95/100, based on 48 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/mops minimal medium/product/Teknova
    Average 95 stars, based on 48 article reviews
    mops minimal medium - by Bioz Stars, 2026-03
    95/100 stars

    Images

    1) Product Images from "Late Stage Mannan Metabolism in Cellvibrio japonicus Requires the Combined Action of a Mannosyl‐Glucose Phosphorylase and a Mannobiose Epimerase"

    Article Title: Late Stage Mannan Metabolism in Cellvibrio japonicus Requires the Combined Action of a Mannosyl‐Glucose Phosphorylase and a Mannobiose Epimerase

    Journal: Molecular Microbiology

    doi: 10.1111/mmi.70043

    Growth analyses of C. japonicus strains grown in MOPS defined media supplemented with 0.5% (w/v) of (A) mannobiose, (B) mannotriose, (C) mannosyl‐glucose, (D) cellobiose, (E) glucomannan, (F) carob galactomannan, (G) guar galactomannan, or (H) linear mannan. Notably, panels A—D were grown on a separate microplate from panels E—F and are shown together for ease of visualization. Growth analyses were conducted using an EPOCH2 microplate reader (Biotek) in biological triplicate for 48 h. Error bars depict standard deviation but are too small to be observed in some graphs. Complete growth statistics are available in Table .
    Figure Legend Snippet: Growth analyses of C. japonicus strains grown in MOPS defined media supplemented with 0.5% (w/v) of (A) mannobiose, (B) mannotriose, (C) mannosyl‐glucose, (D) cellobiose, (E) glucomannan, (F) carob galactomannan, (G) guar galactomannan, or (H) linear mannan. Notably, panels A—D were grown on a separate microplate from panels E—F and are shown together for ease of visualization. Growth analyses were conducted using an EPOCH2 microplate reader (Biotek) in biological triplicate for 48 h. Error bars depict standard deviation but are too small to be observed in some graphs. Complete growth statistics are available in Table .

    Techniques Used: Standard Deviation

    Growth analyses of C. japonicus single gene deletions, intermediate strains, and double ectopic complementation strains grown in MOPS defined media supplemented with 0.5% (w/v) of either (A) mannobiose, (B) mannotriose, (C) glucomannan, (D) carob galactomannan, (E) guar galactomannan, or (F) linear mannan. Panels A, B, and F were grown on a separate microplate from Panels C, D, and E, and are shown here together for ease of visualization. Growth analyses were conducted using an EPOCH2 microplate reader (Biotek) in biological triplicate for 48 h. Error bars depict standard deviation but are too small to be observed in many of the graphs. Complete growth statistics are available in Table .
    Figure Legend Snippet: Growth analyses of C. japonicus single gene deletions, intermediate strains, and double ectopic complementation strains grown in MOPS defined media supplemented with 0.5% (w/v) of either (A) mannobiose, (B) mannotriose, (C) glucomannan, (D) carob galactomannan, (E) guar galactomannan, or (F) linear mannan. Panels A, B, and F were grown on a separate microplate from Panels C, D, and E, and are shown here together for ease of visualization. Growth analyses were conducted using an EPOCH2 microplate reader (Biotek) in biological triplicate for 48 h. Error bars depict standard deviation but are too small to be observed in many of the graphs. Complete growth statistics are available in Table .

    Techniques Used: Standard Deviation

    Growth analyses of C. japonicus pJKN5 complement strains grown in MOPS defined media supplemented with 0.5% (w/v) of either (A) mannobiose, (B) mannotriose, (C) glucomannan, (D) carob galactomannan, (E) guar galactomannan, or (F) linear mannan. Notably, panels A, B, and F were grown on a separate microplate from panels C, D, and E and are shown together for ease of visualization. Growth analyses were conducted in an EPOCH2 microplate reader (Biotek) in biological triplicate for 48 h. Error bars depict standard deviation and complete growth statistics are available in Table .
    Figure Legend Snippet: Growth analyses of C. japonicus pJKN5 complement strains grown in MOPS defined media supplemented with 0.5% (w/v) of either (A) mannobiose, (B) mannotriose, (C) glucomannan, (D) carob galactomannan, (E) guar galactomannan, or (F) linear mannan. Notably, panels A, B, and F were grown on a separate microplate from panels C, D, and E and are shown together for ease of visualization. Growth analyses were conducted in an EPOCH2 microplate reader (Biotek) in biological triplicate for 48 h. Error bars depict standard deviation and complete growth statistics are available in Table .

    Techniques Used: Standard Deviation



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    Growth analyses of <t>C.</t> <t>japonicus</t> strains grown in <t>MOPS</t> defined media supplemented with 0.5% (w/v) of (A) mannobiose, (B) mannotriose, (C) mannosyl‐glucose, (D) cellobiose, (E) glucomannan, (F) carob galactomannan, (G) guar galactomannan, or (H) linear mannan. Notably, panels A—D were grown on a separate microplate from panels E—F and are shown together for ease of visualization. Growth analyses were conducted using an EPOCH2 microplate reader (Biotek) in biological triplicate for 48 h. Error bars depict standard deviation but are too small to be observed in some graphs. Complete growth statistics are available in Table .
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    Growth analyses of <t>C.</t> <t>japonicus</t> strains grown in <t>MOPS</t> defined media supplemented with 0.5% (w/v) of (A) mannobiose, (B) mannotriose, (C) mannosyl‐glucose, (D) cellobiose, (E) glucomannan, (F) carob galactomannan, (G) guar galactomannan, or (H) linear mannan. Notably, panels A—D were grown on a separate microplate from panels E—F and are shown together for ease of visualization. Growth analyses were conducted using an EPOCH2 microplate reader (Biotek) in biological triplicate for 48 h. Error bars depict standard deviation but are too small to be observed in some graphs. Complete growth statistics are available in Table .
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    Image Search Results


    Growth analyses of C. japonicus strains grown in MOPS defined media supplemented with 0.5% (w/v) of (A) mannobiose, (B) mannotriose, (C) mannosyl‐glucose, (D) cellobiose, (E) glucomannan, (F) carob galactomannan, (G) guar galactomannan, or (H) linear mannan. Notably, panels A—D were grown on a separate microplate from panels E—F and are shown together for ease of visualization. Growth analyses were conducted using an EPOCH2 microplate reader (Biotek) in biological triplicate for 48 h. Error bars depict standard deviation but are too small to be observed in some graphs. Complete growth statistics are available in Table .

    Journal: Molecular Microbiology

    Article Title: Late Stage Mannan Metabolism in Cellvibrio japonicus Requires the Combined Action of a Mannosyl‐Glucose Phosphorylase and a Mannobiose Epimerase

    doi: 10.1111/mmi.70043

    Figure Lengend Snippet: Growth analyses of C. japonicus strains grown in MOPS defined media supplemented with 0.5% (w/v) of (A) mannobiose, (B) mannotriose, (C) mannosyl‐glucose, (D) cellobiose, (E) glucomannan, (F) carob galactomannan, (G) guar galactomannan, or (H) linear mannan. Notably, panels A—D were grown on a separate microplate from panels E—F and are shown together for ease of visualization. Growth analyses were conducted using an EPOCH2 microplate reader (Biotek) in biological triplicate for 48 h. Error bars depict standard deviation but are too small to be observed in some graphs. Complete growth statistics are available in Table .

    Article Snippet: C. japonicus strains were cultured in MOPS minimal medium from TekNova (cat. no. M2106), supplemented with 1.32 mM phosphate and 0.2% (w/v) glucose.

    Techniques: Standard Deviation

    Growth analyses of C. japonicus single gene deletions, intermediate strains, and double ectopic complementation strains grown in MOPS defined media supplemented with 0.5% (w/v) of either (A) mannobiose, (B) mannotriose, (C) glucomannan, (D) carob galactomannan, (E) guar galactomannan, or (F) linear mannan. Panels A, B, and F were grown on a separate microplate from Panels C, D, and E, and are shown here together for ease of visualization. Growth analyses were conducted using an EPOCH2 microplate reader (Biotek) in biological triplicate for 48 h. Error bars depict standard deviation but are too small to be observed in many of the graphs. Complete growth statistics are available in Table .

    Journal: Molecular Microbiology

    Article Title: Late Stage Mannan Metabolism in Cellvibrio japonicus Requires the Combined Action of a Mannosyl‐Glucose Phosphorylase and a Mannobiose Epimerase

    doi: 10.1111/mmi.70043

    Figure Lengend Snippet: Growth analyses of C. japonicus single gene deletions, intermediate strains, and double ectopic complementation strains grown in MOPS defined media supplemented with 0.5% (w/v) of either (A) mannobiose, (B) mannotriose, (C) glucomannan, (D) carob galactomannan, (E) guar galactomannan, or (F) linear mannan. Panels A, B, and F were grown on a separate microplate from Panels C, D, and E, and are shown here together for ease of visualization. Growth analyses were conducted using an EPOCH2 microplate reader (Biotek) in biological triplicate for 48 h. Error bars depict standard deviation but are too small to be observed in many of the graphs. Complete growth statistics are available in Table .

    Article Snippet: C. japonicus strains were cultured in MOPS minimal medium from TekNova (cat. no. M2106), supplemented with 1.32 mM phosphate and 0.2% (w/v) glucose.

    Techniques: Standard Deviation

    Growth analyses of C. japonicus pJKN5 complement strains grown in MOPS defined media supplemented with 0.5% (w/v) of either (A) mannobiose, (B) mannotriose, (C) glucomannan, (D) carob galactomannan, (E) guar galactomannan, or (F) linear mannan. Notably, panels A, B, and F were grown on a separate microplate from panels C, D, and E and are shown together for ease of visualization. Growth analyses were conducted in an EPOCH2 microplate reader (Biotek) in biological triplicate for 48 h. Error bars depict standard deviation and complete growth statistics are available in Table .

    Journal: Molecular Microbiology

    Article Title: Late Stage Mannan Metabolism in Cellvibrio japonicus Requires the Combined Action of a Mannosyl‐Glucose Phosphorylase and a Mannobiose Epimerase

    doi: 10.1111/mmi.70043

    Figure Lengend Snippet: Growth analyses of C. japonicus pJKN5 complement strains grown in MOPS defined media supplemented with 0.5% (w/v) of either (A) mannobiose, (B) mannotriose, (C) glucomannan, (D) carob galactomannan, (E) guar galactomannan, or (F) linear mannan. Notably, panels A, B, and F were grown on a separate microplate from panels C, D, and E and are shown together for ease of visualization. Growth analyses were conducted in an EPOCH2 microplate reader (Biotek) in biological triplicate for 48 h. Error bars depict standard deviation and complete growth statistics are available in Table .

    Article Snippet: C. japonicus strains were cultured in MOPS minimal medium from TekNova (cat. no. M2106), supplemented with 1.32 mM phosphate and 0.2% (w/v) glucose.

    Techniques: Standard Deviation