staphylococcus saprophyticus  (ATCC)


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    ATCC staphylococcus saprophyticus
    Staphylococcus Saprophyticus, 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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    staphylococcus saprophyticus  (ATCC)


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    ATCC staphylococcus saprophyticus
    a The cartoon illustration shows the developmental progression of animals grown on different quality foods. The signal from low-quality food (HK- E. coli) activates animals to digest inedible food, <t>Staphylococcus</t> <t>saprophyticus</t> (SS), which potentially increases fitness in animals by enabling them to consume a wider range of foods in nature. b Developmental phenotype of N2 grown on the SS, HK- E. coli , and HK- E. coli + SS at 20°C for 7d. n = 221 for SS, n = 172 for HK- E. coli , n = 114 for HK- E. coli + SS. Statistical significance was calculated using multiple unpaired t -tests (two-tailed). Obtained p values were as follows: SS vs. HK- E. coli ; **** p < 0.0001. SS vs. HK- E. coli + SS; **** p < 0.0001. Scale bar, 500µm. c Developmental phenotype of N2 grown on the HK- E. coli ( ΔycbB or ΔygeR mutant) + SS or SS at 20°C for 5d post-L1 synchronization. n = 104 for SS, n = 102 for HK-K12 + SS, n = 84 for HK- ycbB + SS, n = 79 for HK- ygeR + SS. Statistical significance was calculated using multiple unpaired t -tests (two-tailed). Obtained p values were as follows: HK-K12 + SS vs. HK- ycbB + SS and HK- ygeR + SS; **** p < 0.0001, respectively. Scale bar, 500µm d Developmental progression of animals grown on SS+ enzyme-treated PGN at 7d at 20°C. Scale bar, 500µm. ly: lysozyme; pK: proteinaseK; NagZ, glucosaminidase; AmiD, amidase; n = 107 for SS, n = 98 for SS + PGN, n = 91 for SS + PGN-ly(lysozyme), n = 148 for SS + PGN-AmiD, n = 80 for SS + PGN-NagZ, n = 115 for SS + PGN-pk(proteaseK). Statistical significance was calculated using multiple unpaired t -tests (two-tailed). Obtained p values were as follows:SS vs. SS + PGN and SS + PGN-ly(lysozyme); **** p < 0.0001, respectively. e Microscope image and bar graph show the relative width of intestinal lumen in N2 animals fed SS or SS + PGN food. n = 13 for SS, n = 12 for SS + PGN. Statistical significance was calculated using multiple unpaired t -tests (two-tailed). Obtained p values were as follows: SS vs. SS + PGN; **** p < 0.0001. f Schematic representation of the peptidoglycan structure and cleavage points of enzymes by arrows. Red box indicates the structure for the digestion signal from PGN, which contains 5’NAG-NAM disaccharide muropeptides with an amino acid peptide attached to NAM. NagZ, glucosaminidase; AmiD, amidase; NAG, 3N’-acetylglucosamine; NAM, 5N’-acetylmuramic acid. The developmental progression of animals is scored by relative worm body length. For all panels, n = number of animals which were scored from at least three independent experiments. Data are represented as mean ± SD. **** p < 0.0001, *** P < 0.001, ** P < 0.01, * P < 0.05, ns: no significant difference. Source data are provided as a Source Data file.
    Staphylococcus Saprophyticus, 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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    1) Product Images from "Bacterial peptidoglycan acts as a digestive signal mediating host adaptation to diverse food resources in C. elegans"

    Article Title: Bacterial peptidoglycan acts as a digestive signal mediating host adaptation to diverse food resources in C. elegans

    Journal: Nature Communications

    doi: 10.1038/s41467-024-47530-y

    a The cartoon illustration shows the developmental progression of animals grown on different quality foods. The signal from low-quality food (HK- E. coli) activates animals to digest inedible food, Staphylococcus saprophyticus (SS), which potentially increases fitness in animals by enabling them to consume a wider range of foods in nature. b Developmental phenotype of N2 grown on the SS, HK- E. coli , and HK- E. coli + SS at 20°C for 7d. n = 221 for SS, n = 172 for HK- E. coli , n = 114 for HK- E. coli + SS. Statistical significance was calculated using multiple unpaired t -tests (two-tailed). Obtained p values were as follows: SS vs. HK- E. coli ; **** p < 0.0001. SS vs. HK- E. coli + SS; **** p < 0.0001. Scale bar, 500µm. c Developmental phenotype of N2 grown on the HK- E. coli ( ΔycbB or ΔygeR mutant) + SS or SS at 20°C for 5d post-L1 synchronization. n = 104 for SS, n = 102 for HK-K12 + SS, n = 84 for HK- ycbB + SS, n = 79 for HK- ygeR + SS. Statistical significance was calculated using multiple unpaired t -tests (two-tailed). Obtained p values were as follows: HK-K12 + SS vs. HK- ycbB + SS and HK- ygeR + SS; **** p < 0.0001, respectively. Scale bar, 500µm d Developmental progression of animals grown on SS+ enzyme-treated PGN at 7d at 20°C. Scale bar, 500µm. ly: lysozyme; pK: proteinaseK; NagZ, glucosaminidase; AmiD, amidase; n = 107 for SS, n = 98 for SS + PGN, n = 91 for SS + PGN-ly(lysozyme), n = 148 for SS + PGN-AmiD, n = 80 for SS + PGN-NagZ, n = 115 for SS + PGN-pk(proteaseK). Statistical significance was calculated using multiple unpaired t -tests (two-tailed). Obtained p values were as follows:SS vs. SS + PGN and SS + PGN-ly(lysozyme); **** p < 0.0001, respectively. e Microscope image and bar graph show the relative width of intestinal lumen in N2 animals fed SS or SS + PGN food. n = 13 for SS, n = 12 for SS + PGN. Statistical significance was calculated using multiple unpaired t -tests (two-tailed). Obtained p values were as follows: SS vs. SS + PGN; **** p < 0.0001. f Schematic representation of the peptidoglycan structure and cleavage points of enzymes by arrows. Red box indicates the structure for the digestion signal from PGN, which contains 5’NAG-NAM disaccharide muropeptides with an amino acid peptide attached to NAM. NagZ, glucosaminidase; AmiD, amidase; NAG, 3N’-acetylglucosamine; NAM, 5N’-acetylmuramic acid. The developmental progression of animals is scored by relative worm body length. For all panels, n = number of animals which were scored from at least three independent experiments. Data are represented as mean ± SD. **** p < 0.0001, *** P < 0.001, ** P < 0.01, * P < 0.05, ns: no significant difference. Source data are provided as a Source Data file.
    Figure Legend Snippet: a The cartoon illustration shows the developmental progression of animals grown on different quality foods. The signal from low-quality food (HK- E. coli) activates animals to digest inedible food, Staphylococcus saprophyticus (SS), which potentially increases fitness in animals by enabling them to consume a wider range of foods in nature. b Developmental phenotype of N2 grown on the SS, HK- E. coli , and HK- E. coli + SS at 20°C for 7d. n = 221 for SS, n = 172 for HK- E. coli , n = 114 for HK- E. coli + SS. Statistical significance was calculated using multiple unpaired t -tests (two-tailed). Obtained p values were as follows: SS vs. HK- E. coli ; **** p < 0.0001. SS vs. HK- E. coli + SS; **** p < 0.0001. Scale bar, 500µm. c Developmental phenotype of N2 grown on the HK- E. coli ( ΔycbB or ΔygeR mutant) + SS or SS at 20°C for 5d post-L1 synchronization. n = 104 for SS, n = 102 for HK-K12 + SS, n = 84 for HK- ycbB + SS, n = 79 for HK- ygeR + SS. Statistical significance was calculated using multiple unpaired t -tests (two-tailed). Obtained p values were as follows: HK-K12 + SS vs. HK- ycbB + SS and HK- ygeR + SS; **** p < 0.0001, respectively. Scale bar, 500µm d Developmental progression of animals grown on SS+ enzyme-treated PGN at 7d at 20°C. Scale bar, 500µm. ly: lysozyme; pK: proteinaseK; NagZ, glucosaminidase; AmiD, amidase; n = 107 for SS, n = 98 for SS + PGN, n = 91 for SS + PGN-ly(lysozyme), n = 148 for SS + PGN-AmiD, n = 80 for SS + PGN-NagZ, n = 115 for SS + PGN-pk(proteaseK). Statistical significance was calculated using multiple unpaired t -tests (two-tailed). Obtained p values were as follows:SS vs. SS + PGN and SS + PGN-ly(lysozyme); **** p < 0.0001, respectively. e Microscope image and bar graph show the relative width of intestinal lumen in N2 animals fed SS or SS + PGN food. n = 13 for SS, n = 12 for SS + PGN. Statistical significance was calculated using multiple unpaired t -tests (two-tailed). Obtained p values were as follows: SS vs. SS + PGN; **** p < 0.0001. f Schematic representation of the peptidoglycan structure and cleavage points of enzymes by arrows. Red box indicates the structure for the digestion signal from PGN, which contains 5’NAG-NAM disaccharide muropeptides with an amino acid peptide attached to NAM. NagZ, glucosaminidase; AmiD, amidase; NAG, 3N’-acetylglucosamine; NAM, 5N’-acetylmuramic acid. The developmental progression of animals is scored by relative worm body length. For all panels, n = number of animals which were scored from at least three independent experiments. Data are represented as mean ± SD. **** p < 0.0001, *** P < 0.001, ** P < 0.01, * P < 0.05, ns: no significant difference. Source data are provided as a Source Data file.

    Techniques Used: Two Tailed Test, Mutagenesis, Microscopy

    a, b Adaptation analysis in animals feeding mixed bacteria to mimic nature environment. A mixture of SS with E. coli , Enterococcus faecalis f ), and Bacillus subtilis ( B.s ) at a 1:1 ratio was prepared as food source ( a ). single wild-type N2 animal was then placed on the food. After 9 days of culture, the number of animals on the plate was counted ( b ). In panel b, mean ± SD from 10 replicates. Obtained p values were as follows:SS + OP50 vs. SS + B.s; p = 0.3345. SS vs. SS + OP50 and SS + B.s; **** p < 0.0001, respectively. c A mixture of E. coli, Staphylococcus saprophyticus (SS), Enterococcus faecalis (E. f ), and Bacillus subtilis ( B.s ) at a 1:1:1:1 ratio was used to mimic the natural food environment. A single wild-type N2 or bcf-1 mutant animal was seeded on the food. After 10 days of culture, the number of animals on the plate was scored. d Developmental progression of ED3077 and JU2513 grown on SS + PGN at 20°C for 3d. n = 34, 31 and 29 for N2, ED3077 and JU2513 on SS. n = 31, 32 and 38 for N2, ED3077 and JU2513 on HK- E. col i + SS. N = 36, 30 and 39 for N2, ED3077 and JU2513 on SS + PGN. Statistical significance was calculated using multiple unpaired t -tests (two-tailed). Obtained p values were as follows: N2 on SS vs. SS + PGN; ED3077 on SS vs. SS + PGN; JU2513 on SS vs. SS + PGN; **** p < 0.0001, respectively. e The model illustrates that the PGN-BCF-1 interaction acts as a “good-food signal” to promote food digestion and animal growth in bacteria-eating worms. The conserved glycosylated protein BCF-1 in nematodes interacts with bacterial PGN to inhibit UPR mt through neuropeptides (NLP-3), thereby enhancing the ability to digest inedible food (SS). PGN inhibits UPR mt through interacting with BCF-1 or ATP synthase . Activation of UPR mt inhibits food digestion through inducing PMK-1. This mechanism reveals an intriguing adaptation strategy in animals to survive in nature by increasing their capacity to digest a variety of foods through the detection of the unique bacterial cell wall component PGN. For all panels, n = number of animals that were scored from at least three independent experiments. Data are represented as mean ± SD. **** p < 0.0001, *** P < 0.001, ** P < 0.01, * P < 0.05, ns: no significant difference. Source data are provided as a Source Data file.
    Figure Legend Snippet: a, b Adaptation analysis in animals feeding mixed bacteria to mimic nature environment. A mixture of SS with E. coli , Enterococcus faecalis f ), and Bacillus subtilis ( B.s ) at a 1:1 ratio was prepared as food source ( a ). single wild-type N2 animal was then placed on the food. After 9 days of culture, the number of animals on the plate was counted ( b ). In panel b, mean ± SD from 10 replicates. Obtained p values were as follows:SS + OP50 vs. SS + B.s; p = 0.3345. SS vs. SS + OP50 and SS + B.s; **** p < 0.0001, respectively. c A mixture of E. coli, Staphylococcus saprophyticus (SS), Enterococcus faecalis (E. f ), and Bacillus subtilis ( B.s ) at a 1:1:1:1 ratio was used to mimic the natural food environment. A single wild-type N2 or bcf-1 mutant animal was seeded on the food. After 10 days of culture, the number of animals on the plate was scored. d Developmental progression of ED3077 and JU2513 grown on SS + PGN at 20°C for 3d. n = 34, 31 and 29 for N2, ED3077 and JU2513 on SS. n = 31, 32 and 38 for N2, ED3077 and JU2513 on HK- E. col i + SS. N = 36, 30 and 39 for N2, ED3077 and JU2513 on SS + PGN. Statistical significance was calculated using multiple unpaired t -tests (two-tailed). Obtained p values were as follows: N2 on SS vs. SS + PGN; ED3077 on SS vs. SS + PGN; JU2513 on SS vs. SS + PGN; **** p < 0.0001, respectively. e The model illustrates that the PGN-BCF-1 interaction acts as a “good-food signal” to promote food digestion and animal growth in bacteria-eating worms. The conserved glycosylated protein BCF-1 in nematodes interacts with bacterial PGN to inhibit UPR mt through neuropeptides (NLP-3), thereby enhancing the ability to digest inedible food (SS). PGN inhibits UPR mt through interacting with BCF-1 or ATP synthase . Activation of UPR mt inhibits food digestion through inducing PMK-1. This mechanism reveals an intriguing adaptation strategy in animals to survive in nature by increasing their capacity to digest a variety of foods through the detection of the unique bacterial cell wall component PGN. For all panels, n = number of animals that were scored from at least three independent experiments. Data are represented as mean ± SD. **** p < 0.0001, *** P < 0.001, ** P < 0.01, * P < 0.05, ns: no significant difference. Source data are provided as a Source Data file.

    Techniques Used: Bacteria, Mutagenesis, Two Tailed Test, Activation Assay

    staphylococcus saprophyticus  (ATCC)


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    ATCC staphylococcus saprophyticus
    Staphylococcus Saprophyticus, 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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    coagulasenegative staphylococcus saprophyticus kt95505  (ATCC)


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    ATCC coagulasenegative staphylococcus saprophyticus kt95505
    Coagulasenegative Staphylococcus Saprophyticus Kt95505, 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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    ligand unidentified nd uafb f4msp3 staphylococcus saprophyticus ms1146 fibronectin  (ATCC)


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    ATCC ligand unidentified nd uafb f4msp3 staphylococcus saprophyticus ms1146 fibronectin
    Ligand Unidentified Nd Uafb F4msp3 Staphylococcus Saprophyticus Ms1146 Fibronectin, 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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    staphylococcus saprophyticus  (ATCC)


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    ATCC staphylococcus saprophyticus
    Staphylococcus Saprophyticus, 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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    staphylococcus saprophyticus  (ATCC)


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    ATCC staphylococcus saprophyticus
    Staphylococcus Saprophyticus, 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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    staphylococcus saprophyticus atcc baa 750  (ATCC)


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    ATCC staphylococcus saprophyticus atcc baa 750
    Minimum inhibitory concentration (MIC) of the extract of Eragrostis plana NEES and Tabernaemontana catharinensis A DC, against different microorganisms.
    Staphylococcus Saprophyticus Atcc Baa 750, 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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    1) Product Images from "Phytochemistry Profile, Antimicrobial and Antitumor Potential of the Methanolic Extract of Tabernaemontana catharinensis A DC and Eragrostis plana NEES"

    Article Title: Phytochemistry Profile, Antimicrobial and Antitumor Potential of the Methanolic Extract of Tabernaemontana catharinensis A DC and Eragrostis plana NEES

    Journal: Evidence-based Complementary and Alternative Medicine : eCAM

    doi: 10.1155/2024/5513141

    Minimum inhibitory concentration (MIC) of the extract of Eragrostis plana NEES and Tabernaemontana catharinensis A DC, against different microorganisms.
    Figure Legend Snippet: Minimum inhibitory concentration (MIC) of the extract of Eragrostis plana NEES and Tabernaemontana catharinensis A DC, against different microorganisms.

    Techniques Used: Concentration Assay, Isolation

    ligand unidentified nd uafb f4msp3 staphylococcus saprophyticus ms1146 fibronectin  (ATCC)


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    ATCC ligand unidentified nd uafb f4msp3 staphylococcus saprophyticus ms1146 fibronectin
    Select SRRPs with their tentative ligands and glycan structures a
    Ligand Unidentified Nd Uafb F4msp3 Staphylococcus Saprophyticus Ms1146 Fibronectin, 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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    1) Product Images from "Serine-rich repeat proteins: well-known yet little-understood bacterial adhesins"

    Article Title: Serine-rich repeat proteins: well-known yet little-understood bacterial adhesins

    Journal: Journal of Bacteriology

    doi: 10.1128/jb.00241-23

    Select SRRPs with their tentative ligands and glycan structures a
    Figure Legend Snippet: Select SRRPs with their tentative ligands and glycan structures a

    Techniques Used:

    staphylococcus saprophyticus atcc 15305  (ATCC)


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    ATCC staphylococcus saprophyticus atcc 15305
    Staphylococcus Saprophyticus Atcc 15305, 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 staphylococcus saprophyticus
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    ATCC coagulasenegative staphylococcus saprophyticus kt95505
    Coagulasenegative Staphylococcus Saprophyticus Kt95505, 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 ligand unidentified nd uafb f4msp3 staphylococcus saprophyticus ms1146 fibronectin
    Ligand Unidentified Nd Uafb F4msp3 Staphylococcus Saprophyticus Ms1146 Fibronectin, 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 staphylococcus saprophyticus atcc baa 750
    Minimum inhibitory concentration (MIC) of the extract of Eragrostis plana NEES and Tabernaemontana catharinensis A DC, against different microorganisms.
    Staphylococcus Saprophyticus Atcc Baa 750, 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 staphylococcus saprophyticus atcc 15305
    Minimum inhibitory concentration (MIC) of the extract of Eragrostis plana NEES and Tabernaemontana catharinensis A DC, against different microorganisms.
    Staphylococcus Saprophyticus Atcc 15305, 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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    Minimum inhibitory concentration (MIC) of the extract of Eragrostis plana NEES and Tabernaemontana catharinensis A DC, against different microorganisms.

    Journal: Evidence-based Complementary and Alternative Medicine : eCAM

    Article Title: Phytochemistry Profile, Antimicrobial and Antitumor Potential of the Methanolic Extract of Tabernaemontana catharinensis A DC and Eragrostis plana NEES

    doi: 10.1155/2024/5513141

    Figure Lengend Snippet: Minimum inhibitory concentration (MIC) of the extract of Eragrostis plana NEES and Tabernaemontana catharinensis A DC, against different microorganisms.

    Article Snippet: Staphylococcus saprophyticus ATCC® bAA-750 , 61.25 , 200.

    Techniques: Concentration Assay, Isolation