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pseudomonas putida mtcc 5110  (ATCC)


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    Structured Review

    ATCC pseudomonas putida mtcc 5110
    Pseudomonas Putida Mtcc 5110, supplied by ATCC, used in various techniques. Bioz Stars score: 97/100, based on 2341 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/pseudomonas+putida+mtcc+5110/Pseudomonas/pm24104468-170-25-23
    Average 97 stars, based on 2341 article reviews
    pseudomonas putida mtcc 5110 - by Bioz Stars, 2026-09
    97/100 stars

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    Related Articles

    Bacteria:

    Article Title: Enantioselective biocatalytic hydrolysis of (R,S)-mandelonitrile for production of (R)-(-)-mandelic acid by a newly isolated mutant strain.
    Article Snippet: R)-(-)-Mandelic acid (R-MA) is an important intermediate with broad uses.. Recently, R-MA production using nitrilase has been gaining more and more attention due to its higher productivity and enantioselectivity.. In this work, a new bacterium WT10, which exhibited favorable nitrilase activity and excellent enantioselectivity for production of R-MA by enantioselective biocatalytic hydrolysis of (R,S)-mandelonitrile, was isolated and identified as a strain of Alcaligenes faecalis.

    Isolation:

    Article Title: Optimization of arylacetonitrilase production from Alcaligenes sp. MTCC 10675 and its application in mandelic acid synthesis.
    Article Snippet: Alcaligenes sp. MTCC 10675 has been isolated from soil sample using enrichment method and has nitrilase catalytic system which is highly specific for the hydrolysis of arylaliphatic nitriles.. Optimization of culture conditions using response surface methodology and inducer-mediated approach enhanced arylacetonitrilase production significantly (2.4-fold).. Isobutyronitrile acted as an effective inducer for the induction of arylacetonitrilase, and it is highly specific for arylacetonitriles (phenyl acetonitrile and mandelonitrile).

    Clone Assay:

    Article Title: Optimization of arylacetonitrilase production from Alcaligenes sp. MTCC 10675 and its application in mandelic acid synthesis.
    Article Snippet: Alcaligenes sp. MTCC 10675 has been isolated from soil sample using enrichment method and has nitrilase catalytic system which is highly specific for the hydrolysis of arylaliphatic nitriles.. Optimization of culture conditions using response surface methodology and inducer-mediated approach enhanced arylacetonitrilase production significantly (2.4-fold).. Isobutyronitrile acted as an effective inducer for the induction of arylacetonitrilase, and it is highly specific for arylacetonitriles (phenyl acetonitrile and mandelonitrile).



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