淡江大學機構典藏:Item 987654321/120897
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    Title: Production of Sucrolytic Enzyme by Bacillus licheniformis by the Bioconversion of Pomelo Albedo as a Carbon Source
    Authors: Doan, Chien Thang;Tran, Thi Ngoc;Nguyen, Thi Thanh;Tran, Thi Phuong Hanh;Nguyen, Van Bon;Tran, Trung Dung;Nguyen, Anh Dzung;Wang, San-Lang
    Keywords: agro-byproduct;Bacillus licheniformis;bioconversion;pomelo albedo;sucrolytic
    Date: 2021-06-13
    Issue Date: 2021-08-02 12:10:19 (UTC+8)
    Publisher: MDPI
    Abstract: Recently, there has been increasing use of agro-byproducts in microbial fermentation to
    produce a variety of value-added products. In this study, among various kinds of agro-byproducts,
    pomelo albedo powder (PAP) was found to be the most effective carbon source for the production of
    sucrose hydrolyzing enzyme by Bacillus licheniformis TKU004. The optimal medium for sucrolytic
    enzyme production contained 2% PAP, 0.75% NH4NO3
    , 0.05% MgSO4
    , and 0.05% NaH2PO4 and the
    optimal culture conditions were pH 6.7, 35 ◦C, 150 rpm, and 24 h. Accordingly, the highest sucrolytic
    activity was 1.87 U/mL, 4.79-fold higher than that from standard conditions using sucrose as the
    carbon source. The purified sucrolytic enzyme (sleTKU004) is a 53 kDa monomeric protein and
    belongs to the glycoside hydrolase family 68. The optimum temperature and pH of sleTKU004 were
    50 ◦C, and pH = 6, respectively. SleTKU004 could hydrolyze sucrose, raffinose, and stachyose by
    attacking the glycoside linkage between glucose and fructose molecules of the sucrose unit. The Km
    and Vmax of sleTKU004 were 1.16 M and 5.99 µmol/min, respectively. Finally, sleTKU004 showed
    strong sucrose tolerance and presented the highest hydrolytic activity at the sucrose concentration of
    1.2 M–1.5 M.
    Relation: Polymers 13(12), 1959
    DOI: 10.3390/polym13121959
    Appears in Collections:[Graduate Institute & Department of Chemistry] Journal Article

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