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Alkalitalea saponilacus产木聚糖酶的碳源优化及酶学特性
引用本文:廖子亚,郭晓萌,王海胜,闫艳春,李俊,赵百锁.Alkalitalea saponilacus产木聚糖酶的碳源优化及酶学特性[J].微生物学报,2018,58(9):1625-1636.
作者姓名:廖子亚  郭晓萌  王海胜  闫艳春  李俊  赵百锁
作者单位:中国农业科学院研究生院;农业部微生物产品质量安全风险评估实验室
基金项目:国家自然科学基金(31370158,31570110);中国农业科学院研究生院基本科研业务费(610042017001)
摘    要:【目的】确定厌氧盐碱细菌Alkalitalea saponilacus产木聚糖酶所需的碳源,优化木聚糖粗酶的提取条件并分析酶学性质。【方法】应用GC技术分析A.saponilacus发酵木聚糖的主要产物;利用二硝基水杨酸法(DNS)测定木聚糖酶活力以获得最优的碳源、提取粗酶的最佳条件及其酶学特性。【结果】A.saponilacus以不同来源木聚糖为底物时,发酵产生的主要产物丙酸含量都在80%以上。若以0.4%(W/V)蔗糖+0.1%(W/V)桦木木聚糖为复合碳源时,木聚糖酶活力是以桦木木聚糖或者蔗糖为单一碳源时的3.2倍。木聚糖酶的酶活力在盐度2%–6%、pH 7.0和55°C达到最佳且在该条件下的酶活力为590 IU/mg。此外,该酶活力在0.2%Tween 20存在时增加,而在5 mmol/L Mg~(2+)和0.2%Triton X-100存在时无显著影响,但在Cu~(2+)、Fe3+和Ni~(2+)等金属离子存在时则被显著抑制。【结论】A.saponilacus发酵主产物丙酸以及生物合成的木聚糖酶在工业生产中具有广泛的应用前景。

关 键 词:盐碱细菌  Alkalitalea  saponilacus  丙酸  木聚糖酶
收稿时间:2017/11/29 0:00:00
修稿时间:2018/2/2 0:00:00

Carbon source optimization and characterization of a xylanase from Alkalitalea saponilacus SC/BZ-SP2T
Ziya Liao,Xiaomeng Guo,Haisheng Wang,Yanchun Yan,Jun Li and Baisuo Zhao.Carbon source optimization and characterization of a xylanase from Alkalitalea saponilacus SC/BZ-SP2T[J].Acta Microbiologica Sinica,2018,58(9):1625-1636.
Authors:Ziya Liao  Xiaomeng Guo  Haisheng Wang  Yanchun Yan  Jun Li and Baisuo Zhao
Affiliation:Graduate School, Chinese Academy of Agricultural Sciences, Beijing 100081, China,Graduate School, Chinese Academy of Agricultural Sciences, Beijing 100081, China,Graduate School, Chinese Academy of Agricultural Sciences, Beijing 100081, China,Graduate School, Chinese Academy of Agricultural Sciences, Beijing 100081, China,Laboratory of Quality & Safety Risk Assessment for Microbial Products(Beijing), Ministry of Agriculture, Beijing 100081, China and Graduate School, Chinese Academy of Agricultural Sciences, Beijing 100081, China;Laboratory of Quality & Safety Risk Assessment for Microbial Products(Beijing), Ministry of Agriculture, Beijing 100081, China
Abstract:
Keywords:halo-alkaliphile  Alkalitalea saponilacus  propionic acid  xylanase
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