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植物乳杆菌CIR1产单宁酶能力的增强:在气升式生物反应器中的验证

Enhancement of tannase production by Lactobacillus plantarum CIR1: validation in gas-lift bioreactor.

作者信息

Aguilar-Zarate Pedro, Cruz-Hernandez Mario A, Montañez Julio C, Belmares-Cerda Ruth E, Aguilar Cristobal N

机构信息

Departments of Food Research and Chemical Engineering, School of Chemistry, Universidad Autonoma de Coahuila, Venustiano Carranza S/N Col. República Oriente, 25280, Saltillo, Coahuila, Mexico.

出版信息

Bioprocess Biosyst Eng. 2014 Nov;37(11):2305-16. doi: 10.1007/s00449-014-1208-3. Epub 2014 May 27.

Abstract

The optimization of tannase production by Lactobacillus plantarum CIR1 was carried out following the Taguchi methodology. The orthogonal array employed was L18 (2(1) × 3(5)) considering six important factors (pH and temperature, also phosphate, nitrogen, magnesium, and carbon sources) for tannase biosynthesis. The experimental results obtained from 18 trials were processed using the software Statistical version 7.1 using the character higher the better. Optimal culture conditions were pH, 6; temperature, 40 °C; tannic acid, 15.0 g/L; KH2PO4, 1.5 g/L; NH4Cl, 7.0 g/L; and MgSO4, 1.5 g/L which were obtained and further validated resulting in an enhance tannase yield of 2.52-fold compared with unoptimized conditions. Tannase production was further carried out in a 1-L gas-lift bioreactor where two nitrogen flows (0.5 and 1.0 vvm) were used to provide anaerobic conditions. Taguchi methodology allowed obtaining the optimal culture conditions for the production of tannase by L. plantarum CIR1. At the gas-lift bioreactor the tannase productivity yields increase 5.17 and 8.08-fold for the flow rates of 0.5 and 1.0 vvm, respectively. Lactobacillus plantarum CIR1 has the capability to produce tannase at laboratory-scale. This is the first report for bacterial tannase production using a gas-lift bioreactor.

摘要

采用田口方法对植物乳杆菌CIR1产单宁酶进行了优化。考虑到单宁酶生物合成的六个重要因素(pH值、温度、磷酸盐、氮源、镁源和碳源),所采用的正交表为L18(2(1)×3(5))。使用统计软件7.1对18次试验获得的实验结果进行处理,采用“越高越好”的特性。得到的最佳培养条件为:pH值6、温度40℃、单宁酸15.0 g/L、KH2PO4 1.5 g/L、NH4Cl 7.0 g/L和MgSO4 1.5 g/L,并进一步进行了验证,与未优化的条件相比,单宁酶产量提高了2.52倍。在1-L气升式生物反应器中进一步进行单宁酶生产,使用两种氮气流速(0.5和1.0 vvm)来提供厌氧条件。田口方法能够获得植物乳杆菌CIR1产单宁酶的最佳培养条件。在气升式生物反应器中,对于0.5和1.0 vvm的流速,单宁酶生产率分别提高了5.17倍和8.08倍。植物乳杆菌CIR1有能力在实验室规模生产单宁酶。这是首次关于使用气升式生物反应器生产细菌单宁酶的报道。

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