Universiti Kebangsaan Malaysia, Bangi, Selangor, Malaysia.
J Ind Microbiol Biotechnol. 2010 Jan;37(1):103-9. doi: 10.1007/s10295-009-0658-0. Epub 2009 Nov 24.
The production of beta-mannanase from palm kernel cake (PKC) as a substrate in solid substrate fermentation (SSF) was studied using a laboratory column bioreactor. The simultaneous effects of three independent variables, namely incubation temperature, initial moisture content of substrate and airflow rate, on beta-mannanase production were evaluated by response surface methodology (RSM) on the basis of a central composite face-centered (CCF) design. Eighteen trials were conducted in which Aspergillus niger FTCC 5003 was cultivated on PKC in an aerated column bioreactor for seven days under SSF process. The highest level of beta-mannanase (2117.89 U/g) was obtained when SSF process was performed at incubation temperature, initial moisture level and aeration rate of 32.5 degrees C, 60% and 0.5 l/min, respectively. Statistical analysis revealed that the quadratic terms of incubation temperature and initial moisture content had significant effects on the production of beta-mannanase (P < 0.01). A similar analysis also demonstrated that the linear effect of initial moisture level and an interaction effect between the initial moisture content and aeration rate significantly influenced the production of beta-mannanase (P < 0.01). The statistical model suggested that the optimal conditions for attaining the highest level of beta-mannanase were incubation temperature of 32 degrees C, initial moisture level of 59% and aeration rate of 0.5 l/min. A beta-mannanase yield of 2231.26 U/g was obtained when SSF process was carried out under the optimal conditions described above.
以棕榈仁饼(PKC)为底物,在固体基质发酵(SSF)中用实验室柱式生物反应器生产β-甘露聚糖酶。基于中心复合面心(CCF)设计,利用响应面法(RSM)评估了三个独立变量(即培养温度、底物初始水分含量和气流率)对β-甘露聚糖酶生产的同时影响。在 SSF 过程中,18 次试验在充气柱式生物反应器中用 Aspergillus niger FTCC 5003 在 PK 上进行了 7 天的培养。当 SSF 过程在培养温度、初始水分水平和通气率分别为 32.5°C、60%和 0.5 l/min 时,获得了最高水平的β-甘露聚糖酶(2117.89 U/g)。统计分析表明,培养温度和初始水分含量的二次项对β-甘露聚糖酶的生产有显著影响(P <0.01)。类似的分析还表明,初始水分水平的线性效应以及初始水分含量和通气率之间的相互作用对β-甘露聚糖酶的生产有显著影响(P <0.01)。统计模型表明,达到最高β-甘露聚糖酶水平的最佳条件为培养温度为 32°C、初始水分水平为 59%和通气率为 0.5 l/min。当 SSF 过程在上述最佳条件下进行时,β-甘露聚糖酶的产率为 2231.26 U/g。