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Optimization of thermostable organic solvent-tolerant lipase production by thermotolerant Rhizopus sp. using solid-state fermentation of palm kernel cake

机译:耐热Rhizopus sp。生产耐热性有机溶剂耐受脂肪酶的优化。利用棕榈仁饼的固态发酵

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摘要

This study enhanced the production of thermostable organic solvent-tolerant (TS-OST) lipase by locally isolated thermotolerant Rhizopus sp. strain using solid-state fermentation (SSF) of palm kernel cake (PKC). The optimum conditions were achieved using a series of statistical approaches. The cultivation parameters, which include fermentation time, moisture content, temperature, pH, inoculum size, various carbon and nitrogen sources, as well as other supplements, were initially screened by the definitive screening design, and one-factor-at-a-time using PKC as the basal medium. Three significant factors (olive oil concentration, pH, and inoculum size) were further optimized using face-centred central composite design. The results indicated a successful and significant improvement of lipase activity by almost two-fold compared to the initial screening production. The findings showed that the optimal conditions were 2% (v/w) inoculum size, 2% (v/w) olive oil, 0.6% (w/w) peptone, 2% (v/w) ethanol, 70% moisture content at initial pH 10.0 and 45 °C within 72 h of fermentation. Process optimization resulted in maximum lipase activity of 58.63 U/gram dry solids (gds). The analysis of variance showed that the statistical model was significant (p value <0.0001) and reliable with a high value of R 2 (0.98) and adjusted R 2 (0.96). This indicates a better correlation between the actual and predicted responses of lipase production. By considering this study, the low-cost PKC through SSF appears to be promising in the utilization of agro-industrial waste for TS-OST lipase production. This is because satisfactory enzyme activity could be attained that promises industrial applications.Electronic supplementary materialThe online version of this article (doi:10.1007/s13205-017-0932-1) contains supplementary material, which is available to authorized users.
机译:这项研究通过局部分离的耐热根霉(Rhizopus sp。)增强了耐热性有机溶剂耐受(TS-OST)脂肪酶的生产。菌株使用棕榈仁饼(PKC)的固态发酵(SSF)。使用一系列统计方法可以达到最佳条件。首先通过确定的筛选设计筛选出包括发酵时间,水分含量,温度,pH,接种量,各种碳源和氮源以及其他补品在内的培养参数,一次筛选一次使用PKC作为基础培养基。使用面心中央复合设计进一步优化了三个重要因素(橄榄油浓度,pH和接种量)。结果表明,与最初的筛选生产相比,脂肪酶活性成功且显着提高了近两倍。研究结果表明,最佳条件是接种量为2%(v / w),橄榄油为2%(v / w),0.6%(w / w)蛋白,、 2%(v / w)乙醇,含水量为70%在发酵72小时内达到初始pH 10.0和45°C。工艺优化导致最大脂肪酶活性为58.63 U /克干固体(gds)。方差分析表明,该统计模型具有显着性(p值<0.0001)并且可靠,具有较高的R 2 (0.98)和调整后的R 2 (0.96)。 。这表明脂肪酶生产的实际反应和预测反应之间有更好的相关性。通过考虑这项研究,通过SSF的低成本PKC在利用农业工业废料生产TS-OST脂肪酶方面似乎很有希望。这是因为可以获得令人满意的酶活性,有望在工业上应用。电子补充材料本文的在线版本(doi:10.1007 / s13205-017-0932-1)包含补充材料,授权用户可以使用。

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