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Orchestration an extracellular lipase production from Aspergillus niger MYA 135: biomass morphology and fungal physiology

机译:从<斜体>烟草尼日尔(Aspergillus Niger) Mya 135:生物量形态和真菌生理学

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The impact of biomass morphology and culture conditions on fungal fermentation was widely reviewed in the literature. In this work, we presented three independent experiments in order to evaluate the influence of some of those input factors on a lipase production separately by using the Aspergillus niger MYA 135 and the two-stage fermentation technique. Regarding the culture modality, the biomass was pre-grown in a first reactor. Then, the washed mycelium was transferred to a second reactor to continue the study. Firstly, linear effects of fungal morphology and several physiological parameters on a lipase production were explored using the Plackett–Burman design. The dispersed fungal morphology was confirmed as a proper quality characteristic for producing an extracellular lipase activity. Concerning the impact of the carbon source on the biomass pre-growth, the sucrose (E?=?9.923, p ?&?0.001) and the l -arabinose (E?=?4.198, p ?=?0.009) presented positive and significant effects on the enzyme production. On the contrary, the supplementation of 0.05?g/L CaCl _(2) displayed a highly negative and significant effect on this process (E?=???7.390, p ?&?0.001). Secondly, the relationship between the enzyme production and the input variables N:C ratio, FeCl _(3) and olive oil was explored applying the central composite design. Among the model terms, the N:C ratio of the production medium had the most negative and significant influence on the enzyme synthesis. Thus, it was concluded that a low N:C ratio was preferable to increase its production. In addition, the bifunctional role of FeCl _(3) on this fungus was presented. Thirdly, a prove of concept assay was also discussed.
机译:在文献中广泛审查了生物质形态和培养条件对真菌发酵的影响。在这项工作中,我们介绍了三个独立的实验,以评估一些这些输入因素的影响通过使用Aspergillus Niger Mya 135和两级发酵技术分别分别对脂肪酶生产的影响。关于培养基,将生物质预先生长在第一反应器中。然后,将洗涤的菌丝化转移到第二反应器中以继续研究。首先,利用Plackett-Burman设计探索了真菌形态和几种生理参数对脂肪酶生产的线性影响。分散的真菌形态被证实为产生细胞外脂肪酶活性的适当质量特征。关于碳源对生物质预生长的影响,蔗糖(E?=α.923,p≤≤0.001)和L-abinose(e?= 4.198,p?= 0.009)呈现阳性对酶生产的显着影响。相反,对0.05?g / l CaCl _(2)的补充在该过程中显示出高度负和显着的影响(例如,e?= ??? 7.390,p?0.001)。其次,探讨了酶生产与输入变量N:C比率,FECL _(3)和橄榄油的关系,应用中央复合设计。在模型术语中,N:C的生产培养基的比率对酶合成具有最负面且显着的影响。因此,得出结论是,低N:C比率优选增加其生产。此外,介绍了FECL _(3)对该真菌的双官能作用。第三,还讨论了概念测定的证明。

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