首页> 美国卫生研究院文献>Biotechnology for Biofuels >The micromorphology of Trichoderma reesei analyzed in cultivations on lactose and solid lignocellulosic substrate and its relationship with cellulase production
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The micromorphology of Trichoderma reesei analyzed in cultivations on lactose and solid lignocellulosic substrate and its relationship with cellulase production

机译:在乳糖和固体木质纤维素底物上培养的里氏木霉的微观形态及其与纤维素酶生产的关系

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摘要

BackgroundTrichoderma reesei is the principal producer of cellulolytic enzymes. Because of the strong influence on the enzyme production, the morphology of the filamentous fungi is a key parameter for process optimization. For cost-effective production of cellulolytic enzymes, the cultivation of T. reesei is performed on lignocellulosic waste streams. These insoluble substrates prevent the application of the conventional light microscopy for the analysis of fungal morphology. Here, we present a novel method for the micromorphological analysis based on confocal laser-scanning microscopy (CLSM) and the computer-aided image analysis. This method enabled the quantification of the dimensions of the single cell (intercalary length and cell width) and the degree of branching in cultivations on the industrially relevant substrates wheat straw and lactose. The micromorphology of two T. reesei strains, QM9414 and a carbon catabolite derepressed cre1 knockout mutant (Δcre1), was analyzed in dependence of substrate, inoculation method, and agitation velocity.
机译:背景里氏​​木霉是纤维素分解酶的主要生产商。由于对酶产生的强烈影响,丝状真菌的形态是工艺优化的关键参数。为了经济高效地生产纤维素分解酶,在木质纤维素废料流上进行里氏木霉的培养。这些不溶性底物阻止了常规光学显微镜在真菌形态学分析中的应用。在这里,我们提出了一种基于共聚焦激光扫描显微镜(CLSM)和计算机辅助图像分析的微观形态分析新方法。该方法能够定量测定单细胞的大小(插入长度和细胞宽度)以及在与工业相关的底物小麦秸秆和乳糖上进行培养的分支程度。根据底物,接种方法和搅拌速度分析了两种里氏木霉菌株QM9414和碳分解代谢物抑制的cre1基因敲除突变体(Δcre1)的微观形态。

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