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通过嗜热栖热菌的小规模培养和自动显微镜观察洞察丝状真菌的形态-生产力关系。

Insights into the morphology-productivity relationship of filamentous fungi through small-scale cultivation and automated microscopy of Thermothelomyces thermophilus.

作者信息

Rohr Katja, Geinitz Bertram, Seiffarth Johannes, Anbarani Aydin, Bernauer Sören, Moch Matthias, Tenhaef Julia, Wiechert Wolfgang, Nöh Katharina, Oldiges Marco

机构信息

Institute of Bio- and Geosciences, IBG-1: Biotechnology, Forschungszentrum Jülich GmbH, Jülich, Germany.

Institute of Biotechnology, RWTH Aachen University, Aachen, Germany.

出版信息

Biotechnol Prog. 2025 May-Jun;41(3):e3528. doi: 10.1002/btpr.3528. Epub 2025 Jan 23.

Abstract

Filamentous fungi are a cornerstone in the biotechnological production of enzymes, proteins, and organic acids. However, challenges in understanding and controlling the relationship between morphology and productivity can limit their application. This study addresses these challenges using Thermothelomyces thermophilus, a promising thermophilic fungus known for the production of thermostable enzymes. We investigated the effects of environmental conditions on fungal morphology and enzyme production using a combination of microbioreactor cultivation, automated liquid handling, and automated microscopy. Specifically, batch and fed batch cultivations were performed at different pH levels and glucose feeding rates to study their effects on secretory phytase production, fungal growth, and morphology. Results from batch cultivations revealed a two-fold higher phytase activity at pH 5.5 compared to pH 6.5, with notably smaller fungal fragments at the end of cultivation. Conversely, fed batch cultivations at a feeding rate of 1 g (l h) glucose showed a 1.6-fold higher enzyme activity at pH 5.5, accompanied by much larger fungal aggregates throughout the feeding phase. These findings suggest that large aggregates are associated with high productivity; however, their breakdown further enhances enzyme release, increasing activity in the supernatant. This study not only provides insights on the morphology-productivity relationship of T. thermophilus, but also demonstrates the efficacy of integrating microbioreactors with automated microscopy. This methodology represents a significant advance in the field of fungal biotechnology, paving the way for more efficient industrial bioprocesses.

摘要

丝状真菌是酶、蛋白质和有机酸生物技术生产的基石。然而,在理解和控制形态与生产力之间的关系方面所面临的挑战可能会限制它们的应用。本研究使用嗜热栖热菌来应对这些挑战,嗜热栖热菌是一种有前景的嗜热真菌,以生产耐热酶而闻名。我们结合微生物反应器培养、自动化液体处理和自动化显微镜技术,研究了环境条件对真菌形态和酶生产的影响。具体而言,在不同的pH值水平和葡萄糖进料速率下进行分批和补料分批培养,以研究它们对分泌型植酸酶生产、真菌生长和形态的影响。分批培养的结果显示,pH值为5.5时植酸酶活性比pH值为6.5时高两倍,培养结束时真菌碎片明显更小。相反,葡萄糖进料速率为1 g/(l·h)的补料分批培养在pH值为5.5时酶活性高1.6倍,在整个进料阶段伴有大得多的真菌聚集体。这些发现表明,大的聚集体与高生产力相关;然而,它们的分解进一步增强了酶的释放,增加了上清液中的活性。本研究不仅提供了关于嗜热栖热菌形态-生产力关系的见解,还证明了将微生物反应器与自动化显微镜相结合的有效性。这种方法代表了真菌生物技术领域的一项重大进展,为更高效的工业生物过程铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/646f/12171336/0265fce6d7be/BTPR-41-e3528-g002.jpg

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