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从孢子到真菌球:一种新的高通量图像分析方法突出了黑曲霉的结构发育。

From spores to fungal pellets: A new high-throughput image analysis highlights the structural development of Aspergillus niger.

机构信息

Department of Process Systems Engineering, School of Life Sciences Weihenstephan, Technical University of Munich, Freising, Germany.

Department of Applied and Molecular Microbiology, Institute of Biotechnology, Technische Universität Berlin, Berlin, Germany.

出版信息

Biotechnol Bioeng. 2022 Aug;119(8):2182-2195. doi: 10.1002/bit.28124. Epub 2022 May 9.

Abstract

Many filamentous fungi are exploited as cell factories in biotechnology. Cultivated under industrially relevant submerged conditions, filamentous fungi can adopt different macromorphologies ranging from dispersed mycelia over loose clumps to pellets. Central to the development of a pellet morphology is the agglomeration of spores after inoculation followed by spore germination and outgrowth into a pellet population, which is usually very heterogeneous. As the dynamics underlying population heterogeneity is not yet fully understood, we present here a new high-throughput image analysis pipeline based on stereomicroscopy to comprehensively assess the developmental program starting from germination up to pellet formation. To demonstrate the potential of this pipeline, we used data from 44 sampling times harvested during a 48 h submerged batch cultivation of the fungal cell factory Aspergillus niger. The analysis of up to 1700 spore agglomerates and 1500 pellets per sampling time allowed the precise tracking of the morphological development of the overall culture. The data gained were used to calculate size distributions and area fractions of spores, spore agglomerates, spore agglomerates within pellets, pellets, and dispersed mycelia. This approach eventually enables the quantification of culture heterogeneities and pellet breakage.

摘要

许多丝状真菌被用作生物技术中的细胞工厂。在工业相关的浸没条件下培养时,丝状真菌可以采用不同的宏观形态,从分散的菌丝体到松散的团块再到颗粒。颗粒形态的发展的核心是接种后孢子的聚集,然后孢子发芽并生长成颗粒群体,通常这个群体非常不均匀。由于群体异质性的发展动态尚未完全了解,我们在这里提出了一种新的基于体视显微镜的高通量图像分析管道,用于从发芽到颗粒形成全面评估发育程序。为了展示该管道的潜力,我们使用了在黑曲霉真菌细胞工厂的 48 小时浸没批式培养过程中 44 个时间点采集的数据。对每个时间点多达 1700 个孢子聚集体和 1500 个颗粒的分析允许对整个培养物的形态发育进行精确跟踪。获得的数据用于计算孢子、孢子聚集体、颗粒内孢子聚集体、颗粒和分散菌丝体的大小分布和面积分数。这种方法最终能够量化培养物的异质性和颗粒的破碎。

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