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Morphological analysis of the filamentous fungus Penicillium chrysogenum using flow cytometry—the fast alternative to microscopic image analysis

机译:使用流式细胞仪对丝状真菌产黄青霉进行形态学分析-显微图像分析的快速替代方法

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摘要

An important parameter in filamentous bioreactor cultivations is the morphology of the fungi, due to its interlink to productivity and its dependency on process conditions. Filamentous fungi show a large variety of morphological forms in submerged cultures. These range from dispersed hyphae, to interwoven mycelial aggregates, to denser hyphal aggregates, the so-called pellets. Depending on the objective function of the bioprocess, different characteristics of the morphology are favorable and need to be quantified accurately. The most common method to quantitatively characterize morphology is image analysis based on microscopy. This method is work intensive and time consuming. Therefore, we developed a faster, at-line applicable, alternative method based on flow cytometry. Within this contribution, this novel method is compared to microscopy for a penicillin production process. Both methods yielded in comparable distinction of morphological sub-populations and described their morphology in more detail. In addition to the appropriate quantification of size parameters and the description of the hyphal region around pellets, the flow cytometry method even revealed a novel compactness parameter for fungal pellets which is not accessible via light microscopy. Hence, the here presented flow cytometry method for morphological analysis is a fast and reliable alternative to common tools with some new insights in the pellet morphology, enabling at-line use in production environments.Electronic supplementary materialThe online version of this article (10.1007/s00253-017-8475-2) contains supplementary material, which is available to authorized users.
机译:丝状生物反应器培养中的一个重要参数是真菌的形态,这是由于其与生产力的关联以及对工艺条件的依赖性。丝状真菌在水下培养中表现出多种形态形式。这些范围从分散的菌丝到交织的菌丝聚集体,再到较密集的菌丝聚集体,即所谓的药丸。取决于生物过程的目标功能,不同的形态特征是有利的,需要精确定量。定量表征形态的最常用方法是基于显微镜的图像分析。该方法是费力的并且费时的。因此,我们开发了一种基于流式细胞仪的快速,在线适用的替代方法。在这一贡献范围内,将该新方法与显微镜进行了青霉素生产过程的比较。两种方法在形态亚群方面具有可比的区别,并更详细地描述了它们的形态。除了对尺寸参数的适当量化和对沉淀物周围菌丝区域的描述之外,流式细胞术方法甚至揭示了真菌沉淀物的新的紧密度参数,这是无法通过光学显微镜获得的。因此,本文介绍的用于形态学分析的流式细胞仪方法是对常用工具的快速可靠的替代方法,在颗粒形态方面有了一些新见解,可以在生产环境中进行在线使用。电子补充材料本文的在线版本(10.1007 / s00253 -017-8475-2)包含补充材料,授权用户可以使用。

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