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The filamentous fungus Penicillium chrysogenum analysed via flow cytometry—a fast and statistically sound insight into morphology and viability

机译:通过流式细胞仪分析丝状真菌产黄青霉菌-对形态学和生存力的快速且统计上合理的洞察

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摘要

Filamentous fungi serve as production host for a number of highly relevant biotechnological products, like penicillin. In submerged culture, morphology can be exceptionally diverse and is influenced by several process parameters, like aeration, agitation, medium composition or growth rate. Fungal growth leads to several morphological classes encompassing homogeneously dispersed hyphae and various forms of hyphal agglomerates and/or clump structures. Eventually, the so-called pellet structure can be formed, which represents a hyphal agglomerate with a dense core. Pellet structures can hinder oxygen and substrate transport, resulting in different states of viability, which in turn affects productivity and process control. Over the years, several publications have dealt with methods to either gain morphological insight into pellet structure or determine biomass viability. Within this contribution, we present a way to combine both in a flow cytometry–based method employing fluorescent staining. Thereby, we can assess filamentous biomass in a statistically sound way according to (i) morphology and (ii) viability of each detected morphological form. We are confident that this method can shed light on the complex relationship between fungal morphology, viability and productivity—in both process development and routine manufacturing processes.Electronic supplementary materialThe online version of this article (10.1007/s00253-019-09943-4) contains supplementary material, which is available to authorized users.
机译:丝状真菌是青霉素等许多高度相关的生物技术产品的生产宿主。在浸没式培养中,形态可能会异常多样,并受多个工艺参数的影响,例如通气,搅拌,培养基成分或生长速率。真菌生长导致几种形态学类别,包括均匀分布的菌丝和各种形式的菌丝附聚物和/或团块结构。最终,可以形成所谓的丸粒结构,其代表具有致密核的菌丝附聚物。球团结构会阻碍氧气和底物的运输,从而导致不同的生存状态,进而影响生产率和过程控制。多年以来,一些出版物已经研究了获得颗粒结构形态学洞察力或确定生物量生存能力的方法。在此贡献范围内,我们提出了一种在基于流式细胞仪的荧光染色方法中将两者结合的方法。因此,我们可以根据(i)形态和(ii)每种检测到的形态形式的生存力,以统计学上合理的方式评估丝状生物质。我们相信,这种方法可以揭示真菌的形态,生存能力和生产率之间的复杂关系,无论是在工艺开发还是常规生产过程中。电子补充材料本文的在线版本(10.1007 / s00253-019-09943-4)包含补充材料,授权用户可以使用。

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