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生物技术相关真菌中的菌株退化现象。

The phenomenon of strain degeneration in biotechnologically relevant fungi.

机构信息

Christian Doppler Laboratory for Optimized Expression of Carbohydrate-Active Enzymes, Institute of Chemical, Environmental and Bioscience Engineering, TU Wien, Gumpendorfer Str. 1a, 1060, Vienna, Austria.

Institute of Chemical, Environmental and Bioscience Engineering, TU Wien, Gumpendorfer Str. 1a, 1060, Vienna, Austria.

出版信息

Appl Microbiol Biotechnol. 2023 Aug;107(15):4745-4758. doi: 10.1007/s00253-023-12615-z. Epub 2023 Jun 21.

Abstract

Fungi are widely exploited for large-scale production in the biotechnological industry to produce a diverse range of substances due to their versatility and relative ease of growing on various substrates. The occurrence of a phenomenon-the so-called fungal strain degeneration-leads to the spontaneous loss or decline of production capacity and results in an economic loss on a tremendous scale. Some of the most commonly applied genera of fungi in the biotechnical industry, such as Aspergillus, Trichoderma, and Penicillium, are threatened by this phenomenon. Although fungal degeneration has been known for almost a century, the phenomenon and its underlying mechanisms still need to be understood. The proposed mechanisms causing fungi to degenerate can be of genetic or epigenetic origin. Other factors, such as culture conditions, stress, or aging, were also reported to have an influence. This mini-review addresses the topic of fungal degeneration by describing examples of productivity losses in biotechnical processes using Aspergillus niger, Aspergillus oryzae, Trichoderma reesei, and Penicillium chrysogenum. Further, potential reasons, circumvention, and prevention methods are discussed. This is the first mini-review which provides a comprehensive overview on this phenomenon in biotechnologically used fungi, and it also includes a collection of strategies that can be useful to minimize economic losses which can arise from strain degeneration. KEY POINTS: • Spontaneous loss of productivity is evident in many fungi used in biotechnology. • The properties and mechanisms underlying this phenomenon are very versatile. • Only studying these underlying mechanisms enables the design of a tailored solution.

摘要

真菌由于其多功能性和相对容易在各种基质上生长,因此被广泛用于生物技术产业进行大规模生产,以生产各种物质。由于一种现象——所谓的真菌菌株退化——的发生,导致生产能力的自发丧失或下降,从而造成巨大的经济损失。在生物技术行业中应用最广泛的一些真菌属,如曲霉属、木霉属和青霉属,都受到这种现象的威胁。尽管真菌退化现象已经存在了近一个世纪,但人们仍然需要了解这种现象及其潜在机制。导致真菌退化的机制可以是遗传的或表观遗传的。其他因素,如培养条件、应激或衰老,也被报道有影响。本文通过描述黑曲霉、米曲霉、里氏木霉和产黄青霉在生物技术过程中生产力损失的例子,探讨了真菌退化的主题。进一步讨论了潜在的原因、规避和预防方法。这是第一篇关于生物技术中使用的真菌中这种现象的全面综述,它还包括了一些可以用来最小化因菌株退化而导致的经济损失的策略。

关键点

  1. 许多用于生物技术的真菌都明显存在生产力的自发丧失。

  2. 该现象背后的特性和机制非常多样化。

  3. 只有研究这些潜在机制,才能设计出有针对性的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9730/10345034/e4f3245a389d/253_2023_12615_Fig1_HTML.jpg

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