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交配型基因和隐性生活史作为遗传操纵工业用真菌的工具。

Mating type genes and cryptic sexuality as tools for genetically manipulating industrial molds.

机构信息

Christian Doppler Laboratory for "Fungal Biotechnology," Lehrstuhl für Allgemeine und Molekulare Botanik, Ruhr-Universität Bochum, Universitätsstr. 150, 44780, Bochum, Germany,

出版信息

Appl Microbiol Biotechnol. 2013 Nov;97(22):9609-20. doi: 10.1007/s00253-013-5268-0. Epub 2013 Oct 2.

Abstract

A large number of molds serve as producer strains for the industrial production of pharmaceuticals, foods, or organic chemicals. To optimize strains for production processes, conventional strain development programs use random mutagenesis and, more recently, recombinant technologies to generate microbial strains with novel and advantageous properties. The recent detection of mating type genes in fungal production strains and the discovery of cryptic sexuality in presumably asexual fungi open up novel strategies for generating progeny with new, as yet unobserved properties. Mating type genes, which can be considered as "sex genes," not only direct sexual development but also regulate a broad range of fungal secondary metabolites. In addition, they control hyphal morphology, which has a direct impact on production processes that are often conducted in huge fermenter tanks. Here, we survey the occurrence and function of mating type genes that have been discovered in a wide range of industrial fungal producer strains. The possibility to obtain progeny from industrial producers by sexual mating provides an exciting alternative to conventional strain improvement programs aiming to generate optimized recombinant production strains.

摘要

大量的霉菌被用作医药、食品或有机化学品工业生产的生产菌株。为了优化生产工艺的菌株,传统的菌株开发计划使用随机诱变,以及最近的重组技术,以产生具有新颖和有利特性的微生物菌株。最近在真菌生产菌株中检测到交配型基因,以及在假定的无性真菌中发现隐性性别,为产生具有新的、尚未观察到的特性的后代开辟了新的策略。交配型基因,可以被认为是“性基因”,不仅直接指导有性发育,而且还调节广泛的真菌次生代谢物。此外,它们控制菌丝形态,这对通常在大型发酵罐中进行的生产过程有直接影响。在这里,我们调查了在广泛的工业真菌生产菌株中发现的交配型基因的发生和功能。通过有性交配从工业生产者中获得后代的可能性为传统的旨在生成优化重组生产菌株的菌株改良计划提供了一个令人兴奋的替代方案。

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