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基于pyrG阴性突变菌株的纤维素分解真菌里氏木霉异源转化系统的开发。

The development of a heterologous transformation system for the cellulolytic fungus Trichoderma reesei based on a pyrG-negative mutant strain.

作者信息

Gruber F, Visser J, Kubicek C P, de Graaff L H

机构信息

Abt. Mikrobielle Biochemie, Institut für Biochemische Technologie und Mikrobiologie, TU Wien, Austria.

出版信息

Curr Genet. 1990 Jul;18(1):71-6. doi: 10.1007/BF00321118.

Abstract

Six uridine auxotroph mutants of Trichoderma reesei QM 9414 were isolated by resistance to 5-fluoroorotic acid and one strain was identified as OMP-decarboxylase negative (pyr-) by a radiometric enzyme assay. Transformation to uridine prototrophy was achieved with the pyr4 gene of Neurospora crassa (up to 1500 transformants/micrograms) and with pyrA of Aspergillus niger (700-800 transformants/micrograms). In many transformants the PYR+ function seems to be present as extrachromosomal DNA. There is evidence for a correlation between the stability of transformants and integration of the vector in the genome whereas unstable transformants are obtained when autonomous replication of the plasmid occurs.

摘要

通过对5-氟乳清酸的抗性,分离出里氏木霉QM 9414的六个尿苷营养缺陷型突变体,并且通过放射性酶测定法鉴定出一个菌株为OMP脱羧酶阴性(pyr-)。用粗糙脉孢菌的pyr4基因(高达1500个转化体/微克)和黑曲霉的pyrA基因(700-800个转化体/微克)实现了向尿苷原养型的转化。在许多转化体中,PYR+功能似乎以染色体外DNA的形式存在。有证据表明转化体的稳定性与载体在基因组中的整合之间存在相关性,而当质粒发生自主复制时会获得不稳定的转化体。

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