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Transformation of Aspergillus niger by the amdS gene of Aspergillus nidulans.

机译:nidulans的amdS基因转化黑曲霉。

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摘要

Aspergillus niger grows poorly on acetamide as a nitrogen or carbon source and lacks sequences detectably homologous to the amdS gene encoding the acetamidase of Aspergillus nidulans. We have taken advantage of these observations to develop a transformation system for A. niger using the amdS gene as a dominant heterologous marker for selecting transformants on the basis of acetamide utilization. Transformants varied in their ability to grow on amide media and the number of integrated copies of the amdS plasmid ranged from 1 or 2 to greater than 100. Southern analysis of transformants revealed that the multiple copies were integrated into the chromosome in tandem arrays. This result indicates that transformation of A. niger is more similar to mammalian cells than to yeast. Analysis of enzyme activity levels and RNA levels showed that most of the copies of amdS were expressed. Mitotic stabilities of transformants were found to be high. A transformant containing greater than 100 copies of the amdS gene was impaired in omega-amino acid utilization, a result that has also been found in A. nidulans. Since, in A. nidulans, omega-amino acids induce acetamidase via a characterizied regulatory gene (amdR/intA) this observation implies that titration of an analogous A. niger regulatory gene product by multiple amdS copies has occurred. Additional evidence suggested that the amdS gene is regulated in A. niger. It has also been shown that an unselected plasmid can be co-transformed with the amdS plasmid into A. niger.
机译:黑曲霉在作为氮或碳源的乙酰胺上生长较差,并且缺乏与编码构巢曲霉乙酰酰胺酶的amdS基因可检测到的同源序列。我们利用这些观察结果开发了一种黑曲霉的转化系统,该系统使用amdS基因作为主要的异源标记,以基于乙酰胺的利用来选择转化体。转化子在酰胺培养基上生长的能力各不相同,amdS质粒的整合拷贝数范围为1或2至大于100。对转化子的Southern分析表明,多个拷贝已以串联阵列整合到染色体中。该结果表明黑曲霉的转化与哺乳动物细胞比对酵母更相似。酶活性水平和RNA水平的分析表明,大多数amdS拷贝均表达。发现转化体的有丝分裂稳定性高。含有大于100个拷贝的amdS基因的转化子的ω-氨基酸利用受到损害,结果也已在构巢曲霉中发现。由于在构巢曲霉中,ω-氨基酸通过特征性调控基因(amdR / intA)诱导了乙酰胺酶,因此该观察结果暗示发生了通过多个amdS拷贝滴定类似的黑曲霉调控基因产物的现象。其他证据表明amdS基因在黑曲霉中受到调控。还显示出未选择的质粒可与amdS质粒共转化成黑曲霉。

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