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首页> 外文期刊>FEMS Microbiology Letters >Anovel carbon source-dependent genetic transformation system for the versatile cell factoryHypocrea jecorina (anamorph Trichoderma reesei )
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Anovel carbon source-dependent genetic transformation system for the versatile cell factoryHypocrea jecorina (anamorph Trichoderma reesei )

机译:新型碳源依赖性遗传转化系统,用于多功能细胞工厂红褐肉座菌(变形木霉里氏木霉)

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摘要

Genetic transformation is an indispensable tool for basic fungal research, as well as a useful technique for directed improvement of industrial strains. Here we describe a simple and reproducible transformation system for the filamentous fungus Hypocrea jecorina. The system is based on hxk1 (encoding hexokinase) as selectable marker, a hexokinase-negative strain and D-mannitol, which is used as selective carbon source and osmotic stabilizer. Following transformation with the hxk1 gene, the obtained transformants were able to grow on D-mannitol as sole carbon source. Transformation efficiency achieved using D-mannitol as carbon source and osmotic stabilizer was roughly five times higher than that using D-sorbitol. The utility of this system was further demonstrated by transformation of H. jecorina with the egfp (encoding the enhanced green fluorescent protein) gene. Fluorescence microscopy revealed EGFP fluorescence in positive transformants. Our results demonstrated the feasibility of exploiting a carbon source metabolic pathway for the development of promising fungal transformation systems, which provides a new molecular toolbox for genetic modifications of the cell factory H. jecorina.
机译:遗传转化是基础真菌研究必不可少的工具,也是用于直接改良工业菌株的有用技术。在这里,我们描述了一种简单且可重现的丝状真菌Hypocrea jecorina转化系统。该系统基于hxk1(编码己糖激酶)作为选择标记,己糖激酶阴性菌株和D-甘露醇(用作选择性碳源和渗透稳定剂)。用hxk1基因转化后,获得的转化子能够在D-甘露醇上作为唯一碳源生长。使用D-甘露糖醇作为碳源和渗透稳定剂的转化效率大约是使用D-山梨糖醇的转化效率的五倍。用egfp(编码增强的绿色荧光蛋白)基因转化红褐肉座菌进一步证明了该系统的实用性。荧光显微镜显示阳性转化体中的EGFP荧光。我们的结果证明了利用碳源代谢途径开发有前途的真菌转化系统的可行性,这为细胞工厂红褐肉座菌的遗传修饰提供了新的分子工具箱。

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