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A novel platform for heterologous gene expression in Trichoderma reesei (Teleomorph Hypocrea jecorina)

机译:里氏木霉(Teleomorph Hypocrea jecorina)中异源基因表达的新平台。

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Background The industrially applied filamentous fungus Trichoderma reesei has received substantial interest due to its highly efficient synthesis apparatus of cellulytic enzymes. However, the production of heterologous enzymes in T. reesei still remains low mainly due to lack of tools for genetic engineering. Results In this study we present new genetic tools for T. reesei to further expand its use in industrial production. We have developed an expression platform where genes are inserted into a versatile expression vector via highly efficient uracil-excision cloning and subsequently inserted into a defined position in the T. reesei genome ensuring that enzyme production from different transformants can be directly compared. The ade2 locus was selected as integration site since ade2 mutants develop red pigment that facilitates easy and rapid detection of correctly targeted transformants. In addition, our system includes a tku70 disruption to increase gene targeting efficiency and a new bidirectional marker, pyr2, for iterative gene targeting. The dual selection system, color and prototrophism, ensures that correct transformants containing the desired gene inserted into the defined expression site can be selected with an efficiency approaching 100%. Conclusions The new genetic tools we have developed are suitable for high-throughput integration of genes into the genome of T. reesei and can easily be combined with techniques for generation of defined mutants. Moreover, the usability of the novel expression system with ade2 as integration site was confirmed by expression of a Thermomyces lanuginosus lipase.
机译:背景技术工业应用的丝状真菌里氏木霉(Trichoderma reesei)由于其高效的纤维素分解酶的合成装置而引起了人们的极大兴趣。但是,由于缺乏基因工程工具,里氏木霉中异源酶的产量仍然很低。结果在这项研究中,我们提出了里氏木霉的新遗传工具,以进一步扩大其在工业生产中的用途。我们已经开发了一种表达平台,其中通过高效尿嘧啶切除克隆将基因插入通用表达载体中,然后将其插入里氏木霉基因组中的定义位置,确保可以直接比较来自不同转化体的酶产生。选择ade2基因座作为整合位点,因为ade2突变体会形成红色素,从而有助于轻松快速地检测正确靶向的转化子。此外,我们的系统还包括一个tku70干扰序列,用于提高基因靶向效率,以及一个新的双向标记pyr2,用于迭代基因靶向。颜色和原养性双重选择系统确保可以选择接近100%的效率选择正确的转化子,其中包含插入定义的表达位点的所需基因。结论我们开发的新遗传工具适用于将基因高通量整合到里氏木霉的基因组中,并且可以轻松地与产生定义突变体的技术结合使用。此外,通过表达嗜热霉菌脂肪酶证实了具有ade2作为整合位点的新型表达系统的可用性。

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