A Tet-on and Cre-loxP based genetic engineering system for convenient recycling of selection markers in Penicillium oxalicum

The lack of selective markers has been a key problem preventing multistep genetic engineering in filamentous fungi, particularly for industrial species such as the lignocellulose degrading Penicillium oxalicum JUA10-1(formerly named as Penicillium decumbens). To resolve this problem, we constructed...

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Bibliographic Details
Main Authors: Baojie eJiang, Ruiqin eZhang, Dan eFeng, Fangzhong eWang, Kuimei eLiu, Yi eJiang, Kangle eNiu, Quanquan eYuan, Mingyu eWang, Hailong eWang, Youming eZhang, Xu eFang
Format: Article
Language:English
Published: Frontiers Media S.A. 2016-04-01
Series:Frontiers in Microbiology
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Online Access:http://journal.frontiersin.org/Journal/10.3389/fmicb.2016.00485/full
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Summary:The lack of selective markers has been a key problem preventing multistep genetic engineering in filamentous fungi, particularly for industrial species such as the lignocellulose degrading Penicillium oxalicum JUA10-1(formerly named as Penicillium decumbens). To resolve this problem, we constructed a genetic manipulation system taking advantage of two established genetic systems: the Cre-loxP system and Tet-on system in Penicillium oxalicum JUA10-1. This system is simple and efficient. The expression of Cre recombinase was activated by doxycycline since it was controlled by Tet-on system. Using this system, two genes, ligD and bglI, were sequentially disrupted by loxP flanked ptrA. The successful application of this procedure will provide a useful tool for genetic engineering in filamentous fungi. This system will also play an important role in improving the productivity of interesting products and minimizing by-product when fermented by filamentous fungi.
ISSN:1664-302X