PubMed 25683503

PubMed ID: 25683503

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Tailor-made TALEN system for highly efficient targeted gene replacement in the rice blast fungus.
Authors: Arazoe Takayuki, Ogawa Tetsuo, Miyoshi Kennosuke, Yamato Tohru, Ohsato Shuichi, Sakuma Tetsushi, Yamamoto Takashi, Arie Tsutomu, Kuwata Shigeru
Journal: Biotechnology and bioengineering (Biotechnol Bioeng), Vol.112(7), 2015‑Jul

DOI: 10.1002/bit.25559

Abstract
Genetic manipulation is key to unraveling gene functions and creating genetically modified strains of microbial organisms. Recently, engineered nucleases that can generate DNA double-strand breaks (DSBs) at a specific site in the desired locus within genome are utilized in a rapidly developing genome editing technology via DSBs repair. However, the use of engineered nucleases in filamentous fungi has not been validated. In this study, we demonstrated that tailor-made transcriptional activator-like effector nucleases (TALENs) system, Platinum-Fungal TALENs (PtFg TALENs), could improve the efficiency of homologous recombination-mediated targeted gene replacement by up to 100% in the rice blast fungus Pyricularia oryzae. This high-efficiency PtFg TALEN has great potential for basic and applied biological applications in filamentous fungi.
Publication Types
Journal Article Research Support, Non-U.S. Gov't
Keywords
TALEN blast fungus engineered nuclease filamentous fungi gene targeting genome editing rice
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