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Original Articles

Increases in Gene-Targeting Frequencies Due to Disruption of kueA as a ku80 Homolog in Citric Acid-Producing Aspergillus niger

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Pages 1594-1596 | Received 06 Jan 2011, Accepted 18 May 2011, Published online: 22 May 2014

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Kohtaro Kirimura, Keiichi Kobayashi & Isato Yoshioka. (2019) Decrease of citric acid produced by Aspergillus niger through disruption of the gene encoding a putative mitochondrial citrate-oxoglutarate shuttle protein. Bioscience, Biotechnology, and Biochemistry 83:8, pages 1538-1546.
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Qingqing Huang, Yang Cao, Zuoyi Liu, Yumei Tan & Yongxiang Liu. (2017) Efficient gene replacements in ku70 disruption strain of Aspergillus chevalieri var. intermedius. Biotechnology & Biotechnological Equipment 31:1, pages 16-22.
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Keiichi Kobayashi, Takasumi Hattori, Rie Hayashi & Kohtaro Kirimura. (2014) Overexpression of the NADP+-specific isocitrate dehydrogenase gene (icdA) in citric acid-producing Aspergillus niger WU-2223L. Bioscience, Biotechnology, and Biochemistry 78:7, pages 1246-1253.
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Keiichi KOBAYASHI, Takasumi HATTORI, Yuki HONDA & Kohtaro KIRIMURA. (2013) Gene Identification and Functional Analysis of Methylcitrate Synthase in Citric Acid-Producing Aspergillus niger WU-2223L. Bioscience, Biotechnology, and Biochemistry 77:7, pages 1492-1498.
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Articles from other publishers (10)

Igor G. Sinelnikov, Valeriy Yu. Kislitsin, Andrey M. Chulkin, Andrey A. Shaplin & Aleksandra M. Rozhkova. (2023) INFLUENCE OF KU70 GENE KNOCKOUT ON TRANSFORMATION FREQUENCY OF PENICILLIUM VERRUCULOSUM MYCELIAL FUNGI. Lomonosov chemistry journal 64:№5, 2023, pages 460-467.
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Isato Yoshioka & Kohtaro Kirimura. (2021) Rapid and marker-free gene replacement in citric acid-producing Aspergillus tubingensis (A. niger) WU-2223L by the CRISPR/Cas9 system-based genome editing technique using DNA fragments encoding sgRNAs. Journal of Bioscience and Bioengineering 131:6, pages 579-588.
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Kohtaro Kirimura & Isato Yoshioka. 2019. Comprehensive Biotechnology. Comprehensive Biotechnology 158 165 .
Xuenian Huang, Mei Chen, Jianjun Li & Xuefeng Lu. (2016) Establishing an efficient gene-targeting system in an itaconic-acid producing Aspergillus terreus strain. Biotechnology Letters 38:9, pages 1603-1610.
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Kohtaro Kirimura, Shotaro Watanabe & Keiichi Kobayashi. (2016) Heterologous gene expression and functional analysis of a type III polyketide synthase from Aspergillus niger NRRL 328. Biochemical and Biophysical Research Communications 473:4, pages 1106-1110.
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Hiroshi Kikukawa, Eiji Sakuradani, Masato Nakatani, Akinori Ando, Tomoyo Okuda, Takaiku Sakamoto, Misa Ochiai, Sakayu Shimizu & Jun Ogawa. (2015) Gene targeting in the oil-producing fungus Mortierella alpina 1S-4 and construction of a strain producing a valuable polyunsaturated fatty acid. Current Genetics 61:4, pages 579-589.
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Khyati Dave, V. Lakshmi Prabha, Manmeet Ahuja, Kashyap Dave, S. Tejaswini & Narayan S. Punekar. 2015. Genetic Transformation Systems in Fungi, Volume 2. Genetic Transformation Systems in Fungi, Volume 2 141 153 .
Stéphane Delmas, Agustina Llanos, Jean-Luc Parrou, Matthew Kokolski, Steven T. Pullan, Lee Shunburne & David B. Archer. (2014) Development of an Unmarked Gene Deletion System for the Filamentous Fungi Aspergillus niger and Talaromyces versatilis. Applied and Environmental Microbiology 80:11, pages 3484-3487.
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Keiichi Kobayashi, Takasumi Hattori, Yuki Honda & Kohtaro Kirimura. (2014) Oxalic acid production by citric acid-producing Aspergillus niger overexpressing the oxaloacetate hydrolase gene oahA . Journal of Industrial Microbiology and Biotechnology 41:5, pages 749-756.
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Yuki Honda & Kohtaro Kirimura. (2013) Generation of Circularly Permuted Fluorescent-Protein-Based Indicators for In Vitro and In Vivo Detection of Citrate. PLoS ONE 8:5, pages e64597.
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