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Regular Papers

Aspergillus oryzae nrtA affects kojic acid production

Pages 1776-1780 | Received 21 Dec 2015, Accepted 31 Mar 2016, Published online: 25 Apr 2016

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Igor A. Lavrinenko, Artem O. Donskikh, Dmitriy A. Minakov & Alexander A. Sirota. (2022) Analysis and classification of peanuts with fungal diseases based on real-time spectral processing. Food Additives & Contaminants: Part A 39:5, pages 990-1000.
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Digar Singh, Sunmin Lee & Choong Hwan Lee. (2019) Fathoming Aspergillus oryzae metabolomes in formulated growth matrices. Critical Reviews in Biotechnology 39:1, pages 35-49.
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Articles from other publishers (18)

Ziming Chen, Tianming Chen, Huanxin Zhang, Yuzhen Li, Junxia Fan, Lihua Yao, Bin Zeng & Zhe Zhang. (2023) Functional role of a novel zinc finger protein, AoZFA, in growth and kojic acid synthesis in Aspergillus oryzae . Applied and Environmental Microbiology 89:10.
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Shifali Chib, Vijay Lakshmi Jamwal, Vinod Kumar, Sumit G. Gandhi & Saurabh Saran. (2023) Fungal production of kojic acid and its industrial applications. Applied Microbiology and Biotechnology 107:7-8, pages 2111-2130.
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Liu Wu, Licheng Zhang, Xiaojie Li, Ruitong Lv, Wei Cao, Weixia Gao, Jiao Liu, Zhoujie Xie & Hao Liu. (2023) Effective production of kojic acid in engineered Aspergillus niger. Microbial Cell Factories 22:1.
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Ziming Chen, Tianming Chen, Huilan Wang, Conghua Jiang, Yixue Liu, Xinyu Wu, Yuzhen Li, Bin Zeng & Zhe Zhang. (2022) Disruption of Aokap6 near the kojic acid gene cluster affects the growth and kojic acid production in Aspergillus oryzae. World Journal of Microbiology and Biotechnology 38:10.
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Tianming Chen, Ziming Chen, Yuzhen Li, Bin Zeng & Zhe Zhang. (2022) A Novel Major Facilitator Superfamily Transporter Gene Aokap4 near the Kojic Acid Gene Cluster Is Involved in Growth and Kojic Acid Production in Aspergillus oryzae. Journal of Fungi 8:8, pages 885.
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Yuzhen Li, Huanxin Zhang, Ziming Chen, Junxia Fan, Tianming Chen, Bin Zeng & Zhe Zhang. (2022) Construction of single, double, or triple mutants within kojic acid synthesis genes kojA, kojR, and kojT by the CRISPR/Cas9 tool in Aspergillus oryzae. Folia Microbiologica 67:3, pages 459-468.
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Yuzhen Li, Huanxin Zhang, Ziming Chen, Junxia Fan, Tianming Chen, Yi Xiao, Junyin Jie, Bin Zeng & Zhe Zhang. (2022) Overexpression of a novel gene Aokap2 affects the growth and kojic acid production in Aspergillus oryzae. Molecular Biology Reports 49:4, pages 2745-2754.
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Koichi Tamano. (2022) Concomitant knockout of target and transporter genes in filamentous fungi by genome co‐editing. MicrobiologyOpen 11:2.
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Hayato Kudo, Gen-ya Arakawa, Saya Shirai, Masahiro Ogawa, Hitoshi Shindo, Masaru Hosaka & Masafumi Tokuoka. (2022) New role of a histone chaperone, HirA: Involvement in kojic acid production associated with culture conditions in Aspergillus oryzae. Journal of Bioscience and Bioengineering 133:3, pages 235-242.
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Junlin Chen & Manabu Arioka. (2021) Autophagy deficiency boosts the production of kojic acid in the filamentous fungus Aspergillus oryzae . Bioscience, Biotechnology, and Biochemistry 85:12, pages 2429-2433.
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Yujiro Higuchi. (2021) Membrane Traffic in Aspergillus oryzae and Related Filamentous Fungi. Journal of Fungi 7:7, pages 534.
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Junxia Fan, Zhe Zhang, Chuannan Long, Bin He, Zhihong Hu, Chunmiao Jiang & Bin Zeng. (2020) Identification and functional characterization of glycerol dehydrogenase reveal the role in kojic acid synthesis in Aspergillus oryzae. World Journal of Microbiology and Biotechnology 36:9.
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Koichi Tamano, Mahoko Kuninaga, Naoshi Kojima, Myco Umemura, Masayuki Machida & Hideaki Koike. (2019) Use of the kojA promoter, involved in kojic acid biosynthesis, for polyketide production in Aspergillus oryzae: implications for long-term production. BMC Biotechnology 19:1.
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Zhe Zhang, Junxia Fan, Chuannan Long, Bin He, Zhihong Hu, Chunmiao Jiang, Yongkai Li, Long Ma, Jingshang Wen, Xiaojin Zou, Yuan Chen, Zhenxiang Ge & Bin Zeng. (2019) Identification and characterization of the ZRT, IRT-like protein (ZIP) family genes reveal their involvement in growth and kojic acid production in Aspergillus oryzae . Journal of Industrial Microbiology and Biotechnology 46:12, pages 1769-1780.
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Gen-ya Arakawa, Hayato Kudo, Atsushi Yanase, Yuichi Eguchi, Haruka Kodama, Masahiro Ogawa, Yasuji Koyama, Hitoshi Shindo, Masaru Hosaka & Masafumi Tokuoka. (2019) A unique Zn(II)2-Cys6-type protein, KpeA, is involved in secondary metabolism and conidiation in Aspergillus oryzae. Fungal Genetics and Biology 127, pages 35-44.
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Weimeng Feng, Jinrui Liang, Bingbing Wang & Jianhua Chen. (2019) Improvement of kojic acid production in Aspergillus oryzae AR-47 mutant strain by combined mutagenesis. Bioprocess and Biosystems Engineering 42:5, pages 753-761.
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Jeffrey W. Cary, Matthew K. Gilbert, Matthew D. Lebar, Rajtilak Majumdar & Ana M. Calvo. (2018) <i>Aspergillus flavus</i> Secondary Metabolites: More than Just Aflatoxins. Food Safety 6:1, pages 7-32.
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編集部. (2017) 平成28年度における酒類の研究業績. JOURNAL OF THE BREWING SOCIETY OF JAPAN 112:4, pages 234-267.
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