1,373
Views
21
CrossRef citations to date
0
Altmetric
Regular Papers

Phenotypes of gene disruptants in relation to a putative mitochondrial malate–citrate shuttle protein in citric acid-producing Aspergillus niger

, , &
Pages 1737-1746 | Received 10 Nov 2015, Accepted 25 Feb 2016, Published online: 18 Apr 2016

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

Read on this site (1)

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.
Read now

Articles from other publishers (20)

Xin Tang, Fengzhu Ling, Jianxin Zhao, Haiqin Chen & Wei Chen. (2023) Overexpression of Citrate-Malate Carrier Promoted Lipid Accumulation in Oleaginous Filamentous Fungus Mortierella alpina . Journal of Agricultural and Food Chemistry 71:19, pages 7468-7476.
Crossref
Wei Cao, Licheng Zhang, Liu Wu, Mingyi Zhang, Jiao Liu, Zhoujie Xie & Hao Liu. (2022) Identification and genetic characterization of mitochondrial citrate transporters in Aspergillus niger. Frontiers in Microbiology 13.
Crossref
Isato Yoshioka, Hiroyuki Nakagawa & Kohtaro Kirimura. (2022) Non-production of mycotoxins by citric acid hyperproducer <i>Aspergillus tubingensis</i> (<i>A. niger</i>) WU-2223L: Evidence for its biosafety based on genome sequence and metabolite analysesクエン酸高生産菌<i>Aspergillus tubingensis</i>(<i>A. niger</i>)WU-2223Lのマイコトキシン非生産性:ゲノム配列情報と代謝産物の解析に基づく生物的安全性の検証. JSM Mycotoxins 72:2, pages 75-83.
Crossref
Taiki Futagami. (2022) The white koji fungus Aspergillus luchuensis mut. kawachii . Bioscience, Biotechnology, and Biochemistry 86:5, pages 574-584.
Crossref
Shuying Gu, Zhen Zhao, Yonghong Yao, Jingen Li & Chaoguang Tian. (2022) Designing and Constructing a Novel Artificial Pathway for Malonic Acid Production Biologically. Frontiers in Bioengineering and Biotechnology 9.
Crossref
Timothy C. Cairns, Lars Barthel & Vera Meyer. (2021) Something old, something new: challenges and developments in Aspergillus niger biotechnology . Essays in Biochemistry 65:2, pages 213-224.
Crossref
Timothy C. Cairns, Xiaomei Zheng, Ping Zheng, Jibin Sun & Vera Meyer. (2021) Turning Inside Out: Filamentous Fungal Secretion and Its Applications in Biotechnology, Agriculture, and the Clinic. Journal of Fungi 7:7, pages 535.
Crossref
Thanaporn Laothanachareon, Lyon Bruinsma, Bart Nijsse, Tom Schonewille, Maria Suarez-Diez, Juan Antonio Tamayo-Ramos, Vitor A. P. Martins dos Santos & Peter J. Schaap. (2021) Global Transcriptional Response of Aspergillus niger to Blocked Active Citrate Export through Deletion of the Exporter Gene. Journal of Fungi 7:6, pages 409.
Crossref
Levente Karaffa & Christian P. Kubicek. 2021. Encyclopedia of Mycology. Encyclopedia of Mycology 406 419 .
Wei Cao, Luwen Yan, Mengxin Li, Xinyuan Liu, Yongxue Xu, Zhoujie Xie & Hao Liu. (2020) Identification and engineering a C4-dicarboxylate transporter for improvement of malic acid production in Aspergillus niger. Applied Microbiology and Biotechnology 104:22, pages 9773-9783.
Crossref
Isato Yoshioka, Keiichi Kobayashi & Kohtaro Kirimura. (2020) Overexpression of the gene encoding alternative oxidase for enhanced glucose consumption in oxalic acid producing Aspergillus niger expressing oxaloacetate hydrolase gene. Journal of Bioscience and Bioengineering 129:2, pages 172-176.
Crossref
Junhuan Yang, Md. Ahsanul Kabir Khan, Huaiyuan Zhang, Yao Zhang, Milan Certik, Victoriano Garre & Yuanda Song. (2019) Mitochondrial Citrate Transport System in the Fungus Mucor circinelloides: Identification, Phylogenetic Analysis, and Expression Profiling During Growth and Lipid Accumulation. Current Microbiology 77:2, pages 220-231.
Crossref
Lei Yang, Tore Linde, Abeer H. Hossain, Mette Lübeck, Peter J. Punt & Peter S. Lübeck. (2019) Disruption of a putative mitochondrial oxaloacetate shuttle protein in Aspergillus carbonarius results in secretion of malic acid at the expense of citric acid production. BMC Biotechnology 19:1.
Crossref
Chihiro Kadooka, Kosuke Izumitsu, Masahira Onoue, Kayu Okutsu, Yumiko Yoshizaki, Kazunori Takamine, Masatoshi Goto, Hisanori Tamaki & Taiki Futagami. (2019) Mitochondrial Citrate Transporters CtpA and YhmA Are Required for Extracellular Citric Acid Accumulation and Contribute to Cytosolic Acetyl Coenzyme A Generation in Aspergillus luchuensis mut. kawachii . Applied and Environmental Microbiology 85:8.
Crossref
Levente Karaffa & Christian P. Kubicek. (2019) Citric acid and itaconic acid accumulation: variations of the same story?. Applied Microbiology and Biotechnology 103:7, pages 2889-2902.
Crossref
Xiaomei Zheng, Jiandong Yu, Timothy C. Cairns, Lihui Zhang, Zhidan Zhang, Qiongqiong Zhang, Ping Zheng, Jibin Sun & Yanhe Ma. (2019) Comprehensive Improvement of Sample Preparation Methodologies Facilitates Dynamic Metabolomics of Aspergillus niger . Biotechnology Journal 14:3, pages 1800315.
Crossref
Junhuan Yang, Shaoqi Li, Md. Ahsanul Kabir Khan, Victoriano Garre, Wanwipa Vongsangnak & Yuanda Song. (2019) Increased Lipid Accumulation in Mucor circinelloides by Overexpression of Mitochondrial Citrate Transporter Genes . Industrial & Engineering Chemistry Research 58:6, pages 2125-2134.
Crossref
Kohtaro Kirimura & Isato Yoshioka. 2019. Comprehensive Biotechnology. Comprehensive Biotechnology 158 165 .
Xueqin Lv, Jingjing Liu, Xian Yin, Liuyan Gu, Li Sun, Guocheng Du, Jian Chen & Long Liu. 2019. Systems and Synthetic Biotechnology for Production of Nutraceuticals. Systems and Synthetic Biotechnology for Production of Nutraceuticals 45 73 .
Han-Seok Choi, Ji-Eun Kang, Seok-Tae Jeong, Chan-Woo Kim, Seong-Yeol Baek & Soo-Hwan Yeo. (2017) Soju brewing characteristics of yeast strains N4 and N9 isolated from Korean traditional Nuruk. Korean Journal of Food Preservation 24:5, pages 714-724.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.