Kouji Kojima, U i Matsumoto, Sumie Keta, Kenji Nakahigashi, Kazutaka Ikeda, Nobuyuki Takatani, Tatsuo Omata, Makiko Aichi, High-Light-Induced Stress Activates Lipid Deacylation at the Sn-2 Position in the Cyanobacterium Synechocystis sp. PCC 6803. Plant and Cell Physiology, Volume 63(1): 82–91, 2022 <https://doi.org/10.1093/pcp/pcab147,>
Haruhiko Jimbo, Koki Yuasa, Kensuke Takagi, Takashi Hirashima, Sumie Keta, Makiko Aichi and Hajime Wada, Specific Incorporation of Polyunsaturated Fatty Acids into the sn-2 Position of Phosphatidylglycerol Accelerates Photodamage to Photosystem II under Strong Light. 2021.9.28, International Journal of Molecular Sciences, https://doi.org/ 10.3390/ijms221910432 Int. J. Mol. Sci. 22(19), 10432, 2021
Kouji KOJIMA, Sumie KETA, Kazuma UESAKA, Akihiro KATO, Nobuyuki TAKATANI, Kunio IHARA, Tatsuo OMATA, Makiko AICHI, A simple method for isolation and construction of markerless cyanobacterial mutants defective in acyl-acyl carrier protein synthetase. Applied Microbiology and Biotechnology. DOI: 10.1007/s00253-016-7850-8, 2016.11, 100:10107-10113, 2016
Akihiro Kato , Kazuhide Use , Nobuyuki Takatani, Kazutaka Ikeda, Miyuki Matsuura , Kouji Kojima, Makiko Aichi, Shin ichi Maeda and Tatsuo Omata. Modulation of the balance of fatty acid production and secretion is crucial for enhancement of growth and productivity of the engineered mutant of the cyanobacterium Synechococcus elongatus. Biotechonology for Biofuels, Vol.9:91, 2016
Akihiro Kato, Nobuyuki Takatani, Kazuhide Use, Kazuma Uesaka, Kazutaka Ikeda,Yajun Chang, Kouji Kojima, Makiko Aichi, Kunio Ihara, Kenji Nakahigashi, Shin-ichi Maeda and Tatsuo Omata. Identification of a cyanobacterial RND-type efflux system involved in export of free fatty acids. Plant and Cell Physiology, Vol.56 No.12, pp.2467-2477, 2015<https://doi.org/10.1093/pcp/pcv150>
Nobuyuki Takatani, Kazuhide Use, Akihiro Kato, Kazutaka Ikeda, Kouji Kojima, Makiko Aichi, Shin-ichi Maeda and Tatsuo Omata, “Essential role of acyl-ACP synthetase in acclimation of the cyanobacterium Synechococcus elongatus strain PCC 7942 to high-light conditions”, Plant and Cell Physiology, Vol.56, No.8, pp.1608-1615, 2015<https://doi.org/10.1093/pcp/pcv086>
Tomoyasu Shirako, Yusuke Ishizawa, Yui Ajioka, Makiko Aichi, Kaoru Ueno, Do Tan Hoa, Bach Thanh Hai, Tran Van Thanh, Masaaki Yamada and Motoyasu Minami, Identification of Muridae species and their food resources using DNA barcoding in Cat Tien National Park, Vietnam. Mammal Study40:217-229 (2015)
Yajun Chang, Nobuyuki Takatani, Makiko Aichi, Shin-ichi Maeda and T. Omata. Evaluation of the effects of PII deficiency and toxicity of PipX on growth characteristics of the PII-less mutant of the Cyanobacterium Synechococcus elongatus. Plant & cell Physiology.54 (9)1504-1514, 2013.<https://doi.org/10.1093/pcp/pct092>
Regulation of nitrate assimilation in cyanobacteria. Ohashi Y, Shi W, Takatani N, Aichi M, Maeda S, Watanabe S, Yoshikawa H, Omata T. J Exp Bot. 62(4):1411-24. 2011.
Characterization of the nitrate-nitrite transporter of the major facilitator superfamily (the nrtP gene product) from the cyanobacterium Nostoc punctiforme strain ATCC 29133. Bioscience, Biotechnology, and Biochemistry. Vol.70, 2006
Nitrite-responsive activation of the nitrate assimilation operonincyanobacteria plays an essential role in up-regulation of nitrate assimilation activities under nitrate-limited growth conditions.. J. Bacteriol. Vol.186, 2004
Role of NtcB in activation of nitrate assimilation genes in the cyanobacterium Synechocystics sp.strain PCC 6803.J.Bacteriol. Vol.183, 2001
Involvement of NtcB, a LysR family transcription factor, in nitrite activation of the nitrate assimilation operon in the cyanobacterium Synechococcus sp. strain PCC 7942. J. Bacteriol. Vol.179, 1997
Positive regulation by nitrite of the nitrate assimilation operon in the cyanobacteria Synechococcus sp. strain PCC 7942 and Plectonema boryanum. J. Bacteriol. Vol.178, 1996
Yajun Chang, Nobuyuki Takatani, Makiko Aichi, Shin-ichi Maeda and Tatsuo Omata, “Growth characteristics of a PII-deficient mutant of Synechococcus elongatus PCC 7942 carring the wild-tupe pipX gene”, The 7th Asian Pacific Phycological Forum, Wuhan, Chania, 2014年9月22日
Lulu Pan, Kiyoshi Onai, Takumi Natsume and Tatsuo Omata, “Induction patterns of the promoters of CCM-related genes by CcmR in Synechococcus sp. strain PCC7942”, The 7th Asian Pacific Phycological Forum, Wuhan, Chania, 2014年9月22日
Yajun Chang, Nobuyuki Takatani, Makiko Aichi, Shin-ichi Maeda and T. Omata. Effects of PII deficiency on growth of Synechococcus elongatus. 第54回植物生理学会 (岡山) 2013要旨集p309
Omata Tatsuo, Aichi Makiko, Ikeda Kazutaka. How Can We Manage the Nitrogen Cost in Algal Biofuel Production? 9th Asia-Pacific Marine Biotechnology Conference (Kochi) 2012.7
Makiko Aichi, Hideo Iwasaki, Takumi Ohishi, Takao Kondo, Mamoru Sugita, Kazuo Nagai and Tatsuo Omata. 2010.7.26-30. Network of gene regulation involved in the response of the cyanobacterium Synechococcus elongatus to nitrogen limitation Nitrogen 2010. P59 (Inuyama)
Yoshitake Ohashi, Nobuyuki Takatani, Makiko Aichi, Shin-ichi Maeda, Satoru Watanabe, Hirofumi Yoshikawa and Tatsuo Omata. 2010.7.26-30. Post-translational regulation of the cyanobacterial nitrate reductase involves the FeS center-binding domain of the enzyme. Nitrogen 2010. P64 (Inuyama)
Yui Ajioka・Makiko Aichi・Kaoru Ueno・Hisayoshi Terai・Motoyasu Minami・Takurou Odawara・Mamoru Nasu・Shigehiro Yokota・Soutarou Yonemura. 2010.5. Evaluation of environmental factors for the conservation of genetic diversity in Gentiana thunbergii, the SATOYAMA indicator species. 2nd International Conference of Urban Biodiversity and Design (URBIO2010). p.343.(Aichi)
Shigehiro Yokota・Takurou Odawara・Mamoru Nasu・Soutarou Yonemura・Motoyasu Minami・Makiko Aichi・Kaoru Ueno・Hisayoshi Terai. 2010.5. Evaluation of Species Diversity and Potential Habitats of the SATOYAMA Indicator Species in Toki-Shonai River Basin. 2nd International Conference of Urban Biodiversity and Design (URBIO2010). p.276.
Feedback regulation and nitrite transport activity: What is the physiological significance of the traits conserved in distinct families the high-affinity nitrate transporters?「植物の養分吸収と循環系」第2回ワークショップ(東京)2007
Characterization of the nitrare/nitrite transporter of the cyanobacterium Nostoc punctiforme ATCC29133.11th International symposium on phototrophicprokaryotes.
A new hypothesis for the origin of the ancestral plant cell. 11th International symposium on phototrophic prokaryotes. Tokyo, Japan. August, 2003
Functional analysis of the nirB and ntcB genes required for expression of maximum activity of nitrate utilization in Synechococcus sp. PCC7942. IX International symposium on phototrophic prokaryotes (Vienna, Austria), 1997