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Metabolomics involves the identification and quantification of all metabolites in a cell and correlating these to genomic functions. The plant kingdom metabolome is extremely diverse chemically, with estimates indicating as many as 200,000 different types of chemical substances. The various compounds produced by plants are important for the existence of the plant itself, and also play a vital role in our lives as food, industrial materials, energy and medicines. Our group performs cutting-edge metabolomics analyses by high-performance mass spectrometry. These non-targeted metabolomic analyses are applied to the identification of unknown gene functions and elucidation of metabolic networks. We are investigating the basic principles behind the wide variety of plant production functions, using Arabidopsis as a model. In the field of Phytochemical Genomics, we are also elucidating the production systems for specialized plant products in crops, medicinal plants and other useful plants at the genome level. Another important aspect of our research is an application of basic findings from these results to metabolic genome engineering for the development of sustainable resources.
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FRONTIERS IN PLANT SCIENCE (2024): 1325365-1325365
POSTHARVEST BIOLOGY AND TECHNOLOGY (2023): 112533-112533
Soichiro Honda, Yumiko Yamazaki, Takumi Mukada,Weiguo Cheng,Masaru Chuba,Yozo Okazaki,Kazuki Saito,Akira Oikawa,Hayato Maruyama,Jun Wasaki,Tadao Wagatsuma,Keitaro Tawaraya
Naoyuki Umemoto,Shuhei Yasumoto, Muneo Yamazaki,Kenji Asano,Kotaro Akai,Hyoung Jae Lee,Ryota Akiyama,Masaharu Mizutani, Yozo Nagira,Kazuki Saito,Toshiya Muranaka
Plant Biotechnologyno. 3 (2023): 211-218
Y. Choi, Y. Al-Mahmoud, J. Asciutto,B. Barnes, R. Bliton, C. Compton,W. Chang,X. Du, D. B. Greene,K. Holland, C. Magsig, S. Miller,
PNAS nexusno. 10 (2023): pgad326-pgad326
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