Live-imaging evaluation of the efficacy of elevated CO2 concentration in a closed cultivation system for the improvement of bioproduction in tomato fruits
Author:
Affiliation:
1. Radiotracer Imaging Group, Medical and Biotechnological Application Unit, Quantum Beam Science Center, Japan Atomic Energy Agency
2. Department of Biological Science and Technology, Tokyo University of Science
Publisher
Japanese Society for Plant Cell and Molecular Biology
Subject
Plant Science,Agronomy and Crop Science,Biotechnology
Reference14 articles.
1. Duan Z, Homma A, Kobayashi M, Nagata N, Kaneko Y, Fujiki Y, Nishida I (2014) Photoassimilation, assimilate translocation and plasmodesmal biogenesis in the source leaves of Arabidopsis thaliana grown under an increased atmospheric CO2 concentration. Plant Cell Physiol 55: 358–369
2. Fujimaki S, Ishii S, Ishioka NS (2010a) Non-invasive imaging and analyses of transport of nitrogen nutrition in intact plants using a positron-emitting tracer imaging system (PETIS). In: Ohyama T and Sueyoshi K (eds) Nitrogen Assimilation in Plants. Research Signpost, Kerala, India, pp 119–132
3. Fujimaki S, Suzui N, Ishioka NS, Kawachi N, Ito S, Chino M, Nakamura S (2010b) Tracing cadmium from culture to spikelet: noninvasive imaging and quantitative characterization of absorption, transport, and accumulation of cadmium in an intact rice plant. Plant Physiol 152: 1796–1806
4. Kato K, Maruyama S, Hirai T, Hiwasa-Tanabe K, Mizoguchi T, Goto E, Ezura H (2011) A trial of production of the plant-derived high-value protein in a plant factory. Plant Signal Behav 6: 1172–1179
5. Kawachi N, Suzui N, Ishii S, Ito S, Ishioka NS, Yamazaki H, Hatano-Iwasaki A, Ogawa K, Fujimaki S (2011) Real-time whole-plant imaging of 11C translocation using positron-emitting tracer imaging system. Nucl Instr Meth Phys Res Sect A 648: S317–S320
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