葉のCO<sub>2</sub>同化速度の簡便迅速測定システムの開発
Author:
Affiliation:
1. Graduate School of Agriculture, Tokyo University of Agriculture and Technology
2. Welfare Engineering Unit, Polytechnic University
3. Masa International Corp.
4. Graduate School of Agriculture, Kyoto University
Publisher
Crop Science Society of Japan
Subject
Genetics,Agronomy and Crop Science,Food Science
Link
https://www.jstage.jst.go.jp/article/jcs/92/4/92_289/_pdf
Reference48 articles.
1. Adachi, S., Tsuru, Y., Kondo, M., Yamamoto, T., Arai-Sanoh, Y., Ando, T., Ookawa, T., Yano, M. and Hirasawa, T. 2010. Characterization of a rice variety with high hydraulic conductance and identification of the chromosome region responsible using chromosome segment substitution lines. Ann. Bot. 106: 803-811.
2. Adachi, S., Yoshikawa, K., Yamanouchi, U., Tanabata, T., Sun, J., Ookawa, T., Yamamoto, T., Sage, R.F., Hirasawa, T. and Yonemaru, J. 2017. Fine mapping of Carbon Assimilation Rate 8, a quantitative trait locus for flag leaf nitrogen content, stomatal conductance and photosynthesis in rice. Front. Plant Sci. 8: 60.
3. 安達俊輔・寺崎千鶴 2019. 作物の光合成速度の改良を目的とする自然変異アリルの特定と利用. 光合成研究 29: 41-53.
4. Araie, T., Ikeda, T., Kakimoto, A. and Adachi, S. 2020. Development of upper-limb assist suit for reduction physical load in leaf photosynthesis measurement. Int. J. Model. Optim. 10: 185-189.
5. Bheemanahalli, R., Ramamoorthy, P., Poudel, S., Samiappan, S., Wijewardane, N. and Reddy, K.R. 2022. Effects of drought and heat stresses during reproductive stage on pollen germination, yield, and leaf reflectance properties in maize (Zea mays L.). Plant Direct 6: e434.
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