Research field (5):
Social-ecological systems
, Ecology and environmental science
, Forest science
, Environmental load/risk assessment
, Environmental impact assessment
Research keywords (10):
Plant physiological ecology
, リスク評価
, 環境ストレス
, Forest Decline
, Elevated CO2
, Nitrogen deposition
, オゾン
, Global warming
, Environmental stress
, Ozone
Research theme for competitive and other funds (10):
2022 - 2025 異なる観測手法の組合せによる森林のオゾン吸収量推定プロセスモデルの構築
2019 - 2022 Environmental factors controlling accumulation of refractory components of macrophyte contributing to an increase of carbon sequestration to the ocean
2018 - 2021 Tree physiological study on the adaptation strategies for damage of Japanese beech forest due to combined environmental change in Shirakami Mountains
Kitaoka S, Qu LY, Kanetoshi M, Watanabe Y, Fujita S, Koike T. Photosynthetic nitrogen utilization of Robinia pseudoacacia, an invasive species, grown in contrasting light conditions: a leaf scale approach. Annals of Applied Biology. 2024. 184. 1. 61-71
Yuqing Lyu, Ryo Ariura, Jing Li, Misako Matsumoto, Takuro Aoki, Yoshiyuki Kinose, Masahiro Yamaguchi, Takeshi Izuta, Makoto Watanabe. Effects of ozone on stomatal ozone uptake in leaves of Fagus crenata seedlings grown under different CO 2 concentrations. Journal of Forest Research. 2023. 29. 1. 38-45
Ambikapathi Ramya, Periyasamy Dhevagi, Ramesh Poornima, S. Avudainayagam, Makoto Watanabe, Evgenios Agathokleous. Effect of ozone stress on crop productivity: A threat to food security. Environmental Research. 2023. 236. 116816-116816
Masahiro Yamaguchi, Misako Matsumoto, Kota Miyaguchi, Jing Li, Takuro Aoki, Ryo Ariura, Tsuyoshi Fuse, Yazhuo Zhang, Yoshiyuki Kinose, Makoto Watanabe, et al. Reduced ascorbate pool and its maintenance are important determinants of O3 damage to net photosynthetic rate in Fagus crenata under elevated CO2 and soil N supply. Science of The Total Environment. 2023. 168102-168102
Ryo Ariura, Misako Matsumoto, Jing Li, Tsuyoshi Fuse, Takuro Aoki, Yazhuo Zhang, Yoshiyuki Kinose, Masahiro Yamaguchi, Takeshi Izuta, Makoto Watanabe. Effects of elevated ozone and carbon dioxide on the dynamic photosynthesis of Fagus crenata seedlings under variable light conditions. Science of The Total Environment. 2023. 891. 164398-164398
Watanabe, M, Hoshika, Y, Koike, T. Physiological ecology of woody species under changing environments. Journal of Forest Research. 2024. 29. 1. 1-2
Koike T, Eguchi N, Watanabe T, Ichikawa K, Fujito E・Qu LY, Watanabe M, Watanabe Y, Agathokleou E, Kitao M, Takagi K, et al. A large scale evaluation of effect of changing environment on forest stands: results from a Free Air CO2 or O3 enrichment system. 2020. 37
KOIKE Takayoshi. Urban ecology under Ozone pollution: an experimental approach with a Free-Air Controlled Elevated (FACE) O3 system supported by the JST (Japan Science and Technology Agency). 2020. 37
Tropospheric ozone: a hazard for vegetation and human health・Impacts of ozone on ecophysiology of forest tree species
Cambridge Scholars Publishing 2021
Nitrogen use efficiency for growth of Fagus crenata seedlings under elevated ozone with different soil nutrient conditions
(IUFRO Tokyo 2017: Actions for sustainable forest ecosystems under air pollution and climate change. 2017)
Photosynthetic responses to ozone of Fagus crenata seedlings under different soil nutrient status
(IUFRO Tokyo 2017: Actions for sustainable forest ecosystems under air pollution and climate change. 2017)