Kinose Y., Aoki T., Matsumoto M.,, Li J., Ariura R., Fuse T., Zhang Y., Yamaguchi M., Watanabe M., Izuta T., 2025.
Effects of ozone on leaf nitrogen assimilation and nitrogen utilization in photosynthetic apparatus of Fagus crenata seedlings grown under different atmospheric CO2 and soil nitrogen conditions.
Environmental and Experimental Botany 231, 106098. DOI: 10.1016/j.envexpbot.2025.106098
Yamaguchi M., Hashiguchi Y., Fujikawa A., Murayama S., Miyaguchi K., Kinose Y., Yonekura T., 2025.
Variation in growth enhancement by elevated CO2 in Japanese mustard spinach (Brassica rapa var. perviridis).
Journal of Agricultural Meteorology 81, 66–72. DOI: 10.2480/agrmet.D-24-00025
Yamaguchi M., Matsumoto M., Miyaguchi K., Li J., Aoki T., Ariura R., Fuse T., Zhang Y., Kinose Y., Watanabe M., Izuta T. 2024.
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 907, 10. DOI: 10.1016/j.scitotenv.2023.168102
Lyu Y., Ariura R., Li J., Matsumoto M., Aoki T., Kinose Y., Yamaguchi M., Izuta T., Watanabe M. 2024.
Effects of ozone on stomatal ozone uptake in leaves of Fagus crenata seedlings grown under different CO2 concentrations.
Journal of Forest Research 29, 38–45. DOI: 10.1080/13416979.2023.2283981
Ariura R., Matsumoto M., Li J., Fuse T., Aoki T., Zhang Y., Kinose Y., Yamaguchi M., Izuta T., Watanabe M., 2023.
Effects of elevated ozone and carbon dioxide on the dynamic photosynthesis of Fagus crenata seedlings under variable light conditions.
Science of The Total Environment 891, 164398. DOI: 10.1016/j.scitotenv.2023.164398
Kinose Y., Seita R., 2022.
Simulating the impacts of and adaptation options for increasing air temperature on chalky rice grains in the Kyushu region of Japan.
Journal of Agricultural Meteorology 78, 147–154. DOI: 10.2480/agrmet.D-22-00017
Watanabe M., Li J., Matsumoto M., Aoki T., Ariura R., Fuse T., Zhang Y., Kinose Y., Yamaguchi M., Izuta T., 2022.
Growth and photosynthetic responses to ozone of Siebold’s beech seedlings grown under elevated CO2 and soil nitrogen supply.
Environmental Pollution 304, 119233. DOI: 10.1016/j.envpol.2022.119233
Kataoka R., Akashi M., Taniguchi T., Kinose Y., Yaprak A.E., Turgay O.C., 2021.
Metabolomics analyses reveal metabolites affected by plant growth-promoting endophytic bacteria in roots of the halophyte Mesembryanthemum crystallinum.
International Journal of Molecular Sciences 22, 11813. DOI: 10.3390/ijms222111813
Watanabe M., Hiroshima H., Kinose Y., Okabe S., Izuta T., 2020.
Nitrogen use efficiency for growth of Fagus crenata seedlings under elevated ozone and different soil nutrient conditions.
Forests 11, 371. DOI: 10.3390/f11040371
Kinose Y., Fukamachi Y., Okabe S., Hiroshima H., Watanabe M., Izuta T., 2020.
Toward an impact assessment of ozone on plant carbon fixation using a process-based plant growth model: A case study of Fagus crenata grown under different soil nutrient levels.
Science of the Total Environment 716, 137008. DOI: 10.1016/j.scitotenv.2020.137008
Kinose Y., Yamaguchi M., Matsumura H., Izuta T., 2020.
Impact assessment of ozone absorbed through stomata on photosynthetic carbon dioxide uptake by Japanese deciduous forest trees: Implications for ozone mitigation policies.
Forests 11, 137. DOI: 10.3390/f11020137
Kinose Y., Fukamachi Y., Watanabe M., Izuta T., 2020.
Ozone-induced change in the relationship between stomatal conductance and net photosynthetic rate is a factor determining cumulative stomatal ozone uptake by Fagus crenata seedlings.
Trees - Structure and Function 34, 445–454. DOI: 10.1007/s00468-019-01927-1
Kinose Y., Masutomi Y., Shiotsu F., Hayashi K., Ogawada D., Gomez-Garcia M., Matsumura A., Takahashi K., Fukushi K., 2020
Impact assessment of climate change on the major rice cultivar Ciherang in Indonesia.
Journal of Agricultural Meteorology 76, 19–28. DOI: 10.2480/agrmet.D-19-00045
Tatsumi K., Abiko T., Kinose Y., Inagaki S., Izuta T., 2019
Effects of ozone on the growth and yield of rice (Oryza sativa L.) under different nitrogen fertilization regimes.
Environmental Science and Pollution Research 26, 32103–32113. DOI: 10.1007/s11356-019-06358-6
Kamal M.Z.U., Yamaguchi M., Kinose Y., Izuta T., 2019.
Mitigation mechanism of ozone-induced reduction in net photosynthesis of Bangladeshi wheat under soil salinity stress.
Photosynthetica 57, 1025–1034. DOI: 10.32615/ps.2019.115
Yamaguchi M., Kinose Y., Matsumura H., Izuta T., 2019.
Evaluation of O3 effects on cumulative photosynthetic CO2 uptake in seedlings of four Japanese deciduous broad-leaved forest tree species based on stomatal O3 uptake.
Forests 10, 556. DOI: 10.3390/f10070556
Masutomi Y., Kinose Y., Takimoto T., Yonekura T., Oue H., Kobayashi K., 2019
Ozone changes the linear relationship between photosynthesis and stomatal conductance and decreases water use efficiency in rice.
Science of the Total Environment 655, 1009-1016. DOI: 10.1016/j.scitotenv.2018.11.132
Watanabe M., Okabe S., Kinose Y., Hiroshima H., Izuta T., 2019
Effects of ozone on soil respiration rate of Siebold’s beech seedlings grown under different soil nutrient conditions.
Journal of Agricultural Meteorology 75, 39-46. DOI: 10.2480/agrmet.D-18-00009
Watanabe M., Kamimaki Y., Mori M., Okabe S., Arakawa I., Kinose Y., Nakaba S., Izuta T., 2018.
Mesophyll conductance to CO2 in leaves of Siebold's beech (Fagus crenata) seedlings under elevated ozone.
Journal of Plant Research 131, 907-914. DOI: 10.1007/s10265-018-1063-4
Watanabe M., Kinose Y., Izuta T., 2018.
Photosynthesis of three evergreen broad-leaved tree species, Castanopsis sieboldii, Quercus glauca, and Q. myrsinaefolia, under elevated ozone.
iForest - Biogeosciences and Forestry 11, 360–366. DOI: 10.3832/ifor2493-011
Kinose Y., Fukamachi Y., Okabe S., Hiroshima H., Watanabe M., Izuta T., 2017.
Photosynthetic responses to ozone of upper and lower canopy leaves of Fagus crenata Blume seedlings grown under different soil nutrient conditions.
Environmental Pollution 223, 213–222. DOI: 10.1016/j.envpol.2017.01.014
Kinose Y., Fukamachi Y., Okabe S., Hiroshima H., Watanabe M., Izuta T., 2017.
Nutrient supply to soil offsets the ozone-induced growth reduction in Fagus crenata seedlings.
Trees - Structure and Function 31, 259–272. DOI: 10.1007/s00468-016-1481-7
Kamal M.Z.U., Yamaguchi M., Azuchi F., Kinose Y., Wada Y., Funada R., Izuta T., 2015.
Effects of ozone and soil salinity, singly and in combination, on growth, yield and leaf gas exchange rates of two Bangladeshi wheat cultivars.
Asian Journal of Atmospheric Environment 9, 173–186. DOI: 10.5572/ajae.2015.9.2.173
Kinose Y., Azuchi F., Uehara Y., Kanomata T., Kobayashi A., Yamaguchi M., Izuta T., 2014.
Modeling of stomatal conductance to estimate stomatal ozone uptake by Fagus crenata, Quercus serrata, Quercus mongolica var. crispula and Betula platyphylla.
Environmental Pollution 194, 235–245. DOI: 10.1016/j.envpol.2014.07.030
Azuchi F., Kinose Y., Matsumura T., Kanomata T., Uehara Y., Kobayashi A., Yamaguchi M., Izuta T., 2014.
Modeling stomatal conductance and ozone uptake of Fagus crenata grown under different nitrogen loads.
Environmental Pollution 184, 481–487. DOI: 10.1016/j.envpol.2013.09.025
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