Jinnan Gong
University of Eastern Finland
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Publication
Featured researches published by Jinnan Gong.
Ecology and Evolution | 2014
Yunzhou Qiao; Huiling Liu; Seppo Kellomäki; Heli Peltola; Yueyan Liu; Baodi Dong; Changhai Shi; Huizhen Zhang; Chao Zhang; Jinnan Gong; Fuyan Si; Dongxiao Li; Xin Zheng; Mengyu Liu
Under the changing climate, asymmetric warming pattern would be more likely during day and night time, instead of symmetric one. Concurrently, the growth responses and water use of plants may be different compared with those estimated based on symmetric warming. In this work, it was compared with the effects of symmetric (ETs) and asymmetric (ETa) elevation of temperature alone, and in interaction with elevated carbon dioxide concentration (EC), on the grain yield (GY) and evapotranspiration in winter wheat (Triticum aestivum L.) based on pot experiment in the North China Plain (NCP). The experiment was carried out in six enclosed-top chambers with following climate treatments: (1) ambient temperature and ambient CO2 (CON), (2) ambient temperature and elevated CO2 (EC), (3) elevated temperature and ambient CO2 (ETs; ETa), and (4) elevated temperature and elevated CO2 (ECETs, ECETa). In symmetric warming, temperature was increased by 3°C and in asymmetric one by 3.5°C during night and 2.5°C during daytime, respectively. As a result, GY was in ETa and ETs 15.6 (P < 0.05) and 10.3% (P < 0.05) lower than that in CON. In ECETs and ECETa treatments, GY was 14.9 (P < 0.05) and 9.1% (P < 0.05) higher than that in CON. Opposite to GY, evapotranspiration was 7.8 (P < 0.05) and 17.9% (P < 0.05) higher in ETa and ETs treatments and 7.2 (P < 0.05) and 2.1% (P > 0.05) lower in ECETs and ECETa treatments compared with CON. Thus, GY of wheat could be expected to increase under the changing climate with concurrent elevation of CO2 and temperature as a result of increased WUE under the elevated CO2. However, the gain would be lower under ETa than that estimated based on ETs due to higher evapotranspiration.
Biogeosciences | 2014
Xin Jia; Tonggang Zha; Bin Wu; Yuqing Zhang; Jinnan Gong; Shugao Qin; Guopeng Chen; Duo Qian; Seppo Kellomäki; Heli Peltola
Ecological Modelling | 2012
Jinnan Gong; Kai-Yun Wang; Seppo Kellomäki; Chao Zhang; Pertti J. Martikainen; Narasinha J. Shurpali
Agricultural and Forest Meteorology | 2016
Xin Jia; Tianshan Zha; Jinnan Gong; Ben Wang; Yuqing Zhang; Bin Wu; Shugao Qin; Heli Peltola
Ecological Modelling | 2013
Jinnan Gong; Seppo Kellomäki; Kai-Yun Wang; Chao Zhang; Narasinha J. Shurpali; Pertti J. Martikainen
Hydrological Processes | 2016
Xin Jia; Tonggang Zha; Jinnan Gong; Bin Wu; Yuqing Zhang; Shugao Qin; Guopeng Chen; Wei Feng; Seppo Kellomäki; Heli Peltola
Biogeosciences | 2015
Ben Wang; Tonggang Zha; Xin Jia; Jinnan Gong; Bin Wu; Charles P.-A. Bourque; Yuqing Zhang; Shugao Qin; Guopeng Chen; Heli Peltola
Agricultural and Forest Meteorology | 2016
Jinnan Gong; Xin Jia; Tianshan Zha; Ben Wang; Seppo Kellomäki; Heli Peltola
Agricultural and Forest Meteorology | 2013
Jinnan Gong; Narasinha J. Shurpali; Seppo Kellomäki; Kai-Yun Wang; Chao Zhang; Mir Md Abdus Salam; Pertti J. Martikainen
Atmosphere | 2016
Xiaonan Guo; Tianshan Zha; Xin Jia; Bin Wu; Wei Feng; Jing Xie; Jinnan Gong; Yuqing Zhang; Heli Peltola