文献类型: 外文期刊
作者: Chen, Bo 1 ; Xu, Jingjing 1 ; Liu, Donghuan 3 ; Yang, Xinbing 2 ;
作者机构: 1.Beijing Acad Agr & Forestry Sci, Inst Forestry & Pomol, Beijing 100093, Peoples R China
2.Hebei Agr Univ, Baoding 071001, Hebei, Peoples R China
3.Beijing Bot Garden, Beijing 100093, Peoples R China
关键词: O-3 stress; Ginkgo biloba; Physiologico-ecological characteristics; O-3 uptake; Response and adaptation
期刊名称:GLOBAL ECOLOGY AND CONSERVATION ( 影响因子:3.969; 五年影响因子:4.38 )
ISSN:
年卷期: 2022 年 34 卷
页码:
收录情况: SCI
摘要: Ginkgo biloba, the main greening tree species in Beijing, was used to study the effects of elevated ozone (O-3) concentrations on physiology and ecology using an open-top air chamber (OTC). We set three O-3 concentration gradients (NF: normal atmospheric O-3 concentration; NF40: normal atmospheric O-3 concentration plus 40 nmol/mol; NF80: normal atmospheric O-3 concentration plus 80 nmol/mol). Based on the theoretical basis of the coupling of O-3 and transpiration through stomata, the O-3 uptake from the leaf surface of G. biloba was studied under artificial control. The results showed that with the O-3 concentration increased, the leaves of G. biloba were damaged, stomatal density, stomatal aperture, stomatal size, net photosynthetic rate, transpiration rate, stomatal conductance, and chlorophyll content decreased, while intercellular CO2 concentrations and relative conductivity increased. The monthly and daily variations in the liquid flow density of G. biloba decreased with the increase in O-3 concentration. Similarly, water consumption and the ozone uptake rate (F-O3) of G. biloba decreased with the increase in O-3 concentration: Water consumption by the entire tree under the NF40 and NF80 ozone concentrations decreased compared to NF, the rates of decline were 68.77% and 78.38%, respectively. The rates of F-O3 decrease were 15.48% and 31.04%, respectively.
- 相关文献
作者其他论文 更多>>
-
Integration of UAV Multi-Source Data for Accurate Plant Height and SPAD Estimation in Peanut
作者:He, Ning;Chen, Bo;Lu, Xianju;Fan, Jiangchuan;Guo, Xinyu;He, Ning;Zhang, Yongjiang;Bai, Bo;Li, Guowei
关键词:peanut; phenotype estimation; multi-source data fusion; machine learning
-
Improved estimation of nitrogen use efficiency in maize from the fusion of UAV multispectral imagery and LiDAR point cloud
作者:Chen, Bo;Gu, Shenghao;Huang, Guanmin;Lu, Xianju;Chang, Wushuai;Wang, Guangtao;Guo, Xinyu;Zhao, Chunjiang;Chen, Bo;Zhao, Chunjiang
关键词:Maize; Multi-source data; Nitrogen utilization efficiency; Nitrogen agronomy efficiency; Machine learning
-
Construction of an Au/g-C 3 N 4 /GO/Au substrate by a layer-by-layer assembly approach for surface-enhanced Raman spectroscopy
作者:Xu, Jingjing;Wei, Jingyi;Cui, Yanying;Guo, Sufang;An, Qi;Yu, Sixian;Han, Ping
关键词:Surface enhanced Raman spectroscopy; Layer -by -layer self -assembly; Food colorant detection; Water droplet evaporation; Au nanoparticles; Graphitic carbon nitride
-
3D Morphological Feature Quantification and Analysis of Corn Leaves
作者:Wen, Weiliang;Wang, Jinglu;Wang, Chuanyu;Guo, Xinyu;Wen, Weiliang;Wang, Jinglu;Wang, Chuanyu;Liu, Kai;Chen, Bo;Wang, Yuanqiao;Guo, Xinyu;Zhao, Yanxin;Duan, Minxiao
关键词:
-
Maximizing the Radiation Use Efficiency by Matching the Leaf Area and Leaf Nitrogen Vertical Distributions in a Maize Canopy: A Simulation Study
作者:Wang, Baiyan;Gu, Shenghao;Wang, Junhao;Chen, Bo;Wen, Weiliang;Guo, Xinyu;Zhao, Chunjiang;Wang, Baiyan;Wang, Junhao
关键词:
-
Canopy height uniformity: a new 3D phenotypic indicator linking individual plant to canopy
作者:Chang, Wushuai;Li, Ruiqi;Chang, Wushuai;Wen, Weiliang;Gu, Shenghao;Li, Yinglun;Fan, Jiangchuan;Lu, Xianju;Guo, Xinyu;Wen, Weiliang;Chen, Bo;Guo, Xinyu;Xu, Tianjun;Wang, Ronghuan
关键词:UAV; Lidar; Plant height; Canopy height uniformity; Above ground biomass
-
Prediction of vertical distribution of SPAD values within maize canopy based on unmanned aerial vehicles multispectral imagery
作者:Chen, Bo;Huang, Guanmin;Lu, Xianju;Gu, Shenghao;Wen, Weiliang;Guo, Xinyu;Zhao, Chunjiang;Chen, Bo;Wang, Guangtao;Chang, Wushuai;Guo, Xinyu;Chen, Bo;Zhao, Chunjiang;Huang, Guanmin;Lu, Xianju;Wen, Weiliang
关键词:canopy chlorophyll; SPAD values; maize; UAV multispectral; vertical distribution



