Response of Fluorescence and Chlorophyll Physiological Characteristics of Typical Urban Trees to Ozone Stress

Author:

Gao Yaoyao,Liu Yuanqiu,Chen BoORCID,Tao Yuzhu,Cui Cheng,Wen Ye,Deng Wenping,Chen Qi,Yuan Xi

Abstract

In this study, four typical urban landscaping tree species were selected, three open top air chambers with different ozone concentrations were set, and the responses of chlorophyll fluorescence, chlorophyll content and relative conductivity of the trees to ozone stress were studied. The results showed that with the increase in ozone concentration, the maximum photochemical efficiency, electron transfer quantum yield, electron transfer rate (ETR) and chlorophyll content of the different tree species decreased significantly, while the relative conductivity of the different tree species increased significantly. Compared with the ozone concentration of NF, under an ozone concentration of nf40 and nf80, the decline in the rate of Fv/Fm of Koelreuteria paniculata and Ginkgo biloba was 2.47 and 2.28 times that of Pinus bungeana and Platycladus orientalis, respectively, and the increase in the rate of relative conductivity of K. paniculata and G. biloba was 2.11 and 1.28 times that of P. bungeana and P. orientalis, respectively. Under different ozone concentrations, the photochemical efficiency, electron transfer rate, chlorophyll content and relative conductivity of P. bungeana and P. orientalis were higher than those of Ginkgo biloba and K. paniculata, indicating that K. paniculata and G. biloba were more sensitive to ozone. This study is of great significance for improving urban environmental quality and ozone control and also provides a basis for selecting tree species with strong ozone tolerance.

Funder

National Natural Science Foundation of China “forest convalescent elements and their mechanism of action”

Youth fund of Beijing Academy of Agricultural and Forestry Sciences

Publisher

MDPI AG

Subject

Atmospheric Science,Environmental Science (miscellaneous)

Reference34 articles.

1. Xu, J.J. Effect of Ozone Stress on the Physiological and Root Characteristics of Greening Tree Species, 2022.

2. Chen, B., Yang, X.B., and Xu, J.J. Spatio-temporal variation and influencing factors of ozone pollution in Beijing. Atmosphere, 2022. 13.

3. Ozone uptake characteristics in different dominance hierarchies of poplar plantation;Chen;J. Beijing For. Univ.,2015

4. Ozone uptake at the canopy level in Robinia pseudoacacia in Beijing based on sap flow measurements;Wang;Acta Ecol. Sin.,2013

5. Chen, B. Effects of Ozone Stress on the Growth and Physiological Characteristics of Four Tree Species, 2018.

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