Response of tropical trees to elevated Ozone: a Free Air Ozone Enrichment study

Jamal, Rushna ; Narayan, Shiv ; Dubey, Raghvendra ; Kannaujia, Rekha ; Rai, Richa ; Behera, Sandip K. ; Behera, Soumit K. ; Shirke, Pramod A. ; Pandey, Vivek ; Barik, Saroj K. (2022) Response of tropical trees to elevated Ozone: a Free Air Ozone Enrichment study Environmental Monitoring and Assessment, 195 (1). ISSN 0167-6369

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Official URL: https://doi.org/10.1007/s10661-022-10713-5

Related URL: http://dx.doi.org/10.1007/s10661-022-10713-5

Abstract

Tropospheric ozone (O3) has become one of the main urban air pollutants. In the present study, we assessed impact of ambient and future ground-level O3 on nine commonly growing urban tree species under Free Air Ozone Enrichment (FAOE) condition. During the study period, mean ambient and elevated ozone (EO3) concentrations were 48.59 and 69.62 ppb, respectively. Under EO3 treatment, stomatal density (SD) significantly decreased and guard cell length (GCL) increased in Azadirachta indica, Bougainvillea spectabilis, Plumeria rubra, Saraca asoca and Tabernaemontana divaricata, while SD increased and GCL decreased in Ficus benghalensis and Terminalia arjuna. Proline levels increased in all the nine plant species under EO3 condition. EO3 significantly reduced photosynthetic rate, stomatal conductance (gs), and transpiration rates (E). Only A. indica and N. indicum showed higher gs and E under EO3 treatment. Water use efficiency (WUE) significantly increased in F. benghalensis and decreased in A. indica and T. divaricata. Air Pollution Tolerance Index (APTI) significantly increased in Ficus religiosa and S. asoca whereas it decreased in B. spectabilis and A. indica. Of all the plant species B. spectabilis and A. indica were the most sensitive to EO3 (high gs and less ascorbic acid content) while S. asoca and F. religiosa were the most tolerant (lowgs and more ascorbic acid content). The sensitivity of urban tree species to EO3 is a cause of concern and should be considered for future urban forestry programmes. Our study should guide more such studies to identify tolerant trees for urban air pollution abatement.

Item Type:Article
Source:Copyright of this article belongs to Springer-Verlag.
Keywords:Ozone; Urban trees; Stomata; Photosynthesis; APTI.
ID Code:140798
Deposited On:11 Nov 2025 10:03
Last Modified:11 Nov 2025 10:03

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