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Detection of urban trees sensitivity to air pollution using physiological and biochemical leaf traits in Tehran, Iran
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AbstractThe increased population in megacities has recently exacerbated the need to combat air pollution. This study examined the concept that the sensitivity and tolerance of urban plant species to air pollution might be used to determine Tehran, Iran's air quality and obtain suitable urban greening. The air pollution tolerance index (APTI) was derived using the total chlorophyll, relative water content, pH, and ascorbic acid content of leaf extract fromMorus alba,Ailanthus altissima, andSalix babylonicatrees as an indicator of the sensitivity and tolerance of urban plant species.A. altissimaandS. babylonica, with APTI values of 11.15 and 11.08, respectively, were sensitive to air pollution and can be employed as bioindicators, whereasM. alba, with an APTI value of 14.08, exhibited moderate resistance to air pollution and is therefore recommended for urban planting. Furthermore, the content of enzymatic and non-enzymatic parameters (carotenoid, phenol, and flavonoids) and proline concentration in the polluted seasons and sites (3 and 4) have been increased inM. alba. Collectively, we expect our findings to contribute to the rapidly growing body of research aiming to find a suitable urban greening for a wide range of polluted megacities.
Springer Science and Business Media LLC
Title: Detection of urban trees sensitivity to air pollution using physiological and biochemical leaf traits in Tehran, Iran
Description:
AbstractThe increased population in megacities has recently exacerbated the need to combat air pollution.
This study examined the concept that the sensitivity and tolerance of urban plant species to air pollution might be used to determine Tehran, Iran's air quality and obtain suitable urban greening.
The air pollution tolerance index (APTI) was derived using the total chlorophyll, relative water content, pH, and ascorbic acid content of leaf extract fromMorus alba,Ailanthus altissima, andSalix babylonicatrees as an indicator of the sensitivity and tolerance of urban plant species.
A.
altissimaandS.
babylonica, with APTI values of 11.
15 and 11.
08, respectively, were sensitive to air pollution and can be employed as bioindicators, whereasM.
alba, with an APTI value of 14.
08, exhibited moderate resistance to air pollution and is therefore recommended for urban planting.
Furthermore, the content of enzymatic and non-enzymatic parameters (carotenoid, phenol, and flavonoids) and proline concentration in the polluted seasons and sites (3 and 4) have been increased inM.
alba.
Collectively, we expect our findings to contribute to the rapidly growing body of research aiming to find a suitable urban greening for a wide range of polluted megacities.
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