Growth and physiological responses to ozone and mild drought stress of tree species with different ecological requirements

Pollastrini, M; Desotgiu, R; Cascio, C; Bussotti, F; Cherubini, P; Saurer, M; Gerosa, G; Marzuoli, R

HERO ID

644392

Reference Type

Journal Article

Year

2010

HERO ID 644392
In Press No
Year 2010
Title Growth and physiological responses to ozone and mild drought stress of tree species with different ecological requirements
Authors Pollastrini, M; Desotgiu, R; Cascio, C; Bussotti, F; Cherubini, P; Saurer, M; Gerosa, G; Marzuoli, R
Journal Trees
Volume 24
Issue 4
Page Numbers 695-704
Abstract An open-top chamber experiment was carried out in Curno (Northern Italy) in 2004 and 2005 on seedlings of Fagus sylvatica (FS), Quercus robur (QR), and an ozone-sensitive Populus (POP) clone, to investigate the role of two stress factors: tropospheric ozone and water shortage. Treatments were filtered air to achieve a 50% reduction in the environmental ozone concentrations (charcoal filtered, CF); and non-filtered air, with a 5% reduction in the environmental ozone concentrations (non-filtered, NF). Overall ozone exposure (AOT40) in open air (April-September) was 26,995 ppb h in 2004 and 25,166 ppb h in 2005. The plants were either watered (W) or not watered (dry, D). We investigated the above-ground biomass, tree-ring growth, stable carbon isotopes ratio, i.e. delta C-13 of tree rings, and the photosynthetic parameter Driving forces (DFABS), derived from chlorophyll a fluorescence analysis. Ozone-induced growth reduction (in terms of biomass) in POP, and that reduction was more pronounced in D plots. A synergistic effect of ozone and drought stress was evidenced by DFABS in POP and QR, but not in FS. The water availability was revealed as the main factor influencing the isotopic ratio delta C-13. In drought-stressed seedlings, the increase in delta C-13 value was accompanied by the reduction in stomatal conductance and increased DFABS. Fast-growing plant species with high water requirements are more susceptible to ozone and drought stress.
Doi 10.1007/s00468-010-0439-4
Wosid WOS:000280090500010
Url http://www.springerlink.com/index/10.1007/s00468-010-0439-4
Is Certified Translation No
Dupe Override No
Is Public Yes
Keyword Biomass; Carbon isotope discrimination; Chlorophyll a fluorescence; Fagus sylvatica; Populus clone; Quercus robur; Driving forces; Ring; width; beech fagus-sylvatica; open-top chambers; photosynthetic; electron-transport; air-pollution; chlorophyll fluorescence; pinus-halepensis; environmental-conditions; stomatal conductance; tropospheric ozone; crenata seedlings
Is Qa No
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