Morphological, physiological, and biochemical responses of Pistacia atlantica seedlings to elevated CO2 concentration and drought stress
Elevated atmospheric CO 2 concentration and changes in precipitation patterns affect plant physiological processes and alter ecosystem functions. In combination, the interactions between these factors result in complex responses that challenge our current understanding. We aimed to investigate the e...
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Veröffentlicht in: | European journal of forest research 2023-06, Vol.142 (3), p.657-670 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Elevated atmospheric CO
2
concentration and changes in precipitation patterns affect plant physiological processes and alter ecosystem functions. In combination, the interactions between these factors result in complex responses that challenge our current understanding. We aimed to investigate the effects of elevated CO
2
and drought stress on the growth and physiology traits of One-year-old
Pistacia atlantica
seedlings. Seedlings of
P. atlantica
were grown at two different CO
2
concentrations (ambient 380 ppm and elevated 700 ppm) and the two irrigation regimes (100% and 50% of field capacity) for one growing season. Seedlings collar diameter, height, leaf area, biomass accumulation, root length and volume, photosynthetic parameters, pigment content, and relative water content increased at elevated CO
2
. At the same time, the amounts of proline, electrolyte leakage, malondialdehyde, and antioxidant enzymes decreased at elevated CO
2
. Drought stress had negative effects on the measured growth parameters. These, however, ameliorate in the presence of elevated CO
2
through enhanced photosynthesis performance and maintaining better water status, and possibly also by a reduction of oxidative stress. Increased CO
2
, as expected in a future climate, might thus mitigate the negative effects of drought in
P. atlantica
trees under natural conditions. |
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ISSN: | 1612-4669 1612-4677 |
DOI: | 10.1007/s10342-023-01548-x |