Two Fagus sylvatica clones, one from central and the other from southern Italy, were exposed to charcoal-filtered or ozone-enriched (150 ppb, 5 h d-1) air for 14 days. Leaf gas echange, chlorophyll a fluorescence, Leaf greenness and maximum RuBP-satutated rate of carboxylation have been measured. Even though the two clones came from sites with different environmental features, their photosynthetic performances were similarly depressed by fumigation, apart from stomatal conductance. An uncoupling between stomatal conductance and carbon assimilation was assumed to take place. Mesophyllic limitations were likely tobe the most limiting factor. Photosynthetic light reactions (i.e. apparent electron transport rate) responded to ozone earlier that dark reactions (i.e. maximum RuBP-saturated rate of carboxylation).

Photosynthetic behavior of two Italian clones of European beech (Fagus sylvatica Mill.) exposed to ozone.

Paoletti E;
2002

Abstract

Two Fagus sylvatica clones, one from central and the other from southern Italy, were exposed to charcoal-filtered or ozone-enriched (150 ppb, 5 h d-1) air for 14 days. Leaf gas echange, chlorophyll a fluorescence, Leaf greenness and maximum RuBP-satutated rate of carboxylation have been measured. Even though the two clones came from sites with different environmental features, their photosynthetic performances were similarly depressed by fumigation, apart from stomatal conductance. An uncoupling between stomatal conductance and carbon assimilation was assumed to take place. Mesophyllic limitations were likely tobe the most limiting factor. Photosynthetic light reactions (i.e. apparent electron transport rate) responded to ozone earlier that dark reactions (i.e. maximum RuBP-saturated rate of carboxylation).
2002
PROTEZIONE DELLE PIANTE
gas-exchange
seedlings
leaves
fumigation
pollution
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/42969
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