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1. Effects of elevated ozone and warming on terpenoid emissions and concentrations of Norway spruce depend on needle phenology and age.

2. Elevated temperature and ozone modify structural characteristics of silver birch (Betula pendula) leaves.

3. Volatile organic compounds emitted from silver birch of different provenances across a latitudinal gradient in Finland.

4. Cell structural changes in the mesophyll of Norway spruce needles by elevated ozone and elevated temperature in open-field exposure during cold acclimation.

5. Contrasting responses of silver birch VOC emissions to short- and long-term herbivory.

6. Interactive effects of elevated ozone and temperature on carbon allocation of silver birch (Betula pendula) genotypes in an open-air field exposure.

7. Effects of angiopoietin-2-blocking antibody on endothelial cell-cell junctions and lung metastasis.

8. Emissions of volatile organic compounds and leaf structural characteristics of European aspen (Populus tremula) grown under elevated ozone and temperature.

9. Differences in leaf characteristics between ozone-sensitive and ozone-tolerant hybrid aspen (Populus tremula x Populus tremuloides) clones.

10. Leaf photosynthetic characteristics of silver birch during three years of exposure to elevated concentrations of CO2 and O3 in the field.

11. Silver birch and climate change: variable growth and carbon allocation responses to elevated concentrations of carbon dioxide and ozone.

12. Ozone effects on the ultrastructure of peatland plants: Sphagnum mosses, Vaccinium oxycoccus, Andromeda polifolia and Eriophorum vaginatum.

13. Nitrogen availability modifies the ozone responses of Scots pine seedlings exposed in an open-field system.

14. Influence of nitrogen and phosphorous availability and ozone stress on Norway spruce seedlings.

15. Growth responses and related biochemical and ultrastructural changes of the photosynthetic apparatus in birch (Betula pendula) saplings exposed to low concentrations of ozone.

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