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1. Is vegetative area, photosynthesis, or grape C uploading involved in the climate change-related grape sugar/anthocyanin decoupling in Tempranillo?

2. Climate change conditions (elevated CO2 and temperature) and UV-B radiation affect grapevine (Vitis vinifera cv. Tempranillo) leaf carbon assimilation, altering fruit ripening rates.

3. Carbon balance, partitioning and photosynthetic acclimation in fruit-bearing grapevine (Vitis vinifera L. cv. Tempranillo) grown under simulated climate change (elevated CO2, elevated temperature and moderate drought) scenarios in temperature gradient greenhouses.

4. Growth, photosynthetic acclimation and yield quality in legumes under climate change simulations: an updated survey.

5. Methodological advances: using greenhouses to simulate climate change scenarios.

6. Alfalfa forage digestibility, quality and yield under future climate change scenarios vary with Sinorhizobium meliloti strain.

7. Climate change (elevated CO₂, elevated temperature and moderate drought) triggers the antioxidant enzymes' response of grapevine cv. Tempranillo, avoiding oxidative damage.

8. Climate change conditions (elevated CO2 and temperature) and UV-B radiation affect grapevine (Vitis vinifera cv. Tempranillo) leaf carbon assimilation, altering fruit ripening rates

9. Ultraviolet- B alleviates the uncoupling effect of elevated CO2 and increased temperature on grape berry ( V itis vinifera cv. Tempranillo) anthocyanin and sugar accumulation.

10. Photosynthetic response of Tempranillo grapevine to climate change scenarios.

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