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2. Linking seed size and number to trait syndromes in trees

3. Masting is uncommon in trees that depend on mutualist dispersers in the context of global climate and fertility gradients

4. Limits to reproduction and seed size-number trade-offs that shape forest dominance and future recovery

5. Global transpiration data from sap flow measurements: The SAPFLUXNET database

6. Global transpiration data from sap flow measurements: The SAPFLUXNET database

7. The FLUXNET2015 dataset and the ONEFlux processing pipeline for eddy covariance data (vol 7, 225, 2020)

8. Global transpiration data from sap flow measurements: The SAPFLUXNET database

9. Author Correction: The FLUXNET2015 dataset and the ONEFlux processing pipeline for eddy covariance data

11. TRY plant trait database – enhanced coverage and open access

12. Ecosystem transpiration and evaporation: Insights from three water flux partitioning methods across FLUXNET sites

13. The FLUXNET2015 dataset and the ONEFlux processing pipeline for eddy covariance data

14. The FLUXNET2015 dataset and the ONEFlux processing pipeline for eddy covariance data

15. The FLUXNET2015 dataset and the ONEFlux processing pipeline for eddy covariance data.

21. The Relationship Between Maturation Size and Maximum Tree Size From Tropical to Boreal Climates.

22. The geophysical toolbox applied to forest ecosystems - A review.

23. Masting is uncommon in trees that depend on mutualist dispersers in the context of global climate and fertility gradients.

24. Contribution of deep soil layers to the transpiration of a temperate deciduous forest: Implications for the modelling of productivity.

25. Globally, tree fecundity exceeds productivity gradients.

26. Cross-biome synthesis of source versus sink limits to tree growth.

27. Limits to reproduction and seed size-number trade-offs that shape forest dominance and future recovery.

28. The 2018 European heatwave led to stem dehydration but not to consistent growth reductions in forests.

29. Drought elicits contrasting responses on the autumn dynamics of wood formation in late successional deciduous tree species.

30. The within-population variability of leaf spring and autumn phenology is influenced by temperature in temperate deciduous trees.

31. Author Correction: The FLUXNET2015 dataset and the ONEFlux processing pipeline for eddy covariance data.

32. Ecosystem transpiration and evaporation: Insights from three water flux partitioning methods across FLUXNET sites.

33. "Green pointillism": detecting the within-population variability of budburst in temperate deciduous trees with phenological cameras.

34. TRY plant trait database - enhanced coverage and open access.

35. Nutrient availability alters the correlation between spring leaf-out and autumn leaf senescence dates.

36. Chilling and forcing temperatures interact to predict the onset of wood formation in Northern Hemisphere conifers.

37. Antagonistic effects of growing season and autumn temperatures on the timing of leaf coloration in winter deciduous trees.

38. Larger temperature response of autumn leaf senescence than spring leaf-out phenology.

39. Environmental control of carbon allocation matters for modelling forest growth.

40. Wood phenology, not carbon input, controls the interannual variability of wood growth in a temperate oak forest.

41. Influence of physiological phenology on the seasonal pattern of ecosystem respiration in deciduous forests.

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