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3. Global patterns of vascular plant alpha diversity

5. Supplementary material 2 from: Kortz A, Hejda M, Pergl J, Kutlvašr J, Petřík P, Sádlo J, Vítková M, Vojík M, Pyšek P (2024) Impacts of native and alien plant dominants at different spatial scales. NeoBiota 92: 29-43. https://doi.org/10.3897/neobiota.92.116392

6. Supplementary material 1 from: Kortz A, Hejda M, Pergl J, Kutlvašr J, Petřík P, Sádlo J, Vítková M, Vojík M, Pyšek P (2024) Impacts of native and alien plant dominants at different spatial scales. NeoBiota 92: 29-43. https://doi.org/10.3897/neobiota.92.116392

7. Supplementary material 3 from: Kortz A, Hejda M, Pergl J, Kutlvašr J, Petřík P, Sádlo J, Vítková M, Vojík M, Pyšek P (2024) Impacts of native and alien plant dominants at different spatial scales. NeoBiota 92: 29-43. https://doi.org/10.3897/neobiota.92.116392

9. ReSurveyEurope: A database of resurveyed vegetation plots in Europe

10. ReSurveyEurope : A database of resurveyed vegetation plots in Europe

11. Combining multiple investigative approaches to unravel functional responses to global change in the understorey of temperate forests

12. ReSurveyEurope:A database of resurveyed vegetation plots in Europe

13. Evaluating plant lineage losses and gains in temperate forest understories: a phylogenetic perspective on climate change and nitrogen deposition

14. Combining multiple investigative approaches to unravel functional responses to global change in the understorey of temperate forests

15. Replacements of small- by large-ranged species scale up to diversity loss in Europe’s temperate forest biome

17. Observer and relocation errors matter in resurveys of historical vegetation plots

18. Forests and Climate Change in Czechia: an Appeal to Responsibility

19. Global trait–environment relationships of plant communities

21. Combining Biodiversity Resurveys across Regions to Advance Global Change Research

23. Global patterns of vascular plant alpha diversity

29. Using long-term ecosystem service and biodiversity data to study the impacts and adaptation options in response to climate change: insights from the global ILTER sites network

30. Directional turnover towards larger-ranged plants over time and across habitats

31. Directional turnover towards larger-ranged plants over time and across habitats

32. Driving factors behind the eutrophication signal in understorey plant communities of deciduous temperate forests

33. Directional turnover towards larger‐ranged plants over time and across habitats

34. Thermal differences between juveniles and adults increased over time in European forest trees

35. sPlotOpen – An environmentally balanced, open‐access, global dataset of vegetation plots

36. Consistent replacement of small- by large-ranged plant species across habitats

37. Directional turnover towards larger‐ranged plants over time and across habitats

38. Thermal differences between juveniles and adults increased over time in European forest trees

39. sPlotOpen : an environmentally balanced, open‐access, global dataset of vegetation plots

40. Response to Comment by Schall & Heinrichs on 'Forest microclimate dynamics drive plant responses to warming'

41. Bookreviews

42. Response to Comment by Bertrand et al. on 'Forest microclimate dynamics drive plant responses to warming'

45. Similar factors underlie tree abundance in forests in native and alien ranges

47. Pladias Database of the Czech flora and vegetation

48. Response to Comment on “Forest microclimate dynamics drive plant responses to warming”

50. Forest microclimate dynamics drive plant responses to warming

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