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2. Linking fine root lifespan to root chemical and morphological traits—A global analysis

3. Toward a coordinated understanding of hydro‐biogeochemical root functions in tropical forests for application in vegetation models

5. The importance of trait selection in ecology

11. Corrigendum

17. Termite sensitivity to temperature affects global wood decay rates

18. Corrigendum

19. Mycorrhizal symbiosis pathway and edaphic fertility frame root economics space among tree species

22. Temperature sensitivity of termites determines global wood decay rates

26. Tradeoffs and Synergies in Tropical Forest Root Traits and Dynamics for Nutrient and Water Acquisition: Field and Modeling Advances

28. A starting guide to root ecology: strengthening ecological concepts and standardising root classification, sampling, processing and trait measurements

29. Fine roots stimulate nutrient release during early stages of leaf litter decomposition in a Central Amazon rainforest

30. Biogeographic history and habitat specialization shape floristic and phylogenetic composition across Amazonian forests

31. An integrated framework of plant form and function: the belowground perspective

33. Root traits explain plant species distributions along climatic gradients yet challenge the nature of ecological trade-offs

34. Litter inputs and phosphatase activity control the temporal variability of organic phosphorus in a tropical forest soil in the Central Amazon

37. Rapid responses of root traits and productivity to phosphorus and cation additions in a tropical lowland forest in Amazonia

39. Root traits as drivers of plant and ecosystem functioning: current understanding, pitfalls and future research needs

43. Global root traits (GRooT) database

48. The fungal collaboration gradient dominates the root economics space in plants

49. Global Root Traits (GRooT) Database

50. Fine‐root dynamics vary with soil depth and precipitation in a low‐nutrient tropical forest in the Central Amazonia

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