Whether the fraction of total forest biomass distributed in roots, stems, or leaves varies systematically across geographic gradients remains unknown despite its importance for understanding forest ecology and modeling global carbon cycles. It has been hypothesized that plants should maintain proportionally more biomass in the organ that acquires the most limiting resource. Accordingly, we hypothesize greater biomass distribution in roots and less in stems and foliage in increasingly arid climates and in colder environments at high latitudes. Such a strategy would increase uptake of soil water in dry conditions and of soil nutrients in cold soils, where they are at low supply and are less mobile. We use a large global biomass dataset (>6,20...
The geographical patterns in the distribution of fine root biomass (FRB) and in the contribution of ...
Key message: Stand age, water availability, and the length of the warm period are the most influenci...
Patterns of plant biomass allocation and functional adjustments along climatic gradients are poorly ...
Whether the fraction of total forest biomass distributed in roots, stems, or leaves varies systemati...
A poor understanding of the fraction of global plant biomass occurring belowground as roots limits o...
Aim An understanding of the relationship between forest biomass and climate is needed to predict the...
Aim An understanding of the relationship between forest biomass and climate is needed to predict the...
Globally, the allocation of root-shoot biomass is a key plant-adaptive strategy for terrestrial ecos...
Forest biomass allocation patterns are important for understanding global carbon cycling and climate...
Forest biomass allocation patterns are important for understanding global carbon cycling and climate...
Aim An understanding of the relationship between forest biomass and climate is needed to predict the...
Patterns of plant biomass allocation and functional adjustments along climatic gradients are poorly ...
Patterns of plant biomass allocation and functional adjustments along climatic gradients are poorly ...
Forest ecosystems are an essential part of the global carbon cycle and constitute a large fraction o...
Forest ecosystems are an essential part of the global carbon cycle and constitute a large fraction o...
The geographical patterns in the distribution of fine root biomass (FRB) and in the contribution of ...
Key message: Stand age, water availability, and the length of the warm period are the most influenci...
Patterns of plant biomass allocation and functional adjustments along climatic gradients are poorly ...
Whether the fraction of total forest biomass distributed in roots, stems, or leaves varies systemati...
A poor understanding of the fraction of global plant biomass occurring belowground as roots limits o...
Aim An understanding of the relationship between forest biomass and climate is needed to predict the...
Aim An understanding of the relationship between forest biomass and climate is needed to predict the...
Globally, the allocation of root-shoot biomass is a key plant-adaptive strategy for terrestrial ecos...
Forest biomass allocation patterns are important for understanding global carbon cycling and climate...
Forest biomass allocation patterns are important for understanding global carbon cycling and climate...
Aim An understanding of the relationship between forest biomass and climate is needed to predict the...
Patterns of plant biomass allocation and functional adjustments along climatic gradients are poorly ...
Patterns of plant biomass allocation and functional adjustments along climatic gradients are poorly ...
Forest ecosystems are an essential part of the global carbon cycle and constitute a large fraction o...
Forest ecosystems are an essential part of the global carbon cycle and constitute a large fraction o...
The geographical patterns in the distribution of fine root biomass (FRB) and in the contribution of ...
Key message: Stand age, water availability, and the length of the warm period are the most influenci...
Patterns of plant biomass allocation and functional adjustments along climatic gradients are poorly ...