We quantified the biomass allocation patterns to leaves, stems and roots in vegetative plants, and how this is influenced by the growth environment, plant size, evolutionary history and competition. Dose–response curves of allocation were constructed by means of a meta-analysis from a wide array of experimental data. They show that the fraction of whole-plant mass represented by leaves (LMF) increases most strongly with nutrients and decreases most strongly with light. Correction for size-induced allocation patterns diminishes the LMF-response to light, but makes the effect of temperature on LMF more apparent. There is a clear phylogenetic effect on allocation, as eudicots invest relatively more than monocots in leaves, as do gymnosperms co...
A general allometric model has been derived to predict intraspeciÞc and in-terspeciÞc scaling relati...
Resource allocation to different functions is central in life-history theory. Plasticity of function...
Contains fulltext : 93769.pdf (publisher's version ) (Closed access
We quantified the biomass allocation patterns to leaves, stems and roots in vegetative plants, and h...
We quantified the biomass allocation patterns to leaves, stems and roots in vegetative plants, and h...
We quantified the biomass allocation patterns to leaves, stems and roots in vegetative plants, and h...
The majority of studies on plant biomass partitioning have focused on the effects of environment. Op...
Plants adapt phenotypically to different conditions of light and nutrient supply, supposedly in orde...
We compiled a global database for leaf, stem and root biomass representing c. 11 000 records for c. ...
We compiled a global database for leaf, stem and root biomass representing c. 11 000 records fo...
Plants adapt phenotypically to different conditions of light and nutrient supply, supposedly in orde...
We compiled a global database for leaf, stem and root biomass representing c. 11 000 records fo...
We compiled a global database for leaf, stem and root biomass representing c. 11 000 records for c. ...
We compiled a global database for leaf, stem and root biomass representing c. 11 000 records for c. ...
A general allometric model has been derived to predict intraspeciÞc and in-terspeciÞc scaling relati...
A general allometric model has been derived to predict intraspeciÞc and in-terspeciÞc scaling relati...
Resource allocation to different functions is central in life-history theory. Plasticity of function...
Contains fulltext : 93769.pdf (publisher's version ) (Closed access
We quantified the biomass allocation patterns to leaves, stems and roots in vegetative plants, and h...
We quantified the biomass allocation patterns to leaves, stems and roots in vegetative plants, and h...
We quantified the biomass allocation patterns to leaves, stems and roots in vegetative plants, and h...
The majority of studies on plant biomass partitioning have focused on the effects of environment. Op...
Plants adapt phenotypically to different conditions of light and nutrient supply, supposedly in orde...
We compiled a global database for leaf, stem and root biomass representing c. 11 000 records for c. ...
We compiled a global database for leaf, stem and root biomass representing c. 11 000 records fo...
Plants adapt phenotypically to different conditions of light and nutrient supply, supposedly in orde...
We compiled a global database for leaf, stem and root biomass representing c. 11 000 records fo...
We compiled a global database for leaf, stem and root biomass representing c. 11 000 records for c. ...
We compiled a global database for leaf, stem and root biomass representing c. 11 000 records for c. ...
A general allometric model has been derived to predict intraspeciÞc and in-terspeciÞc scaling relati...
A general allometric model has been derived to predict intraspeciÞc and in-terspeciÞc scaling relati...
Resource allocation to different functions is central in life-history theory. Plasticity of function...
Contains fulltext : 93769.pdf (publisher's version ) (Closed access