Increasing evidence indicates that current dynamic global vegetation models (DGVMs) have suffered from insufficient realism and are difficult to improve, particularly because they are built on plant functional type (PFT) schemes. Therefore, new approaches, such as plant trait-based methods, are urgently needed to replace PFT schemes when predicting the distribution of vegetation and investigating vegetation sensitivity. As an important direction towards constructing next-generation DGVMs based on plant functional traits, we propose a novel approach for modelling vegetation distributions and analysing vegetation sensitivity through trait-climate relationships in China. The results demonstrated that a Gaussian mixture model (GMM) trained with...
Aim Despite their importance for predicting fluxes to and from terrestrial ecosystems, dynamic globa...
Functional trait data enhance climate change research by linking climate change, biodiversity respon...
Plant functional traits provide information about adaptations to climate and environmental condition...
Dynamic Global Vegetation Models (DGVMs) are indispensable for our understanding of climate change i...
Dynamic Global Vegetation Models (DGVMs) are indispensable for our understanding of climate change i...
Dynamic global vegetation models (DGVMs) typically rely on plant functional types (PFTs), which are ...
A process-oriented niche specification (PONS) model was constructed to quantify climatic controls on...
In many current dynamic global vegetation models (DGVMs), including those incorporated into Earth sy...
In many current dynamic global vegetation models (DGVMs), including those incorporated into Earth sy...
In many current dynamic global vegetation models (DGVMs), including those incorporated into Earth sy...
peer reviewedPredicting future ecosystems changes is necessary for better managing human resources. ...
In many current dynamic global vegetation models (DGVMs), including those incorporated into Earth sy...
Dynamic global vegetation models (DGVMs) typically track the material and energy cycles in ecosystem...
Dynamic global vegetation models (DGVMs) typically track the material and energy cycles in ecosystem...
Our ability to understand and predict the response of ecosystems to a changing environment depends o...
Aim Despite their importance for predicting fluxes to and from terrestrial ecosystems, dynamic globa...
Functional trait data enhance climate change research by linking climate change, biodiversity respon...
Plant functional traits provide information about adaptations to climate and environmental condition...
Dynamic Global Vegetation Models (DGVMs) are indispensable for our understanding of climate change i...
Dynamic Global Vegetation Models (DGVMs) are indispensable for our understanding of climate change i...
Dynamic global vegetation models (DGVMs) typically rely on plant functional types (PFTs), which are ...
A process-oriented niche specification (PONS) model was constructed to quantify climatic controls on...
In many current dynamic global vegetation models (DGVMs), including those incorporated into Earth sy...
In many current dynamic global vegetation models (DGVMs), including those incorporated into Earth sy...
In many current dynamic global vegetation models (DGVMs), including those incorporated into Earth sy...
peer reviewedPredicting future ecosystems changes is necessary for better managing human resources. ...
In many current dynamic global vegetation models (DGVMs), including those incorporated into Earth sy...
Dynamic global vegetation models (DGVMs) typically track the material and energy cycles in ecosystem...
Dynamic global vegetation models (DGVMs) typically track the material and energy cycles in ecosystem...
Our ability to understand and predict the response of ecosystems to a changing environment depends o...
Aim Despite their importance for predicting fluxes to and from terrestrial ecosystems, dynamic globa...
Functional trait data enhance climate change research by linking climate change, biodiversity respon...
Plant functional traits provide information about adaptations to climate and environmental condition...