Wood (secondary xylem) is one of the most important sustainable energy sources for humans. Arabidopsis, despite its herbaceous nature, has become an excellent model to study wood formation. Recent progress has shown that conserved molecular mechanisms may exist in herbaceous plants and trees during vascular development and wood formation. Several transcription factor families and plant hormone species as well as other factors contribute to the regulation of xylem development in both Arabidopsis and woody plants. In this review, we highlight how information gained from the analysis of vascular development in Arabidopsis has improved our understanding of wood formation in trees
Development of vascular tissue is a remarkable example of intercellular communication and coordinate...
The continuous production of vascular tissues through secondary growth results in radial thickening ...
The continuous production of vascular tissues through secondary growth results in radial thickening ...
Wood (secondary xylem) is one of the most important sustainable energy sources for humans. Arabidops...
Wood (secondary xylem) is one of the most important sustainable energy sources for humans. Arabidops...
For centuries, humans have grown and used structures based on vascular tissues in plants. One could ...
For centuries, humans have grown and used structures based on vascular tissues in plants. One could ...
Many plant genes are known to be involved in the development of cambium and wood, but how the expres...
Many plant genes are known to be involved in the development of cambium and wood, but how the expres...
Many plant genes are known to be involved in the development of cambium and wood, but how the expres...
Development of vascular tissue is a remarkable example of intercellular communication and coordinate...
Development of vascular tissue is a remarkable example of intercellular communication and coordinate...
Wood, which represents the most abundant lignocellulosic biomass on earth, fulfils key roles in tree...
Many plant genes are known to be involved in the development of cambium and...
The differentiation of plant vascular tissue is regulated by plant hormones and transcription factor...
Development of vascular tissue is a remarkable example of intercellular communication and coordinate...
The continuous production of vascular tissues through secondary growth results in radial thickening ...
The continuous production of vascular tissues through secondary growth results in radial thickening ...
Wood (secondary xylem) is one of the most important sustainable energy sources for humans. Arabidops...
Wood (secondary xylem) is one of the most important sustainable energy sources for humans. Arabidops...
For centuries, humans have grown and used structures based on vascular tissues in plants. One could ...
For centuries, humans have grown and used structures based on vascular tissues in plants. One could ...
Many plant genes are known to be involved in the development of cambium and wood, but how the expres...
Many plant genes are known to be involved in the development of cambium and wood, but how the expres...
Many plant genes are known to be involved in the development of cambium and wood, but how the expres...
Development of vascular tissue is a remarkable example of intercellular communication and coordinate...
Development of vascular tissue is a remarkable example of intercellular communication and coordinate...
Wood, which represents the most abundant lignocellulosic biomass on earth, fulfils key roles in tree...
Many plant genes are known to be involved in the development of cambium and...
The differentiation of plant vascular tissue is regulated by plant hormones and transcription factor...
Development of vascular tissue is a remarkable example of intercellular communication and coordinate...
The continuous production of vascular tissues through secondary growth results in radial thickening ...
The continuous production of vascular tissues through secondary growth results in radial thickening ...