The stems and roots of most dicot plants increase in diameter by radial growth, due to the activity of secondary meristems. Two types of meristems function in secondary plant body formation: the vascular cambium, which gives rise to secondary xylem and phloem, and the cork cambium, which produces a bark layer that replaces the epidermis and protects the plant stem from mechanical damage and pathogens. Cambial development, the initiation and activity of the vascular cambium, leads to an accumulation of wood, the secondary xylem tissue. The thick, cellulose-rich cell walls of wood provide a source of cellulose and have the potential to be used as a raw material for sustainable and renewable energy production. In this review, we will discuss w...
The plant vascular system, composed of xylem and phloem, evolved to connect plant organs and transpo...
The plant vascular system, composed of xylem and phloem, evolved to connect plant organs and transpo...
Background: The production of a new lateral root from parental root primary tissues has been investi...
The stems and roots of most dicot plants increase in diameter by radial growth, due to the activity ...
The stems and roots of most dicot plants increase in diameter by radial growth, due to the activity ...
The stems and roots of most dicot plants increase in diameter by radial growth, due to the activity ...
The stems and roots of most dicot plants increase in diameter by radial growth, due to the activity ...
Stem cell populations in meristematic tissues at distinct locations in the plant body provide the po...
The radial growth of plant stem is based on the development of cribro-vascular cambium tissues. It a...
The radial growth of plant stem is based on the development of cribro-vascular cambium tissues. It a...
Vascular tissue differentiation is essential to enable plant growth and follows well-structured and ...
The analysis of molecular regulators involved in controlling the maintenance and function of plant m...
Background:The production of a new lateral root from parental root primary tissues has been investig...
The wood-forming vascular cambium is responsible for the production of a large part of the biomass o...
The plant vascular system, composed of xylem and phloem, evolved to connect plant organs and transpo...
The plant vascular system, composed of xylem and phloem, evolved to connect plant organs and transpo...
The plant vascular system, composed of xylem and phloem, evolved to connect plant organs and transpo...
Background: The production of a new lateral root from parental root primary tissues has been investi...
The stems and roots of most dicot plants increase in diameter by radial growth, due to the activity ...
The stems and roots of most dicot plants increase in diameter by radial growth, due to the activity ...
The stems and roots of most dicot plants increase in diameter by radial growth, due to the activity ...
The stems and roots of most dicot plants increase in diameter by radial growth, due to the activity ...
Stem cell populations in meristematic tissues at distinct locations in the plant body provide the po...
The radial growth of plant stem is based on the development of cribro-vascular cambium tissues. It a...
The radial growth of plant stem is based on the development of cribro-vascular cambium tissues. It a...
Vascular tissue differentiation is essential to enable plant growth and follows well-structured and ...
The analysis of molecular regulators involved in controlling the maintenance and function of plant m...
Background:The production of a new lateral root from parental root primary tissues has been investig...
The wood-forming vascular cambium is responsible for the production of a large part of the biomass o...
The plant vascular system, composed of xylem and phloem, evolved to connect plant organs and transpo...
The plant vascular system, composed of xylem and phloem, evolved to connect plant organs and transpo...
The plant vascular system, composed of xylem and phloem, evolved to connect plant organs and transpo...
Background: The production of a new lateral root from parental root primary tissues has been investi...