The formation of lateral roots is an important post-embryonic developmental process that allows plants to adapt to their environment via exploitation of soil mineral resources. New lateral roots initiate as lateral root primordia (LRP) in the pericycle cell layer adjacent to the central vascular tissue in the primary root , and must pass through the outer cell layers of endodermis, cortex and epidermis to emerge as mature roots. A key regulator of emergence is the plant hormone auxin and it has been shown previously that in Arabidopsis the auxin induced expression of the auxin influx carrier LAX3 in specific cortical cells over LRP is required for emergence to occur, as this leads to the expression of cell wall remodelling enzymes such as p...
Plant roots are required to anchor the plant in the soil, acquire water and nutrients and respond to...
Lateral root primordia (LRP) originate from pericycle stem cells located deep within parental root t...
Lateral root primordia (LRP) originate from pericycle stem cells located deep within parental root t...
The formation of lateral roots is an important post-embryonic developmental process that allows plan...
In Arabidopsis, lateral roots originate from pericycle cells deep within the primary root. New later...
In Arabidopsis, lateral roots originate from pericycle cells deep within the primary root. New later...
In Arabidopsis, lateral roots originate from pericycle cells deep within the primary root. New later...
In Arabidopsis, lateral roots originate from pericycle cells deep within the primary root. New later...
In Arabidopsis, lateral roots originate from pericycle cells deep within the primary root. New later...
Auxin plays a key role during many, if not all, developmental processes in plants. Notably, the horm...
In Arabidopsis, lateral roots originate from pericycle cells deep within the primary root. New later...
Lateral root primordia (LRP) originate from pericycle stem cells located deep within parental root t...
Lateral root primordia (LRP) originate from pericycle stem cells located deep within parental root t...
Lateral root primordia (LRP) originate from pericycle stem cells located deep within parental root t...
Lateral root primordia (LRP) originate from pericycle stem cells located deep within parental root t...
Plant roots are required to anchor the plant in the soil, acquire water and nutrients and respond to...
Lateral root primordia (LRP) originate from pericycle stem cells located deep within parental root t...
Lateral root primordia (LRP) originate from pericycle stem cells located deep within parental root t...
The formation of lateral roots is an important post-embryonic developmental process that allows plan...
In Arabidopsis, lateral roots originate from pericycle cells deep within the primary root. New later...
In Arabidopsis, lateral roots originate from pericycle cells deep within the primary root. New later...
In Arabidopsis, lateral roots originate from pericycle cells deep within the primary root. New later...
In Arabidopsis, lateral roots originate from pericycle cells deep within the primary root. New later...
In Arabidopsis, lateral roots originate from pericycle cells deep within the primary root. New later...
Auxin plays a key role during many, if not all, developmental processes in plants. Notably, the horm...
In Arabidopsis, lateral roots originate from pericycle cells deep within the primary root. New later...
Lateral root primordia (LRP) originate from pericycle stem cells located deep within parental root t...
Lateral root primordia (LRP) originate from pericycle stem cells located deep within parental root t...
Lateral root primordia (LRP) originate from pericycle stem cells located deep within parental root t...
Lateral root primordia (LRP) originate from pericycle stem cells located deep within parental root t...
Plant roots are required to anchor the plant in the soil, acquire water and nutrients and respond to...
Lateral root primordia (LRP) originate from pericycle stem cells located deep within parental root t...
Lateral root primordia (LRP) originate from pericycle stem cells located deep within parental root t...