TY - JOUR
T1 - Dissecting Arabidopsis lateral root development
AU - Bhalerao, Rishikesh P.
AU - Sandberg, Göran
AU - Beeckman, Tom
AU - Casero, Pedro
AU - casimiro Ilda, null
AU - Graham, Neil
AU - Zhang, Hanma
AU - Bennett, Malcolm J
PY - 2003
Y1 - 2003
N2 - Recent studies in the model plant Arabidopsis provide new insight into the regulation of root architecture, a key determinant of nutrient- and water-use efficiency in crops. Lateral root (LR) primordia originate from a subset of pericycle founder cells. Sophisticated mass-spectroscopy-based techniques have been used to map the sites of biosynthesis of auxin and its distribution in Arabidopsis seedlings, highlighting the importance of the phytohormone during LR initiation and emergence. Key components of the cell cycle and signal-transduction pathway(s) that promote and attenuate auxin-dependent LR initiation have recently been identified. Additional signals, such as abscisic acid and nitrate, also regulate LR emergence, raising intriguing questions about the cross-talk between their transduction pathways.
AB - Recent studies in the model plant Arabidopsis provide new insight into the regulation of root architecture, a key determinant of nutrient- and water-use efficiency in crops. Lateral root (LR) primordia originate from a subset of pericycle founder cells. Sophisticated mass-spectroscopy-based techniques have been used to map the sites of biosynthesis of auxin and its distribution in Arabidopsis seedlings, highlighting the importance of the phytohormone during LR initiation and emergence. Key components of the cell cycle and signal-transduction pathway(s) that promote and attenuate auxin-dependent LR initiation have recently been identified. Additional signals, such as abscisic acid and nitrate, also regulate LR emergence, raising intriguing questions about the cross-talk between their transduction pathways.
UR - https://res.slu.se/id/publ/1206
U2 - 10.1016/S1360-1385(03)00051-7
DO - 10.1016/S1360-1385(03)00051-7
M3 - Review article
C2 - 12711228
SN - 1360-1385
VL - 8
SP - 165
EP - 171
JO - Trends in Plant Science
JF - Trends in Plant Science
IS - 4
ER -