Youning Wang, Kexue Li, Xia Li
Index: J. Plant Physiol. 166(15) , 1637-45, (2009)
Full Text: HTML
Auxin plays an important role in the modulation of root system architecture. The effect of salinity on primary root growth has been extensively studied. However, how salinity affects lateral root development and its underlying molecular mechanisms is still unclear. Here, we report that high salt exposure suppresses lateral root initiation and organogenesis, resulting in the abortion of lateral root development. In contrast, salt stress markedly promotes lateral root elongation. Histochemical staining showed that the quantity of auxin and its patterning in roots were both greatly altered by exposure to high concentrations of salt, as compared with those found in the untreated control. Physiological experiments using transport inhibitors and genetic analysis revealed that the auxin transport pathway is important for salt-induced root development. These results demonstrate that auxin transport activities are required for remodeling lateral root formation and elongation and for adaptive root system development under salt stress.
Structure | Name/CAS No. | Molecular Formula | Articles |
---|---|---|---|
![]() |
1-naphthoxyacetic acid
CAS:2976-75-2 |
C12H10O3 |
Auxin influx inhibitors 1-NOA, 2-NOA, and CHPAA interfere wi...
2010-08-01 [J. Exp. Bot. 61(13) , 3589-98, (2010)] |
High-affinity auxin transport by the AUX1 influx carrier pro...
2006-06-06 [Curr. Biol. 16(11) , 1123-7, (2006)] |
Auxin influx activity is associated with Frankia infection d...
2007-08-01 [Plant Physiol. 144(4) , 1852-62, (2007)] |
Novel auxin transport inhibitors phenocopy the auxin influx ...
2001-02-01 [Plant J. 25(4) , 399-406, (2001)] |
Auxin and ethylene response interactions during Arabidopsis ...
2002-12-01 [Plant Physiol. 130(4) , 1908-17, (2002)] |
Home | MSDS/SDS Database Search | Journals | Product Classification | Biologically Active Compounds | Selling Leads | About Us | Disclaimer
Copyright © 2024 ChemSrc All Rights Reserved