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Nitrate Starvation Induces Lateral Root Organogenesis in Triticum aestivum via Auxin Signaling.

Authors :
Tang C
Zhang Y
Liu X
Zhang B
Si J
Xia H
Fan S
Kong L
Source :
International journal of molecular sciences [Int J Mol Sci] 2024 Sep 03; Vol. 25 (17). Date of Electronic Publication: 2024 Sep 03.
Publication Year :
2024

Abstract

The lateral root (LR) is an essential component of the plant root system, performing important functions for nutrient and water uptake in plants and playing a pivotal role in cereal crop productivity. Nitrate (NO <subscript>3</subscript> <superscript>-</superscript> ) is an essential nutrient for plants. In this study, wheat plants were grown in 1/2 strength Hoagland's solution containing 5 mM NO <subscript>3</subscript> <superscript>-</superscript> (check; CK), 0.1 mM NO <subscript>3</subscript> <superscript>-</superscript> (low NO <subscript>3</subscript> <superscript>-</superscript> ; LN), or 0.1 mM NO <subscript>3</subscript> <superscript>-</superscript> plus 60 mg/L 2,3,5-triiodobenzoic acid (TIBA) (LNT). The results showed that LN increased the LR number significantly at 48 h after treatment compared with CK, while not increasing the root biomass, and LNT significantly decreased the LR number and root biomass. The transcriptomic analysis showed that LN induced the expression of genes related to root IAA synthesis and transport and cell wall remodeling, and it was suppressed in the LNT conditions. A physiological assay revealed that the LN conditions increased the activity of IAA biosynthesis-related enzymes, the concentrations of tryptophan and IAA, and the activity of cell wall remodeling enzymes in the roots, whereas the content of polysaccharides in the LRP cell wall was significantly decreased compared with the control. Fourier-transform infrared spectroscopy and atomic microscopy revealed that the content of cell wall polysaccharides decreased and the cell wall elasticity of LR primordia (LRP) increased under the LN conditions. The effects of LN on IAA synthesis and polar transport, cell wall remodeling, and LR development were abolished when TIBA was applied. Our findings indicate that NO <subscript>3</subscript> <superscript>-</superscript> starvation may improve auxin homeostasis and the biological properties of the LRP cell wall and thus promote LR initiation, while TIBA addition dampens the effects of LN on auxin signaling, gene expression, physiological processes, and the root architecture.

Details

Language :
English
ISSN :
1422-0067
Volume :
25
Issue :
17
Database :
MEDLINE
Journal :
International journal of molecular sciences
Publication Type :
Academic Journal
Accession number :
39273513
Full Text :
https://doi.org/10.3390/ijms25179566