Uncovering How Auxin Optimizes Root Systems Architecture in Response to Environmental Stresses.

Nicola Leftley, Jason Banda, Bipin Pandey, Malcolm Bennett, Ute Voß

Journal: Cold Spring Harbor perspectives in biology 2022;13(11):a040014

PMID: 33903159

Abstract

Since colonizing land, plants have developed mechanisms to tolerate a broad range of abiotic stresses that include flooding, drought, high salinity, and nutrient limitation. Roots play a key role acclimating plants to these as their developmental plasticity enables them to grow toward more favorable conditions and away from limiting or harmful stresses. The phytohormone auxin plays a key role translating these environmental signals into developmental outputs. This is achieved by modulating auxin levels and/or signaling, often through cross talk with other hormone signals like abscisic acid (ABA) or ethylene. In our review, we discuss how auxin controls root responses to water, osmotic and nutrient-related stresses, and describe how the synthesis, degradation, transport, and response of this key signaling hormone helps optimize root architecture to maximize resource acquisition while limiting the impact of abiotic stresses.

Copyright © 2021 Cold Spring Harbor Laboratory Press; all rights reserved.

Address: Plant and Crop Sciences, School of Biosciences, Sutton Bonington Campus, The University of Nottingham, Loughborough LE12 5RD, United Kingdom.
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