Phosphite treatment can improve root biomass and nutrition use efficiency in wheat

Author:

Mohammed Umar,Davis Jayne,Rossall Steve,Swarup Kamal,Czyzewicz Nathan,Bhosale Rahul,Foulkes John,Murchie Erik H.,Swarup Ranjan

Abstract

Phosphite represents a reduced form of phosphate that belongs to a class of crop growth-promoting chemicals termed biostimulants. Previous research has shown that phosphite application can enhance root growth, but its underlying mechanism, especially during environmental stresses, remains elusive. To uncover this, we undertook a series of morphological and physiological analyses under nutrient, water and heat stresses following a foliar application in wheat. Non-invasive 3D imaging of root system architecture directly in soil using X-ray Computed Tomography revealed that phosphite treatment improves root architectural traits and increased root biomass. Biochemical and physiological assays identified that phosphite treatment significantly increases Nitrate Reductase (NR) activity, leaf photosynthesis and stomatal conductance, suggesting improved Nitrogen and Carbon assimilation, respectively. These differences were more pronounced under heat or drought treatment (photosynthesis and photosystem II stability) and nutrient deficiency (root traits and NR). Overall our results suggest that phosphite treatment improves the ability of plants to tolerate abiotic stresses through improved Nitrogen and Carbon assimilation, combined with improved root growth which may improve biomass and yield.

Funder

Biotechnology and Biological Sciences Research Council

Publisher

Frontiers Media SA

Subject

Plant Science

Reference74 articles.

1. 2019

2. The roots of future rice harvests;Ahmadi;Rice,2014

3. Effects of foliar applications of urea or nutriphite on flowering and yields of Valencia orange trees;Albrigo;Proc. Fla State Hort Soc.,1999

4. Phenotyping pipeline reveals major seedling root growth QTL in hexaploid wheat;Atkinson;J. Exp. Bot.,2015

5. Nicotianamine synthesis by OsNAS3 is important for mitigating iron excess stress in rice;Aung;Front. Plant Sci.,2019

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