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Winter wheat phenotyping for deep root growth and function, reduced water stress and increased uptake of deep N and water

Annals of Botany · 1 Aug 2025 · 10.1093/aob/mcaf160

Abstract

Abstract Background and Aims Deep roots may help plants adapt to climate change by allowing them to access deeper soil layers where water is still available, reducing water stress and increasing nitrogen (N) uptake. Water stress significantly affects yield during later developmental stages, but methods are lacking for phenotyping for deep rooting under field conditions and at maturity. Methods Over 3 years, we used minirhizotron root imaging in the RadiMax semi-field facility to compare deep rooting in winter wheat genotypes grown in field soil to 2.7 m depth. We related this to deep soil uptake of water and N using isotopic tracers injected into the soil at 1.6–1.8 m depth. Carbon isotope discrimination was used to evaluate water stress levels. Key Results Deep rooting was positively correlated with uptake of deep-placed N and water, and uptake of deep-placed N was three times higher in the genotype with deepest roots compared with the shallowest. Deep rooting was negatively correlated with water stress, measured using carbon isotope discrimination. This correlation was strongest in 2023, a dry year, highlighting the role of deep roots in mitigating water stress. Some genotypes had consistently deeper or shallower roots over the three experimental years, and there were strong correlations of isotopic measurements between genotypes across years. Conclusions Our findings show strong relationships between deep rooting and deep root functions, which indicate that deep rooting is a desirable trait that should be targeted. The significant genotypic variation observed, which can be phenotyped for even under field conditions, indicates that deep rooting is a trait that can be incorporated into breeding programmes. Furthermore, the methods used in this study are effective and should be developed for further application.

Plant phenotyping relevance

深根を圃場条件で評価するためのミニライゾトロン画像法を中心に、複数年・遺伝子型間で検証し、深根形質の実用性を評価しているため。

abstractmethods are lacking for phenotyping for deep rooting under field conditions and at maturity.
abstractwe used minirhizotron root imaging in the RadiMax semi-field facility to compare deep rooting in winter wheat genotypes
abstractthe methods used in this study are effective and should be developed for further application.

Code and data availability

The supplied article blocks describe minirhizotron imaging, isotopic tracer measurements, and R-based analysis, but contain no public data deposit, no author code repository, and no availability statement with a URL. Supplementary Data Tables/Figures are referenced without any public link. The only URL present is the C

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