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Uncovering plant root traits and mechanisms that enable penetration, exploration, and exploitation of soil parent materials: a systematic review

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2025-10-28

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0032-079X

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Chaibva P, McCloskey CS, Sizmur T, et al., (2025) Uncovering plant root traits and mechanisms that enable penetration, exploration, and exploitation of soil parent materials: a systematic review. Plant and Soil, Volume 517, December 2025, pp. 1187-1209

Abstract

Background and aims Certain plant species, including some trees, have been observed growing not only in soil but also in soil parent materials. However, the root traits and mechanisms enabling these species to penetrate soil parent materials are not yet thoroughly understood. This systematic review aims to identify and discuss the root traits and mechanisms that allow plant roots to grow into soil parent materials. It will also draw insights from the characteristics and mechanisms that plants employ to overcome the challenges posed by compacted soils. Methods We adhered to the 'Preferred Reporting Items for Systematic Reviews and Meta-Analyses' (PRISMA) guidelines for our methodology. Results We identified increased root radial pressure, investment in root biomass, fine root development, root trematotropism, mycorrhizal associations, root hairs, and root exudates as key traits aiding plants in soil penetration. The mentioned root traits and mechanisms have also been shown to help plants overcome compacted soil, except for mycorrhizal associations. Conclusion The key root traits and mechanisms identified in this review lay the groundwork for a deeper understanding of root-soil parent material interactions and plant adaptations in changing physical environments. This enhances our ability to select the next generation of robust and resilient crops capable of thriving in complex root-soil parent material interactions. Future research on root-parent material interactions in food crops holds promise for improving our understanding of how crops can grow beyond traditional soil limitations (such as soil depth).

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Git repository

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Root traits, Root mechanisms, Soil parent materials, Root penetration, Mechanical impedance, Soil compaction, 30 Agricultural, Veterinary and Food Sciences, 31 Biological Sciences, 3004 Crop and Pasture Production, Agronomy & Agriculture, 41 Environmental sciences

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Attribution 4.0 International

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This research was funded by UKRI BBSRC FoodBioSystems DTP, grant number BB/T008776/1.

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