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Updated: Aug 5, 2026

A Simple Protocol for Mapping the Plant Root System Architecture Traits
Published on: February 10, 2023
Regulation of root-to-shoot ratio in plant resource allocation by external and internal cues
Qing Li1, Yi Tong1, Hongning Tong2
1State Key Laboratory of Rice Biology and Breeding, China National Rice Research Institute, Chinese Academy of Agricultural Sciences, Hangzhou, Zhejiang 311401, China.
Abstract:
Plants dynamically adjust their root-to-shoot ratio (R:S) in fluctuating environments, a response often interpreted as adaptive resource allocation, although other explanations have also been proposed. Despite ongoing debates surrounding optimal partitioning theory, the active-regulation framework remains valuable for understanding R:S regulation, which is significant for improving plant resource use efficiency and thus fitness and productivity. This review synthesizes multi-scale advances, from physiology to molecular mechanisms, to outline the regulatory networks associated with coordinated root-shoot growth. We examine how major environmental factors such as light, temperature, osmotic stress, nitrogen, and phosphorus regulate R:S through distinct pathways, highlighting the photoreceptor-mediated carbon-nitrogen allocation, organ-specific thermomorphogenic responses, and the multi-layered osmotic stress networks. For nutrient regulation, we emphasize the OsWRI1a-RNR10-DNR1 module for tissue-specific R:S nitrogen response and the PHR1-centered phosphate starvation response network. We also summarize how endogenous hormones (auxin, cytokinin, abscisic acid, and strigolactone) and signaling hubs like TOR kinase regulate R:S. Finally, we discuss current challenges and future directions for a system-level understanding of R:S regulation and its targeted manipulation.
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