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Updated: Mar 19, 2026

A Simple Protocol for Mapping the Plant Root System Architecture Traits
Published on: February 10, 2023
The PtoTCP19-PtoOBE2 complex orchestrates phosphate deficiency tolerance and biomass production in Populus
Yanjun Pan1,2, Jingjing Li1,2, Jingyuan Zhou3
1State Key Laboratory of Tree Genetics and Breeding, National Engineering Research Center of Tree Breeding and Ecological Restoration, Key Laboratory of Genetics and Breeding in Forest Trees and Ornamental Plants, Ministry of Education, College of Biological Sciences and Biotechnology, Beijing Forestry University, Beijing, 100083, China.
None:
Soil inorganic phosphate (Pi) availability critically limits forest primary productivity, necessitating effective adaptation to Pi variation. However, how perennial trees orchestrate Pi deficiency tolerance while maintaining growth under low-phosphate (LP) stress remains unexplored. Combining genome-wide association study (GWAS), RNA sequencing (RNA-seq), DNA affinity purification sequencing (DAP-seq), genetic transformation, and molecular experiments, we investigated how perennial species like Populus orchestrate phosphate deficiency tolerance and biomass production under LP stress. Here, we showed that TCP DOMAIN PROTEIN 19 (PtoTCP19) physically interacted with OBERON2 (PtoOBE2) to form a nuclear transcriptional complex. Genetic evidence supported the complex's functionality: overexpression of either PtoTCP19 or PtoOBE2 (OE-PtoTCP19/PtoOBE2) improved LP tolerance and biomass, while their respective loss-of-function materials (Ri-PtoTCP19 and KO-PtoOBE2) exhibited opposite phenotypes. Mechanistically, the PtoTCP19-PtoOBE2 complex executes a dual-pathway strategy: upregulating PHOSPHATE TRANSPORTER 1;4 (PtoPHT1;4) to boost Pi acquisition and activating the EXPANSIN B2 (PtoEXPB2) promoter to stimulate root growth, as validated by overexpressing-PtoEXPB2 (OE-PtoEXPB2) plants. Together, the PtoTCP19-PtoOBE2 complex is a novel hub that integrates Pi uptake and root development to orchestrate phosphate deficiency tolerance and biomass production in Populus, providing strategic insights for molecular breeding.
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