PagERF173 regulates nitrate uptake and assimilation in poplar roots

Poplar adapts to different nitrogen environments by regulating root N uptake and assimilation processes, but the integrated regulatory mechanisms underlying these responses remain unclear. In this study, whole-genome resequencing was performed on 162 poplar germplasm resources (including natural and cultivated germplasm), revealing that the population could be divided into four genetic groups. The cultivated germplasm resources were then subjected to low-nitrogen treatment to identify LN-tolerant germplasm. Integrating genome-wide association studies and weighted gene co-expression network analysis uncovered PagERF173, an AP2/ERF transcription factor, as a pleiotropic gene associated with root traits under LN condition and involved in coordinating nitrate uptake and assimilation. Under LN condition, although PagERF173 mutants and dominant repression line showed lower nitrate uptake and accumulation than the overexpression lines, they exhibited enhanced nitrate assimilation capacity, thereby promoting both shoot and root biomass accumulation. In contrast, PagERF173 overexpression lines displayed the opposite trend. Furthermore, during the N response, PagERF173 activated the expression of PagNRT5.6a, thereby enhancing root nitrate uptake. Meanwhile, PagERF173 interacted with PagNR and PagNiR proteins and inhibited NR and NiR enzymatic activities, thereby suppressing nitrate assimilation. These results reveal that PagERF173 plays an important role in coordinating the balance between root nitrate uptake and assimilation, providing a molecular basis for improving nitrogen use efficiency and breeding for LN adaptation in woody plants.

Authors

Institutions

Publication Details

Journal
PLANT PHYSIOLOGY
Published
2026-10-06
DOI
https://doi.org/10.1093/plphys/kiag740
Primary Topic
Plant nutrient uptake and metabolism
Type
article
Field-Weighted Citation Impact
0.00
Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
OCT
article

PagERF173 regulates nitrate uptake and assimilation in poplar roots

Yongxia Bai, Xueqin Song, 魏涵天, Xinglu Zhou et al.
PLANT PHYSIOLOGY
Plant nutrient uptake and metabolism
article

PagERF173 regulates nitrate uptake and assimilation in poplar roots

Yongxia Bai, Xueqin Song, 魏涵天, Xinglu Zhou, Jianjun Hu, Min Zhang, Lei Zhang
article en

Abstract

Poplar adapts to different nitrogen environments by regulating root N uptake and assimilation processes, but the integrated regulatory mechanisms underlying these responses remain unclear. In this study, whole-genome resequencing was performed on 162 poplar germplasm resources (including natural and cultivated germplasm), revealing that the population could be divided into four genetic groups. The cultivated germplasm resources were then subjected to low-nitrogen treatment to identify LN-tolerant germplasm. Integrating genome-wide association studies and weighted gene co-expression network analysis uncovered PagERF173, an AP2/ERF transcription factor, as a pleiotropic gene associated with root traits under LN condition and involved in coordinating nitrate uptake and assimilation. Under LN condition, although PagERF173 mutants and dominant repression line showed lower nitrate uptake and accumulation than the overexpression lines, they exhibited enhanced nitrate assimilation capacity, thereby promoting both shoot and root biomass accumulation. In contrast, PagERF173 overexpression lines displayed the opposite trend. Furthermore, during the N response, PagERF173 activated the expression of PagNRT5.6a, thereby enhancing root nitrate uptake. Meanwhile, PagERF173 interacted with PagNR and PagNiR proteins and inhibited NR and NiR enzymatic activities, thereby suppressing nitrate assimilation. These results reveal that PagERF173 plays an important role in coordinating the balance between root nitrate uptake and assimilation, providing a molecular basis for improving nitrogen use efficiency and breeding for LN adaptation in woody plants.

PLANT PHYSIOLOGY
Nanjing Forestry University (CN), Chinese Academy of Forestry (CN), Research Institute of Forestry (CN), State Key Laboratory of Tree Genetics and Breeding
Openalex Percentile: Top 14%
Plant nutrient uptake and metabolism
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.