Physiological and Molecular Mechanisms of Tree Responses to Combined Drought and Low-Nitrogen Stress: A Review

Drought and low nitrogen often co-occur in forests, yet their combined effects cannot be inferred reliably from single-stress studies. This review synthesizes physiological and molecular evidence for tree responses to combined drought and low nitrogen at four levels, namely stress perception, signal transduction, metabolic reprogramming, and adaptive phenotypes. It compares single-stress baselines and evaluates reported interactions in photosynthesis, water-use efficiency, root traits, and carbon–nitrogen allocation. The review distinguishes direct tree evidence from mechanistic context derived from crops and model plants. Abscisic acid–nitrogen signaling crosstalk is considered alongside reactive oxygen species, energy, hydraulics, and transcriptional regulation as candidate integration routes. Candidate genes are classified by species context and experimental evidence; responsiveness to the two single stresses is not interpreted as proof of a combined-stress function. The review also assesses the opportunities and current limitations of multi-omics and genome editing for trees. It identifies priorities for factorial experiments, multi-year validation, and molecular breeding for climate-resilient forestry.

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Publication Details

Journal
International Journal of Molecular Sciences
Published
2026-10-04
DOI
https://doi.org/10.3390/ijms27198853
Primary Topic
Plant Stress Responses and Tolerance
Type
article
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0.00
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article

Physiological and Molecular Mechanisms of Tree Responses to Combined Drought and Low-Nitrogen Stress: A Review

Ming Wei, Chenghao Li, Zhao Yang, Lijing Yu et al.
International Journal of Molecular Sciences
Plant Stress Responses and Tolerance
article

Physiological and Molecular Mechanisms of Tree Responses to Combined Drought and Low-Nitrogen Stress: A Review

Ming Wei, Chenghao Li, Zhao Yang, Lijing Yu, Xia Wang, Yang Xu
article en

Abstract

Drought and low nitrogen often co-occur in forests, yet their combined effects cannot be inferred reliably from single-stress studies. This review synthesizes physiological and molecular evidence for tree responses to combined drought and low nitrogen at four levels, namely stress perception, signal transduction, metabolic reprogramming, and adaptive phenotypes. It compares single-stress baselines and evaluates reported interactions in photosynthesis, water-use efficiency, root traits, and carbon–nitrogen allocation. The review distinguishes direct tree evidence from mechanistic context derived from crops and model plants. Abscisic acid–nitrogen signaling crosstalk is considered alongside reactive oxygen species, energy, hydraulics, and transcriptional regulation as candidate integration routes. Candidate genes are classified by species context and experimental evidence; responsiveness to the two single stresses is not interpreted as proof of a combined-stress function. The review also assesses the opportunities and current limitations of multi-omics and genome editing for trees. It identifies priorities for factorial experiments, multi-year validation, and molecular breeding for climate-resilient forestry.

International Journal of Molecular SciencesVol. 27(19)
State Key Laboratory of Tree Genetics and Breeding, Northeast Forestry University (CN)
Openalex Percentile: Top 13%
Plant Stress Responses and Tolerance
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