The FaAP2-11 Transcription Factor Putatively Regulates Cell Wall Remodeling and Stress-Acclimation Responses Under Drought and Salinity Stress

APETALA2/ethylene-responsive factor (AP2/ERF) transcription factors are key regula-tors of plant responses to abiotic stress, integrating environmental and hormonal signals into coordinated transcriptional programs. RNA-seq analysis of strawberry (Fragaria × ananassa) leaves and roots subjected to drought and salinity identified 58 differentially expressed FaAP2/ERF genes. Promoter analysis revealed cis-regulatory elements associated with abscisic acid, jasmonate, ethylene, salicylic acid, and drought-responsive signaling. Among these genes, FaAP2-11 was selected for functional characterization because of its strong response to both stresses. Expression profiling revealed preferential transcript accumulation in immature achenes and sepals, while FaAP2-11 expression was induced by oxidative and nitrosative signals and stress-related phytohormones. Heterologous overexpression of FaAP2-11 in Nicotiana benthamiana enhanced photosynthetic performance and intrinsic water-use efficiency under osmotic and salinity stress. Transcriptomic analysis revealed extensive reprogramming affecting hormone signaling, cell wall remodeling, primary metabolism, and redox-related processes. This response was characterized by repression of genes involved in cell wall modification and cuticular wax biosynthesis, together with selective upregulation of lignification-associated genes. Collectively, these findings suggest that FaAP2-11 contributes to coordinating transcriptional and physiological responses associated with abiotic-stress acclimation and supports its potential as a candidate gene for improving drought and salinity resilience in strawberry.

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Journal
International Journal of Molecular Sciences
Published
2026-09-15
DOI
https://doi.org/10.3390/ijms27188203
Primary Topic
Plant Surface Properties and Treatments
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article
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article

The FaAP2-11 Transcription Factor Putatively Regulates Cell Wall Remodeling and Stress-Acclimation Responses Under Drought and Salinity Stress

Sara Posé, Enriqueta Moyano, Juan Muñoz‐Blanco, Francisco Javier Molina‐Hidalgo et al.
International Journal of Molecular Sciences
Plant Surface Properties and Treatments
article

The FaAP2-11 Transcription Factor Putatively Regulates Cell Wall Remodeling and Stress-Acclimation Responses Under Drought and Salinity Stress

Sara Posé, Enriqueta Moyano, Juan Muñoz‐Blanco, Francisco Javier Molina‐Hidalgo, José A. Mercado, José L. Caballero, Rosario Blanco‐Portales, Francisco J. Ruíz-Gómez, Facundo Spadoni-Revol, Josefina P. Fernández-Moreno, María Dolores Moreno-Recio, Sara Aguado-Delgado
article en

Abstract

APETALA2/ethylene-responsive factor (AP2/ERF) transcription factors are key regula-tors of plant responses to abiotic stress, integrating environmental and hormonal signals into coordinated transcriptional programs. RNA-seq analysis of strawberry (Fragaria × ananassa) leaves and roots subjected to drought and salinity identified 58 differentially expressed FaAP2/ERF genes. Promoter analysis revealed cis-regulatory elements associated with abscisic acid, jasmonate, ethylene, salicylic acid, and drought-responsive signaling. Among these genes, FaAP2-11 was selected for functional characterization because of its strong response to both stresses. Expression profiling revealed preferential transcript accumulation in immature achenes and sepals, while FaAP2-11 expression was induced by oxidative and nitrosative signals and stress-related phytohormones. Heterologous overexpression of FaAP2-11 in Nicotiana benthamiana enhanced photosynthetic performance and intrinsic water-use efficiency under osmotic and salinity stress. Transcriptomic analysis revealed extensive reprogramming affecting hormone signaling, cell wall remodeling, primary metabolism, and redox-related processes. This response was characterized by repression of genes involved in cell wall modification and cuticular wax biosynthesis, together with selective upregulation of lignification-associated genes. Collectively, these findings suggest that FaAP2-11 contributes to coordinating transcriptional and physiological responses associated with abiotic-stress acclimation and supports its potential as a candidate gene for improving drought and salinity resilience in strawberry.

International Journal of Molecular SciencesVol. 27(18)
Instituto de Hortofruticultura Subtropical y Mediterránea "La Mayora" (ES), University of Córdoba (ES)
Clean water and sanitation
Openalex Percentile: Top 13%
Plant Surface Properties and Treatments
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