Genome-wide analysis of AHP genes in soybean and the role of GmAHP10 in improving salt stress tolerance
- PMID: 40533534
- DOI: 10.1007/s10142-025-01636-8
Genome-wide analysis of AHP genes in soybean and the role of GmAHP10 in improving salt stress tolerance
Abstract
The histidine phosphotransfer proteins (AHP) plays a pivotal role in the cytokinin signal transduction pathway, which is vital for plant growth, development, and resistance to biotic and abiotic stresses. Despite its importance, the AHP genes in soybean (Glycine max (L.) Merr.) have not been characterized until now. In this study, we utilized bioinformatics analysis, transcriptome sequencing, and qRT-PCR to explore the AHP gene family in soybean. We identified 17 AHP gene members unevenly distributed across nine chromosomes, with all AHP proteins classified into four types based on their motifs and gene structures. Phylogenetic analysis and conserved protein motifs revealed strong homology and conservation between soybean and Arabidopsis AHP family members. Collinearity analysis suggested that segmental duplication events were the primary mechanism for the expansion of the soybean AHP family. Tissue-specific expression analysis indicated that most AHP family genes were highly expressed in soybean roots. Transcript profiles and qRT-PCR data demonstrated that many GmAHP genes were significantly up-regulated in response to salt stress, particularly GmAHP10. Overexpression of GmAHP10 in soybean hairy roots significantly promoted root system development and enhanced salt tolerance. Further physiological analyses revealed that overexpression of GmAHP10 significantly reduced H2O2 and malondialdehyde (MDA) levels by increasing the activities of superoxide dismutase (SOD), peroxidase (POD), and catalase (CAT), as well as elevating proline concentration compared to controls. These findings provide a foundation for understanding the biological roles of GmAHP genes in soybean growth, development, and response to salt stress.
Keywords: AHP gene family; Bioinformatics analysis; Salt stress response; Soybean; Soybean hairy roots.
© 2025. The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature.
Conflict of interest statement
Declarations. Competing interests: The authors declare no competing interests.
Similar articles
-
Genome-wide identification and functional characterization of magnesium transporter (MGT) gene family in soybean (Glycine max L.) and their expression profiles in response to aphid infestation, dehydration, and salt stresses.PLoS One. 2025 Aug 29;20(8):e0330440. doi: 10.1371/journal.pone.0330440. eCollection 2025. PLoS One. 2025. PMID: 40880367 Free PMC article.
-
Melatonin-Producing Bacillus aerius EH2-5 Enhances Glycine max Plants Salinity Tolerance Through Physiological, Biochemical, and Molecular Modulation.Int J Mol Sci. 2025 Aug 13;26(16):7834. doi: 10.3390/ijms26167834. Int J Mol Sci. 2025. PMID: 40869153 Free PMC article.
-
GmFER1, a soybean ferritin, enhances tolerance to salt stress and root rot disease and improves soybean yield.Plant Biotechnol J. 2025 Aug;23(8):3094-3112. doi: 10.1111/pbi.70102. Epub 2025 May 14. Plant Biotechnol J. 2025. PMID: 40365869 Free PMC article.
-
Assessing the comparative effects of interventions in COPD: a tutorial on network meta-analysis for clinicians.Respir Res. 2024 Dec 21;25(1):438. doi: 10.1186/s12931-024-03056-x. Respir Res. 2024. PMID: 39709425 Free PMC article. Review.
-
A meta-analysis of genome-wide association studies to identify candidate genes associated with feed efficiency traits in pigs.J Anim Sci. 2025 Jan 4;103:skaf010. doi: 10.1093/jas/skaf010. J Anim Sci. 2025. PMID: 39847436 Free PMC article.
References
-
- Bailey TL, Boden M, Buske FA et al (2009) MEME suite: Tools for motif discovery and searching[J]. Nucleic Acids Res 37(suppl_2):W202-W208
MeSH terms
Substances
LinkOut - more resources
Full Text Sources
Miscellaneous