Evidence map›Paper›PMID 42665810›Full record

ArticleBMC plant biology2026

Identification and preliminary functional characterization of MsPAL2, a key salt-tolerance gene during seed germination in Medicago sativa.

Donghan Cao, Xinran Cheng, Peisheng Mao, Liru Dou

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Article in BMC plant biology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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5 · Who and what money

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4 authors.

Donghan CaoCollege of Grassland Science and Technology, China Agricultural University, Beijing, 100193, China.
Xinran ChengCollege of Grassland Science and Technology, China Agricultural University, Beijing, 100193, China.
Peisheng MaoCollege of Grassland Science and Technology, China Agricultural University, Beijing, 100193, China.
Liru DouCollege of Grassland Science and Technology, China Agricultural University, Beijing, 100193, China. douliru@cau.edu.cn.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

backgroundAlfalfa (Medicago sativa) is an important legume forage crop. Salt stress severely impairs seed germination, compromising field establishment and subsequent seedling growth. However, the key genes underlying alfalfa seed responses to salt stress during germination remain largely unidentified, hindering targeted genetic improvement of salt tolerance within the genus Medicago.

resultsIn this study, transcriptomic sequencing was performed on germinated and ungerminated seeds of alfalfa treated with 150 mmol/L NaCl, using the 'Zhongmu No. 4' reference genome. Through integrated KEGG pathway enrichment, gene expression fold-change analysis, and Gene Set Enrichment Analysis (GSEA), we identified the gene MsPAL2 (Msa1079410), which encodes the key rate-limiting enzyme in phenylpropanoid metabolism, as a critical salt-tolerance gene. Functional characterization via virus-induced gene silencing (VIGS) revealed that silencing MsPAL2 did not affect seed germination under normal conditions but significantly reduced the germination rate under salt stress. These findings suggest that MsPAL2 acts as a positive regulator of alfalfa seed germination under salt stress. Promoter analysis and AlphaFold3 prediction collectively revealed MYB-binding cis-elements and identified MYB transcription factors as candidate upstream regulators of MsPAL2, laying the groundwork for elucidating its regulatory network.

conclusionsPhenylpropanoid metabolism constitutes a key mechanism underlying salt tolerance in alfalfa. Through transcriptome analysis, we identified MsPAL2, a phenylpropanoid pathway gene, as a critical regulator of alfalfa seed germination under salt stress, providing valuable genetic resources for molecular breeding of salt-tolerant alfalfa.

Indexed as

Genes, PlantGerminationMedicago sativaPlant ProteinsSalt ToleranceSeedsGene Expression ProfilingGene Expression Regulation, PlantPlant ProteinsAlfalfaPhenylpropanoid metabolismSalt stressSeed germination

Identifiers

PMID42665810
PMCPMC13523354

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