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Genome-wide analysis of AP2/ERF genes identifies HpERF144 as a regulator of salt tolerance and phenylpropanoid metabolism in Herpetospermum pedunculosum.

Created on 20 Jul 2026

Authors

Rui Li, Daihan Chen, Zhidan Zhu, Xiao Huang, Xinghui Wu, Qin Jiang, Qinyuan Li, Shiyu Yao, Ziwei Zhu, Yixi Yang, Qiuxia Lu, Xu Zhang, Bingliang Liu, Min Sun, Qi Zhao, Yang Tao

Published in

Plant & cell physiology. Jul 19, 2026. Epub Jul 19, 2026.

Abstract

Salt stress disrupts plant physiology and reprograms specialized metabolism. APETALA2/ethylene-responsive factor (AP2/ERF) transcription factors integrate stress and hormone signals, but their roles in linking salt tolerance with phenylpropanoid metabolism in non-model alpine plants remain poorly understood. Here, we performed a genome-wide survey of AP2/ERF genes and functionally characterized a salt-responsive ERF in Herpetospermum pedunculosum. We identified 147 HpAP2/ERF genes, whose promoters were enriched in hormone- and stress-responsive cis-elements. Salt treatment induced widespread expression changes of HpAP2/ERF genes in roots, with HpERF144 among the most rapidly and strongly up-regulated members. Virus-induced silencing and ZYMV-mediated overexpression in H. pedunculosum, together with heterologous overexpression in Nicotiana tabacum, showed that HpERF144 positively regulates salt tolerance by modulating oxidative stress-related physiological responses. Moreover, HpERF144 silencing reduced, whereas overexpression increased, total lignin and total lignan accumulation in roots under salt stress. DAP-seq and dual-luciferase assays further indicated that HpERF144 associates with and activates selected phenylpropanoid- and cell wall-related promoters, including 4CL- and CCR-like targets. These findings identify HpERF144 as a link between salt stress signaling and phenylpropanoid-associated metabolic regulation in a lignan-rich medicinal plant.

PMID:
42472469
Bibliographic data and abstract were imported from PubMed on 20 Jul 2026.

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