Ferric reduction oxidase in Lilium pumilum affects plant saline-alkaline tolerance by regulating ROS homeostasis

Ferric reduction oxidase (FRO) plays important roles in biotic and abiotic stress. However, the function of ferric reduction oxidase from Lilium pumilum in response to NaHCO3 is unknown. Here we report the functional characterization of ferric reduction oxidase 7 in Lilium pumilum (LpFRO7) in stress...

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Veröffentlicht in:Plant physiology and biochemistry 2024-02, Vol.207, p.108305-108305, Article 108305
Hauptverfasser: Zhang, Ling, Wang, Zongying, Ji, Shangwei, Zhu, Guoqing, Dong, Yi, Li, Ji, Jing, Yibo, Jin, Shumei
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Sprache:eng
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Zusammenfassung:Ferric reduction oxidase (FRO) plays important roles in biotic and abiotic stress. However, the function of ferric reduction oxidase from Lilium pumilum in response to NaHCO3 is unknown. Here we report the functional characterization of ferric reduction oxidase 7 in Lilium pumilum (LpFRO7) in stresses. Under NaHCO3 stress, the LpFRO7 overexpression lines exhibited lower accumulation of reactive oxygen species (ROS), higher activities in antioxidant enzyme (CAT, SOD and POD) and ferrite reductase, resulting in improved tolerance compared to the wild type (WT). In order to determine the functional network of LpFRO7, it was confirmed by EMSA assays, Yeast one-hybrid assays and Dual luciferase reporter assays that LpbHLH115 transcription factor can bind to the promoter of LpFRO7. Yeast two-hybrid assays, BiFC, and LCI assays were performed to prove that LpFRO7 can interact with LpTrx. Combining these findings, we concluded that LpFRO7 affects plant saline-alkaline tolerance by regulating ROS homeostasis. •LpFRO7 increases the saline-alkaline tolerance in Lilium pumilum.•LpbHLH115 transcription factor could bind to the promoter of LpFRO7.•Interaction between LpFRO7 and LpTrx coordinates the homeostasis of ROS in Lilium pumilum.
ISSN:0981-9428
1873-2690
DOI:10.1016/j.plaphy.2023.108305