Physiological and Transcriptome Analyses Revealed the Mechanism by Which Deferoxamine Promotes Iron Absorption in Cinnamomum camphora
Wei-Liang Kong, Tong-Yue Wen, Ya-Hui Wang, Xiao-Qin Wu
Journal:INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
IF:6.21
DOI:10.3390/ijms23179854
PMID:36077250
Published:2022-08-30
research field:分子生物学进化生物学
Abstract
Iron deficiency causes chlorosis and growth inhibition inCinnamomum camphora, an important landscaping tree species. Siderophores produced by plant growth-promoting rhizobacteria have been widely reported to play an indispensable role in plant iron nutrition. However, little to date has been determined about how microbial siderophores promote plant iron absorption. In this study, multidisciplinary approaches, including physiological, biochemical and transcriptome methods, were used to investigate the role of deferoxamine (DFO) in regulating Fe availability inC. camphoraseedlings. Our results showed that DFO supplementation significantly increased the Fe2+content, SPAD value and ferric-chelate reductase (FCR) activity in plants, suggesting its beneficial effect under Fe deficiency. This DFO-driven amelioration of Fe deficiency was further supported by the improvement of photosynthesis. Intriguingly, DFO treatment activated the metabolic pathway of glutathione (GSH) synthesis, and exogenous spraying reduced glutathione and also alleviated chlorosis inC. camphora. In addition, the expression of some Fe acquisition and transport-related genes, includingCcbHLH,CcFRO6,CcIRT2, CcNramp5,CcOPT3andCcVIT4, was significantly upregulated by DFO treatment. Collectively, our data demonstrated an effective, economical and feasible organic iron-complexing agent for iron-deficient camphor trees and provided new insights into the mechanism by which siderophores promote iron absorption in plants.Keywords:iron deficiency;siderophores;Cinnamomum camphora;deferoxamine;transcriptome
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