Oryza sativa class III peroxidase (OsPRX38) overexpression in Arabidopsis thaliana reduces arsenic accumulation due to apoplastic lignification

质外体 拟南芥 拟南芥 过氧化物酶 亚砷酸盐 生物化学 砷酸盐 生物 细胞壁 细胞生物学 非生物胁迫 超氧化物歧化酶 化学 氧化应激 基因 突变体 有机化学
作者
Maria Kidwai,Yogeshwar Vikram Dhar,Neelam Gautam,Madhu Tiwari,Iffat Zareen Ahmad,Mehar Hasan Asif,Debasis Chakrabarty
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:362: 383-393 被引量:139
标识
DOI:10.1016/j.jhazmat.2018.09.029
摘要

ClassIII peroxidases are multigene family of plant-specific peroxidase enzyme. They are involved in various physiological and developmental processes like auxin catabolism, cell metabolism, various biotic, abiotic stresses and cell elongation. In the present study, we identified a class III peroxidase (OsPRX38) from rice which is upregulated several folds in both arsenate (AsV) and arsenite (AsIII) stresses. The overexpression of OsPRX38 in Arabidopsis thaliana significantly enhances Arsenic (As) tolerance by increasing SOD, PRX GST activity and exhibited low H2O2, electrolyte leakage and malondialdehyde content. OsPRX38 overexpression also affect the plant growth by increasing total biomass and seeds production in transgenics than WT under As stress condition. Confocal microscopy revealed that the OsPRX38-YFP fusion protein was localized to the apoplast of the onion epidermal cells. In addition, lignification was positively correlated with an increase in cell-wall-associated peroxidase activities in transgenic plants. This study indicates the role of OsPRX38 in lignin biosynthesis, where lignin act as an apoplastic barrier for As entry in root cells leading to reduction of As accumulation in transgenic. Overall the study suggests that overexpression of OsPRX38 in Arabidopsis thaliana activates the signaling network of different antioxidant systems under As stress condition, enhancing the plant tolerance by reducing As accumulation due to high lignification.
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