Metabolomics combined with proteomics reveals phytotoxic effects of norfloxacin under drought stress on Oryza sativa

水稻 蛋白质组学 代谢组学 干旱胁迫 诺氟沙星 生物 植物 生物信息学 生物化学 细菌 基因 遗传学 环丙沙星
作者
Kiran Yasmin Khan,Barkat Ali,Hafiz Usman Ghani,Xiaoqiang Cui,Shuang Zhang,Qian Xia,Lijiang Fu,Jinglu Tan,Vladimir Lysenko,Ya Guo
出处
期刊:Plant Physiology and Biochemistry [Elsevier BV]
卷期号:216: 109130-109130 被引量:3
标识
DOI:10.1016/j.plaphy.2024.109130
摘要

In recent decades, plants enduring abiotic stresses such as drought and chemical stresses. Currently, the mechanism of combined antibiotic and drought stress response and its impact on crop growth and food security remains poorly understood. Here, the mechanism of stress responses under the exposure of norfloxacin (NF) and drought (D) individually and in combination (DNF) were explored on rice (Oryza sativa) cultivar Hanyou73 through proteomics and metabolomic analysis. All treatments adversely affected chlorophyll fluorescence kinetics, antioxidant enzyme activities, rice grain composition and yield. The results showed that in DNF the antibiotic was accumulated 627% more than NF treatment in rice grains while in leaves there was no significant difference under both treatments. The proteomic revealed that differentially expressed identified proteins were involved in carbohydrate metabolism, amino acid metabolism, photosynthesis and mRNA binding. However, the metabolomics results showed that the abundance of metabolites related to RNA biosynthesis and amino acid metabolism were more affected. The disruptions caused in rice plant under DNF treatment become more severe, this makes it more susceptible than individual D and NF treatment. These findings improve our knowledge about the response of rice plant to cope with antibiotic contamination alone and in combination with drought.
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