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Enrofloxacin perturbs nitrogen transformation and assimilation in rice seedlings (Oryza sativa L.)
- Source :
- The Science of the total environment. 802
- Publication Year :
- 2021
-
Abstract
- The extensive use of antibiotics worldwide has led to phytotoxicity and high risks to humans. Although research on the physiological toxicity of antibiotics is extensive, its influence on plant nitrogen uptake and assimilation remains unclear. The effect of enrofloxacin on nitrogen transformation and assimilation in rice (Oryza sativa L.) seedlings was investigated in this study. Enrofloxacin had no significant effect on rice growth, nitrogen assimilation and metabolism at low concentration, while significant changes were observed in high concentration. The growth of rice seedlings was inhibited, nitrate uptake was enhanced and nitrogen content increased significantly in both shoots and roots in enrofloxacin (800 μg L−1) treatment. Furthermore, enrofloxacin promoted the activity of enzymes related to nitrogen assimilation, including nitrate reductase, nitrite reductase, glutamine synthetase, glutamate synthase, and glutamate dehydrogenase. High enzyme activity resulted in an increase in intermediate products and protein content, suggesting that rice seedlings may detoxify enrofloxacin stress through amino acid binding and nitro-oxidative stress might be one of the reasons of phenotype change. Gas chromatography-mass spectrometry results revealed that different types of metabolites in both shoots and roots increased with enrofloxacin stress. Specifically, glycine, serine, and threonine metabolism; aminoacyl-tRNA biosynthesis; alanine, aspartate, and glutamate metabolism; butanoate metabolism; glyoxylate and dicarboxylate metabolism in shoot; and tyrosine metabolism and citrate cycle in root were affected. Moreover, a significant correlation between nitrogen content, nitrogen assimilation enzyme activity, and metabolite content was observed. Collectively, these findings reveal the potential risks of using reclaimed wastewater irrigation and/or antibiotic-containing animal fertilizers on crops.
- Subjects :
- Environmental Engineering
Nitrogen
Nitrogen assimilation
Glyoxylate and dicarboxylate metabolism
Nitrate reductase
Plant Roots
chemistry.chemical_compound
Glutamate synthase
Glutamine synthetase
Enrofloxacin
medicine
Environmental Chemistry
Humans
Food science
Waste Management and Disposal
biology
Glutamate dehydrogenase
food and beverages
Oryza
Nitrite reductase
Pollution
chemistry
Seedlings
biology.protein
medicine.drug
Subjects
Details
- ISSN :
- 18791026
- Volume :
- 802
- Database :
- OpenAIRE
- Journal :
- The Science of the total environment
- Accession number :
- edsair.doi.dedup.....bf7b266051f4764841395566c509591f