Stress-related phenomena and detoxification mechanisms induced by common pharmaceuticals in alfalfa (Medicago sativa L.) plants

被引:79
作者
Christou, Anastasis [1 ]
Antoniou, Chrystalla [4 ]
Christodoulou, Charalampia [4 ]
Hapeshi, Evroula [3 ]
Stavrou, Ioannis [3 ]
Michael, Costas [3 ]
Fatta-Kassinos, Despo [2 ,3 ]
Fotopoulos, Vasileios [4 ]
机构
[1] Agr Res Inst, POB 22016, CY-1516 Nicosia, Cyprus
[2] Univ Cyprus, Dept Civil & Environm Engn, POB 20537, CY-1678 Nicosia, Cyprus
[3] Univ Cyprus, NIREAS Int Water Res Ctr, POB 20537, CY-1678 Nicosia, Cyprus
[4] Cyprus Univ Technol, Dept Agr Sci Biotechnol & Food Sci, CY-3603 Lemesos, Cyprus
关键词
Glutathione S-transferase; Pharmaceutically active compounds; Medicago sativa L; Proton pump; Cytochrome c oxidase; Oxidative stress; PERSONAL CARE PRODUCTS; WATER TREATMENT PLANTS; WASTE-WATER; TRANSCRIPTIONAL REGULATION; SODIUM-NITROPRUSSIDE; CONSTRUCTED WETLANDS; ADAPTATION MECHANISM; STRAWBERRY PLANTS; TRANSLOCATION; ACCUMULATION;
D O I
10.1016/j.scitotenv.2016.03.054
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Pharmaceutically active compounds (PhACs) have been recently shown to exert phytotoxic effects. The present study explores the uptake, systemic translocation, and abiotic stress responses and detoxification mechanisms induced by the exposure of alfalfa plants grown in sand under greenhouse conditions to four common, individually applied PhACs (10 mu g L-1) (diclofenac, sulfamethoxazole, trimethoprim, 17a-ethinylestradiol) and their mixture. Stress physiology markers (lipid peroxidation, proline, H2O2 and NO content, antioxidant activity assays) and gene expression levels of key plant detoxification components (including glutathione S-transferases, GST7, GST17; superoxide dismutases, CuZnSOD, FeSOD; protonpump, H+-ATP, and cytochromec oxidase, CytcOx), were evaluated. PhACs were detected in significantly higher concentrations in roots compared with leaves. Stress related effects, manifested via membrane lipid peroxidation and oxidative burst, were local (roots) rather than systemic (leaves), and exacerbated when the tested PhACs were applied in mixture. Systemic accumulation of H2O2 in leaves suggests its involvement in signal transduction and detoxification responses. Increased antioxidant enzymatic activities, as well as upregulated transcript levels of GST7, GST17, H+-ATPase and CytcOx, propose their role in the detoxification of the selected PhACs in plants. The current findings provide novel biochemical and molecular evidence highlighting the studied PhACs as an emerging abiotic stress factor, and point the need for further research on wastewater flows under natural agricultural environments. (C) 2016 Elsevier B.V. All rights reserved.
引用
收藏
页码:652 / 664
页数:13
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