期刊
MOLECULES
卷 26, 期 22, 页码 -出版社
MDPI
DOI: 10.3390/molecules26226765
关键词
enzyme activity; chlorophyll; membrane damage; mitochondrial activity; HSP70 protein content; free radicals
资金
- National Science Center [UMO-2019/35/B/NZ7/04394]
- (Intensive rearing of poultry-identification of changes occurring in the environment and their impact on human health)
The study found that Lemna minor L. can significantly recover from antibiotic-induced damage within a week of stress cessation. Mitochondrial activity was the most sensitive plant property to antibiotic disturbances, with a high proportion of dead mitochondria in plants exposed to the highest tetracycline dose. Following transfer to a tetracycline-free medium, all plant parameters improved except for mitochondrial activity in high tetracycline concentration plants.
In this study, the ability of Lemna minor L. to recover to normal growth, after being degraded in a tetracycline-containing medium, was extensively investigated. The plants were exposed to tetracycline (TC) at concentrations of 1, 2.5, and 10 mM. Subsequently, their physiological status was analysed against the following criteria: rate of plant growth; free radical accumulation; antioxidant enzyme activity; chlorophyll content; HSP70 protein content; cell membrane permeability, and mitochondrial activity. The study showed that duckweed can considerably recover from the damage caused by antibiotics, within a week of cessation of stress. Of the plant properties analysed, mitochondrial activity was the most sensitive to antibiotic-induced disturbances. After transferring the plants to a tetracycline-free medium, all plant parameters improved significantly, except for the mitochondrial activity in the plants grown on the medium containing the highest dose of tetracycline. In the plants treated with this antibiotic at the concentration of 10 mM, the proportion of dead mitochondria increased and was as high as 93% after one week from the beginning of the recovery phase, even after the transfer to the tetracycline-free medium.
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