生物炭提取物可调节秀丽隐杆线虫体内持久性自由基的毒性

Xuchao Zhang, N. Saul, Thora Lieke, Yi Chen, Min Wu, B. Pan, C. Steinberg
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引用次数: 0

摘要

生物炭作为一种有效的土壤改进剂,由于环境持久性自由基(environmental persistent free radicals, EPFRs)等内源污染物对土壤无脊椎动物具有一定的生态风险,因此生物炭在农业上的广泛应用需要进行全面的生态评价。本研究以秀丽隐杆线虫(C. elegans)为模型生物,研究了两种秸秆生物炭在500℃和700℃热解后的神经毒性。在暴露于未洗涤的生物炭、洗涤的生物炭和浸出液(上清液)24小时后,通过液体毒性试验确定秀丽隐杆线虫的神经行为参数。结果表明,当生物炭浓度为4 g·well - 1时,洗涤后的700°C生物炭颗粒显著损害了运动能力,并延长了排便间隔,而未洗涤的生物炭和上清液则没有明显的损害。电子顺磁共振(EPR)结果表明,未洗涤的700°C生物炭中EPFRs的强度比洗涤后的相应颗粒强。这表明,在液体试验中,EPR信号本身不能指示颗粒毒性。应考虑紧急环境保护区的可及性和活动。浸出液中存在溶解性有机物(DOM)。水洗后的生物炭再加入浸出液后,其神经毒性活性有所减轻,表明溶解的有机物调节了epfr在液相中的反应活性。本研究表明,浸出过程可能会增加生物炭在田间环境中使用的风险。
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Biochar Extracts Can Modulate the Toxicity of Persistent Free Radicals in the Nematode Caenorhabditis elegans
As an effective soil amendment, biochars require a comprehensive ecological evaluation before they can be widely used in agriculture because endogenous contaminants, such as environmentally persistent free radicals (EPFRs), certainly pose an ecological risk to soil invertebrates. In this study, Caenorhabditis elegans (C. elegans) was used as a model organism to investigate the neurotoxicity of two rice straw biochars pyrolyzed at 500 and 700 °C. After 24 h exposure to unwashed biochar, washed biochar, and leaching fluids (supernatants), the neurobehavioral parameters of C. elegans were determined in a liquid toxicity test. The results showed that the washed 700 °C biochar particles significantly impaired locomotion and prolonged the defecation interval at a biochar concentration of 4 g·well−1, while the unwashed biochar and supernatants caused no apparent impairment. Supporting this, electron paramagnetic resonance (EPR) results showed that the intensity of EPFRs in unwashed 700 °C biochar was stronger than that of the corresponding washed particles. This indicates that, in the liquid test, the EPR signal alone is not indicative of particle toxicity. The accessibility and activity of the EPFRs should be considered. Dissolved organic matter (DOM) was observed in the leaching fluids. The neurotoxic activity of the washed biochar was alleviated after the re-addition of leaching fluids to the washed biochar, suggesting that the dissolved organic materials modulate the reactivity of the EPFRs in the liquid phase. This study suggests that the leaching process may increase the risk of biochar when used in the field environment.
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