Department of Isotope Biogeochemistry, Helmholtz Centre for Environmental Research-UFZ, Permoserstraße 15, 04318 Leipzig, Germany.
Institute for Applied Geosciences, Technical University Darmstadt, Schnittspahnstraße 9, 64287 Darmstadt, Germany.
Environ Sci Technol. 2021 Oct 19;55(20):13812-13821. doi: 10.1021/acs.est.1c03322. Epub 2021 Oct 5.
β-Hexachlorocyclohexane (β-HCH) is a remnant from former HCH pesticide production. Its removal from the environment gained attention in the last few years since it is the most stable HCH isomer. However, knowledge about the transformation of β-HCH in soil-plant systems is still limited. Therefore, experiments with a contaminated field soil were conducted to investigate the transformation of β-HCH in soil-plant systems by compound specific isotope analysis (CSIA). The results showed that the δC and δCl values of β-HCH in the soil of the planted control remained stable, revealing no transformation due to a low bioavailability. Remarkably, an increase of the δC and δCl values in soil and plant tissues of the spiked treatments were observed, indicating the transformation of β-HCH in both the soil and the plant. This was surprising as previously it was shown that wheat is unable to transform β-HCH when growing in hydroponic culture or garden soil. Thus, results of this work indicate for the first time that a microbial community of the soil inoculated the wheat and then facilitated the transformation of β-HCH in the wheat, which may have implications for the development of phytoremediation concepts. A high abundance of HCH degraders belonging to sp., sp., and others was detected in the β-HCH-treated bulk and rhizosphere soil, potentially supporting the biotransformation.
β-六氯环己烷(β-HCH)是前 HCH 农药生产的残留物。由于它是最稳定的 HCH 异构体,因此在过去几年中,人们对其从环境中去除引起了关注。然而,关于土壤-植物系统中β-HCH 转化的知识仍然有限。因此,通过使用特定于化合物的同位素分析(CSIA)进行了受污染田间土壤的实验,以研究土壤-植物系统中β-HCH 的转化。结果表明,种植对照土壤中β-HCH 的 δC 和 δCl 值保持稳定,由于生物利用度低,表明没有转化。值得注意的是,在添加处理的土壤和植物组织中观察到 δC 和 δCl 值的增加,表明β-HCH 在土壤和植物中都发生了转化。这令人惊讶,因为以前表明,当在水培或花园土壤中生长时,小麦无法转化β-HCH。因此,这项工作的结果首次表明,接种小麦的土壤微生物群落促进了β-HCH 在小麦中的转化,这可能对植物修复概念的发展具有重要意义。在β-HCH 处理的土壤和根际土壤中检测到大量属于 种、 种和其他种的 HCH 降解菌,可能支持了生物转化。