Key Laboratory of Environmental Pollution Monitoring and Disease of Ministry of Education, School of Public Health, Guizhou Medical University, Guiyang 550025, China; Institute of Crop Protection, College of Agriculture, Guizhou University, Guiyang, Guizhou 550025, China.
Key Laboratory of Environmental Pollution Monitoring and Disease of Ministry of Education, School of Public Health, Guizhou Medical University, Guiyang 550025, China.
J Hazard Mater. 2023 May 15;450:131091. doi: 10.1016/j.jhazmat.2023.131091. Epub 2023 Feb 26.
Butylated hydroxytoluene (BHT), as an emerging contaminant in ecosystems, has potential influences on animals, aquatic organisms, and public health, and has been proven to be a major allelochemical of Pinellia ternata. In this study, Bacillus cereus WL08 was used to rapidly degrade BHT in liquid culture. Strain WL08 immobilized on tobacco stem charcoal (TSC) particles notably accelerated BHT removal in contract to its free cells, and exhibited excellent reutilization and storage capacities. The optimal removal parameters of TSC WL08 were ascertained to be pH 7.0, 30 °C, 50 mg L BHT and 0.14 mg L TSC WL08. Moreover, TSC WL08 significantly accelerated the degradation of 50 mg L BHT in sterile and non-sterile soils compared to that of free WL08 or natural dissipation, and notably shortened their half-lives by 2.47- or 362.14- fold, and 2.20- or 14.99- fold, respectively. Simultaneously, TSC WL08 was introduced into the continuous cropping soils of P. ternata, which accelerated the elimination of allelochemical BHT, and notably enhanced the photosynthesis, growth, yield, and quality of P. ternata. This study provides new insights and strategies for the rapid in situ remediation of BHT-polluted soils and effective alleviation of P. ternata cropping obstacles.
丁基羟基甲苯(BHT)作为一种新兴的生态系统污染物,对动物、水生生物和公众健康都具有潜在影响,已被证实是半夏的主要化感物质。本研究利用蜡样芽孢杆菌 WL08 对液体培养基中的 BHT 进行快速降解。与游离细胞相比,固定在烟草茎炭(TSC)颗粒上的 WL08 菌株显著加速了 BHT 的去除,表现出良好的重复利用和储存能力。确定 TSC WL08 的最佳去除参数为 pH 7.0、30°C、50mg/L BHT 和 0.14mg/L TSC WL08。此外,与游离 WL08 或自然衰减相比,TSC WL08 显著加速了无菌和非无菌土壤中 50mg/L BHT 的降解,半衰期分别缩短了 2.47 倍和 362.14 倍、2.20 倍和 14.99 倍。同时,将 TSC WL08 引入半夏连作土壤中,加速了化感物质 BHT 的消除,显著提高了半夏的光合作用、生长、产量和品质。本研究为 BHT 污染土壤的快速原位修复和有效缓解半夏连作障碍提供了新的思路和策略。