Lazra Yulia, Dubrovin Irina, Multanen Victor, Bormashenko Edward, Bormashenko Yelena, Cahan Rivka
Department of Chemical Engineering and Biotechnology, Ariel University, Ariel 40700, Israel.
Microorganisms. 2020 May 11;8(5):704. doi: 10.3390/microorganisms8050704.
Crop contamination by soil-borne pathogenic microorganisms often leads to serious infection outbreaks. Plant protection requires disinfection of agricultural lands. The chemical and the physical disinfection procedures have several disadvantages, including an irreversible change in the soil ecosystem. Plasma, the "fourth state of matter" is defined as an ionized gas containing an equal number of negatively and positively charged particles. Cold-plasma technology with air or oxygen as the working gas generates reactive oxygen species, which are found to efficiently eradicate bacteria. In this study, we examined the effect of atmospheric plasma corona discharges on soil bacteria viability. Soil that was exposed to plasma for 60 s resulted in bacterial reduction by two orders of magnitude, from 1.1 × 10 to 2.3 × 10 cells g soil. Exposure for a longer period of 5 min did not lead to further significant reduction in bacterial concentration (a final reduction of only 2.5 orders of magnitude). The bacterial viability was evaluated using a colorimetric assay based on the bacterial hydrogenases immediately after exposure and at selected times during 24 h. The result showed no recovery in the bacterial viability. Plasma discharged directly on bacteria that were isolated from the soil resulted in a reduction by four orders of magnitude in the bacterial concentration compared to untreated isolated bacteria: 2.6 × 10 and 1.7 × 10, respectively. The plasma-resistant bacteria were found to be related to the taxonomic phylum (98.5%) and comprised the taxonomic orders (95%) and (2%). To our knowledge, this is the first study of soil bacteria eradication using plasma corona discharges.
土壤传播的致病微生物对农作物的污染常常导致严重的感染爆发。植物保护需要对农田进行消毒。化学和物理消毒程序有几个缺点,包括土壤生态系统的不可逆变化。等离子体,即“物质的第四态”,被定义为一种含有等量正负电荷粒子的电离气体。以空气或氧气作为工作气体的冷等离子体技术产生活性氧物质,已发现其能有效根除细菌。在本研究中,我们检测了大气等离子体电晕放电对土壤细菌活力的影响。暴露于等离子体60秒的土壤导致细菌数量减少两个数量级,从1.1×10到2.3×10个细胞/克土壤。暴露5分钟的较长时间并未导致细菌浓度进一步显著降低(最终仅降低2.5个数量级)。在暴露后立即以及在24小时内的选定时间,使用基于细菌氢化酶的比色法评估细菌活力。结果显示细菌活力没有恢复。直接对从土壤中分离出的细菌进行等离子体放电,与未处理的分离细菌相比,细菌浓度降低了四个数量级:分别为2.6×10和1.7×10。发现抗等离子体细菌与分类门(98.5%)有关,包括分类目(95%)和(2%)。据我们所知,这是第一项关于使用等离子体电晕放电根除土壤细菌的研究。