Jiangsu Key Laboratory for Microbes and Functional Genomics, Jiangsu Engineering and Technology Research Center for Industrialization of Microbial Resources, College of Life Sciences, Nanjing Normal University, Nanjing, 210023, China.
Department of Neurology, Nanjing First Hospital, Nanjing Medical University, Nanjing, China.
Chemosphere. 2020 Mar;243:125305. doi: 10.1016/j.chemosphere.2019.125305. Epub 2019 Nov 5.
Phenanthrene can easily be absorbed into the plant from the soil and cannot be effectively degraded in it. Thus, it is greatly hazardous for food safety and human health. In our study, the biodegradability and remediation mechanism of endophytic fungus Phomopsis liquidambaris on phenanthrene in vivo of rice (Oryza sativa L.) was detected. The results showed that the fungus could successfully establish a symbiotic relationship with rice, thus had the potential to degrade phenanthrene absorbed into the plant. Changes of phenanthrene-degrading genes of fungus in the combined system were consistent with the trends of their corresponding enzymatic activities, and the phenanthrene-degrading enzyme activities and gene expression levels in roots of rice were higher than those in the shoot. Moreover, the combined system can enhance bioremediation by increasing root viability, chlorophyll content, and energy supply. The combined system had also significantly increased the PPO activity and SOD activity in shoot compared with the control treatment, while decreased the content of MDA when remediation in vivo. The study on the degradation mechanism of the combined system will help us to increase the practical application potential of endophyte to effectively repair contamination absorbed into plant seedlings.
菲在土壤中很容易被植物吸收,且在土壤中难以有效降解。因此,它对食品安全和人类健康构成了极大的威胁。在我们的研究中,检测了内生真菌拟茎点霉对水稻(Oryza sativa L.)体内菲的生物降解性和修复机制。结果表明,该真菌能够与水稻成功建立共生关系,从而具有降解植物吸收的菲的潜力。在组合系统中,真菌中菲降解基因的变化与相应酶活性的变化趋势一致,且水稻根系中的菲降解酶活性和基因表达水平均高于地上部分。此外,该组合系统可以通过增加根活力、叶绿素含量和能量供应来增强生物修复。与对照处理相比,组合系统在体内修复时还显著提高了地上部分 PPO 活性和 SOD 活性,同时降低了 MDA 的含量。对组合系统降解机制的研究将有助于提高内生菌的实际应用潜力,从而有效修复植物幼苗吸收的污染物。