Li Changkun, Ma Yuzhu, Mi Zhihui, Huo Rui, Zhou Tingting, Hai Huricha, Kwok Lai-Yu, Sun Zhihong, Chen Yongfu, Zhang Heping
Key Laboratory of Dairy Biotechnology and Engineering, Ministry of Education, Inner Mongolia Agricultural University, Huhhot, China.
Key Laboratory of Dairy Products Processing, Ministry of Agriculture, Inner Mongolia Agricultural University, Huhhot, China.
Front Microbiol. 2018 Sep 3;9:2048. doi: 10.3389/fmicb.2018.02048. eCollection 2018.
This work performed a large scale assessment for organophosphorus pesticides (OPPs) degradation activity of 121 (.) strains. Six strains (P9, IMAU80110, IMAU40100, IMAU10585, IMAU10209, and IMAU80070) were found to possess high capacity of degrading three commonly used OPPs, namely dimethoate, phorate, and omethoate; and they were selected for more detailed characterization. Moreover, the three OPPs were mainly detected in the culture supernatants but not in the cell extracts, further confirming that the OPPs were degraded rather than absorbed by the cells. Among the six selected strains, P9 was most tolerant to gastrointestinal juices and bile. We thus used ultra-high performance liquid chromatography electron spray ionization coupled with time-of-flight mass spectrometry (UPLC/ESI-Q-TOF/MS) to generate the metabolomic profiles of the strain P9 growing in MRS medium with and without containing phorate. By using orthogonal partial least squares discriminant analysis, we identified some potential phorate-derived degradative products. This work has identified novel lactic acid bacteria resources for application in pesticide degradation. Our results also shed light on the phorate degradation mechanism by P9.
本研究对121株菌株的有机磷农药(OPPs)降解活性进行了大规模评估。发现6株菌株(P9、IMAU80110、IMAU40100、IMAU10585、IMAU10209和IMAU80070)具有降解三种常用有机磷农药(即乐果、甲拌磷和氧乐果)的高能力;并选择它们进行更详细的表征。此外,三种有机磷农药主要在培养上清液中检测到,而在细胞提取物中未检测到,进一步证实有机磷农药是被降解而不是被细胞吸收。在所选的6株菌株中,P9对胃肠液和胆汁的耐受性最强。因此,我们使用超高效液相色谱-电喷雾电离-飞行时间质谱联用技术(UPLC/ESI-Q-TOF/MS)生成了在含有和不含有甲拌磷的MRS培养基中生长的P9菌株的代谢组学图谱。通过使用正交偏最小二乘法判别分析,我们鉴定了一些潜在的甲拌磷衍生降解产物。本研究确定了用于农药降解的新型乳酸菌资源。我们的结果也揭示了P9菌株降解甲拌磷的机制。