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Thiamethoxam degradation by Pseudomonas and Bacillus strains isolated from agricultural soils

机译:从农业土壤中分离的假单胞菌和芽孢杆菌菌株降解噻虫嗪

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摘要

Twelve bacterial species were evaluated to know the degradation pattern of thiamethoxam in liquid medium. All the bacterial species could actively degrade phorate in a mineral salt medium containing phorate (50 mu g ml(-1)) as sole carbon source. As these species have ability to degrade, we used these for the degradation of thiamethoxam-a neonicoitinoids. Screening of 12 active phorate-metabolizing bacterial species resulted in selection of Bacillus aeromonas strain IMBL 4.1 and Pseudomonas putida strain IMBL 5.2 causing 45.28 and 38.23 % thiamethoxam (50 mu g ml(-1)) reduction, respectively, in 15 days as potential thiamethoxam degrading species. These two bacterial species grew optimally at 37 degrees C under shake culture conditions in MSMT medium raised with initial pH of 6.0-6.5 and use of these optimum cultural conditions resulted in improved thiamethoxam degradation by these bacterial species. These species caused maximum thiamethoxam degradation only in the presence of thiamethoxam as sole source of carbon and energy and the same was reduced in the presence of easily metabolize able carbon (C-0 and C-1) and nitrogen ((N-0, N-1 and N-2) sources. This could be attributed to involvement of repressible metabolic pathways, reactions of which are inhibited by the presence of easily available nutrients for growth. Besides above, qualitative analysis of thiamethoxam residues by gas liquid chromatography revealed complete metabolization of thiamethoxam without detectable accumulation of any known thiamethoxam metabolites.
机译:对十二种细菌进行了评估,以了解噻虫嗪在液体培养基中的降解方式。所有细菌物种都可以在含有唯一的碳源磷酸盐(50μg ml(-1))的矿物盐培养基中主动降解磷酸盐。由于这些物种具有降解能力,因此我们将它们用于降解噻虫嗪-新烟碱类。筛选出12种活跃的可代谢磷酸盐的细菌种类,从而选择了空气杆菌芽孢杆菌IMBL 4.1和恶臭假单胞菌IMBL 5.2,分别在15天内减少了45.28%和38.23%的噻虫嗪(50μg ml(-1))含量,作为潜在的噻虫嗪降解物种。这两种细菌在摇动培养条件下于初始pH为6.0-6.5的MSMT培养基中,在37摄氏度下最佳生长,使用这些最佳培养条件可改善这些细菌对噻虫嗪的降解。这些物质仅在噻虫嗪为唯一碳和能量来源的情况下引起最大的噻虫嗪降解,而在易于代谢的碳(C-0和C-1)和氮((N-0,N -1和N-2)来源:这可能归因于可抑制的代谢途径,其反应被容易获得的营养生长所抑制,此外,通过气相色谱法对噻虫嗪残留物的定性分析表明已完全代谢没有检测到任何已知的噻虫嗪代谢产物的积累。

著录项

  • 来源
    《Environmental Monitoring and Assessment》 |2015年第5期|300.1-300.9|共9页
  • 作者单位

    Punjab Agr Univ, Dept Microbiol, Ludhiana 141004, Punjab, India;

    Punjab Agr Univ, Dept Entomol, Insect Mol Biol Lab, Ludhiana 141004, Punjab, India;

    Punjab Agr Univ, Dept Entomol, Pesticide Residue Anal Lab, Ludhiana 141004, Punjab, India;

    Punjab Agr Univ, Dept Microbiol, Ludhiana 141004, Punjab, India;

    Punjab Agr Univ, Dept Entomol, Insect Mol Biol Lab, Ludhiana 141004, Punjab, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Degradation; Thiamethoxam; Bacillus aeromonas; Pseudomonas putida;

    机译:降解;噻虫嗪;空气芽孢杆菌;恶臭假单胞菌;
  • 入库时间 2022-08-17 13:26:29

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