首页> 外文期刊>Applied Soil Ecology >Tolerance, growth and degradation of phenanthrene and benzo[a]pyrene by Rhizobium tropici CIAT 899 in liquid culture medium.
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Tolerance, growth and degradation of phenanthrene and benzo[a]pyrene by Rhizobium tropici CIAT 899 in liquid culture medium.

机译:热带根瘤菌CIAT 899在液体培养基中对菲和苯并[a] re的耐受性,生长和降解。

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摘要

Polycyclic aromatic hydrocarbons (PAH) are ubiquitous pollutants that are toxic and recalcitrant to degradation by bacteria. This research evaluated the toxicity of different concentrations [10, 20, 40, 60, 80 and 100 micro g mL-1] of phenanthrene (PHE) or benzo[a]pyrene (BaP) on the growth of Rhizobium tropici CIAT899 under in vitro conditions as well as the potential degradation of PHE and BaP by this bacterium. At 24 h, a 40% decrease in Rhizobium growth was observed when exposed to 40 micro g mL-1 of either PHE or BaP. Furthermore, bacterial growth was completely inhibited by PHE or BaP applied in 80 and 100 micro g mL-1. After 96 h, the growth of R. tropici at 40 micro g PHE mL-1 or 60 micro g BaP mL-1 was similar to those treatments without PAH. To evaluate R. tropici degrading capabilities, supernatants of cultures with 40 micro g PHE mL-1 or 60 micro g BaP mL-1 were analyzed by gas chromatography coupled to mass spectrophotometer (GC-MS). R. tropici was able to degrade either PHE or BaP diminishing its concentration in 20% and 25% during the first 24 h, degradation obtained at 120 h was 50% and 45% for PHE or BaP, respectively. This research shows for the first time that R. tropici CIAT 899 grows in liquid culture medium contaminated with PAH, and moreover is able to growth and to degrade either PHE or BaP.
机译:多环芳烃(PAH)是普遍存在的污染物,有毒且难以被细菌降解。这项研究评估了不同浓度[10、20、40、60、80和100 micro g mL -1 ]菲(PHE)或苯并[a] re(BaP)的毒性在体外条件下对热带根瘤菌CIAT899的检测以及该细菌对PHE和BaP的潜在降解。当暴露于40 micro g mL -1 的PHE或BaP中时,在24小时观察到根瘤菌生长降低了40%。此外,在80和100微克mL -1 中施用PHE或BaP可以完全抑制细菌生长。 96小时后,在40微克PHE mL -1 或60微克BaP mL -1 时,热带果蝇的生长与不使用PAH的处理相似。为了评估热带罗非鱼的降解能力,通过气相色谱-质谱联用分析了40 µg PHE mL -1 或60 µg BaP mL -1 的培养上清液。 (GC-MS)。 tropic R.能够降解PHE或BaP,在最初的24小时内将其浓度降低20%和25%,在120 h时PHE或BaP的降解分别为50%和45%。这项研究首次表明,热带寄主CIAT 899在受PAH污染的液体培养基中生长,而且能够生长并降解PHE或BaP。

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