首页> 外文期刊>Letters in Applied Microbiology >The application of the herbicide bromoxynil to a model soil-derived bacterial community: impact on degradation and community structure
【24h】

The application of the herbicide bromoxynil to a model soil-derived bacterial community: impact on degradation and community structure

机译:除草剂溴苯腈在土壤样细菌群落模型中的应用:对降解和群落结构的影响

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

AIMS: Bromoxynil degradation by soil micro-organisms has been shown to be co-oxidative in character. In this study, we investigate both the impact of the application of increasing bromoxynil concentrations on soil-derived bacterial communities and how these changes are reflected in the degradation of the compound. Our aim was to test the hypothesis that the addition of bromoxynil to a soil-derived bacterial community, and the availability of a readily utilizable carbon source would have an impact on bromoxynil degradation, and that would be reflected in the bacteria present in the soil community. METHODS AND RESULTS: Degradation of bromoxynil was observed in soil-derived communities containing 15 mg l(-1), but not 50 mg l(-1) of the compound, unless glucose was added. This suggests that the addition of carbon stimulates co-oxidative bromoxynil degradation by the members of the bacterial community. Measurable changes in the bacterial community indicated that the addition of bromoxynil led to deterministic selection on the bacterial population, i.e. the communities observed arise through the selection of specific micro-organisms that are best adapted to the conditions in the soil. The addition of bromoxynil was also shown to have a negative impact on the presence of alpha and gamma-proteobacteria in the soil community. CONCLUSION: Bromoxynil degradation is significantly inhibited in bacterial soil communities in the absence of readily accessible carbon. The application of bromoxynil appears to exert deterministic selection on the bacterial community. SIGNIFICANCE AND IMPACT OF THE STUDY: This study highlights the effects of increasing bromoxynil concentrations on a model bacterial population derived from soil. Soil communities show qualitative and quantitative differences to bromoxynil application depending on the availability of organic carbon. These findings might have implications for the persistence of bromoxynil in agricultural soils.
机译:目的:已证明土壤微生物对溴苯腈的降解具有共氧化特性。在这项研究中,我们调查了不断增加的溴苯腈浓度对土壤衍生细菌群落的影响,以及这些变化如何在化合物的降解中反映出来。我们的目的是检验以下假设:向土壤衍生的细菌群落中添加溴苯腈,以及易于使用的碳源的可用性将对溴苯腈的降解产生影响,这将反映在土壤社区中存在的细菌中。方法和结果:除非添加了葡萄糖,否则在含有15 mg l(-1)但不含50 mg l(-1)的土壤来源的群落中观察到溴苯腈的降解。这表明碳的添加刺激了细菌群落成员的共氧化溴苯腈降解。细菌群落的可测量变化表明,溴苯腈的添加导致细菌种群的确定性选择,即观察到的群落是通过选择最适合土壤条件的特定微生物而形成的。还显示添加溴苯腈对土壤群落中α和γ-变形细菌的存在具有负面影响。结论:在缺乏容易获得的碳的情况下,细菌土壤群落中溴苯腈的降解受到显着抑制。溴苯腈的应用似乎对细菌群落产生确定性的选择。该研究的意义和影响:这项研究强调了溴苯腈浓度的增加对源自土壤的模型细菌种群的影响。土壤群落对溴苯腈的施用表现出质和量的差异,这取决于有机碳的可用性。这些发现可能对溴苯腈在农业土壤中的持久性具有影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号