Division of Soil and Water Management, KU Leuven, Heverlee, Belgium.
FEMS Microbiol Ecol. 2013 Dec;86(3):415-31. doi: 10.1111/1574-6941.12173. Epub 2013 Jul 24.
Mobile genetic elements (MGEs) are considered as key players in the adaptation of bacteria to degrade organic xenobiotic recalcitrant compounds such as pesticides. We examined the prevalence and abundance of IncP-1 plasmids and IS1071, two MGEs that are frequently linked with organic xenobiotic degradation, in laboratory and field ecosystems with and without pesticide pollution history. The ecosystems included on-farm biopurification systems (BPS) processing pesticide-contaminated wastewater and soil. Comparison of IncP-1/IS1071 prevalence between pesticide-treated and nontreated soil and BPS microcosms suggested that both IncP-1 and IS1071 proliferated as a response to pesticide treatment. The increased prevalence of IncP-1 plasmids and IS1071-specific sequences in treated systems was accompanied by an increase in the capacity to mineralize the applied pesticides. Both elements were also encountered in high abundance in field BPS ecosystems that were in operation at farmyards and that showed the capacity to degrade/mineralize a wide range of chlorinated aromatics and pesticides. In contrast, IS1071 and especially IncP-1, MGE were less abundant in field ecosystems without pesticide history although some of them still showed a high IS1071 abundance. Our data suggest that MGE-containing organisms were enriched in pesticide-contaminated environments like BPS where they might contribute to spreading of catabolic genes and to pathway assembly.
移动遗传元件 (MGE) 被认为是细菌适应降解有机异生物质抗性化合物(如农药)的关键因素。我们研究了在有和没有农药污染历史的实验室和野外生态系统中,与有机异生物质降解频繁相关的 IncP-1 质粒和 IS1071 的丰度和流行率。这些生态系统包括处理农药污染废水和土壤的农场生物净化系统 (BPS)。对农药处理和未处理土壤和 BPS 微宇宙中 IncP-1/IS1071 流行率的比较表明,IncP-1 和 IS1071 都作为对农药处理的反应而增殖。在处理系统中,IncP-1 质粒和 IS1071 特异性序列的流行率增加伴随着应用农药的矿化能力的增加。这两个元素在农场运营的田间 BPS 生态系统中也大量存在,并且具有降解/矿化各种氯化芳烃和农药的能力。相比之下,尽管一些生态系统仍具有较高的 IS1071 丰度,但在没有农药历史的野外生态系统中,IS1071 和特别是 IncP-1 MGE 的丰度较低。我们的数据表明,含有 MGE 的生物在像 BPS 这样的农药污染环境中得到了富集,在那里它们可能有助于传播代谢基因和途径组装。