影响地下细菌在受污染地下水中存活的适宜性因素

Michael P Thorgersen, Jennifer L Goff, Valentine V Trotter, Farris L Poole, Adam P Arkin, Adam M Deutschbauer, Michael W W Adams
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引用次数: 0

摘要

微生物物种在遇到复杂的污染环境时能否存活取决于很多因素,包括暴露时间、污染物的性质和浓度、营养资源的可用性以及是否拥有生存所需的适当分子机制组合。在此,我们试图利用耐金属的橡树岭保护区(ORR)分离菌泛酸菌 MT58(MT58),找出对革兰氏阴性肠杆菌科细菌在含有高浓度硝酸盐和金属的污染地下水环境中生存最重要的基因。通过将 MT58 的随机条形码转座子插入(RB-TnSeq)文库直接暴露于来自硝酸盐和混合金属污染羽流的受污染 ORR 地下水样本的生存适应性实验,确定了随着暴露时间和污染物浓度以及碳源可用性的增加,对生存有重要影响的基因。研究发现,在受污染的 ORR 地下水中,参与控制和使用碳、编码转录调节因子以及与革兰氏阴性菌外膜过程有关的基因对存活非常重要。通过对 75 株盘尾丝菌属菌株进行比较基因组学分析,我们进一步将盘尾丝菌泛基因组中的生存决定因素分为核心基因和非核心基因,从而揭示了污染物羽流入侵期间地下微生物的生存情况。
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Fitness factors impacting survival of a subsurface bacterium in contaminated groundwater
Many factors contribute to the ability of a microbial species to persist when encountering complexly contaminated environments including time of exposure, the nature and concentration of contaminants, availability of nutritional resources, and possession of a combination of appropriate molecular mechanisms needed for survival. Herein we sought to identify genes that are most important for survival of Gram-negative Enterobacteriaceae in contaminated groundwater environments containing high concentrations of nitrate and metals using the metal-tolerant Oak Ridge Reservation (ORR) isolate, Pantoea sp. MT58 (MT58). Survival fitness experiments in which a randomly barcoded transposon insertion (RB-TnSeq) library of MT58 was exposed directly to contaminated ORR groundwater samples from across a nitrate and mixed metal contamination plume were used to identify genes important for survival with increasing exposure times and concentrations of contaminants, and availability of a carbon source. Genes involved in controlling and using carbon, encoding transcriptional regulators, and related to Gram-negative outer membrane processes were among those found to be important for survival in contaminated ORR groundwater. A comparative genomics analysis of 75 Pantoea genus strains allowed us to further separate the survival determinants into core and non-core genes in the Pantoea pangenome, revealing insights into the survival of subsurface microorganisms during contaminant plume intrusion.
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