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Identification of Benzoapyrene-Metabolizing Bacteria in Forest Soils by Using DNA-Based Stable-Isotope Probing

机译:基于DNA的稳定同位素探测鉴定森林土壤中苯并a re代谢细菌

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摘要

DNA-based stable-isotope probing (DNA-SIP) was used in this study to investigate the uncultivated bacteria with benzo[a]pyrene (BaP) metabolism capacities in two Chinese forest soils (Mt. Maoer in Heilongjiang Province and Mt. Baicaowa in Hubei Province). We characterized three different phylotypes with responsibility for BaP degradation, none of which were previously reported as BaP-degrading microorganisms by SIP. In Mt. Maoer soil microcosms, the putative BaP degraders were classified as belonging to the genus Terrimonas (family Chitinophagaceae, order Sphingobacteriales), whereas Burkholderia spp. were the key BaP degraders in Mt. Baicaowa soils. The addition of metabolic salicylate significantly increased BaP degradation efficiency in Mt. Maoer soils, and the BaP-metabolizing bacteria shifted to the microorganisms in the family Oxalobacteraceae (genus unclassified). Meanwhile, salicylate addition did not change either BaP degradation or putative BaP degraders in Mt. Baicaowa. Polycyclic aromatic hydrocarbon ring-hydroxylating dioxygenase (PAH-RHD) genes were amplified, sequenced, and quantified in the DNA-SIP 13C heavy fraction to further confirm the BaP metabolism. By illuminating the microbial diversity and salicylate additive effects on BaP degradation across different soils, the results increased our understanding of BaP natural attenuation and provided a possible approach to enhance the bioremediation of BaP-contaminated soils.
机译:在本研究中,使用基于DNA的稳定同位素探测(DNA-SIP)来研究两种中国森林土壤(黑龙江省的毛尔山和黑龙江的百草ica山)的未培养细菌具有苯并[a] py(BaP)代谢能力。湖北省)。我们表征了负责BaP降解的三种不同的系统型,以前没有一种被SIP报道为可降解BaP的微生物。在山在毛尔土壤的微观世界中,假定的BaP降解物被归类为Terrimonas属(Chitinophagaceae科,Sphingobacteriales纲),而Burkholderia spp。是山中主要的BaP降解物。 Baicaowa土壤。代谢水杨酸酯的添加显着提高了山中BaP的降解效率。毛尔土壤和BaP代谢细菌转移到草酸杆菌科(属未分类)中的微生物。同时,水杨酸盐的添加并没有改变BaP降解或Mt中假定的BaP降解剂。拜考瓦。在DNA-SIP 13 C重组分中扩增,测序和定量多环芳烃环羟化双加氧酶(PAH-RHD)基因,以进一步证实BaP代谢。通过阐明微生物多样性和水杨酸添加剂对不同土壤中BaP降解的影响,结果增加了我们对BaP自然衰减的理解,并提供了一种增强BaP污染土壤生物修复的方法。

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