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Stable isotope probing of hypoxic toluene degradation at the Siklós aquifer reveals prominent role of Rhodocyclaceae

机译:Siklós含水层中低氧甲苯降解的稳定同位素探测揭示了红景天科的重要作用

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摘要

The availability of oxygen is often a limiting factor for the degradation of aromatic hydrocarbons in subsurface environments. However, while both aerobic and anaerobic degraders have been intensively studied, degradation betwixt, under micro- or hypoxic conditions has rarely been addressed. It is speculated that in environments with limited, but sustained oxygen supply, such as in the vicinity of groundwater monitoring wells, hypoxic degradation may take place. A large diversity of subfamily I.2.C extradiol dioxygenase genes has been previously detected in a BTEX-contaminated aquifer in Hungary. Older literature suggests that such catabolic potentials could be associated to hypoxic degradation. Bacterial communities dominated by members of the Rhodocyclaceae were found, but the majority of the detected C23O genotypes could not be affiliated to any known bacterial degrader lineages. To address this, a stable isotope probing (SIP) incubation of site sediments with 13C7-toluene was performed under microoxic conditions. A combination of 16S rRNA gene amplicon sequencing and T-RFLP fingerprinting of C23O genes from SIP gradient fractions revealed the central role of degraders within the Rhodocyclaceae in hypoxic toluene degradation. The main assimilators of 13C were identified as members of the genera Quatrionicoccus and Zoogloea, and a yet uncultured group of the Rhodocyclaceae.
机译:氧气的可用性通常是地下环境中芳烃降解的限制因素。然而,尽管对好氧和厌氧降解剂都进行了深入的研究,但是在微量或低氧条件下降解之间的降解却很少。据推测,在氧气供应有限但持续的环境中,例如在地下水监测井附近,可能发生低氧降解。匈牙利的BTEX污染含水层先前已检测到亚家族的I.2.C外二醇双加氧酶基因种类繁多。较早的文献表明这种分解代谢潜能可能与低氧降解有关。发现了以红景天科成员为主的细菌群落,但是大多数检测到的C23O基因型不能与任何已知的细菌降解菌谱系相关。为了解决这个问题,在微氧条件下,用 13 C7-甲苯对位点沉积物进行了稳定的同位素探测(SIP)孵育。 16S rRNA基因扩增子测序和来自SIP梯度级分的C23O基因的T-RFLP指纹图谱的结合揭示了杜鹃花科中降解子在低氧甲苯降解中的核心作用。确定了 13 C的主要同化物是Quatrionicoccus和Zoogloea属的一个成员,并且是杜鹃花科尚未培养的一组。

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