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Activity of the ammonia oxidising bacteria is responsible for zinc tolerance development of the ammonia oxidising community in soil: A stable isotope probing study

机译:氨氧化细菌的活性负责土壤中氨氧化群落对锌的耐受性发展:一项稳定的同位素探测研究

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摘要

Both bacterial and archaeal ammonia oxidizers (AOB and AOA) are abundant in most soils, but their relative contributions to soil nitrification under different conditions are still debated. This study investigates the influence of long-term zinc (Zn) stress on the ammonia oxidizer community and determines the role of AOB and AOA in Zn tolerant nitrification. This was assessed by artificially spiking a grassland soil with 1300 and 2400 mg Zn kg-1 (final concentration). Both treatments increased Zn tolerance after incubation for 12 months and increased the AOB/AOA amoA gene abundance ratio from 0.1 to 30. Soil samples were subsequently subjected to stable isotope probing (SIP) of DNA by incubation under 13CO2 atmosphere. 13CO2 was assimilated by AOB in the uncontaminated soil. In contrast, this assimilation was not observed for the AOA. Similarly, AOB and not AOA assimilated 13CO2 after Zn exposure for 12 months. These results show that recovery of nitrification and development of Zn tolerance after long-term Zn exposure in this soil is due to the initial activity of AOB, rather than AOA.
机译:细菌和古细菌氨氧化剂(AOB和AOA)在大多数土壤中都很丰富,但是在不同条件下它们对土壤硝化的相对贡献仍存在争议。这项研究调查了长期锌(Zn)胁迫对氨氧化剂社区的影响,并确定了AOB和AOA在耐锌硝化中的作用。通过人工添加1300和2400 mg Zn kg-1(最终浓度)的草原土壤来评估。两种处理在孵育12个月后均增加了对锌的耐受性,并将AOB / AOA amoA基因的丰度比从0.1增加到30。随后通过在13CO2气氛下孵育,对土壤样品进行DNA的稳定同位素探测(SIP)。 AOB在未污染的土壤中吸收了13CO2。相反,未观察到AOA的这种同化。同样,暴露于锌中12个月后,AOB而非AOA吸收了13CO2。这些结果表明,在土壤中长期暴露于锌后,硝化的恢复以及对锌的耐受性的提高是由于AOB而不是AOA的初始活性所致。

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