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受地热输入氨影响的溪流中硝化生物的种群生态学。

Population ecology of nitrifiers in a stream receiving geothermal inputs of ammonium.

机构信息

Water and Soil Science Centre, Ministry of Works and Development, Hamilton, New Zealand.

出版信息

Appl Environ Microbiol. 1983 Apr;45(4):1170-7. doi: 10.1128/aem.45.4.1170-1177.1983.

Abstract

The distribution, activity, and generic diversity of nitrifying bacteria in a stream receiving geothermal inputs of ammonium were studied. The high estimated rates of benthic nitrate flux (33 to 75 mg of N . m . h) were a result of the activity of nitrifiers located in the sediment. Nitrifying potentials and ammonium oxidizer most probable numbers in the sediments were at least one order of magnitude higher than those in the waters. Nitrifiers in the oxygenated surface (0 to 2 cm) sediments were limited by suboptimal temperature, pH, and substrate level. Nitrifiers in deep (nonsurface) oxygenated sediments did not contribute significantly to the changes measured in the levels of inorganic nitrogen species in the overlying waters and presumably derived their ammonium supply from ammonification within the sediment. Ammonium-oxidizing isolates obtained by a most-probable number nonenrichment procedure were species of either Nitrosospira or Nitrosomonas, whereas all those obtained by an enrichment procedure (i.e., selective culture) were Nitrosomonas spp. The efficiency of the most-probable-number method for enumerating ammonium oxidizers was calculated to be between 0.05 and 2.0%, suggesting that measurements of nitrifying potentials provide a better estimate of nitrifying populations.

摘要

研究了接受地热输入氨的溪流中硝化细菌的分布、活性和属多样性。高估计的底栖硝酸盐通量(33 至 75 mg N. m. h)是位于沉积物中的硝化菌活性的结果。沉积物中的硝化潜力和铵氧化菌最可能数量至少比水中高一个数量级。含氧表层(0 至 2 cm)沉积物中的硝化菌受到亚最佳温度、pH 值和基质水平的限制。深层(非表面)含氧沉积物中的硝化菌对上层水中无机氮物种水平的变化没有显著贡献,据推测它们的铵供应来自沉积物中的氨化作用。通过最可能数非富集程序获得的铵氧化分离株是硝化螺菌或硝化单胞菌的种,而通过富集程序(即选择性培养)获得的所有分离株都是硝化单胞菌属。最可能数方法用于计数铵氧化菌的效率计算为 0.05 到 2.0%,表明硝化潜力的测量提供了对硝化菌种群更好的估计。

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