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Use of Nitrifier Activity Measurements To Estimate the Efficiency of Viable Nitrifier Counts in Soils and Sediments

机译:使用硝化物活性测量来估计土壤和沉积物中可行的硝基尺寸的效率

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A procedure for estimating the efficiency of the most-probable number (MPN) technique for counting ammonium-oxidizing bacteria was tested on sediments and soils collected from Delaware Inlet, Nelson, New Zealand. The procedure involved estimating the nitrifier populations required to produce observed activities and comparing these estimates with the MPN-countable populations. MPN counts ranged between 0.15 × 103 to 3.0 × 103 cells g?1 in sediments and between 4.4 × 103 to 19 × 103 cells g?1 in soils. These counts were only 0.1 to 5.0% of the estimated populations that would be required to produce the observed activity. Similar efficiency calculations were made for data already in the literature, and these calculations gave much higher percentages. Thus, we concluded that for the soils and sediments we studied, the MPN counting technique greatly underestimated the populations present and that the efficiency calculation could be used as a counting efficiency index.
机译:在从特拉华州入口,新西兰尼尔森,尼尔森,新西兰尼尔森收集的沉积物和土壤中测试了估计用于计数氧化铵氧化细菌的最可能数量(MPN)技术的效率。该程序涉及估计产生观察到的活动所需的硝化群体,并将这些估计与MPN可数群体进行比较。 MPN计数范围在沉积物中的0.15×103至3.0×103细胞G 2中,在土壤中4.4×103至19×103细胞G?1。这些计数只有0.1〜5.0‰的估计人口,以产生观察到的活动所需的群体。对文献中的数据进行了类似的效率计算,这些计算得到了更高的百分比。因此,我们得出结论,对于我们研究的土壤和沉积物,MPN计数技术极大地低估了存在的人群,并且效率计算可以用作计数效率指数。

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