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沉积物中直接细胞计数的优化

Optimization of direct cell counting in sediment.

作者信息

Gough Heidi L, Stahl David A

机构信息

Civil and Environmental Engineering Department, Northwestern University, 2145 Sheridan Road, Evanston, IL, USA.

出版信息

J Microbiol Methods. 2003 Jan;52(1):39-46. doi: 10.1016/s0167-7012(02)00135-5.

Abstract

This study reports a method for optimizing direct counts of bacteria in sediment, designed to reduce the masking by sediment particles. The protocol was designed to determine appropriate dilution factors by incorporating counting statistics and was used to measure depth-associated changes in microbial abundance in metal-impacted freshwater sediments. We demonstrated a direct method to determine appropriate sample dilution for accurate counting by adding a known amount of cells to the sediment. For accurate counting in our sediment samples, we determined that the average number of bacteria per microscope ocular field must be between 8.5 and 10. This is well below the 30 bacteria/field previously suggested for accurate counting. These results indicate that an optimal dilution rate must be determined before accurate direct counts in sediment can be achieved.

摘要

本研究报告了一种优化沉积物中细菌直接计数的方法,旨在减少沉积物颗粒的掩盖作用。该方案通过纳入计数统计来确定合适的稀释因子,并用于测量受金属影响的淡水沉积物中微生物丰度与深度相关的变化。我们通过向沉积物中添加已知数量的细胞,展示了一种确定准确计数所需合适样品稀释度的直接方法。为了在我们的沉积物样品中进行准确计数,我们确定每个显微镜视野中细菌的平均数量必须在8.5到10之间。这远低于之前建议的准确计数所需的30个细菌/视野。这些结果表明,在实现沉积物中准确的直接计数之前,必须确定最佳稀释率。

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