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用最概然数法对化能有机羰基硫(COS)降解微生物进行计数。

Enumeration of Chemoorganotrophic Carbonyl Sulfide (COS)-degrading Microorganisms by the Most Probable Number Method.

机构信息

Graduate School of Life Sciences, Tohoku University.

Graduate School of Agriculture, Tokyo University of Agriculture and Technology.

出版信息

Microbes Environ. 2020;35(2). doi: 10.1264/jsme2.ME19139.

Abstract

Carbonyl sulfide (COS) is the most abundant sulfur compound in the atmosphere, and, thus, is important in the global sulfur cycle. Soil is a major sink of atmospheric COS and the numerical distribution of soil microorganisms that degrade COS is indispensable for estimating the COS-degrading potential of soil. However, difficulties are associated with counting COS-degrading microorganisms using culture-dependent approaches, such as the most probable number (MPN) method, because of the chemical hydrolysis of COS by water. We herein developed a two-step MPN method for COS-degrading microorganisms: the first step for chemoorganotrophic growth that supported a sufficient number of cells for COS degradation in the second step. Our new MPN analysis of various environmental samples revealed that the cell density of COS-degrading microorganisms in forest soils ranged between 10 and 10 MPN (g dry soil), which was markedly higher than those in volcanic deposit and water samples, and strongly correlated with the rate of COS degradation in environmental samples. Numerically dominant COS degraders that were isolated from the MPN-positive culture were related to bacteria in the orders Bacillales and Actinomycetales. The present results provide numerical evidence for the ubiquity of COS-degrading microbes in natural environments.

摘要

羰基硫 (COS) 是大气中含量最丰富的硫化合物,因此在全球硫循环中具有重要意义。土壤是大气 COS 的主要汇,降解 COS 的土壤微生物的数量分布对于估算土壤的 COS 降解潜力是必不可少的。然而,由于 COS 会被水化学水解,使用依赖于培养的方法(如最大可能数 (MPN) 法)来计数 COS 降解微生物会存在困难。我们在此开发了一种两步 MPN 方法来检测 COS 降解微生物:第一步是进行化能有机营养生长,为第二步中的 COS 降解提供足够数量的细胞。我们对各种环境样品的新 MPN 分析表明,森林土壤中 COS 降解微生物的细胞密度在 10 到 10 MPN(g 干土)之间,明显高于火山沉积物和水样中的细胞密度,并且与环境样品中 COS 降解的速率强烈相关。从 MPN 阳性培养物中分离出的数量上占优势的 COS 降解菌与芽孢杆菌目和放线菌目细菌有关。本研究结果为 COS 降解微生物在自然环境中的普遍性提供了数量证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7483/7308577/b5cb58e90a16/35_19139-g001.jpg

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