National Institute of Livestock and Grassland Science, Pollution Control Research Team, 2, Ikenodai, Tsukuba, Ibaraki 305–0901, Japan.
Microbes Environ. 2010;25(2):111-9. doi: 10.1264/jsme2.me09175.
The relationship between the activity and community structure of microbes associated with the oxidation of ammonia in a full-scale rockwool biofilter was examined by kinetic, denaturing gradient gel electrophoresis (DGGE), and sequence analyses. The packing materials were sampled from two different depths at 3 sites. Estimated K(m) values were similar among depths at same sampling sites, while V(max) differed in the mid-point sample. The lower depth of this site had the highest V(max). A correspondence analysis showed the DGGE profile of ammonia-oxidizing bacterial amoA of the lower depth of the mid-point sample to be distinguishable from the others. Banding patterns at other sites were similar among depths. Banding patterns of ammonia-oxidizing archaeal amoA of the mid-point sample were also similar among depths. The results suggested an association between the ammonia-oxidizing bacterial community's composition and ammonium oxidation kinetics in samples. Sequence analysis indicated that the ammonia-oxidizing bacterial community mainly belonged to the Nitrosomonas europaea lineage and Nitrosospira cluster 3. The ammonia-oxidizing archaeal amoA-like sequences were related to those belonging to soil and sediment groups, including one with 84% nucleotide similarity with Nitrosopumilus maritimus.
采用动力学、变性梯度凝胶电泳(DGGE)和序列分析方法,研究了与规模化岩棉生物滤池氨氧化相关的微生物的活性与群落结构之间的关系。从三个地点的两个不同深度采集包装材料。在同一采样点的不同深度处,估计的 K(m) 值相似,而中点样品的 V(max) 不同。该位点的较深位置具有最高的 V(max)。对应分析表明,中点样品较深位置的氨氧化细菌 amoA 的 DGGE 图谱与其他位置的图谱不同。其他位置的深度之间的带型相似。中点样品的氨氧化古菌 amoA 的带型在不同深度也相似。结果表明,样品中氨氧化细菌群落组成与铵氧化动力学之间存在关联。序列分析表明,氨氧化细菌群落主要属于硝化单胞菌属(Nitrosomonas europaea)谱系和硝化螺旋菌属(Nitrosospira cluster 3)。氨氧化古菌 amoA 样序列与土壤和沉积物群相关,包括一个与 Nitrosopumilus maritimus 具有 84%核苷酸相似性的序列。