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在旱地草原土壤中,深度和采样时间对细菌群落结构的影响。

Influence of depth and sampling time on bacterial community structure in an upland grassland soil.

机构信息

Molecular Microbial Ecology Laboratory, IVEM, CEH-Oxford, Mansfield Road, Oxford OX1 3SR, UK.

出版信息

FEMS Microbiol Ecol. 2003 Feb 1;43(1):35-43. doi: 10.1111/j.1574-6941.2003.tb01043.x.

Abstract

Abstract Temporal and spatial variation of soil bacterial communities was evaluated with both molecular and metabolic profiling techniques. Soil cores (20 cm deep) were taken from an upland grassland in the Scottish Borders (UK) over 3 days in July 1999, and on single days in October 1999, April 2000, and August 2000. Cores were separated into four 5-cm depths to examine vertical spatial distribution. The 0-5-, 5-10- and 10-15-cm samples represented organic horizons whilst the 15-20-cm depths were from a mineral horizon. The potential metabolic activities were analysed using BIOLOG-GN plates, whereas genotypic diversity was evaluated using molecular profiling of amplified 16S rRNA and 16S rDNA gene fragments (denaturing gradient gel electrophoresis (DGGE)). BIOLOG-GN analysis revealed decreased substrate utilisation in the lowest depths, which was coupled with changes in the DNA and RNA DGGE profiles. Seasonal variation was pronounced in the 5-10-cm and 10-15-cm organic horizons for the July samplings whilst the 15-20-cm depths appeared more stable. Potential factors influencing the observed changes in bacterial communities resulting from soil depth and sampling time are discussed.

摘要

摘要 采用分子和代谢谱分析技术评估了土壤细菌群落的时空变化。1999 年 7 月,在苏格兰边境(英国)的一个旱地草原上,连续 3 天采集了土壤芯(深 20 厘米),并于 1999 年 10 月、2000 年 4 月和 8 月的单日进行了采集。将芯体分为 4 个 5 厘米深的部分,以研究垂直空间分布。0-5、5-10 和 10-15 厘米的样本代表有机层,而 15-20 厘米的深度来自矿物质层。使用 BIOLOG-GN 板分析潜在的代谢活性,而通过扩增的 16S rRNA 和 16S rDNA 基因片段(变性梯度凝胶电泳(DGGE))的分子谱分析评估基因型多样性。BIOLOG-GN 分析显示,最底层的底物利用减少,这与 DNA 和 RNA DGGE 图谱的变化有关。7 月采样时,5-10 厘米和 10-15 厘米的有机层中季节变化明显,而 15-20 厘米的深度则显得更加稳定。讨论了影响土壤深度和采样时间导致细菌群落变化的潜在因素。

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