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基于温度和 pH 值的氨氧化古菌和细菌生态位特化假说的实验检验。

Experimental testing of hypotheses for temperature- and pH-based niche specialization of ammonia oxidizing archaea and bacteria.

机构信息

School of Biological Sciences, University of Aberdeen, Cruickshank Building, Aberdeen, AB24 3UU, UK.

Department of Environmental Science, Policy and Management, University of California Berkeley, Berkeley, CA, 94720, USA.

出版信息

Environ Microbiol. 2020 Sep;22(9):4032-4045. doi: 10.1111/1462-2920.15192.

Abstract

Investigation of niche specialization in microbial communities is important in assessing consequences of environmental change for ecosystem processes. Ammonia oxidizing bacteria (AOB) and archaea (AOA) present a convenient model for studying niche specialization. They coexist in most soils and effects of soil characteristics on their relative abundances have been studied extensively. This study integrated published information on the influence of temperature and pH on AOB and AOA into several hypotheses, generating predictions that were tested in soil microcosms. The influence of perturbations in temperature was determined in pH 4.5, 6 and 7.5 soils and perturbations in pH were investigated at 15°C, 25°C and 35°C. AO activities were determined by analysing changes in amoA gene and transcript abundances, stable isotope probing and nitrate production. Experimental data supported major predictions of the effects of temperature and pH, but with several significant discrepancies, some of which may have resulted from experimental limitations. The study also provided evidence for unpredicted activity of AOB in pH 4.5 soil. Other discrepancies highlighted important deficiencies in current knowledge, particularly lack of consideration of niche overlap and the need to consider combinations of factors when assessing the influence of environmental change on microbial communities and their activities.

摘要

研究微生物群落的生态位特化对于评估环境变化对生态系统过程的影响非常重要。氨氧化细菌(AOB)和古菌(AOA)为研究生态位特化提供了一个便利的模型。它们共存于大多数土壤中,并且土壤特性对其相对丰度的影响已被广泛研究。本研究将有关温度和 pH 对 AOB 和 AOA 影响的已发表信息整合到了几个假设中,这些假设产生了在土壤微宇宙中进行测试的预测。在 pH 值为 4.5、6 和 7.5 的土壤中确定了温度波动的影响,并在 15°C、25°C 和 35°C 下研究了 pH 波动的影响。通过分析 amoA 基因和转录物丰度、稳定同位素示踪和硝酸盐生成的变化来确定 AO 活性。实验数据支持了温度和 pH 影响的主要预测,但存在一些显著差异,其中一些可能是由于实验限制造成的。该研究还提供了在 pH 值为 4.5 的土壤中 AOB 未预测活性的证据。其他差异突出了当前知识的重要缺陷,特别是缺乏对生态位重叠的考虑,以及在评估环境变化对微生物群落及其活性的影响时需要考虑组合因素。

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