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地方和区域尺度对淡水湖中分枝杆菌丰度的塑造作用。

Importance of Local and Regional Scales in Shaping Mycobacterial Abundance in Freshwater Lakes.

机构信息

Leesu, UMR-MA 102, UPEC, École des Ponts, AgroParisTech, 94000, Créteil, France.

School of Freshwater Sciences, University of Wisconsin-Milwaukee, Milwaukee, WI, 53204, USA.

出版信息

Microb Ecol. 2018 May;75(4):834-846. doi: 10.1007/s00248-017-1088-6. Epub 2017 Oct 23.

Abstract

Biogeographical studies considering the entire bacterial community may underestimate mechanisms of bacterial assemblages at lower taxonomic levels. In this context, the study aimed to identify factors affecting the spatial and temporal dynamic of the Mycobacterium, a genus widespread in aquatic ecosystems. Nontuberculous mycobacteria (NTM) density variations were quantified in the water column of freshwater lakes at the regional scale (annual monitoring of 49 lakes in the Paris area) and at the local scale (2-year monthly monitoring in Créteil Lake) by real-time quantitative PCR targeting the atpE gene. At the regional scale, mycobacteria densities in water samples ranged from 6.7 × 10 to 1.9 × 10 genome units per liter. Density variations were primarily explained by water pH, labile iron, and dispersal processes through the connection of the lakes to a river. In Créteil Lake, no spatial variation of mycobacterial densities was noticed over the 2-year monthly survey, except after large rainfall events. Indeed, storm sewer effluents locally and temporarily increased NTM densities in the water column. The temporal dynamic of the NTM densities in Créteil Lake was associated with suspended solid concentrations. No clear seasonal variation was noticed despite a shift in NTM densities observed over the 2012-2013 winter. Temporal NTM densities fluctuations were well predicted by the neutral community model, suggesting a random balance between loss and gain of mycobacterial taxa within Créteil Lake. This study highlights the importance of considering multiple spatial scales for understanding the spatio-temporal dynamic of bacterial populations in natural environments.

摘要

生物地理学研究考虑整个细菌群落可能低估了较低分类水平细菌组合的机制。在这方面,本研究旨在确定影响广泛存在于水生生态系统中的分枝杆菌属的时空动态的因素。通过针对 atpE 基因的实时定量 PCR,在区域尺度(对巴黎地区 49 个湖泊进行年度监测)和局部尺度(在克雷泰伊湖进行为期 2 年的每月监测)量化了淡水湖中水柱中非结核分枝杆菌(NTM)的密度变化。在区域尺度上,水样中的分枝杆菌密度范围为 6.7×10 至 1.9×10 基因组单位/升。密度变化主要由水 pH 值、可利用铁和通过湖泊与河流连接的扩散过程来解释。在克雷泰伊湖,除了在大雨事件后,在 2 年的每月调查中未注意到分枝杆菌密度的空间变化。事实上,雨水下水道的污水会局部和暂时增加水柱中的 NTM 密度。克雷泰伊湖 NTM 密度的时间动态与悬浮固体浓度有关。尽管在 2012-2013 年冬季观察到 NTM 密度的变化,但未注意到明显的季节性变化。时间 NTM 密度波动很好地被中性群落模型预测,这表明克雷泰伊湖中分枝杆菌类别的损失和获得之间存在随机平衡。这项研究强调了在自然环境中考虑多个空间尺度来理解细菌种群时空动态的重要性。

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