首页> 外文期刊>Microbial Ecology >Relationship of Atmospheric Pollution Characterized by Gas (NO2) and Particles (PM10) to Microbial Communities Living in Bryophytes at Three Differently Polluted Sites (Rural, Urban, and Industrial)
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Relationship of Atmospheric Pollution Characterized by Gas (NO2) and Particles (PM10) to Microbial Communities Living in Bryophytes at Three Differently Polluted Sites (Rural, Urban, and Industrial)

机译:气体(NO 2 )和颗粒物(PM10)表征的大气污染与生活在三个不同污染地点(农村,城市和工业)的苔藓植物中的微生物群落的关系

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Atmospheric pollution has become a major problem for modern societies owing to its fatal effects on both human health and ecosystems. We studied the relationships of nitrogen dioxide atmospheric pollution and metal trace elements contained in atmospheric particles which were accumulated in bryophytes to microbial communities of bryophytes at three differently polluted sites in France (rural, urban, and industrial) over an 8-month period. The analysis of bryophytes showed an accumulation of Cr and Fe at the rural site; Cr, Fe, Zn, Cu, Al, and Pb at the urban site; and Fe, Cr, Pb, Al, Sr, Cu, and Zn at the industrial site. During this study, the structure of the microbial communities which is characterized by biomasses of microbial groups evolved differently according to the site. Microalgae, bacteria, rotifers, and testate amoebae biomasses were significantly higher in the rural site. Cyanobacteria biomass was significantly higher at the industrial site. Fungal and ciliate biomasses were significantly higher at the urban and industrial sites for the winter period and higher at the rural site for the spring period. The redundancy analysis showed that the physico-chemical variables ([NO2], relative humidity, temperature, and site) and the trace elements which were accumulated in bryophytes ([Cu], [Sr], [Pb]) explained 69.3% of the variance in the microbial community data. Moreover, our results suggest that microbial communities are potential biomonitors of atmospheric pollution. Further research is needed to understand the causal relationship underlined by the observed patterns.
机译:由于大气污染对人类健康和生态系统都具有致命影响,因此它已成为现代社会的主要问题。我们研究了在八个月内法国三个不同污染地点(苔藓植物中累积的苔藓植物中的大气颗粒物中所含的金属微量元素与苔藓植物微生物群落与苔藓植物微生物群落之间的关系)。苔藓植物的分析表明,农村地区有Cr和Fe的积累。市区的铬,铁,锌,铜,铝和铅以及工业现场的Fe,Cr,Pb,Al,Sr,Cu和Zn。在这项研究过程中,以微生物群的生物量为特征的微生物群落结构根据地点的不同而不同。在农村地区,微藻,细菌,轮虫和睾丸变形虫的生物量明显更高。蓝细菌的生物量在工业现场明显更高。冬季,城市和工业用地的真菌和纤毛生物量显着较高,而春季则在农村。冗余分析表明,苔藓植物中积累的理化变量([NO 2 ],相对湿度,温度和部位)和微量元素([Cu],[Sr],[ Pb])解释了微生物群落数据中69.3%的方差。此外,我们的结果表明微生物群落是大气污染的潜在生物监测者。需要进一步的研究以了解所观察到的模式所强调的因果关系。

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