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首页> 外文期刊>The Science of the Total Environment >Microbial communities in a former pilot-scale uranium mine in Eastern Finland - Association with radium immobilization
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Microbial communities in a former pilot-scale uranium mine in Eastern Finland - Association with radium immobilization

机译:芬兰东部一个前中试规模的铀矿中的微生物群落-固定镭的协会

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The bacterial, fungal and archaeal communities were characterized in 17 top soil organic and mineral layer samples and in top sediment samples of the Paukkajanvaara area, a former pilot-scale uranium mine, located in Eno, Eastern Finland. using amplicon sequencing and qPCR. Soil and sediment samples were in addition analyzed for (Ra-226), radium sulfate (SO42-), nitrate (NO3-) and phosphate (PO43-) concentrations. New bacterial strains, representing Pseudomonas spp., were isolated from the mine and reference area and used in laboratory experiments on uptake and leaching of radium (Ra). The effect of these strains on the sulfate leaching from the soil samples was also tested in vitro. Between 6 x 10(6) and 5 x 10(8) copies g(-1) DW (dry weight) of bacterial 16S rRNA genes, 5 x 10(5)-1 x 10(8) copies g(-1) DW archaeal 16S rRNA genes and 1 x 10(5)-1 x 10(8) copies g(-1) DW fungal 5.8S rRNA genes were detected in the samples. A total of 814. 54 and 167 bacterial, archaeal and fungal genera. respectively, were identified. Proteobacteria, Euryarchaeota and Mortiriella were the dominant bacterial, archaeal and fungal phyla, respectively. All tested Pseudomonas spp. strains isolates from Paukkajanvaara removed Ra from the solution, but the amount of removed Ra depended on incubation conditions (temperature, time and nutrient broth). The highest removal of Ra (5320 L/kg DW) was observed by the Pseudomonas sp. strain T5-6-I at 37 degrees C. All Pseudomonas spp. strains decreased the release of Ra from soil with an average of 23% while simultaneously increasing the concentration of SO42- in the solution by 11%. As Pseudomonas spp. were frequent in both the sequence data and the cultures, these bacteria may play an important role in the immobilization of Ra in the Paukkajanvaara mine area. (C) 2019 The Authors. Published by Elsevier B.V.
机译:细菌,真菌和古细菌群落的特征是位于东欧东部Eno的Paukkajanvaara地区(以前是中试规模的铀矿)的17个顶层土壤有机层和矿物层样品以及顶层沉积物样品中。使用扩增子测序和qPCR。此外,还分析了土壤和沉积物样品的(Ra-226),硫酸镭(SO42-),硝酸盐(NO3-)和磷酸盐(PO43-)的浓度。从矿山和参考区中分离出代表假单胞菌属的新细菌菌株,并将其用于实验室实验中对镭(Ra)的吸收和浸出。还测试了这些菌株对土壤样品中硫酸盐浸出的影响。在6 x 10(6)和5 x 10(8)个副本之间的细菌16S rRNA基因g(-1)DW(干重),5 x 10(5)-1 x 10(8)个副本g(-1)在样品中检测到DW古细菌16S rRNA基因和1 x 10(5)-1 x 10(8)拷贝g(-1)DW真菌5.8S rRNA基因。共有814、54和167个细菌,古细菌和真菌属。分别被确定。变形杆菌,Euryarchaeota和Mortiriella分别是主要细菌,古细菌和真菌门。所有测试过的假单胞菌属。从Paukkajanvaara分离的菌株从溶液中去除了Ra,但去除的Ra的量取决于孵育条件(温度,时间和营养肉汤)。假单胞菌(Pseudomonas sp。)观察到最高的Ra去除(5320L / kg DW)。菌株T5-6-I在37℃。所有假单胞菌属。菌株平均降低了土壤中Ra的释放量,同时使溶液中SO42-的浓度增加了11%。如假单胞菌。这些细菌在序列数据和培养中都很常见,这些细菌可能在Poaukkajanvaara矿区的Ra固定化中起重要作用。 (C)2019作者。由Elsevier B.V.发布

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