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首页> 外文期刊>Journal of Environmental Science and Health >Microbiota of the ground air layers in natural and industrial zones of the Kola Arctic
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Microbiota of the ground air layers in natural and industrial zones of the Kola Arctic

机译:可乐北极自然和工业区中地面空气层的微生物群

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摘要

The fungi and bacteria number, as well as the species composition of the fungi in the ground air layer in the European Arctic region of Russia, primarily in the tundra (the Rybachy Peninsula), in the subzone of the northern taiga (the Pasvik State Nature Reserve) and in the industrial areas (the Copper-Nickel Plant Pechenganickel, the Kandalaksha Aluminum Plant) have been studied. One hundred and ninety-two atmosphere air samples of various ecosystems have been analyzed. The sample collection took place in the summer-autumn period (June, July, September, in 2012-2015) with the aspirator, precipitating microorganisms on the surface of media. The number of microorganisms per 1m(3) of air was calculated. The portion of the airborne fungi in the ground air layer both in the tundra and in the taiga was higher in comparison with the bacteria, and amounted to 60-77% of the total number colony forming units (CFU). The least number of microorganisms in the investigated period was registered in the Barents Sea coastal atmospheric air, only 11-15 microbial CFU per 1m(3). The airborne fungi diversity in the taiga zone was richer than in the tundra. The fungi of the g. Penicillium predominated in both zones air. Bacteria gram-positive (the division Fermicutes) predominated within the bacterial biota. The species Penicillium decumbens, P. raistrickii prevailed in the air of the background tundra zone regions. The representatives of the genus Torula and Sterilia mycelia, P. raistrickii predominated in the taiga zone. Close by the Copper-Nickel Plant (about 3km), the air bacterial contamination (100-600 CFU per 1m(3)) was revealed, with prevailing bacteria gram-negative (the division Gracilicutes). The species Cladosporium oxysporum predominated in the air to the greatest possible extent of the contaminated region due to the emissions of the Kandalaksha Aluminum Plant. The species Gongronella butleri were uppermost due to the emissions of the Copper-Nickel Plant Pechenganickel . The quantity of the dark-pigmented fungi in the air for both zones amounted to 25% of the total amount within the emphasized species. The composition of the air industrial emissions stimulated the development of specific airborne fungi which are essentially different from those of the background regions.
机译:俄罗斯欧洲北极地区主要在苔原(Rybachy半岛),北部针叶林分地区的苔原(帕斯维克州自然风光)中的真菌和细菌数量,以及真菌的种类组成储量)和工业区(Pechenganickel铜镍厂,Kandalaksha铝厂)已得到研究。分析了各种生态系统的192个大气样品。样品采集是在夏季-秋季(2012-2015年六月,七月,九月,2012-2015年)进行的,使微生物沉淀在培养基表面。计算每1m(3)空气中的微生物数量。与细菌相比,苔原和针叶林中的地面空气层中的空气传播真菌的比例都更高,占菌落形成单位总数(CFU)的60-77%。在调查期间,最少数量的微生物记录在巴伦支海沿岸大气中,每1m(3)仅含有11-15个微生物CFU。针叶林带中的空气传播真菌比苔原带丰富。克的真菌。在两个区域的空气中,青霉菌占主导地位。细菌菌群内革兰氏阳性细菌(费米科斯部门)占主导地位。背景苔原带区域的空气中盛有Pecumillium decumbens,P. raistrickii。针叶虫属和斯特里氏菌丝体,P。raistrickii的代表在针叶林地带占主导地位。在铜镍厂附近(约3公里),发现了空气中的细菌污染(每1m(3)100-600 CFU),而细菌革兰氏阴性占主导地位(Gracilicutes部门)。由于Kandalaksha铝厂的排放,在空气中占主导地位的是Cladosporium oxysporum物种。由于铜-镍工厂“ Pechenganickel”的排放,弓形虫(Gongronella butleri)物种处于最高位置。两个区域中空气中深色色素真菌的数量占所强调物种内总量的25%。空气工业排放物的成分刺激了特定的空气传播真菌的发展,这些真菌与背景地区的空气真菌本质上是不同的。

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