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Microbiome of abandoned agricultural and mature tundra soils in southern Yamal region, Russian Arctic

机译:俄罗斯北极南部山脉地区的废弃农业和成熟苔原土壤的微生物组

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Soil microbiome plays a significant role in the development of the soil profile and the implementation of key soil biochemical processes. Observed Arctic warming creates significant environmental risks, since permafrost soils contain a huge amount of organic matter, which is in potential risk to be released in the form of greenhouse gases. This work is aimed to investigate the microbiomes in soils of mature tundra and anthropogenically affected areas of the Yamal region using a high-throughput sequencing approach. The taxonomic analysis of the soil microbiomes revealed 33 bacterial and archaeal phyla, among which the dominant were Proteobacteria , Acidobacteria , Actinobacteria , Bacteroides , Chloroflexi , Cyanobacteria , Firmicutes , Gematimonadetes , Patescibacteria , Plantomycetes , Thaumarchaeota , Verrucomicrobia , and WPS-2 . The analysis of alpha and beta diversities revealed that undisturbed soil is completely different from anthropogenically affected ones in terms of microorganism biodiversity. Soils of the urban zone of Salekhard were found to be different with regard to the number of operational taxonomic units and beta diversity. Herein the microbiome in the upper and lower layers of soil developed under strong technogenic influence (M19) was unequal both in quality and in quantity. At the same time, soils developed in the recreational zone of Salekhard showed less differentiation profile of microbiome (former crop field and former vegetable garden soils). Microbial communities in the mature tundra soil showed less differentiated microbiome composition.
机译:土壤微生物组在土壤剖面和关键土壤生化过程的发展中起着重要作用。观察到的北极变暖会产生重大的环境风险,因为多年冻土土壤含有大量的有机物,这是以温室气体形式释放的潜在风险。该工作旨在使用高通量测序方法研究成熟苔原和山脉地区的人为受影响区域的微生物体。土壤微生物的分类分析显示33种细菌和古代植物,其中显性是植物菌,抗酸杆菌,抗菌菌,菌斑,氯葡萄球菌,肌菌,模具,GEMATIMONADERES,施法,血小板,葡萄球菌,VERRUCOMICIBIA和WPS-2。 α和β多样性分析显示,在微生物生物多样性方面,未受干扰的土壤与人为受影响的土壤完全不同。发现Salekhard城市地区的土壤与运营分类单位和β多样性的数量不同。在此,在强大的技术影响(M19)下产生的上层和下层的微生物组在质量和数量上都不相等。与此同时,在销售卡的娱乐区开发的土壤表现出较少的微生物组分化曲线(以前的作物领域和前蔬菜花园土壤)。成熟苔原土壤中的微生物群落显示出较差的微生物组成较差。

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