土壤原核生物群落的结构变化标志着沙堆上的荚状土形成过程

IF 2.9 Q2 SOIL SCIENCE Soil Systems Pub Date : 2024-01-09 DOI:10.3390/soilsystems8010009
E. Evdokimova, Ekaterina Ivanova, G. Gladkov, A. Zverev, A. Kimeklis, Elena Serikova, Alexandr Pinaev, A. Kichko, Tatiana Aksenova, E. Andronov, E. Abakumov
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引用次数: 0

摘要

这项研究描述了一个前采砂场经过持续植被重建的时间序列的微生物群落结构,该序列展示了在不到 100 年的时间里几乎完全恢复土壤的独特实例。在五个时间点(0、3、30、70 年和成熟土壤)采集了整套土壤层的样本,揭示了植被形成的历史。实时 PCR 被用于定量描述细菌和古细菌群落。利用 16S rRNA 基因的细菌和古生物 V4 可变区的高通量测序来确定丰富的微生物类群。贝塔多样性分析表明,原核生物群落结构对有机物积累过程以及土壤向离散地层的相应演变过程反应强烈。土壤微生物群在土壤剖面演变过程中的变化揭示了三类原核生物,它们倾向于聚集在特定的土壤层中,可能与特定的土壤形成过程(包括植物根系生长)有关。这项研究表明,在微生物学研究中,土壤地层剖面图具有启发式潜力,而不是正式的按深度划分土壤层。研究结果使我们能够追踪土壤原核生物群落结构与荚膜土壤剖面演变特征之间的关系,并确定微生物指标和原生植被形成的驱动因素。
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Structural Shifts in the Soil Prokaryotic Communities Marking the Podzol-Forming Process on Sand Dumps
This work describes the microbial community structure of the continuously revegetated chronosequence of a former sand quarry, which demonstrates a unique example of nearly complete soil restoration in less than 100 years. Samples were collected at five time points (0, 3, 30, 70 years and mature soil) from the entire set of soil horizons, revealing the history of pedogenesis. Real-time PCR was applied to quantitatively describe the bacterial and archaeal communities. High-throughput sequencing of the bacterial and archaeal V4 variable region of the 16S rRNA gene was used to identify abundant microbial taxa. A beta-diversity analysis revealed that the prokaryotic community structure responded strongly to the processes of organic matter accumulation and the corresponding evolution of the soil into discrete horizons. Changes in soil microbiota in the course of soil profile evolution revealed three groups of prokaryotes, which tended to accumulate in the specific soil horizons and might be associated with the certain soil-forming processes, including plant roots growth. This research showed the heuristic potential of soil horizon profiling in microbiological studies as opposed to the formal depth-dependent separation of the soil layers. The results allowed us to trace the relationship between the structure of the soil prokaryotic community and the peculiarities of the evolution of the podzolic soil profile as well as to identify the microbial indicators and drivers of primary pedogenesis.
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来源期刊
Soil Systems
Soil Systems Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
5.30
自引率
5.70%
发文量
80
审稿时长
11 weeks
期刊最新文献
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