Mas Martinez Isabel, Pushkareva Ekaterina, Keilholz Leonie Agnes, Linne von Berg Karl-Heinz, Karsten Ulf, Kammann Sandra, Becker Burkhard
Department of Biology, Institute for Plant Sciences, University of Cologne, 50674 Cologne, Germany.
Institute for Biological Sciences, University of Rostock, 18059 Rostock, Germany.
Microorganisms. 2024 Dec 17;12(12):2606. doi: 10.3390/microorganisms12122606.
Biological soil crusts are integral to Arctic ecosystems, playing a crucial role in primary production, nitrogen fixation and nutrient cycling, as well as maintaining soil stability. However, the composition and complex relationships between the diverse organisms within these biocrusts are not well studied. This study investigates how the microbial community composition within Arctic biocrusts is influenced by environmental factors along an altitudinal gradient (101 m to 314 m). Metagenomic analyses were used to provide insights into the community composition, revealing that temperature, pH, and nutrient availability significantly shaped the community. In contrast, altitude did not directly influence the microbial composition significantly. Eukaryotic communities were dominated by Chloroplastida and fungi, while Proteobacteria and Actinobacteria prevailed among prokaryotes. Cyanobacteria, particularly orders such as Pseudoanabaenales, Pleurocapsales, and Nostocales, emerged as the most abundant photoautotrophic organisms. Our findings highlight the impact of environmental gradients on microbial diversity and the functional dynamics of biocrusts, emphasizing their critical role in Arctic tundra ecosystems. Arctic biocrusts are intricate micro-ecosystems, whose structure is strongly shaped by local physicochemical parameters, likely affecting essential ecological functions.
生物土壤结皮是北极生态系统的重要组成部分,在初级生产、固氮和养分循环以及维持土壤稳定性方面发挥着关键作用。然而,这些生物结皮中各种生物之间的组成和复杂关系尚未得到充分研究。本研究调查了北极生物结皮中的微生物群落组成如何受到沿海拔梯度(101米至314米)的环境因素的影响。宏基因组分析用于深入了解群落组成,结果表明温度、pH值和养分有效性显著影响了群落。相比之下,海拔高度并未直接对微生物组成产生显著影响。真核生物群落以绿藻纲和真菌为主,而原核生物中变形菌门和放线菌门占主导地位。蓝细菌,特别是伪鱼腥藻目、鞘丝藻目和念珠藻目等目,是最丰富的光合自养生物。我们的研究结果突出了环境梯度对微生物多样性和生物结皮功能动态的影响,强调了它们在北极苔原生态系统中的关键作用。北极生物结皮是复杂的微生态系统,其结构受到当地物理化学参数的强烈影响,可能会影响重要的生态功能。