The stonesphere in agricultural soils: A microhabitat associated with rock fragments bridging rock and soil

IF 4 2区 农林科学 Q2 SOIL SCIENCE European Journal of Soil Science Pub Date : 2024-12-18 DOI:10.1111/ejss.70025
Felix Dittrich, Björn Klaes, Luise Brandt, Nora Groschopf, Sören Thiele-Bruhn
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Abstract

Rock fragments (RFs) are abundant soil constituents, but are routinely excluded from soil analyses. Hence, their contribution to soil properties, and in particular to the microbiome, is incompletely understood. Therefore, shifts in microbial colonisation along the rock-to-soil continuum of topsoils from three agricultural sites with different sedimentary parent rock materials were investigated with particular attention to RFs. Microbial biomass and community composition were quantified using phospholipid fatty acid (PLFA) analysis for unweathered and weathered parent rock materials, two RF fractions (8–16 mm and 2–8 mm) and the fine earth (FE; <2 mm). Trends in biogeochemical weathering, nutrient availability and soil organic matter (OM) development were assessed using mineralogical, geochemical and physical analyses. Actinobacterial PLFA was particularly abundant in parent rocks, where Actinobacteria likely contribute to rock weathering and the initiation of OM accumulation. Conversely, bacterial PLFAs were most abundant in the FE under nutrient- and OM-rich conditions. The integral role of RFs as a microbial habitat is demonstrated by a distinct fungal colonisation, which is enabled by the specific physical features of RFs in combination with the provision of inorganic nutrients. Our findings indicate that RFs are colonised by microbes and that differences in the community structure depend on mineralogical properties and chemical weathering status. We document that RFs are microhabitats with a significant potential to host microbial life in cultivated soils, and thus, could play an important role in biogeochemical cycling and the provision of soil functions in agroecosystems.

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农业土壤中的石球:一种与连接岩石和土壤的岩石碎片有关的微生境
岩石碎片(RFs)是丰富的土壤成分,但通常被排除在土壤分析之外。因此,它们对土壤特性的贡献,特别是对微生物群的贡献,还不完全清楚。因此,我们研究了三个具有不同沉积母质的农业用地表土的岩石-土壤连续体中微生物定植的变化,并特别关注了RFs。利用磷脂脂肪酸(PLFA)分析对未风化和风化母岩材料、两个RF组分(8-16 mm和2-8 mm)和细土(FE;& lt; 2毫米)。通过矿物学、地球化学和物理分析,评价了生物地球化学风化、养分有效性和土壤有机质(OM)发育的趋势。放线菌PLFA在母岩中特别丰富,放线菌可能参与了岩石风化和OM积累的启动。相反,在营养丰富和OM丰富的条件下,细菌PLFAs在FE中最丰富。RFs作为微生物栖息地的整体作用通过独特的真菌定植得到证明,这是由RFs的特定物理特征与无机营养物质的提供相结合而实现的。我们的研究结果表明,RFs被微生物定植,群落结构的差异取决于矿物性质和化学风化状态。研究表明,耕地土壤是一种具有微生物生存潜力的微生境,在农业生态系统的生物地球化学循环和土壤功能提供中发挥着重要作用。
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来源期刊
European Journal of Soil Science
European Journal of Soil Science 农林科学-土壤科学
CiteScore
8.20
自引率
4.80%
发文量
117
审稿时长
5 months
期刊介绍: The EJSS is an international journal that publishes outstanding papers in soil science that advance the theoretical and mechanistic understanding of physical, chemical and biological processes and their interactions in soils acting from molecular to continental scales in natural and managed environments.
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