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Carbon budgets of top- and subsoil food webs in an arable system

机译:可耕作系统中的顶部和底层食物网的碳预算

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This study assessed the carbon (C) budget and the C stocks in major compartments of the soil food web (bacteria, fungi, protists, nematodes, meso- and macrofauna) in an arable field with/without litter addition. The C stocks in the food web were more than three times higher in topsoil (0-10 cm) compared to subsoil ( 40 cm). Microorganisms contained over 95% of food web C, with similar contributions of bacteria and fungi in topsoil. Litter addition did not alter C pools of soil biota after one growing season, except for the increase of fungi and fungal feeding nematodes in the topsoil. However, the C budget for functional groups changed with depth, particularly in the microfauna. This suggests food web resilience to litter amendment in terms of C pool sizes after one growing season. In contrast, the distinct depth dependent pattern indicates specific metacommunities, likely shaped by dominant abiotic and biotic habitat properties.
机译:本研究评估了碳(C)预算和在耕地中的土壤食品网(细菌,真菌,质询,线虫,Meso-和Macrofauna)的主要隔室中的碳(C)预算和C库存,其中包含/无垃圾添加。 与底层(& 40cm)相比,食品网中的C股在TOPSOIL(0-10cm)高出三倍以上。 微生物含有超过95%的食物纤维网C,具有类似于Topseil的细菌和真菌的贡献。 除了在TheoIL中的真菌和真菌喂养线虫的增加外,乱扔垃圾的添加没有改变土壤生物群。 然而,功能组的C预算随深度而改变,特别是微灌体。 这表明在一个生长季节后C游泳池尺寸方面提出了食物网络恢复能力。 相反,不同的深度依赖模式表明特定的代理,可能是由占优势非生物和生物栖息地特性的形式。

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