関連する実験動画
Updated: Feb 24, 2026

Experimental Protocol for Manipulating Plant-induced Soil Heterogeneity
Published on: March 13, 2014
土壌の深さが土壌の特性と微生物の多様性を形成することにより、土壌の多機能性を決定する
Xiaoxia Liang1, Yunxiao Zhao1, Yanhua Song1
1Shanxi University, Taiyuan, China.
Background:
Soil microorganisms drive subsurface ecological processes and are shaped by soil properties, which in turn influence biogeochemical cycling. Although the link between biodiversity and soil multifunctionality (SMF) has received widespread attention, the relative roles of soil properties and microbial community structure in regulating SMF remain unclear.
Methods:
Here, we investigated SMF and microbial communities in the humus layer and across the 0-80 cm depth of natural soil profiles in a subalpine grassland using high-throughput sequencing.
Results:
Our findings revealed that SMF, microbial diversity and network complexity decreased significantly with soil depth. Microbial community structure was primarily determined by pH and soil water content (SWC). Soil properties were the primary drivers of SMF, predicting 47.24%-63.75% of its variance. Microbial diversity was a stronger predictor of SMF than network complexity, explaining 26.09-44.56% of its variation. Bacterial diversity was significantly positively correlated with soil nutrient, carbon and nitrogen multifunctionality, while fungal diversity was not significantly correlated with them. This finding provides critical data support for elucidating the relationship between biodiversity and ecosystem functioning.
関連する概念動画
The Soil Ecosystem
The Roles of Bacteria and Fungi in Plant Nutrition
Environmental Applications of Microorganisms

