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◆ Communications Earth & Environment2026-06-11· Environmental science

Microbial–mineral–organic matter framework links environment and soil sulfur cycling

Tongkun Zhang, Hu Ding, Yunchao Lang, Xiaokun Han, Zhanhang Liu, Jingwen Zhang, Anji Li, Danyang Li, Cong‐Qiang Liu

原始摘要(英文原文)· Original abstract
Soil sulfur cycling plays a central role in ecosystem functioning and is tightly coupled to carbon–nitrogen–phosphorus–metal cycling. Key transformations occur at interfaces where microbes, minerals, and organic matter interact, yet these processes remain insufficiently resolved across scales and systems. Here, we synthesize evidence from multi-omics, isotopic tracing, and nanoscale spectroscopy and imaging to develop a microbial–mineral–organic matter interaction framework linking redox microdynamics, mineral reactivity, organic matter chemistry, and microbial guilds to sulfur speciation and turnover. We show how anthropogenic disturbance and climate change reshape interface-centered sulfur biogeochemical networks, with implications for nutrient retention, pollutant transport, and greenhouse gas emissions. We further identify major research hotspots, examine boundary conditions, and outline an artificial intelligence–process hybrid strategy for mechanism-based prediction and sustainable soil management under accelerating global change. This framework helps connect interface-scale mechanisms with ecosystem-scale consequences and provides a basis for future cross-system testing. Across soil systems, sulfur cycling is shaped by the interplay among microbial functional guilds, mineral reactivity, organic sulfur chemistry, and fluctuating physicochemical conditions, based on a framework of microbial–mineral–organic matter interactions.
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Microbial–mineral–organic matter framework links environment and soil sulfur cycling — 科研速览 Science Skim