溶解有机碳
生物地球化学循环
微生物种群生物学
喀斯特
环境化学
植被(病理学)
环境科学
有机质
微生物降解
生态系统
土壤有机质
碳循环
土壤碳
生态学
微生物生态学
碳纤维
植物群落
化学
陆地生态系统
恢复生态学
固碳
总有机碳
成土作用
作文(语言)
群落结构
作者
Yuntian Long,Qian Tang,Wanglan Tao,Jianxing Li,Xiankun Li,Fuzhao Huang,Chuifan Zhou
标识
DOI:10.1016/j.jenvman.2026.129002
摘要
Dissolved organic matter (DOM), as one of the most active components of soil organic matter, influences fundamental biogeochemical processes in soils. However, in ecologically vulnerable karst regions, how vegetation restoration drives the co-evolution of DOM molecular composition and microbial communities remains unclear. This study employed Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR MS) and high throughput sequencing to investigate the dynamics of soil DOM molecular composition and microbial communities along a typical karst vegetation restoration chrono sequence. The results indicate that with vegetation restoration, both the molecular aromaticity and oxidation state of DOM increased, accompanied by a relative enrichment of lignin-like compounds and a decrease in bioavailability, thereby promoting the formation of a more stable soil carbon pool. Microbial analysis showed that bacterial assembly was stochastic while fungal assembly was deterministic, with fungi being more sensitive to environmental changes. Network analysis indicated that more protein-like components were closely associated with bacteria, while recalcitrant lignin-like components were more strongly linked to fungi. These findings elucidate the microbial mechanisms underpinning vegetation restoration driven soil carbon stabilization at the molecular level, highlighting the critical role of DOM molecular composition and microbial communities in carbon sequestration within karst ecosystems.
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