付伟
助理研究员
土壤微生态与有机质分子转化、土壤生态修复。
在组时间:2024至今
付伟,中国科学院生态环境研究中心助理研究员。主要从事土壤微生态与有机质分子转化、土壤生态修复研究,关注植物、土壤动物和微生物驱动的有机质形成、转化与稳定机制,以及复杂环境体系中微生态过程对土壤结构、养分循环和生态功能恢复的调控作用。
付伟博士毕业于中国科学院生态环境研究中心,2024年加入SOMER研究小组。2024年底至2026年初在德国 Matthias Rillig 课题组开展访问研究。
论文
- (2026). Multifunctional composite microbial inoculants in sustainable agriculture: Design, carriers and field application. Soil Ecology Letters 8 (4), 260421, 2026.
- (2026). Decade-Long Soil Cover Promotes Mineral Weathering and Organic Matter Accrual in Fe Ore Tailings But Deteriorates Topsoil. ACS Earth and Space Chemistry, 2026.
- (2026). Seedling mycorrhization increases maize yield without altering soil properties: A field study. Applied Soil Ecology 218, 106701, 2026.
- (2026). Physicochemical and mineralogical constraints on the ecological rehabilitation of coal mine waste. Plant and Soil 519 (1), 595-613, 2026.
- (2026). Microbial Processing and Mineral Stabilization of Organic Matter in Iron Ore Tailings: A Four-Year Microcosm Study via Isotopic Labeling and Submicron-Scale Analysis. Environmental Science & Technology, 2026.
- (2026). Constraining the effect of global change on antifungal resistance. Nature Reviews Earth & Environment, 1-3, 2026.
- (2026). Beyond Plant Diversity: Plant Productivity Responses to Extreme Drought Are Linked to Arbuscular Mycorrhizal Fungal Diversity. Global Change Biology 32 (1), e70697, 2026.
- (2025). Arbuscular mycorrhizal fungi and Trichoderma harzianum alter salicylic acid–jasmonic acid balance to suppress Fusarium wilt in tomato. Frontiers in Plant Science 16, 1714648, 2025.
- (2025). Arbuscular mycorrhizal fungi as core engineers in synthetic microbial communities: Boosting plant growth and soil health for sustainable agriculture. Journal of Fungi 11 (11), 769, 2025.
- (2025). Effect of Inoculation with Arbuscular Mycorrhizal Fungi (Rhizophagus irregularis BGC AH01) on the Soil Bacterial Community Assembly. Journal of Fungi 11 (10), 739, 2025.
- (2025). Soil science research in Research Center for Eco-Environmental Sciences: Review and outlook. Journal of Environmental Sciences, 2025.
- (2025). Harnessing arbuscular mycorrhizal fungal communities for ecological restoration: a conceptual framework. Soil Biology and Biochemistry 209, 109902, 2025.
- (2025). Aggregate size mediates the stability and temperature sensitivity of soil organic carbon in response to decadal biochar and straw amendments. Soil Biology and Biochemistry, 109969, 2025.
- (2025). Distribution patterns and driving forces of soil fungal communities along elevational gradients on two snow mountains in the Hengduan Mountain Range. Soil Ecology Letters 7 (3), 250323, 2025.
- (2025). Arbuscular mycorrhizal fungi enhance glyphosate resistance in an invasive weed: Implications for eco-environmental risks. Applied Soil Ecology 212, 106203, 2025.
- (2025). Niche constraints shape the responses of arbuscular mycorrhizal fungal community to sulfur-induced soil acidification in a meadow steppe. Plant and Soil, 1-17, 2025.
- (2025). Synergistic Effects of Rhizophagus irregularis and Trichoderma harzianum Co-Inoculation on Enhancing Drought Tolerance and Secondary Metabolite Production in Licorice …. Journal of Fungi 11 (7), 488, 2025.
- (2025). 尾矿成土生态工程: 理论与技术. 科技导报 43 (11), 60-73, 2025.
- (2025). Mycelium biomass and community composition impact nutrient concentration in arbuscular mycorrhizal fungi at fine spatial scale. Functional Ecology 39 (6), 1455-1468, 2025.
- (2025). Dynamics of organic carbon stabilization by minerals during pedogenesis of mine tailings: a conceptual model. ACS Earth and Space Chemistry 9 (5), 991-1004, 2025.
- (2024). Soil organic matter dynamics mediated by arbuscular mycorrhizal fungi–an updated conceptual framework. New Phytologist 242 (4), 1417-1425, 2024.
- (2024). The Microbiome Protocols eBook initiative: Building a bridge to microbiome research. Imeta 3 (2), e182, 2024.
- (2024). Involvements of mycorrhizal fungi in terrestrial ecosystem carbon cycling. Chinese Journal of Plant Ecology 48 (1), 1-20, 2024.
- (2024). 菌根真菌在陆地生态系统碳循环中的作用. 植物生态学报 48 (1), 1-20, 2024.
- (2023). Integrated transcriptomics and metabolomics reveal specific phenolic and flavonoid accumulation in licorice (Glycyrrhiza uralensis Fisch.) induced by arbuscular mycorrhiza …. Plant Physiology and Biochemistry 205, 108173, 2023.
- (2023). Arbuscular mycorrhizal fungi can inhibit the allocation of microplastics from crop roots to aboveground edible parts. Journal of Agricultural and Food Chemistry 71 (47), 18323-18332, 2023.
- (2023). Response of soil fungal community to chromium contamination in agricultural soils with different physicochemical properties. Science of The Total Environment 879, 163244, 2023.
- (2023). Community response of soil microorganisms to combined contamination of polycyclic aromatic hydrocarbons and potentially toxic elements in a typical coking plant. Frontiers in microbiology 14, 1143742, 2023.
- (2023). Responses of a semiarid grassland to recurrent drought are linked to community functional composition. Ecology 104 (2), e3920, 2023.
- (2023). Identifying thresholds of nitrogen enrichment for substantial shifts in arbuscular mycorrhizal fungal community metrics in a temperate grassland of northern China. New Phytologist 237 (1), 279-294, 2023.
- (2022). Conversion of natural grassland to cropland alters microbial community assembly across northern China. Environmental Microbiology 24 (12), 5630-5642, 2022.
- (2022). Long-term nickel contamination increased soil fungal diversity and altered fungal community structure and co-occurrence patterns in agricultural soils. Journal of hazardous materials 436, 129113, 2022.
- (2022). Increased Carbon Partitioning to Secondary Metabolites Under Phosphorus Deficiency in Glycyrrhiza uralensis Fisch. Is Modulated by Plant Growth Stage and …. Frontiers in Plant Science 13, 876192, 2022.
- (2022). Contrasting community responses of root and soil dwelling fungi to extreme drought in a temperate grassland. Soil Biology and Biochemistry 169, 108670, 2022.
- (2022). Community response of arbuscular mycorrhizal fungi to extreme drought in a cold‐temperate grassland. New Phytologist 234 (6), 2003-2017, 2022.
- (2022). Research frontiers in soil ecology. Science & technology review 40 (3), 25-31, 2022.
- (2022). 土壤生态学研究前沿. 科技导报 40 (3), 25-31, 2022.
- (2022). Structure and diversity of fungal communities in long-term copper-contaminated agricultural soil. Science of The Total Environment 806, 151302, 2022.
- (2021). Resistance and resilience of a semi-arid grassland to multi-year extreme drought. Ecological Indicators 131, 108139, 2021.
- (2021). 基于高通量测序技术的丛枝菌根真菌多样性研究方法. Bio-protocol, e2003673-e2003673, 2021.
- (2021). Soil organic carbon and total nitrogen predict large-scale distribution of soil fungal communities in temperate and alpine shrub ecosystems. European Journal of Soil Biology 102, 103270, 2021.
- (2020). 施氮对森林生态系统 AM 真菌群落组成及多样性的影响. 生态学报 40 (21), 7576-7587, 2020.
- (2020). 陆地生态系统氮沉降的生态效应: 研究进展与展望. 植物生态学报 44 (5), 475-493, 2020.
- (2020). Nitrogen and water addition regulate soil fungal diversity and co-occurrence networks. Journal of Soils and Sediments 20 (8), 3192-3203, 2020.
- (2020). Ecological impacts of nitrogen deposition on terrestrial ecosystems: Research progresses and prospects. Chinese Journal of Plant Ecology 44 (5), 475-493, 2020.
- (2020). Soil fungal community is more sensitive to nitrogen deposition than increased rainfall in a mixed deciduous forest of China. Soil Ecology Letters 2 (1), 20-32, 2020.
- (2020). Can understory nitrogen addition overestimate the effects of nitrogen deposition on arbuscular mycorrhizal fungal community?. Acta Ecologica Sinica 40 (21), 7576-7587, 2020.
- (2019). 保水剂和丛枝菌根真菌异形根孢囊霉对紫花苜蓿生长与抗旱性的影响.. Mycosystema 38 (11), 2019.
- (2017). 土壤微生物与植物入侵: 研究现状与展望. 生物多样性 25 (12), 1295-1302, 2017.
- (2017). Exploring the potential of naturalized plants for phytoremediation of heavy metal contamination. International Journal of Environmental Research 11 (4), 515-521, 2017.
- (2017). Soil microbiota and plant invasions: current and future. Biodiversity Science 25 (12), 1295-1302, 2017.
- (2016). The invasion mechanisms of the invasive clonal plant Wedelia trilobata. 101st ESA Annual Meeting (August 7--12, 2016), 2016.
- (2016). Different growth promoting effects of endophytic bacteria on invasive and native clonal plants. Frontiers in plant science 7, 706, 2016.
- (2016). Different Responses of an Invasive Clonal Plant Wedelia trilobata and its Native Congener to Gibberellin: Implications for Biological Invasion. Journal of chemical ecology 42 (2), 85-94, 2016.