

[1] Ma X, Song Y, Shen Y, et al. Fine-scale measurements unravel the side effects of biochar capping on the bioavailability and mobility of phosphorus in sediments[J]. Biochar, 2024, 6(1): 49. (IF 12.7)
[2] Li X, Fan S, Zhang Y, et al. Performance and microbial metabolic mechanism of imidacloprid removal in a microbial electrolysis cell-integrated adsorption biological coupling system[J]. Bioresource Technology, 2023, 386: 129513.(IF 11.4)
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[4] Wei W, Ma M, Jiang X, et al. Soil P-stimulating bacterial communities: response and effect assessment of long-term fertilizer and rhizobium inoculant application[J]. Environmental Microbiome, 2024, 19(1): 86. (IF 6.2)
[5] Yue Z, Guo Y, Zhang Y, et al. Endophytic Pantoea sp. EEL5 isolated from Elytrigia elongata improves wheat resistance to combined salinity-cadmium stress by affecting host gene expression and altering the rhizosphere microenvironment[J]. Industrial Crops and Products, 2025, 234: 121585. (IF 6.2)
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[7] Yu S U N, Li J I, CHANG J, et al. Compositional and functional succession of soil bacterial communities during long-term rice cultivation on saline-alkali soils: Insights derived from a new perspective of the core bacterial taxa[J]. Pedosphere, 2024. (IF 5.2)
[8] Ma L, Yang T, Dong L, et al. Long-term rice-crab coculturing leads to changes in soil microbial communities[J]. Frontiers in Microbiology, 2025, 15: 1395544. (IF 4.0)
[9] Zhong S, Wang W, Tang W, et al. Serendipita indica-dominated synthetic microbial consortia enhanced tartary buckwheat growth and improved its tolerance to drought stress[J]. Frontiers in Microbiology, 2025, 16: 1562341. (IF 4.0)
[10] Zhou J, Miao Y, Guo L, et al. Evaluating the Enzyme Activities and Soil Physicochemical Properties of Four Typical Halophytic Communities in Saline-Sodic Soil[J]. Agronomy, 2024, 14(1): 141.(IF 3.7)