1. Wang GW, Jin ZX, George TS, Feng G, Zhang L. Arbuscular mycorrhizal fungi enhance plant phosphorus uptake through stimulating hyphosphere microbiome functional profiles for phosphorus turnover. New Phytologist 2023, 238: 2578-2593. 2. Wang GW, Yang YC, Yao YY, Wang XQ. Exudate pulses throughout the entire growth period trigger the increase in maize phosphorus use efficiency by modifying soil keystone microbial taxa. Biology and Fertility of Soils 2025, 61: 999-1011. 3. Wang GW, Yang YC, Liu CH, Wang ZK, Liu L, Wang XQ, Yao YY. Simulated plant-derived exudate pulses promote maize phosphorus uptake by recruiting specific rhizosphere microbial communities and shaping root metabolites. Applied Soil Ecology2025, 213: 106244. 4. Wang GW, George TS, Pan QC, Feng G, Zhang L. Two isolates of Rhizophagus irregularis select different strategies for improving plants phosphorus uptake at moderate soil P availability. Geoderma 2022, 421: 115910. 5. Bai YJ, Zhang YP, Wang XQ, Liu Y, Li S, Ma JZ, Gao N, Yang YC, Wang GW*, Yao YY. Laccase modified fulvic acid-like substance from paper spent cooking liquor: Chemical structure optimization, functional group reconstruction and bioactivity improvement. Environmental Technology & Innovation 2024, 36: 103910. (共同通讯作者) 6. Wang GW, Jin ZX, Wang XX, George TS, Feng G, Zhang L. Simulated root exudates stimulate the abundance of Saccharimonadales to improve the alkaline phosphatase activity in maize rhizosphere. Applied Soil Ecology 2022, 170: 104274. 7. Jin ZX, Wang GW, George TS, Zhang L Potential role of sugars in the hyphosphere of arbuscular mycorrhizal fungi to enhance organic phosphorus mobilization. Journal of Fungi 2024, 10: 226. (共同第一作者) 8. Wang GW, Chen BC, Khan KS, Zheng WK, Liang H, Han Z, Chen JQ. Novel value-added phosphorus-potassium-activator fertilizers improve phosphorus use efficiency and crop yields. Environmental Pollutants and Bioavailability 2019, 31: 323-330. |