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Heng Gui
guiheng@mail.kib.ac.cn
Chinese, English, German
Yunnan
University of Chinese Academy of Sciences
Life Sciences
  • 2022-02 - Present - Kunming Institute of Botany, Chinese Academy of Sciences - Associate Researcher
  • 2020-09 - 2022-02 - Kunming Institute of Botany, Chinese Academy of Sciences - Assistant Researcher
  • 2018-05 - 2018-12 - University of Göttingen, Germany - Visiting Scholar
  • 2017-11 - 2019-11 - Kunming Institute of Botany, Chinese Academy of Sciences - Postdoctoral Researcher
  • 2011-07 - 2017-10 - Kunming Institute of Botany, Chinese Academy of Sciences - Research Assistant
Biogeographical distribution patterns and driving forces of soil microorganisms under different vegetation types in Southwest China and other key regions
Key potential of arbuscular mycorrhizal fungi and other functional microorganisms in regulating soil key element metabolism and soil multifunctionality
Stress effects of microplastic pollution in agricultural soils on plant-microbe systems and microbial degradation of waste plastics
  • Nano-Iron Oxide (Fe3O4) Mitigates the Effects of Microplastics on a Ryegrass Soil–Microbe–Plant System, Liu, D., Iqbal, S., Gui, H., Xu, J., An, S., Xing, B., 2023
  • Continental-scale insights into the soil microbial co-occurrence networks of Australia and their environmental drivers, Gui, H., Breed, M., Li, Y., Xu, Q., Yang, J., Wanasinghe, D. N., Mortimer, P., 2023
  • Trajectories of soil microbial recovery in response to restoration strategies in one of the largest and oldest open-pit phosphate mine in Asia, Yan, K., Luo, Y. H., Li, Y. J., Du, L. P., Gui, H., Chen, S. C., 2023
  • Insights into the mechanisms involved in the fungal degradation of plastics, Okal, E. J., Heng, G., Magige, E. A., Khan, S., Wu, S., Ge, Z., Xu, J., 2023
  • Land use intensification in a dry-hot valley reduced the constraints of water content on soil microbial diversity and multifunctionality but increased CO2 production, Wang, Z., Liu, X., Zhou, W., Sinclair, F., Shi, L., Xu, J., Gui, H., 2022
  • Enhanced soil quality after forest conversion to vegetable cropland and tea plantations has contrasting effects on soil microbial structure and functions, Fan, L., Shao, G., Pang, Y., Dai, H., Zhang, L., Yan, P., Zou, Z., Zhang, Z., Xu, J., Zamanian, K., Dorodnikov, M., Li, X., Gui, H., Han, W., 2022
  • Effects of degraded grassland conversion to mango plantation on soil CO2 fluxes, Wang, Z., Wubshet, T. T., Chen, H., Wu, L., Yang, H., Yang, J., Gui, H., 2021
  • The microplastisphere: biodegradable microplastics addition alters soil microbial community structure and function, Zhou, J., Gui, H., Banfield, C. C., Wen, Y., Zang, H., Dippold, M. A., Jones, D. L., 2021
  • Arbuscular mycorrhizal fungi potentially regulate N2O emissions from agricultural soils via altered expression of denitrification genes, Gui, H., Gao, Y., Wang, Z., Shi, L., Yan, K., Xu, J., 2021
  • Funneliformis mosseae alters soil fungal community dynamics and composition during litter decomposition, Gui, H., Purahong, W., Wubet, T., Peršoh, D., Shi, L., Khan, S., Mortimer, P. E., 2020
Biogeographical Distribution Soil Microorganisms Vegetation Types Southwest China Key Regions Arbuscular Mycorrhizal Fungi Functional Microorganisms Soil Metabolism Soil Multifunctionality Microplastic Pollution

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