HL
Huiying Liu
East China Normal University, Peking University, Inner Mongolia University
About
Huiying Liu is currently an assistant professor at the School of Ecological and Environmental Sciences, East China Normal University, China. Her lab has focused on three general areas: 1) Understanding how climate change affect the linkage between above- and below-ground ecological processes; 2) Understanding how climate change affect biodiversity and ecosystem functions; 3) Understanding the plant phenology and productivity in response to climate change and its underlying mechanisms.
Employment
-
East China Normal University Young researcher
Education
-
Peking University Ph.D.2011 - 2018
-
Inner Mongolia University B.Sc.2007 - 2011
Projects & Funding
Projects & funding information is unavailable.
Publications (46)
- Differential home-field advantage in decomposition between surface and standing leaf litter on the Tibetan Plateau Save
- Declining precipitation frequency may drive earlier leaf senescence by intensifying drought stress and enhancing drought acclimation Save
- Nonlinear response of soil microbial network complexity to long-term nitrogen addition in a semiarid grassland: Implications for soil carbon processes Save
- Diminishing warming effects on plant phenology over time Save
- Declining precipitation frequency drives earlier leaf senescence by intensifying drought stress and enhancing drought acclimation Save
- Nonlinear Response of Soil Microbial Network Complexity to Long-Term Nitrogen Addition in a Semiarid Grassland: Implications for Soil Carbon Processes Save
- Plant biodiversity responds more strongly to climate warming and anthropogenic activities than microbial biodiversity in the Qinghai–Tibetan alpine grasslands Save
- Climate warming interacts with other global change drivers to influence plant phenology: A meta-analysis of experimental studies Save
- Contrasting responses of early- and late-season plant phenophases to altered precipitation Save
- Soil organic carbon stability of vegetation restoration during 11-year-old grassland succession Save