1995-1999 烟台师范学院生物系 学士
2002.12-2007.11 武汉大学生命科学学院 讲师
2007.12-2016.11 武汉大学生命科学学院 副教授
主要围绕受损水生生态系统格局与过程开展全流域、不同类型湖泊、大中型围隔和小型水泥池等不同尺度的模拟与受控实验,在水生植物生态学研究中,重点研究水生植物外来种入侵的基本理论和外来种入侵的防控措施,探索重建原生水生植被和退化水生生态系统修复机理及大面积种植水草以改善水质的新技术措施。
主持重大科技基础专项项目和水专项项目子课题各1项;主持国家自然科学基金面上项目4项和青年基金项目1项;另外作为主要研究骨干参加过国家自然科学重点基金和“973”项目。
1) Chao, C., Lv, T., Wang, L., Li, Y., Han, C., Yu, W., ... & Liu, C*. (2022). The spatiotemporal characteristics of water quality and phytoplankton community in a shallow eutrophic lake: Implications for submerged vegetation restoration. Science of The Total Environment, 821, 153460.
2) Lv, T., Fan, S., Wang, H., Li, D., Wang, Q., Lei, X., Liu, C* & Yu, D*. (2022). Invasion of water hyacinth and water lettuce inhibits the abundance of epiphytic algae. Diversity and Distributions.
3) Ma, F., Yang, L., Zhang, C., Tao, M., Yu, H., Liu, C*., & Yu, D. (2022). Functional evenness and community-weighted mean traits have strong correlation with macrophyte community productivity. Aquatic Sciences, 84(1), 1-10.
4)
Ma, X., Yu, W., Tao, M., Zhang, C., Zhang, Z., Yu, D., & Liu, C*. (2022). Clonal integration in Vallisneria natans alters growth and the rhizosphere microbial community of neighboring plants under heterogeneous conditions. Plant and Soil, 1-15.6) Yu, W., Li, J., Ma, X., Lv, T., Wang, L., Li, J., & Liu, C*. (2022). Community structure and function of epiphytic bacteria attached to three submerged macrophytes. Science of The Total Environment, 835, 155546.
7) Hu, J#., Yu, H#., Li, Y., Wang, J., Lv, T., Liu, C*., & Yu, D. (2021). Variation in resource allocation strategies and environmental driving factors for different life‐forms of aquatic plants in cold temperate zones. Journal of Ecology, 109(8), 3046-3059.
8) Ma, F., Yang, L., Lv, T., Zuo, Z., Zhao, H., Fan, S*., Liu, C* & Yu, D. (2021). The Biodiversity–biomass relationship of aquatic macrophytes is regulated by water depth: a Case study of a shallow mesotrophic lake in China. Frontiers in Ecology and Evolution, 9, 338.
9) Li, Y., Wang, L., Chao, C., Yu, H., Yu, D., & Liu, C*. (2021). Submerged macrophytes successfully restored a subtropical aquacultural lake by controlling its internal phosphorus loading. Environmental Pollution, 268, 115949.
10) Wang, J., Wang, Q., Hu, J., Yu, H*., Liu, C*., & Yu, D. (2021). The influence of small-scale resource heterogeneity caused by human activities on the growth phenotype of invasive aquatic plants. Ecological Indicators, 125, 107504.
11) Yan, Z., Wang, Q., Li, Y., Wu, L., Wang, J., Xing, B., ... & Liu, C*. (2021). Combined effects of warming and nutrient enrichment on water properties, growth, reproductive strategies and nutrient stoichiometry of Potamogeton crispus. Environmental and Experimental Botany, 190, 104572.
12) Zhang, X., Yu, H., Lv, T., Yang, L., Liu, C*., Fan, S*., & Yu, D. (2021). Effects of different scenarios of temperature rise and biological control agents on interactions between two noxious invasive plants. Diversity and Distributions, 27(12), 2300-2314.
13) Zhang, X., Yu, H., Yu, H., Liu, C*., Fan, S*., & Yu, D. (2021). Highly competitive native aquatic species could suppress the growth of invasive aquatic species with similar traits. Biological Invasions, 23(1), 267-280.
14) Li, Y., Wang, L., Yan, Z., Chao, C., Yu, H., Yu, D., & Liu, C*. (2020). Effectiveness of dredging on internal phosphorus loading in a typical aquacultural lake. Science of The Total Environment, 744, 140883.
15) Yu, H., Shen, N., Yu, D., & Liu, C*. (2019). Clonal integration increases growth performance and expansion of Eichhornia crassipes in littoral zones: A simulation study. Environmental and Experimental Botany, 159, 13-22..
16) Huang, X., Wang, L., Guan, X., Gao, Y., Liu, C*., & Yu, D. (2018). The root structures of 21 aquatic plants in a macrophyte-dominated lake in China. Journal of Plant Ecology, 11(1), 39-46.
17) Wang, T., Hu, J., Liu, C*., & Yu, D. (2017). Soil type can determine invasion success of Eichhornia crassipes. Hydrobiologia, 788(1), 281-291.
18) Wang, T., Hu, J., Miao, L., Yu, D., & Liu, C*. (2016). The invasive stoloniferous clonal plant Alternanthera philoxeroides outperforms its co-occurring non-invasive functional counterparts in heterogeneous soil environments–invasion implications. Scientific Reports, 6(1), 1-8.
19) Fan, S., Yu, H., Liu, C*., Yu, D*., Han, Y., & Wang, L. (2015). The effects of complete submergence on the morphological and biomass allocation response of the invasive plant Alternanthera philoxeroides. Hydrobiologia, 746(1), 159-169.
20)
Liu, C., & Yu, D. (2009). The bud and root sprouting capacity of Alternanthera philoxeroides after over-wintering on sediments of a drained canal. Hydrobiologia, 623(1), 251-256.相关知识
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