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夏志超

来源 : 杭州师范大学生命与环境科学学院     作者 : 生科院     时间 : 2020-04-23     点击 : 2643

 

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夏志超 博士 副研究员

杭州师范大学生命与环境科学学院

浙江省杭州市余杭区仓前街道余杭塘路2318

Email: zhichaoxia0623@163.com zhichaoxia@hznu.edu.cn

教育经历

2005.09-2009.07东北林业大学林学院 林学学士

2009.09-2012.07中国科学院沈阳应用生态研究 生态学硕士

2012.09-2017.07中国农业大学资源与环境学院 生态学博士

工作经历

2017.08-2020.12杭州师范生命与环境科学学院 讲师

2021.1-至今 杭州师范生命与环境科学学院 副研究员

社会兼职:

国际期刊Environmental and Experimental Botany, BMC Plant Bology, Allelopathy Journal等审稿人;国家自然科学基金评审专家。

研究方向

1.     根际过程与调控机制,

2.     林木根系与其它有机体的相互作用,

3.     地上和地下生态过程关联。

主持科研项目

国家自然科学青年基金:雌雄青杨的磷觅食策略及性别内和性别间相互作用(2019-2021

浙江省自然科学青年基金:杉木对异种林木的化学选择及地下生态效应 2018-2020

获奖情况:

杭州市优秀博士扶持计划(2020-2022)

北京市优秀研究生毕业生(2017)

发表论文

12. Xia, Z., He, Y., Zhou, B., Korpelainen, H., & Li, C. (2020). Sex-related responses in rhizosphere processes of dioecious Populus cathayana exposed to drought and low phosphorus stress. Environmental and Experimental Botany, 104049. (二区IF: 4.027)

11. Xia, Z., He, Y., Yu, L., Miao, J., Korpelainen, H., & Li, C. (2020). Root traits and rhizosphere processes reflect differential phosphorus acquisition strategies in contrasting Populus clones. Forest Ecology and Management, 457: 117750. (二区Top IF: 3.17)

10. Xia, Z., He, Y., Yu, L., Lv, R., Korpelainen, H., & Li, C. (2020). Sex-specific strategies of phosphorus acquisition in Populus cathayana as affected by soil P availability and distribution. New Phytologist, 225: 782–792. (一区Top IF:8.512

9. Xia, Z., Yu, L., He, Y., Korpelainen, H., & Li, C. (2019). Broadleaf trees mediate chemically the growth of Chinese fir through root exudates. Biology and Fertility of Soils. 55: 737-749 (一区Top IF: 4.829)

8. Yu, L., Song, M., Xia, Z., Korpelainen, H., & Li, C. (2019). Plant-plant interactions and resource dynamics of Abies fabri and Picea brachytyla as affected by phosphorus fertilization. Environmental and Experimental Botany. 86: 103893 (IF: 3.712)

7. Yu L., Song M., Xia Z., Korpelainen H., Niinemets U. & Li C. (2019). Elevated temperature differently affects growth, photosynthetic capacity, nutrient absorption and leaf ultrastructure of Abies faxoniana and Picea purpurea under intra- and interspecific competition. Tree Physiology, 39: 1342-1357. (一区Top IF: 3.477)

6. Kong, C., Zhang, S., Li, Y., Xia, Z., Yang, X., Meiners, S., & Wang, P. (2018). Plant neighbor detection and allelochemical response are driven by root-secreted signaling chemicals. Nature communications, 9: 3867. (一区Top IF: 11.878)

5. Li, Y., Xia, Z., & Kong, C. (2016). Allelobiosis in the interference of allelopathic wheat with weeds. Pest Management Science, 72: 2146-2153. (一区Top IF: 3.253)

4. Xia, Z., Kong, C., Chen, L., Wang, P., & Wang, S. (2016). A broadleaf species enhances an autotoxic conifers growth through belowground chemical interactions. Ecology, 97: 2283-2292. (二区Top IF: 4.809)

3. Xia, Z., Kong, C., Chen, L., & Wang, S. (2015). Allelochemical-mediated soil microbial community in long-term monospecific Chinese fir forest plantations. Applied Soil Ecology, 96: 52-59. (二区IF: 2.670)

2. Li, X., Xia, Z., Kong, C., & Xu, X. (2013). Mobility and microbial activity of allelochemicals in soil. Journal of Agricultural and Food Chemistry, 61: 5072-5079. (一区Top IF: 3.107)

1. 夏志超, 孔垂华, 王朋, 陈龙池, & 汪思龙. (2012). 杉木人工林土壤微生物群落结构特征. 应用生态学报, 23: 2135-2140. (2017年入选F5000论文)

 

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