植物生态学

刘秒

图片1

姓名:刘秒

邮箱:ahauliumiao@126.com

杭州师范大学, 生命与环境科学学院, 副教授

主要研究领域:

(1) 雌雄植株非生物胁迫,如干旱胁迫和重金属胁迫;

(2) 雌雄植株性别识别及互作机制;

(3) 植物-微生物跨界互作机制及对植物养分利用性的影响

教育经历:

(1) 2011-09 2017-06, 浙江大学, 植物营养学, 博士

(2) 2007-09 2011-06, 安徽农业大学, 草业科学, 学士

科研与学术工作经历(博士后工作经历除外):

(1) 2021-01 至 今, 杭州师范大学, 生命与环境科学学院, 副教授

(2) 2017-09 2020-12, 杭州师范大学, 生命与环境科学学院, 助理研究员

主持科研项目:

(1) 国家自然科学基金委员会, 面上项目, 32371829, 雌雄异株青杨-微生物跨界互作调控干旱胁迫下土壤养分交易与捕获, 2024-01-01 2027-12-31, 50万元, 在研, 主持;

(2) 国家自然科学基金委员会, 面上项目, 32171743, 雌雄青杨根系构型塑造介导的觅水策略调控机制, 2022-01-01 2025-12-31, 58万元, 在研, 主持;

(3) 国家自然科学基金委员会, 青年科学基金项目, 31800507, 基于雌雄青杨响应盐胁迫的钾/钠离子比差异调控机制 , 2019-01-01 2021-12-31, 27万元, 结题, 主持;

(4) 浙江省科学基金委员会, 探索一般, LY23C150001, 纳米硒对茶树根系质外体介导的镉吸调控机制, 2023-01 2025-12, 10万元, 在研, 主持;

(5) 浙江省科学基金委员会, 青年基金项目, LQ18C030004, 氮素对镉胁迫下青杨雌雄差异性的调控机制, 2018-01 2020-12, 8万元, 结题, 主持.

代表性研究成果

(1) Kaimin Lan; Yijin Li; Yiwei Shuai; Juntuan Zhai; Qingxu Ma; Yakov Kuzyakov; Miao Liu; Phosphorus (P) mobilisation from inorganic and organic P sources depends on P-acquisition strategies in dioecious Populus euphratica, Biology and Fertility of Soils, 2024.

(2) Wenting Zhao; Xiazhen Lin; Yuting Wang; Qihang Yang; Miao Liu; Nitrogen level induces sex-specific cadmium phloem remobilization and cell wall segregation in Populus cathayana, Science of the Total Environment, 2023, 890: 164184.

(3) Miao Liu; Junhua Wang; Wenting Zhao; Helena Korpelainen; Chunyang Li; Females face more positive plant-soil feedback and intersexual competition under adequate nitrogen conditions compared to males in Populus cathayana, Science of The Total Environment, 2023, 874: 162479.

(4) Miao Liu; Yuting Wang; Xiucheng Liu; Helena Korpelainen; Chunyang Li; Intra- and intersexual interactions shape microbial community dynamics in the rhizosphere of Populus cathayana females and males exposed to excess Zn, Journal of Hazardous Materials, 2021, 402: 123783.

(5) Miao Liu; Jingwen Bi; Xiucheng Liu; Jieyu Kang; Helena Korpelainen; Ülo Niinemets; Chunyang Li; Microstructural and physiological responses to cadmium stress under different nitrogen levels in Populus cathayana females and males, Tree Physiology, 2020, 40: 30-45.

(6) Yang Zhao; Liangliang Chen; Yankai Chen; Qihang Yang; Miao Liu; Plant sexual variation modulates rhizospheric nutrient processes through the soil microbiome response to drought and rewetting in Populus cathayana, Biology and Fertility of Soils, 2023, 59: 571-587.

(7) Miao Liu; Yang Zhao; Yuting Wang; Helena Korpelainen; Chunyang Li; Stem xylem traits and wood formation affect sex-specific responses to drought and re-watering in Populus cathayana, Tree Physiology, 2022, 42: 1350-1363.

(8) Miao Liu; Xiucheng Liu; Xuhua Du; Helena Korpelainen; Ülo Niinemets; Chunyang Li; Anatomical variation of mesophyll conductance due to salt stress in Populus cathayana females and males growing under different inorganic nitrogen sources, Tree Physiology, 2021, 41: 1462-1478.

(9) Miao Liu; Haihua Zhang; Xianzhi Fang; Yongsong Zhang; Chongwei Jin; Auxin acts downstream of ethylene and nitric oxide to regulate magnesium deficiency-induced root hair development in Arabidopsis thaliana, Plant and Cell Physiology, 2018, 59: 1452-1465.

(10) Miao Liu; Xingxing Liu; Xiaolin He; Lijuan Liu; Hao Wu; Caixian Tang; Yongsong Zhang; Chongwei Jin; Ethylene and nitric oxide interact to regulate the magnesium deficiency-induced root hair development in Arabidopsis, New Phytologist, 2017, 213: 1242-1256.


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