孫志鴻(浙江農林大學教授)

孫志鴻(浙江農林大學教授)

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孫志鴻,女,愛沙尼亞生命科學大學植物生理學博士,浙江農林大學林業與生物技術學院教授,碩士生導師。

基本介紹

  • 中文名:孫志鴻 
  • 國籍中國
  • 學位/學歷:博士
  • 職業:教師
研究方向,學習與工作經歷,教學工作,科研項目,論文與專著,

研究方向

1.植物次生代謝物質-小分子揮發性有機化合物(BVOCs)的合成與代謝調控機制;
2.植物BVOCs釋放與植物抗逆性的生理生化基礎,及植物-環境間反饋適應;
3.植物BVOCs釋放對生態系統功能過程的回響;以及區域性植被BVOCs釋放與空氣品質之間的相互關係
4.植物BVOC釋放在城市景觀設計、調控空氣品質和醫療保健方面的套用。

學習與工作經歷

2014.12 - 起: 浙江農林大學,教授
2013.9– 2014.12: 河南大學,教授,黃河學者
2008.9 - 2013.6:愛沙尼亞生命科學大學,兼職研究員,植物生理學博士

教學工作

擔任植物生理學、生態學相關的本科生和研究生的教學

科研項目

浙江農林大學科研發展基金項目(2014FR087)、浙江省科技計畫項目(2016C32018)

論文與專著

1.Niinemets U., Sun Z., Talts E., Controls of the quantum yield and saturation light of isoprene emission in different-aged aspen leaves. Plant Cell & Environment 2015, 38:2707- 2720.
2.Niinemets U. and Sun Z., How light, temperature, and measurement and growth [CO2] interactively control isoprene emission in hybrid aspen. Journal of Experimental Botany 2015, 66: 841-851.
3.Grote R., Morfopoulos C., Niinemets U., Sun Z., Keenan T., Pacifico F., Butler T., A fully integrated isoprenoid emissions model coupling emissions to photosynthetic characteristics. Plant Cell & Environment2014, 37:1965-1980.
4.Morfopoulos C., Sperlich D., Peñuelas J., Filella C. I., Llusià J., Medlyn B. E., Niinemets U., Possell M., Sun Z., Prentice I. C., A model of plant isoprene emission based on available reducing power captures responses to atmospheric CO2. New Phytologist 2014, 203:125-139.
5.Sun Z., Niinemets U.*, Hüve K., Vislap V., (2013). Elevated [CO2] magnifies isoprene emissions under heat, improves thermal resistance in hybrid aspen. Journal of Experimental Botany 2013, 64: 5509-5523.
6.Sun Z., Niinemets U.*, Hüve K., Rasulov B., Noe S. M., Elevated atmospheric CO2 concentration leads to increased whole-plant isoprene emission in hybrid aspen (Populus tremula xP. tremuloides). New Phytologist 2013, 198:788-800.
7.Sun Z., Niinemets U.*, Hüve K., Noe S. M., Rasulov B., Copolovici L., Vislap V., Enhanced isoprene emission capacity and altered light responsiveness in aspen grown under elevated atmospheric CO2 concentration. Global Change Biology2012, 18: 3423-3440.
8.Sun Z., Copolovici L., Niinemets U.*, Can the Capacity for Isoprene Emission Acclimate to Environmental Modifications During Autumn Senescence in Temperate Deciduous Tree Species Populus Tremula? Journal of Plant Research 2012, 125: 263-274.
9.Sun Z., Niinements U.*, Copolovici L., Foliar isoprene emission during autumn senescence in aspen (populus tremula). Goldschmidt Conference Geochimica et Cosmochimica Acta 2009, 73:A1295.
10.Sun Z., Niinemets U.*, Hüve K., Noe SM., Rasulov B., Will higher CO2 concentration influence our atmosphere quality by changing isoprene emission rate from plants in the future? Society for Experimental Biology (SEB) Annual Main Meeting 2011, Abstract book, 204.
11.Sun Z., Niinemets U.*, Vislap V., Hüve K., Heat Stress Responsiveness of Hybrid aspen (Populus tremula x P. tremuloides) Grown under Elevated CO2. Plant Abiotic Stress Tolerence II 2012, Progrem and Abstract, N23.
12.Sun Z., Niinemets U.*, Noe SM., Rasulov B., The Influence of elevated CO2 on isoprene emission on leaf and canopy scale from aspen (populus tremula). 2nd TERRABITES Symposium TERRABITES Symposium 2012, Abstract Book, 29.

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