马倩倩

电  话: 020-37264153
岗  位: 副研究员
邮政编码: 510650
学  历: 博士
邮箱地址: maqianqian@scbg.ac.cn
通讯地址: 广州市天河区兴科路723号
简历:

工作经历:

2021/1 - 至今,中国科学院华南植物园,副研究员

2016/12 - 2017/12,瑞士苏黎世联邦理工学院,访问学者

2014/9 – 2021/1,中国科学院华南植物园,助理研究员

教育经历:

2010/8 - 2014/5,美国佐治亚大学,生物与农业工程,博士

2010/8 - 2013/5,美国佐治亚大学,统计学,硕士

2008/8 - 2010/7,美国佐治亚大学,环境工程,硕士

2004/9 - 2008/6,中国海洋大学,生态学,学士

个人主页:https://www.researchgate.net/profile/Qianqian_Ma3

研究领域:

1)植物物候的环境响应及机制

2)生态网络分析及其在生态系统元素循环研究中的应用

主要研究成果包括:1)基于大空间尺度下物候以及气象因子长期观测数据,运用多种数据分析以及物候模型模拟手段来探究不同时空尺度下气候变化对于森林物候的影响及机制,发现:针叶林木质部春季生长的启动主要受光周期和温度驱动;春季开花和发芽提前速率不同导致两个物候期的时间间隔不断增加;不同纬度和海拔的植物春季物候期趋同;植物霜冻危害的发生概率和程度因物种而异,因地而异:温度敏感树种和沿海地区广布种的霜冻危害概率和程度均增加。2)将传统生态网络分析应用范围拓展至动态系统,提出两个系统评价指标,基于此从系统角度探究氮沉降对森林氮循环的影响。

主要成果发表在PNASGlobal Change BiologyJournal of EcologyAgricultural and Forest MeteorologySoil Biology and BiochemistryEcological Modelling等国际学术期刊上。

承担科研项目情况:

承担项目情况:主持国家自然科学基金2项、省自然科学基金1项。

国家自然科学基金-面上项目,南亚热带森林春季叶物候对增温和降水格局改变的响应及模拟研究,2020/01-2023/12,主持

国家自然科学基金-青年项目,利用生态网络分析(ENA)研究南亚热带森林氮循环对不同形态氮输入的响应,2017/01-2019/12,主持

广东省自然科学基金博士启动项目,利用生态网络分析(ENA)研究鼎湖山森林生态系统氮循环,2016/06-2019/06,主持

中国科学院华南植物园科研启动项目,2015/4-2017/3主持

社会任职:

多个国际SCI期刊如Global Change Biology, Elife, Agricultural and Forest Meteorology, Ecological Modelling等期刊的审稿人

2013-至今 美国统计荣誉学会会员

广州市科技项目评审专家

获奖及荣誉:

2019年华南植物园职工考核评为优秀等次。

2019年入选中国科学院核心植物园骨干人才。

2016年获中国科学院公派出国留学计划访问项目资助

2013年获国际生态模型会议(International Society for Ecological Modelling)青年研究学者奖(共评选3名,会议每两年举行一次)

20112013年美国佐治亚大学“OVPR foreign travel award”和“domestic travel award

2010-2014年美国佐治亚大学全额助教奖学金

2008-2010年美国佐治亚大学全额助研奖学金

2005-2007年中国海洋大学一等奖学金

代表论著:

SCI论文

1.Jian-Guo Huang*, Filipe Campelo, Qianqian Ma, et al., 2020, Reply to Elmendorf and Ettinger: Photoperiod plays a dominant and irreplaceable role in triggering secondary growth resumption. Proceedings of the National Academy of Sciences of the United States of America, https://doi.org/10.1073/pnas.2019931117.

2.Xiaobo Li, Hongbo He, Xudong Zhang, Caner Kazanci, Zhian Li, Magdalena Necpalova, Qianqian Ma*, 2021, Calculation of fungal and bacterial inorganic nitrogen immobilization rates in soil. Soil Biology and Biochemistry. (* Corresponding author)

3.Qianqian Ma, Jian-Guo Huang*, Heikki H?nninen, Xiaobo Li, Frank Berninger, 2021. Climate warming prolongs the time interval between leaf-out and flowering in temperate trees: effects of chilling, forcing and photoperiod. Journal of Ecology, https://doi.org/10.1111/1365-2745.135584.    

4.Jian-Guo Huang#*, Qianqian Ma#, Sergio Rossi, et al., 2020. Photoperiod and temperature as dominant environmental drivers triggering secondary growth resumption in Northern Hemisphere conifers. Proceedings of the National Academy of Sciences of the United States of America, 117(34), 20645-20652. (# Joint first authors)

5.Xiali Guo#, Jian-Guo Huang#*, Jingye Li#, Hanxue Liang, Biyun Yu, Qianqian Ma, Shaowei Liang, Xiankai Lu, Shenglei Fu, Qing Ye, Ping Zhao, Xian Cai, 2020, Nitrogen addition to the canopy of Castanopsis chinensis (Sprengel) Hance promoted xylem formation in a subtropical forest in China, Annals of Forest Science, 77(2): 56.

6.Xiaobo Li, Zhian Li, Xudong Zhang, Longlong Xia, Weixin Zhang, Qianqian Ma*, Hongbo He*, 2020, Disentangling immobilization of nitrate by fungi and bacteria in soil to plant residue amendment. Geoderma, 374: 114450. (* Corresponding author)

7.Longlong Xia#, Xiaobo Li#*, Qianqian Ma, Shu Kee Lam, Benjamin Wolf, Ralf Kiese, Klaus Butterbach-Bahl, Deli Chen, Zhian Li, Xiaoyuan Yan, 2020. Simultaneous quantification of N2, NH3 and N2O emissions from a flooded paddy field under different N fertilization regimes. Global Change Biology, 26(4), 2292-2303.

8.Biyun Yu, Jian-Guo Huang*, Qianqian Ma, Xiali Guo, Hanxue Liang, Shaokang Zhang, Shenglei Fu, Shiqiang Wan, Junhua Yan, Wei Zhang, 2019. Comparison of the effects of canopy and understory nitrogen addition on xylem growth of two dominant species in a warm temperate forest, China. Dendrochronologia, 56, 125604.

9.Hanxue Liang, Jian-Guo Huang*, Qianqian Ma, Jingye Li, Zhou Wang, Xiali Guo, Huoxing Zhu, Shaowei Jiang, Peng Zhou, Biyun Yu, Dawei Luo, 2019. Contributions of competition and climate on radial growth of Pinus massoniana in subtropics of China. Agricultural and Forest Meteorology, 274, 7-17.

10.Xiaobo Li, Hongbo He, Xudong Zhang, Xiaoyuan Yan, Johan Six, Zucong Cai, Matti Barthel, Jinbo Zhang, Magdalena Necpalova, Qianqian Ma*, Zhian Li*, 2019. Distinct responses of soil fungal and bacterial nitrate immobilization to land conversion from forest to agriculture. Soil Biology and Biochemistry, 134, 81-89. (* Corresponding author)

11.Lei Chen#, Jian-Guo Huang#, Qianqian Ma#, Heikki H?nninen#, Francine Tremblay, Yves Bergeron, 2019. Long-term changes in the impacts of global warming on leaf phenology of four temperate tree species. Global Change Biology, 25(3), 997-1004. (# Joint first authors)

12.Qianqian Ma, Jian-Guo Huang, Heikki H?nninen, Frank Berninger, 2019. Divergent trends in the risk of spring frost damage to trees in Europe with recent warming. Global Change Biology, 25(1), 351-360.

13.Qianqian Ma, Jian-Guo Huang, Heikki H?nninen, Frank Berninger, 2018. Reduced geographical variability in spring phenology of temperate trees with recent warming.Agricultural and Forest Meteorology, 256, 526-533.

14.Lei Chen, Jian-Guo Huang, Qianqian Ma, Heikki H?nninen, Sergio Rossi, Shilong Piao, Yves Bergeron, 2018. Spring phenology at different altitudes is becoming more uniform under global warming in Europe. GlobalChange Biology, 24(9), 3969-3975.

15.Shaokang Zhang, Jian-Guo Huang, Rossi Rossi, Qianqian Ma, Biyun Yu, Lihong Zhai, Dawei Luo, Xiali Guo, Shenglei Fu, Wei Zhang, 2017. Intra-annual dynamics of xylem growth in Pinus massoniana submitted to an experimental nitrogen addition in Central China. Tree Physiology, 37(11), 1546-1553.

16.Dawei Luo, Jian-Guo Huang, Xinyu Jiang, Qianqian Ma, Hanxue Liang, Xiali Guo, Shaokang Zhang, 2017. Effect of climate and competition on radial growth of Pinus massoniana and Schima superba in China’s subtropical monsoon mixed forest. Dendrochronologia, 46, 24-34.

17.Qianqian Ma, Caner Kazanci, 2014. How much of the storage in the ecosystem is due to cycling? Journal of Theoretical Biology 357, 134-142.

18.Qianqian Ma, Caner Kazanci, 2013. Analysis of indirect effects within ecosystem models using pathway-based methodology. Ecological Modelling 252, 238-245.

ISEM (International society of ecological modelling) 2nd best paper

19.Caner Kazanci, Qianqian Ma, 2012. Extending ecological network analysis measures to dynamic ecosystem models. Ecological Modelling 242, 180-188.

20.Oksana Y. Buzhdygan, Bernard C. Patten, Caner Kazanci, Qianqian Ma, Svitlana S. Rudenko, 2012. Dynamical and system-wide properties of linear flow-quantified food webs, Ecological Modelling 245, 176-184.

专著章节

1.Caner Kazanci, Qianqian Ma, 2015. System-wide measures in ecological network analysis, Advanced Modelling Techniques Studying Global Changes in Environmental Sciences (edited by Young-Seuk Park, Sovan Lek and Christophe Baehr)

2.Qianqian Ma, Caner Kazanci, 2012. An individual-based approach for studying system-wide properties of ecological networks. Models of the Ecological Hierarchy from Molecules to the Ecosphere (edited by Ferenc Jord n and Sven Erik J?rgensen)

会议论文

Ernest W. Tollner, Caner Kazanci, Qianqian Ma, 2013. Network Particle Tracking (NPT) and post path analysis for understanding student learning and retention. Proc. ASEE Annual Conference. pp 6218, 2013.

学术会议报告

1.Qianqian Ma, The impact of climate warming on the phenology of temperate plants. 2019 Annual Conference of Key Laboratory of Vegetation Restoration and Management of Degraded Ecosystems, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou, China, Dec 4, 2019.

2.Qianqian Ma and Caner Kazanci, Comparing indirect and direct effects within ecological networks: a stochastic approach. The 19th biennial ISEM (The International Society of Ecological Modelling) Conference – Ecological Modelling for Ecosystem Sustainability in the context of Global Change, Toulouse, France, Oct 28 – 31, 2013.

3.Qianqian Ma and Caner Kazanci, A revised formula for the calculation of indirect effects in ecological networks. Systems Ecology: A Network Perspective & Retrospective (Symposium in Honor of Bernard C. Patten). Odum School of Ecology, UGA, Athens, GA, April 12 – 14, 2013.

4.Ernest W. Tollner, Caner Kazanci, and Qianqian Ma, Network Particle Tracking (NPT) and post path analysis for understanding student learning and retention. Systems Ecology: A Network Perspective & Retrospective (Symposium in Honor of Bernard C. Patten). Odum School of Ecology, UGA, Athens, GA, April 12 – 14, 2013.

5.Qianqian Ma and Caner Kazanci, Analysis of indirect effects within ecosystem models using pathway-based methodology. IBE 2013 Annual Conference. Raleigh, NC, March 7-9, 2013.

6.Qianqian Ma and Caner Kazanci, Dynamic storage analysis and residence time distribution for ecological networks. 7th European Conference on Ecological Modeling. Riva Del Garda, Italy, May 30- June 2, 2011.

7.Qianqian Ma and Caner Kazanci, An agent-based methodology to study residence time for compartmental systems. IBE 2011 Annual Conference. Atlanta, GA, March 3-5, 2011.

8.Ernest W. Tollner, Qianqian Ma, and Caner Kazanci, Developing a thermodynamic analogue for ecological systems analysis. IBE 2011 Annual Conference. Atlanta, GA, March 3-5, 2011.