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中山大学深圳校区生态学院导师教师师资介绍简介-马子龙
本站小编 Free考研考试/2021-05-15
马子龙
生态学院 副教授
电子邮件
mazlong@mail.sysu.edu.cn
马子龙 Ma, Zilong
【简历 Profile】
性别:男(male)
职称:“****”副教授(Associate Professor)
导师类型:博士生导师(Ph.D. Advisor)
学历:博士(Ph.D.)
电子邮箱:mazlong@mail.sysu.edu.cn
网站:https://www.researchgate.net/profile/Zilong-Ma
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【研究方向 Research interests】
探究气候变化、生物多样性流失以及用地类型改变对陆地生态系统功能的影响及相关机理,其中包括生态系统生产力(地上和地下部分)、碳储量(植物和土壤)、营养循环、温室气体排放、群落动态、生态系统地下过程(例如细根的周转和死亡、功能性状、空间分布、菌根侵染)等。研究手段包括控制实验、观测数据整合以及荟萃分析;研究对象涵盖了森林、草地和农田生态系统。
I am interested in a better understanding of the consequences of climate change, biodiversity loss, and land use/management change on ecosystem function including ecosystem productivity (both above- and belowground), carbon sequestration potential (both biomass and soil), nutrient dynamic,greenhouse gas emissions, community dynamics and belowground process (e.g., fine root turnover and mortality, functional traits, distribution, and mycorrhizal infection). My research involves a variety of tools and approaches (control experiments, observations, meta-analysis), a diverse set of ecosystems (forest, grassland, and agriculture).
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【工作经历 Work experience】
2020/02-至今: 中山大学生态学院,“****”副教授,博士生导师 ;
2018/01-2021/01: 加拿大阿尔伯塔大学,可再生资源系,博士后;
2020/02-Present: Associate Professor, School of Ecology, Sun Yat-sen University, China;
2018/01-2021/01: Postdoc, Renewable Resource Department, University of Alberta, Canada;
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【教育经历 Education】
2014/01-2017/12: 加拿大湖首大学,自然资源与管理学院,森林生态学博士学位;
2010/09-2013/07: 南京林业大学,森林资源与环境学院,生态学硕士学位;
2006/09-2010/07: 南京林业大学,森林资源与环境学院,林学学士学位;
2014/01-2017/12: Ph.D. in Forest Science, Lakehead University,Canada;
2010/09-2013/07: M.Sc. in Ecology, Nanjing Forestry University,China;
2006/09-2010/07: B.Sc. in Forest Science, Nanjing Forestry University,China;
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【主要奖励 Awards】
·?????? Travel Award, Ecological Society of America, $800 (2019)
·?????? Competitive Research Grant, University of Alberta, $60,000 (2018)
·?????? Lakehead Leader Award for Academic Excellence, Lakehead University (2017)
·?????? Ontario Trillium Scholarship, Ontario Government $160,000 (2014-2017)
·?????? 中国国家优秀海外自费留学生提名(进入首轮公示)
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【主要学术兼职Scholarly service】
美国生态学会(ESA),加拿大林学会(OPFA),中国海外生态学会(SINO-ECO)会员。
担任《Global Change Biology》、《Soil Biology and Biochemistry》、《Global Ecology and Biogeography》、《Journal of Ecology》、《Ecosystem》、《Plant & Soil》、《Peer J》等国际期刊的审稿人。担任Reviewer board of 《Microorganisms》。
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【主持或参与项目 Research projects】
1.“Does defoliation affect carbon flow in rangelands? A test of two ecosites at the Mattheis Ranch”,阿尔伯塔大学资助,2018-2020,6万加币,结题,共同主持。
2.“BMPs to enhance carbon sequestration and reduce greenhouse gas emission from agroforestry systems”,加拿大农业与农业食品部资助,2016-2021,69万加币,结题,作为博士后参与。
3.“Grassland soil organic carbon, greenhouse gas emissions, water infiltration and biodiversity under grazing management practices in Canadian grasslands”,加拿大农业与农业食品部资助,2017-2022年,193万加币,在研,作为博士后参与。
4.“Diversity and ecosystem functions of boreal forest under global change”,加拿大自然科学基金资助,2017-2019,17万加币,结题,作为博士研究生参与。
5. “FORWARD III: Modelling to contribute to cumulative effects management in the Canadian Boreal Forest”,加拿大自然科学基金资助,2011-2016,275万加币,结题,作为博士研究生参与。
6. “Biomass harvests in boreal forests: minimizing environmental impacts and maximizing benefits”,加拿大自然科学基金资助,2012-2016,62万加币,结题,作为博士研究生参与。
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【论文专著 Publications】
代表性论文(*通讯作者):
Ma Z, Bork WE, Li J, Chen G, and Chang SX*. 2021. Photosynthetic carbon allocation to live roots increases the year following high intensity defoliation across two ecosites in a temperate mixed grassland. Agriculture Ecosystem and environment. (中科院 1 区,IF=4.241).
Ma Z*, Chang XS, Bork WE, Steinaker FD, Wilson DS, White RS, and Cahill JF. 2020. Climate change and defoliation interact to affect root length across northern temperate grasslands. Functional Ecology. doi:10.1111/1365-2435.13669. (中科院 1 区, IF: 5.037)
Ma Z, Chen HYH, Bork WE, Cameron C, and Chang SX*. 2020. Carbon accumulation in agroforestry systems is affected by tree species diversity and regional climate: A global meta-analysis. Global Ecology and Biogeography. doi.org/10.1111/1365-2745.13379 (中科院 1 区, IF: 6.446)
Ma Z, Chen HYH, Li Y, and Chang SX*. 2020. Interactive effects of global change factors on terrestrial net primary productivity are treatment length- and intensity-dependent. Journal of Ecology. doi.org/10.1111/1365-2745.13379 (中科院 1 区, IF: 5.762)
Ma Z, Chen HYH*, Kumar P, and Gao B, 2019. Species mixtures increase production partitioning to belowground in a natural boreal forest. Forest Ecology and Management. doi.org/10.1016/j.foreco.2018.10.014(中科院1 区, IF: 3.17)
Ma Z, and Chen HYH*. 2018. Positive species mixture effects on fine root turnover and mortality in natural boreal forests. Soil Biology & Biochemistry. doi.org/10.1016/j.soilbio.2018.03.015(中科院 1 区, IF:5.795)
Ma Z, and Chen HYH*. 2017. Effects of species diversity on fine root productivity increase with stand development and associated mechanisms in a boreal forest. Journal of Ecology. doi.org/10.1111/1365-2745.12667. (论文入选 Virtual Issue of National Tree Week. 中科院 1 区, IF: 5.762)
Ma Z, and Chen HYH*. 2016. Species diversity effects on fine root productivity in diverse ecosystems: a global meta-analysis. Global Ecology and Biogeography. doi.org/10.1111/geb.12488(封面论文, 中科院 1 区, IF: 6.446)
Chen Z, Li Y, Chang SX, Xu Q, Li Y, Ma Z, Qin H, and Cai Y. 2021. Linking enhanced soil nitrogen mineralization to increased fungal decomposition capacity with Moso bamboo invasion of broadleaf forests. Science of the Total Environment. doi.org/10.1016/j.scitotenv.2020.144779(中科院 1 区, IF: 6.551)
Qi L, Ma Z, Chang SX, Zhou P, Huang R, Wang Z, and Gao M. 2020. Biochar decreases methanogenic archaea abundance and methane emissions in a flooded paddy soil. Science of the Total Environment. doi.org/10.1016/j.scitotenv.2020.141958(中科院 1 区, IF: 6.551)
Pokharel P, Ma Z, Chang SX. 2020. Biochar increases soil microbial biomass with changes in extra- and intracellular enzyme activities: a global meta-analysis. Biochar. doi.org/10.1007/s42773-020-00039-1
Shrestha MB, Bork WE, Chang XS, Carlyle NC, Ma Z, Dobert FT, Kaliaskar D, and Boyce SM. 2020. Adaptive Multi-Paddock grazing lowers soil greenhouse gas emission potential by altering extracellular enzyme activity. Agronomy. dio.org/10.3390/agronomy**
Li Y., Li Y., Yang M., Chang SX, Qi J, Tang C, Wen Z, Hong Z, Yang T, Ma Z, Gao Q, Zhou J, Yang Y, and Yang, Y. 2020. Changes of microbial functional capacities in the rhizosphere contribute to aluminum tolerance by genotype-specific soybeans in acid soils. Biology and Fertility of Soils. 10.1007/s00374-020-01451-2(中科院 1 区, IF: 5.521)
Chen X, Chen HYH, Chen C, Ma Z, Searle EB, Yu Z, and Huang Z. 2019. Effects of plant diversity on soil carbon in diverse ecosystems: a global meta-analysis. Biological Reviews. doi.org/10.1111/brv.12554(中科院 1区, IF: 10.701)
Li Z, Cui J, Mi Z, Tian D, Wang J, Ma Z, Wang B, Chen HYH, and Niu S. 2018. Responses of soil enzymatic activities to transgenic Bacillus thuringiensis (Bt) crops – a global meta-analysis. Science of the Total Environment. doi.org/10.1016/j.scitotenv.2018.10.073 (中科院 1 区, IF: 6.551)
Chen S, Shahi C, Chen HYH, Kumar P, Ma Z, and McLaren B. 2018. Trade-offs and synergies between economic gains and plant diversity across a range of management alternatives in boreal forests. Ecological Economics. doi.org/10.1016/j.ecolecon.2018.05.014(中科院 2 区 top, IF: 4.482)
Gao B, Taylor AR, Searle EB, Kumar P, Ma Z, Hume A, and Chen HYH. 2018. Carbon storage declines in old boreal forests irrespective of succession pathway. Ecosystems. doi.org/10.1007/s10021-017-0210-4 (中科院
2 区, IF: 4.207)
Zha Y, Zhang YL, Ma Z, Tang J, and Sun K. 2018. Distribution, seasonal variations and ecological risk assessment of polycyclic aromatic hydrocarbons in foliar dust of Nanjing, China. Bulletin of Environmental Contamination and Toxicology. doi.org/10.1007/s00128-018-2287-7
Gao R, Shi X, Ma Z, Li Y, and Wen J. 2018. Physiological responses to drought in three provenances of Discorea nipponica Makino. Journal of Applied Botany and Food Quality. doi.org/10.5073/JABFQ.2018.091.
Huang W., McDowell WH., Zou X., Ruan H., Wang J., and Ma Z. 2015. Qualitative differences in headwater stream dissolved organic matter and riparian water-extractable soil organic matter under four different vegetation types along an altitudinal gradient in the Wuyi Mountains of China. Applied Geochemistry. doi.org/10.1016/j.apgeochem.2014.11.014
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