Skip to main contentSkip to main navigationSkip to footer content
 

Faculty Profile
John Drake

Associate Professor

Orange horizontal rule

308 Bray Hall

315-470-6574
jedrake@abe-men.com

Education

Ph.D

 

 

 

 

 

B.S.

 

 

 

University of Illinois (Urbana-Champaign, IL, USA)

Ecology, Evolution, and Conservation Biology

With Prof. Evan DeLucia

论文:暖温带森林碳循环的环境与发育调控

 

Hope College (Holland, MI, USA)

Biology

研究方向:(1)凤梨科植物的分子系统发育, (2)一种间隙先锋新热带树种的人口统计学分析(Urera elata)

2005-2010

 

 

 

 

 

  2001-2005

Research Interests

­­­­­­­­­­­我是一名植物生理学家和生态系统生态学家. 我的目标是了解支撑整个植物功能的生理机制, 预测这些功能如何扩大以推动生态系统进程, 并了解改变这种向上扩展的涌现特性或反馈. 我目前的大部分工作都与树木的生理调节有关,以适应温度和水分的极端变化, 以及这些变化如何影响生态系统C的储存. 我正在扩大我的研究范围,包括如何管理森林以抵抗和适应气候变化. 具体的兴趣和专长领域包括:

  • 适应光合作用和呼吸作用的生理适应,尤指对温度的适应
  • The allocation and use of C by trees
  • Stable isotopes, particularly 13C and 18O
  • 模拟光合作用对环境的响应,特别是在干旱的背景下
  • Forest C stocks and fluxes
  • 大气CO2浓度升高下的森林C储存量
  • 土壤中的微量气体排放,包括CO2、N2O和CH4
  • 根-土相互作用是土壤养分有效性的驱动因素

Personal website

http://drakelab.weebly.com/

Previous Appointments

 

 

 

Research Fellow

 

 

 

Postdoc

 

 

 

Graduate student and

lab manager

 

Hawkesbury Institute for the Environment

西悉尼大学(Richmond, NSW, AU)

With Profs. Mark Tjoelker and Peter Reich

Tree Physiology and Ecosystem Function

 

Boston University (Boston, MA, USA)

With Prof. Adrien Finzi

根-土壤相互作用与森林生物地球化学

 

University of Illinois (Urbana-Champaign, IL, USA)

With Prof. Evan DeLucia

Manager, Stable Isotope Facility

University Distinguished Fellow

 

 

 

2012-2017

 

 

 

 

2010-2012

 

 

 

2005-2010

Current Graduate Advisees

Jacob OlichneyJacob Olichney
jaolichn@syr.edu

  • Degree Sought: PHD
  • Graduate Advisor(s): Drake
  • Area of Study: Forest Resources Management

Personal Statement
Howdy, my name is Jacob Olichney. 本科时,我的专业是生物学,主要研究进化生态学和生物信息学. 我在路易斯安那州立大学攻读硕士学位,专业是树木生态生理学, 我的论文集中在松树-硬木混交林的树木生长发育上. 目前研究的课题与美洲栗树的生态生理有关.

Graduate Research Topic
Tree ecophysiology

Taylor WegnerTaylor Wegner
tmwegner@syr.edu

  • Degree Sought: MS
  • Graduate Advisor(s): Drake
  • Area of Study: Forest Resources Management

Grants

2019-2021       纽约州的森林将如何应对21世纪的环境变化? 建立全州树木健康网络. Stella J, JE Drake, M Dovciak. $30,000. 美国农业部林业局麦金太尔-斯坦尼斯研究项目.

2019-2022       通往净零碳未来的道路:可持续发展和气候变化的景观设计.  Beier CM, JE Drake, A .阿克曼,T .布朗,R .杰曼,D .约翰斯顿,M .金,R .马尔姆海默,T .沃尔克. SUNY-网赌平台 Discovery Challenge.

2019-2022       New York State Forest Carbon Assessment.  Beier CM, E Bevilacqua, JE Drake, RH Germain, RW Malmsheimer, B Salehi. $500,000. 纽约州环境保护部-环境保护基金.  

2018-2022       转基因和传统生产的美洲板栗对环境的影响. William Powell, Thomas Horton, Dylan Parry, JE Drake,科林·贝尔,杰森·霍利迪,莎拉·菲茨西蒙斯. $500,000. 美国农业部-国家食品和农业研究所-生物技术风险评估研究资助计划.

2018-2020       确定气候变暖作为糖枫衰落的潜在驱动因素的作用. JE Drake and Colin Beier. $59,699. 美国农业部林业局麦金太尔-斯坦尼斯研究项目.

2014-2016       在一个快速变暖的世界里,森林树木的生理灵活性是否受到国内气候的限制? Mark Tjoelker, Oula Ghannoum, JE Drake, David Tissue, and Peter Reich. $315,000 AUD. 澳大利亚研究委员会发现项目DP140103415.

Publications

(42) *Kumarathunge DP, JE Drake, MG Tjoelker, R López, S Pfautsch, A vamatrhammar, BE Medlyn (accepted 2019). 树木幼苗光合作用和生长的最佳温度取决于水分的输入. Global Change Biology

(41) *Dhami N, JE Drake, MG Tjoelker, DT Tissue, CI Cazzonelli (accepted 2019). 极端热浪增强了田间生长的桉树叶片叶黄素去环氧化状态. Physiology and Molecular Biology of Plants

(40) Furze ME, JE Drake, J Wiesenbauer, A Richter, E Pendall (2019). 暴露于气候变暖的整棵树中糖的碳同位素追踪. by Plant, Cell & Environment http://doi.org/10.1111/pce.13625

(39) *Kumarathunge DP, BE Medlyn, JE Drake, A Rogers, MG Tjoelker (2019). 在当前大气CO2浓度下,没有证据表明磷酸三糖限制了光饱和叶片的光合作用. Plant, Cell & Environment http://doi.org/10.1111/pce.13639

(38)张建军,张建军,李建军,等。 JE Drake, PB Reich, DT Tissue, OK Atkin, PD Rymer, S Dennison, SC Van Sluyter (2019). Range size and growth temperature influence Eucalyptus 物种对实验热浪的反应. Global Change Biology 25: 1665-1684.

(37)布莱克曼C, D .克里克,C .迈尔,M .阿斯平沃尔, JE Drake, S pfatsch, A O 'Grady, S Delzon, B Medlyn, D Tissue, B Choat (2019). 干旱策略和水力特性有助于对植物干旱到水力破坏的机理理解. Tree Physiology 39: 910-924.

(36) De Kauwe MG, BE Medlyn, AJ Pitman, JE Drake, A Ukkola, A Griebel, E Pendall, S Prober, M Roderick (2019). 研究极端高温期间光合作用和蒸腾作用不耦合的证据. Biogeosciences 16: 903-916.

(35) Drake JE, M Furze, MG Tjoelker, CVM Barton, E Pendall(2019)气候变暖与树木碳利用效率的全树13CO2示踪研究. New Phytologist 222: 1313-1324.

(34) Drake JE, MG Tjoelker, MJ Aspinwall, PB Reich, S Pfautsch, CVM Barton(2019)初级生产总值对年轻人的划分 Eucalyptus tereticornis 树木在实验变暖和改变水的可用性. New Phytologist 222: 1298-1312.

(33) *Kumarathunge D, BE Medlyn, JE Drake, MG Tjoelker, MJ Aspinwall, M Battaglia, FJ Cano1, K Carter, MA Cavaleri, L Cernusak, JQ Chambers, KY Crous, MG. De Kauwe, DN Dillaway, E Dreyer, DS Ellsworth, O Ghannoum, Q Han, K Hikosaka, AM Jensen, JWG Kelly, YS Lin, AC Mau, LM Mercado, Y Onoda, A Rogers, M Slot, NG Smith, L Tarvainen, HF Togashi, ES Tribuzy, J Uddling, A Vårhammar (2019). 全球尺度下木本植物光合作用温度依赖性的驯化和适应成分. New Phytologist 222: 768-784.

(32) Way DA, MJ Aspinwall, JE DrakeC company, O Ghannoum, D Tissue, MG Tjoelker (2019). 大田生长树木光下呼吸对变暖的响应:Kok和Laisk方法的热敏性比较. New Phytologist 222: 132-143.

(31)傅立荣,刘建军,刘建军,刘建军,刘建军,刘建军,刘建军,刘建军,刘建军,刘建军,刘建军,张建军,张建军,等。 Drake JE, Hasegawa S, Hortal S, Jackson BG, Jiang M, Lavallee JM, Medlyn BE, Rhymes J, Singh BK, Smith P, Anderson IC, Bardgett RD, Baggs EM and Johnson D (2019) Using plant, 微生物和土壤动物特征,提高生物地球化学模型的预测能力. Methods in Ecology and Evolution 10: 146-157.

(30) Crous KY, JE Drake, MJ Aspinwall, RE Sharwood, MG Tjoelker, O Ghannoum(2018)两种广泛分布种源的光合能力和叶片氮含量沿可控气候梯度下降 Eucalyptus species. Global Change Biology 24: 4626-4644

(29) j . j . j .布莱克曼,d . d .迪奥斯,FA .布希,PD .雷默,ME .洛伊克, JE Drake, S Pfautsch, RA Smith, MG Tjoelker, 光合作用和碳分配都是基因型生产力对CO2升高的重要预测因子 Eucalyptus camaldulensis. Tree Physiology 38: 1286-1301.

(28) Drake JE, CA Macdonald, MG Tjoelker, PB Reich, BK Singh (accepted by Biogeochemistry, Jan 2018)暴露于大气CO2富集的成熟桉树林地3年土壤呼吸.

(27) Zhang C-J, M Delgado-Baquerizo, JE Drake, PB Reich, MG Tjoelker, DT Tissue, He J-Z, BK Singh (被《博彩平台#########关于》2018年1月录用). 一个分布广泛的树种的种内变异调节了土壤微生物组对不同温度制度的反应.

(26) Drake JE, MG Tjoelker, A Vårhammar, BE Medlyn, PB Reich, A Leigh, S Pfautsch, CJ Blackman, R López, MJ Aspinwall, KY Crous, RA Duursma, D Kumarathunge, MG De Kauwe, M Jiang, AB Nicotra, DT Tissue, B Choat, OK Atkin, CVM Barton (accepted by Global Change Biology, Nov 2017). 树木通过增加蒸腾冷却和耐热性来忍受极端热浪

(25) Pfautsch S, MJ Aspinwall, JE Drake, LC Doria, RJA Langelaan, DT Tissue, MG Tjoelker, F Lens(2018)沿垂直轴的全树液压结构特征与权衡 Eucalyptus grandis. Annals of Botany http://doi.org/10.1093/aob/mcx137

(24) Tjoelker MG, BE Medlyn, JE Drake (2017). 一种广泛分布的桉树的不同种源的气候适应性:在气候变暖下测试“本地是最好的”范式. Australasian Plant Conservation. 26:1

(23) Drake JE, SA Power, RA Duursma, BE Medlyn, MJ Aspinwall, B Choat, D Creek, D Eamus, C Maier, S Pfautsch, RA Smith, MG Tjoelker, 干旱条件下四种树种光合作用的气孔和非气孔限制:模型公式的比较. Agricultural and Forest Meteorology 247:454-466.

(22) Drake JE, Vårhammar A, Kumarathunge D, Medlyn BE, Pfautsch S, Reich PB, MG Tjoelker(2017)分布广泛的树种地理多样性种群的共同热生态位 Eucalyptus tereticornis没有证据表明它们适应当地的气候. Global Change Biology 23:5069-5082.

(21)埃尔斯沃斯,安德森,克劳斯,库克, JE Drake, AN Gherlenda, TE Gimeno, CA Macdonald, BE Medlyn, JR Powell, MG Tjoelker, 在低磷土壤中,二氧化碳浓度升高不会增加桉树林的生产力. Nature Climate Change. doi:10.1038/nclimate3235

(20)张建军,张建军,张建军,等。 JE Drake, MG Tjoelker, J Piñeiro, SA Power(2017)大气CO-2升高条件下根际驱动的成熟土壤磷有效性增加 Eucalyptus woodland. Plant and Soil 416:283-295. doi:10.1007/s11104-017-3212-2

(19) Aspinwall MJ, JE Drake, A Vårhammar, CVM Barton, C Campany, O Ghannoum, DT Tissue, PB Reich, MG Tjoelker(2016)叶片光合作用和呼吸对当前和较暖气候下普遍环境温度的趋同适应 Eucalyptus tereticornis. New Phytologist 212:354-367

(18) Medlyn B, M De Kauwe, S Zaehle, A Walker, R Duursma, K Luus, M Mishurov, B Park, B Smith, YP Wang, X Yang, K Crous, JE Drake, C Macdonald, R Norby, S Power, M Tjoelker, DS Ellsworth(2016)使用模型指导现场试验:对营养和水分有限的原生桉树林地二氧化碳响应的先验预测. Global Change Biology 22:2834-2851

(17) Drake JE, MG Tjoelker, MJ Aspinwall, PB Reich, CVM Barton, BE Medlyn, R Duursma(2016)对气候变暖的生理适应是否稳定了冠层呼吸与光合作用的比值? New Phytologist 211:850-863

(16) Drake JE, CA Macdonald, MG Tjoelker, KY Crous, BK Singh, PB Reich, IC Anderson, DS Ellsworth(2016)成熟桉树林地对大气CO2浓度逐步富集的短期碳循环响应? Global Change Biology 22:380-390

(15) Lin YS, BE Medlyn, RA Duursma, CI Prentice, OK Atkin, CVM Barton, J Bennie, A Bosc, MSJ Broadmeadow, LA Cernusak, PD Angelis, JE Drake, D Eamus, DS Ellsworth, M Freeman, O Ghannoum, TE Gimeno, Q Han, K Hikosaka, LB Hutley, JW Kelly, K Kikuzawa, P Kolari, K Koyama, J-M Limousin, M-L Linderson, M Löw, C Macinins-Ng, NK Martin-StPaul, P Meir, TN Mikkelsen, P Mitchell, JB Nippert, Y Onoda, MO de Beeck, V Resco de Dios, A Rey, A Rogers, L Rowland, SA Setterfield, W Sun, L Tarvainen, S Tausz-Posch, DT Tissue, J Uddling, G Wallin, JM Warren, L Wingate, J Zaragoza-Castells(2015)全球最优气孔行为:全球气孔导度数据库的合成. Nature Climate Change 5:459-646.

(14) Drake JE, MJ Aspinwall, KY crows, PB Reich, RA Smith, DT Tissue, MG Tjoelker (2015). 应对气候变暖的能力下降从温带到热带两个纬度广泛分布 Eucalyptus species. Global Change Biology 21:459-472.

(13)贾森M-A, AM Ellison, RD Bowden, PM Crill, EA Davidson, JE Drake, SD Frey, JL Hadley, M Lavine, JM Melillo, JW Munger, KJ Nadelhoffer, E Nicoll, SV Ollinger, KE Savage, PA Steudler, J Tang, RK Varner, SC Wofsy, DR Foster, AC Finzi(2013)美国东北部温带森林土壤呼吸:22年的综合. Ecosphere 4: article 140.

(12) Pfautsch S, MJ Aspinwall, JE Drake, B Choat, D Tissue, T Burykin, MG Tjoelker(2013),将谜题放在一起:在高空间分辨率下研究高大树木的水力功能和水运, Acta Horticulturae 991:245-252.

(11) Drake JE, M-A Giasson, K Spiller, AC Finzi(2013)三种温带森林土壤微生物活动温度敏感性的季节可塑性. Ecosphere 4: article 77.

(10) Drake JE, BA Darby, M-A Giasson, MA Kramer, RP Phillips, AC Finzi(2013)根系分泌物的化学计量学——来自温带森林模型和田间试验的见解. Biogeosciences 10:821-838.

(9) Brzostek ER, A Greco, JE Drake, AC Finzi(2012)根际碳输入对温带森林土壤胞外酶活性和氮有效性的影响. Biogeochemistry 115:65-76.

(8) Drake JE, AC Oishi, M-A Giasson, R Oren, AC Finzi(2012)挖沟减少火炬松土壤异养活性(Pinus taeda)森林暴露于升高的大气[CO2]和氮施肥. Agricultural and Forest Meteorology 165:43-52.

(7) Templer P, AF Schiller, NW Fuller, AM Socci, JL Campbell, JE Drake, 孔涛(2012)冬季积雪减少对北方阔叶林生态系统凋落物节肢动物丰度和多样性的影响. Biology and Fertility of Soils 48:413-424.

(6) Drake JE, A Gallet-Budynek, KS Hofmockel, ES Bernhardt, SA Billings, RB Jackson, KS Johnsen, J Lichter, HR McCarthy, ML McCormack, DJP Moore, R Oren, S Palmroth, RP Phillips, JS Pippen, SG Pritchard, KK Treseder, WH Schlesinger, EH DeLucia, AC Finzi(2011)地下碳通量的增加刺激了氮吸收,维持了CO2升高下森林生产力的长期提高. Ecology Letters 14: 349-357.

(5) Drake JE, SC Davis, LM Raetz, EH DeLucia(2011)森林生产年龄相关变化的机制:生理和演替变化的影响. Global Change Biology 17: 1522-1535.

(4) Drake JE, LM Raetz, SC Davis, EH DeLucia(2010)水力限制而非氮素有效性下降导致火炬松年龄相关的光合作用下降(Pinus taeda L.). Plant, Cell and Environment 33: 1756-1766.

(3) Peterson T, B Rossmann, JE Drake, J Westervelt(2009)军事用地濒危物种管理中红火蚁行为的空间显式模型. 美国陆军工程兵团研究实验室, CERL Report No. TR-09-19.

(2) Drake JE, PC Stoy, RB Jackson EH DeLucia(2008)火炬松细根呼吸作用(Pinus taeda L.暴露于高CO2和氮施肥的森林. Plant, Cell and Environment 31:1663-1672.

(1) DeLucia, EH, JE Drake, RB Thomas, M Gonzalez-Meler(2007)森林碳利用效率:呼吸是总初级生产的恒定部分吗? Global Change Biology 13:1157-1167.