
王正文,男,博士,1969年10月生于山東省菏澤市?,F(xiàn)任中國科學院沈陽應(yīng)用生態(tài)研究所研究員,博士生導師,中科院沈陽應(yīng)用生態(tài)研究所額爾古納森林草原過渡帶生態(tài)系統(tǒng)研究站站長。于2001年7月在東北師范大學國家草地生態(tài)工程實驗室獲得生態(tài)學博士學位,之后進入中國科學院植物研究所從事博士后研究,2004年8月至2009年11月在中國科學院植物研究所工作, 任助理研究員,期間于2008年11月至2009年11月赴荷蘭烏特勒支大學進行植物可塑性及其進化方面的合作研究;2009年11月至今在中國科學院沈陽應(yīng)用生態(tài)研究所工作,任副研究員,期間于2010年3月至8月赴瑞士伯爾尼大學進行植物進化生態(tài)學方面的合作研究,于2014年11月晉升為研究員。主要研究領(lǐng)域為草地生態(tài)學、生物多樣性與生態(tài)系統(tǒng)功能、植物群落生態(tài)學、荒漠化防治、退化生態(tài)系統(tǒng)修復等。已在國內(nèi)外主流學術(shù)期刊發(fā)表學術(shù)論文(著)100余篇(部),主持國家自然科學基金面上項目5項、重點項目1項,國家973項目和國家重點研發(fā)計劃項目專題3項,國家博士后科學基金1項,中國科學院先導專項子課題2項、專題2項,國際合作交流項目2項,科技部基礎(chǔ)專項課題1項,遼寧省重大科技專項1項。目前在生態(tài)學基礎(chǔ)研究方面主要開展植物性狀可塑性及其進化、植物多樣性及其生態(tài)系統(tǒng)功能、草地生態(tài)系統(tǒng)結(jié)構(gòu)與功能對全球氣候變化的響應(yīng)等方面的研究;在應(yīng)用基礎(chǔ)研究和技術(shù)研發(fā)方面,主要開展退化和沙化草地生態(tài)恢復方面的理論研究和技術(shù)研發(fā)。
教育背景
1991~1995 東北師范大學生命科學學院生物學專業(yè),獲學士學位;
1995~1998 東北師范大學草地研究所生態(tài)學專業(yè),獲碩士學位;
1998~2001東北師范大學國家草地生態(tài)工程實驗室生態(tài)學專業(yè),獲博士學位。
工作經(jīng)歷
2001年8月~2004年7月 中國科學院植物研究所 博士后;
2004年8月~2009年12月 中國科學院植物研究所 助理研究員;
2008年11月~2009年11月 荷蘭烏特勒支大學 博士后;
2009年11月~2014年11月 中國科學院沈陽應(yīng)用生態(tài)研究所 副研究員
2010年3月~2010年8月 瑞士伯爾尼大學 訪問學者;
2014年11月至今 中國科學院沈陽應(yīng)用生態(tài)研究所 研究員
主持科研項目
1. 國家博士后科學基金項目“克隆植物的克隆生長特征與生境異質(zhì)性要素的關(guān)系”
(編號2002032118)執(zhí)行期:2002.01~2004.12,主持人 (2萬元)
2. 國家自然科學基金面上項目“克隆植物的克隆整合與生境異質(zhì)性要素及刈割干擾格局的關(guān)系”(編號30370268)執(zhí)行期:2004.01~2006.12,主持人 (19萬元)
3. 中國科學院西部行動計劃(二期)項目《錫林郭勒草地適應(yīng)性管理與可持續(xù)發(fā)展試驗示范研究》(編號KZCX2-XB2-01)(2006~2009)子課題“人工草地系統(tǒng)生產(chǎn)力提高與穩(wěn)定性維持機理” 執(zhí)行期:2006~2009,子課題負責人 (43萬元)
4. 國家重點基礎(chǔ)研究發(fā)展計劃(973計劃)《北方草地與農(nóng)牧交錯帶生態(tài)系統(tǒng)維持與適應(yīng)性管理的科學基礎(chǔ)》第五課題“草地生態(tài)系統(tǒng)適應(yīng)性管理” (編號2007CB106805)的子課題 “典型草原植物生殖物候?qū)夂蜃兓捻憫?yīng)”。執(zhí)行期:2007~2011,子課題負責人 (30萬元)
5. 國家自然科學基金面上項目“氣溫和降水變化對典型草原植物生殖物候的影響”(編號30870422),執(zhí)行期:2009.01.01~2011.12.31,主持人 (36萬元)
6. 中瑞科技合作計劃(Sino Swiss Science and Technology Cooperation, SSSTC)中的學者交流項目(exchange grant),項目名稱為“Costs of root foraging ability in Ranunculus reptans” (“松葉毛茛根系覓養(yǎng)代價研究”) (編號EG14-092009) ,執(zhí)行期:2010,主持人 (2.35萬CHF)
7. 中國科學院戰(zhàn)略性先導科技專項(A類)子課題“東北草地固碳現(xiàn)狀、速率、機制和潛力”(編號XDA05050401)之專題,執(zhí)行期2011~2015,子課題負責人 (100萬元)
8. 中國科學院戰(zhàn)略性先導科技專項(B類)子課題“植物調(diào)控土壤微生物組成的生態(tài)化學計量機制”(編號XDB15010404),執(zhí)行期2014~2018,子課題負責人 (335.84萬元)
9. 國家自然科學基金委重大國際(地區(qū))合作研究項目“草原生態(tài)系統(tǒng)對極端氣候事件的響應(yīng):中美聯(lián)網(wǎng)研究”(編號41320104002),執(zhí)行期2014.01-2018.12,主要參加人(項目總經(jīng)費315萬元)
10. 國家自然科學基金面上項目“溫帶草原地下植物繁殖體庫與地上植被關(guān)系及其對水分和氮素變化的響應(yīng)”(編號41371077)執(zhí)行年限:2014.01~2017.12,主持人 (75萬元)
11. 科技部科技基礎(chǔ)性工作專項“東北草地植物資源專項調(diào)查”之課題“呼倫貝爾草地植物資源專項調(diào)查”(2014FY210300),執(zhí)行期2014.05~2019.04,課題負責人 (337萬元)
12. 國家重點基礎(chǔ)研究發(fā)展計劃(973計劃)課題“人工草地生產(chǎn)力提升的水肥高效調(diào)控機理”(編號2015CB150802)之子課題“典型人工草地養(yǎng)分動態(tài)與生產(chǎn)力提升的養(yǎng)分調(diào)控機制”,執(zhí)行期2015.01~2019.08,子課題負責人 (117.69萬元)
13. 國家自然科學基金面上項目“基因型多樣性對植物群落生態(tài)功能的影響”(編號31570530)執(zhí)行期2016.01~2019.12,主持人 (74.88萬元)
14. 國家重點研發(fā)專項項目“北方草甸退化草地治理技術(shù)與示范”第二課題“北方草甸退化草地系統(tǒng)性恢復機理及技術(shù)基礎(chǔ)”之子課題“呼倫貝爾退化草地系統(tǒng)性恢復機理及技術(shù)基礎(chǔ)”(編號2016YFC0500602-2),執(zhí)行期2016.06~2020.12,子課題負責人 (60萬元)
15. 國家自然科學基金面上項目“積雪厚度和雪融時間的變化對溫帶草原植被特征的影響及其生態(tài)學機理” (編號31870422) ,執(zhí)行期 2019.01~2022.12,主持人 (59萬元)
16. 中國科學院戰(zhàn)略性先導科技專項(A類)即“美麗中國”生態(tài)文明科技工程專項之專題“北方保護區(qū)植被配置技術(shù)研發(fā)”(編號XDA23080402-2),執(zhí)行期2019.01-2023.12,專題負責人 (61.5萬元)
17. 遼寧省重點研發(fā)項目“遼西北風沙干旱區(qū)生態(tài)治理及產(chǎn)業(yè)發(fā)展試驗示范”(編號2019JH2/10300050),執(zhí)行期2019.01.01~2021.12.31, 主持人 (30萬元)
18. 遼寧省重大科技專項“遼西北生態(tài)系統(tǒng)恢復治理技術(shù)集成及生態(tài)產(chǎn)業(yè)發(fā)展示范”(編號2020JH1/10300006),執(zhí)行期2020.1.1~2022.12.31, 項目負責人 (1000萬元)
19. 中國科學院戰(zhàn)略性先導科技專項(A類)即“創(chuàng)建生態(tài)草牧業(yè)科技體系”之子課題“呼倫貝爾沙地植被恢復技術(shù)與近原生群落構(gòu)建”(編號XDA26020104),執(zhí)行期2020.11.1~2025.10.31,子課題負責人 (800萬元)
20. 國家自然科學基金重點項目“地表關(guān)鍵過程--草原植物不同器官凋落物分解對全球變化的響應(yīng)及其機制”(編號42230515),執(zhí)行期2023.1~2027.12,主持人(直接經(jīng)費273萬元)
21. 遼寧省林業(yè)和草原局委托項目“遼西北荒漠化和沙化動態(tài)監(jiān)測任務(wù)”,執(zhí)行期2022.1~2023.12,主持人(250.8萬元)
為下列國內(nèi)外期刊審理稿件:
國際SCI期刊(29種):
Journal of Ecology; Global Change Biology; Ecological Applications; Ecosystems; Journal of Geophysical Research; Plant and Soil; Scientific Reports; PLoS One; Plant Ecology & Diversity; Plant Biology; Journal of Integrative Plant Biology; Biological Invasions; Plant Species Biology; Journal of Plant Ecology; Water, Soil & Air Pollution; Ecological Indicators; Conservation Physiology; Ecology and Evolution; Atmospheric Environment; Journal of Geographical Sciences; Frontiers in Plant Science; Functional Plant Biology; Applied Soil Ecology; Peer J; Oecologia; Catena; Sustainability; International Journal of Applied Earth Observations and Geoinformation; Global Ecology and Conservation
國內(nèi)核心期刊(7種):
植物生態(tài)學報; 生態(tài)學報; 應(yīng)用生態(tài)學報; 生態(tài)學雜志; 生物多樣性; 草業(yè)學報; 草地學報
發(fā)表論文(*通訊作者)
Hu JX, Ma W, Wang ZW*. 2023. Effects of nitrogen addition and drought on the relationship between nitrogen- and water-use efficiency in a temperate grassland. Ecological Processes, 12:36. https://doi.org/10.1186/s13717-023-00448-7
Luo WT, Shi Y, Wilkins K, Song L, Te NW, Chen JQ, Zhang HX, Yu Q, Wang ZW, Han XG, Collins SL. 2023. Plant traits modulate grassland stability during drought and post-drought periods. Functional Ecology, https://doi.org/10.1111/1365-2435.14409
Luo WT, Muraina TO, Griffin-Nolan RJ, Te NW, Qian JQ, Yu Q, Zuo XA, Wang ZW, Knapp AK, Smith MD, Han XG, Collins SL. 2023. High below-ground bud abundance increases ecosystem recovery from drought across arid and semiarid grasslands. Journal of Ecology, https://doi.org/10.1111/1365-2745.14160
Zhang BC, Ma W, Song L, Liang XS, Xi XQ, Wang ZW*. 2023. Nitrogen addition and experimental drought simplified arthropod network in temperate grassland. Functional Ecology, https://doi.org/10.1111/1365-2435.14341
Luo WT, Ma W, Song L, Te NW, Chen JQ, Muraina TO, Wilkins K, Griffin-Nolan RJ, Ma TX, Qian JQ, Xu C, Yu Q, Wang ZW, Han XG, Collins SL. 2023. Compensatory dynamics drive grassland recovery from drought. Journal of Ecology, DOI10.1111/1365-2745.14096
Li YB, Du XF, Su XL, Han X, Liang WJ, Wang ZW, Bruelheide H, Bezemer TM, Li Q. 2023. Local-scale soil nematode diversity in a subtropical forest depends on the phylogenetic and functional diversity of neighbor trees. Plant and Soil, DOI10.1007/s11104-023-05882-2
Luo WT, Muraina TO, Griffin-Nolan RJ, Ma W, Song L, Fu W, Yu Q, Knapp AK, Wang ZW, Han XG, Collins SL. 2023. Responses of a semiarid grassland to recurrent drought are linked to community functional composition. Ecology, 104(2): DOI10.1002/ecy.3920
Luo WT, Griffin-Nolan RJ, Song L, Te NW, Chen JQ, Shi Y, Muraina TO, Wang ZW, Smith, MD, Yu Q, Knapp AK, Han XG, Collins SL. 2022. Interspecific and intraspecific trait variability differentially affect community-weighted trait responses to and recovery from long-term drought. Functional Ecology, DOI10.1111/1365-2435.14239
Luo WT, Griffin-Nolan RJ, Felton AJ, Yu Q, Wang HY, Zhang HX, Wang ZW, Collins S, Knapp A. 2022. Drought has inconsistent effects on seed trait composition despite their strong association with ecosystem drought sensitivity. Functional Ecology, 36:2690-2700.
Liang XS, Ma W, Qiang Yu, Luo WT, Wang ZW, L XT, Han XG. 2022. Conserved responses of nutrient resorption to extreme drought in a grassland: The role of community compositional changes. Functional Ecology, 36: 2616-2625.
Liang XS, Ma W, Hu JX, Zhang BC, Wang ZW, L XT. 2022. Extreme drought exacerbates plant nitrogen-phosphorus imbalance in nitrogen enriched grassland. Science of the Total Environment, 849:157916.
Dong LL, Berg B, Gu WP, Wang ZW, Sun T. 2022. Effects of different forms of nitrogen addition on microbial extracellular enzyme activity in temperate grassland soil. Ecological Processes, 11: 36. DOI:10.1186/s13717-022-00380-2
Luo WT, Zuo XA, Griffin-Nolan RJ, Xu C, Sardans J, Yu Q, Wang ZW*, Han XG, Pe?uelas J. 2022. Chronic and intense droughts differentially influence grassland carbon-nutrient dynamics along a natural aridity gradient. Plant and soil, 473 (1-2), 137-148.
Song L, Luo WT*, Griffin-Nolan RJ, Ma W, Cai JP, Zuo XA, Yu Q, Hartmann H, Li MH, Smith MD, Collins SL, Knapp AK, Wang ZW*, Han XG. 2022. Differential responses of grassland community nonstructural carbohydrate to experimental drought along a natural aridity gradient. Science of The Total Environment, 822: 153589.
Ma W, Liang XS, Wang ZW*, Luo WT, Yu Q, Han XG. 2022. Resistance of steppe communities to extreme drought in northeast China. Plant and soil, 473:181-194.
Luo WT, Wang XG, Auerswald K, Wang ZW, Bird MI, Still CJ, Lu XT, Han XG. 2021. Effects of plant intraspecific variation on the prediction of C3/C4 vegetation ratio from carbon isotope composition of topsoil organic matter across grasslands. Journal of Plant Ecology, 14:628-637.
Luo WT, Griffin-Nolan RJ, Ma W, Liu B, Zuo XA, Xu C, Yu Q, Luo YH, Mariotte P, Smith MD, Collins SL, Knapp AK, Wang ZW, Han XG. 2021. Plant traits and soil fertility mediate productivity losses under extreme drought in C3 grasslands. Ecology, doi: 10.1002/ECY.3465
Qian JQ, Wang ZW*, Klime?ov J, L XT, Zhang CY. 2021. Belowground bud bank and its relationship with aboveground vegetation under watering and nitrogen addition in temperate semiarid steppe. Ecological Indicators, 125: 107520
Han X, Li YH, Du XF, Li YB, Wang ZW, Jiang SW, Li Qi*. 2020. Effect of grassland degradation on soil quality and soil biotic community in a semi-arid temperate steppe. Ecological Processes. https://doi.org/10.1186/s13717-020-00256-3
Dong LL, Berg B, Sun T*, Wang ZW*, Han XG. 2020. Response of fine root decomposition to different forms of N deposition in a temperate grassland. Soil Biology and Biochemistry, 147: 107845.
Wang XG, L XT*, Zhang HY, Dijkstra FA, Jiang YG, Wang XB, Lu JY, Wang ZW, Han XG. 2020. Changes in soil C:N:P stoichiometry along an aridity gradient in drylands of northern China. Geoderma, 361: 114087.
Hu YY, Sistla S, Wei HW, Zhang ZW, Hou SL, Yang JJ, Wang ZW, Wang JF, L XT*. 2020. Legacy effects of nitrogen deposition on plant nutrient stoichiometry in a temperate grassland. Plant and soil, 446: 503-513.
Zhu EX, Liu T, Zhou L, Wang SM, Wang X, Zhang ZH, Wang ZW, Bai YF, Feng XJ*. 2020. Leaching of organic carbon from grassland soils under anaerobiosis. Soil Biology and Biochemistry, 141: 107684.
Wang RZ*, Cao YZ, Wang HY, Dijkstra FA, Jiang JL, Zhao RN, Ma W, Li TP, Dorodnikov M, Wang ZW, Sardans J, Pe?uelas J. 2019. Exogenous P compounds differentially interacted with N availability to regulate enzymatic activities in a meadow steppe. European Journal of Soil Science, 71: 667-680.
Wang XG, L XT*, Dijkstra FA, Zhang HY, Wang XB, Wuyunna, Wang ZW, Feng J, Han XG. 2019. Changes of plant N:P stoichiometry across a 3000-km aridity transect in grasslands of northern China. Plant and soil, 443: 107-119.
Liu HY, Wang RZ*, Wang HY, Cao YZ, Dijkstra FA, Shi Z, Cai JP, Wang ZW, Zou HT*, Jiang Y. 2019. Exogenous phosphorus compounds interact with nitrogen availability to regulate dynamics of soil inorganic phosphorus fractions in a meadow steppe. Biogeosciences, 16: 4293-4306.
Luo WT, Zuo XA*, Griffin-Nolan RJ, Xu C, Ma W, Song L, Helsen K, Lin YC, Cai JP, Yu Qiang, Wang ZW*, Smith MD, Han XG, Knapp AK. 2019. Long term experimental drought alters community plant trait variation, not trait means, across three semiarid grasslands. Plant and Soil, 442: 343-353.
Dong LL, Sun T*, Berg B, Zhang LL*, Zhang QQ, Wang ZW. 2019. Effects of different forms of N deposition on leaf litter decomposition and extracellular enzyme activities in a temperate grassland. Soil Biology & Biochemistry, 134: 78-80.
Sun T*, Zhang HG, Wang ZW. 2019. Reply To Tedersoo et al.: Plant species within the same family or genus can have different mycorrhizal types? Proceedings of the National Academy of Sciences of the United States of America, 116: 12141-12142.
Yang GJ, L Xiaotao*, Stevens CJ, Zhang GM, Wang HY, Wang ZW, Zhang ZJ, Liu ZY, Han XG. 2019. Mowing mitigates the negative impacts of N addition on plant species diversity. Oecologia, 189: 769-779.
Wang XB, Yao J, Zhang HY, Wang XG, Li KH, Lu XT, Wang ZW, Zhou JZ, Han XG*. 2019. Environmental and spatial variables determine the taxonomic but not functional structure patterns of microbial communities in alpine grasslands. Science of the Total Environment, 654: 960-968.
Yuanyuan Huang, Yuxin Chen, Nadia Castro-Izaguirre, Martin Baruffol, Matteo Brezzi, Anne Lang, Ying Li, Werner H?rdtle, Goddert von Oheimb, Xuefei Yang, Xiaojuan Liu, Kequan Pei, Sabine Both, Bo Yang, David Eichenberg, Thorsten Assmann, J rgen Bauhus, Thorsten Behrens, Fran?ois Buscot, Xiao-Yong Chen, Douglas Chesters, Bing-Yang Ding, Walter Durka, Alexandra Erfmeier, Jingyun Fang, Markus Fischer, Liang-Dong Guo, Dali Guo, Jessica L. M. Gutknecht, Jin-Sheng He, Chun-Ling He, Andy Hector, LydiaH?nig, Ren-Yong Hu, Alexandra-Maria Klein, Peter K hn, Yu Liang, Shan Li, Stefan Michalski, Michael Scherer-Lorenzen, Karsten Schmidt, Thomas Scholten, Andreas Schuldt, Xuezheng Shi, Man-Zhi Tan, Zhiyao Tang, Stefan Trogisch, Zhengwen Wang, ErikWelk, ChristianWirth, TesfayeWubet, Wenhua Xiang, Mingjian Yu, Xiao-Dong Yu, Jiayong Zhang, Shouren Zhang, Naili Zhang, Hong-Zhang Zhou, Chao-Dong Zhu, Li Zhu, Helge Bruelheide*, Keping Ma*, Pascal A. Niklaus*, Bernhard Schmid*. 2018. Impacts of species richness on productivity in a large-scale subtropical forest experiment. Science, 362: 80–83.
Sun T*, Hobbie SE, Berg B, Zhang HG, Wang QK, Wang ZW*, H?ttenschwiler S. 2018. Contrasting dynamics and trait controls in first-order root compared with leaf litter decomposition. Proceedings of the National Academy of Sciences of the United States of America, 115:10392-10397. Doi: org/10.1073/pnas.1716595115.
Luo WT, Zuo XA, Ma W, Xu C, Li A, Yu Q, Knapp AK, Tognetti R, Dijkstra FA, Li MH, Han GD, Wang ZW*, Han XG. 2018. Differential responses of canopy nutrients to experimental drought along a natural aridity gradient. Ecology, 99: 2230-2239. Doi:10.1002/ecy.2444.
Luo WT, Xu C, Ma Wang, Yue XY, Liang XS, Zuo XA, Knapp AK, Smith MD, Sardans J, Dijkstra FA, Pe?uelas J, Bai YF, Wang ZW*, Yu Q*, Han XG. 2018. Effects of extreme drought on plant nutrient uptake and resorption in rhizomatous vs bunchgrass?dominated grasslands. Oecologia, 188:633–643.
Luo WT, Wang XG, Sardans J, Wang ZW, Dijkstra FA, L XT*, Pe?uelas J, Han XG. 2018. Higher capability of C3 than C4 plants to use nitrogen inferred from nitrogen stable isotopes along an aridity gradient. Plant and Soil, 428: 93–103.
Wang HY, Wang ZW, Ding R, Hou SL, Yang GJ, L XT*, Han XG. 2018. The impacts of nitrogen deposition on community N:P stoichiometry do not depend on phosphorus availability in a temperate meadow steppe. Environmental Pollution, 242: 82-89.
Zhang HY, L XT, Knapp AK, Hartmann H, Bai E, Wang XB, Wang ZW, Wang XG, Yu Q*, Han XG*. 2018. Facilitation by leguminous shrubs increases along a precipitation gradient. Functional Ecology, 32(1): 203-213. DOI: 10.1111/1365-2435.12941
Qian JQ, Wang ZW, Klime?ov J, L XT, Kuang WN, Liu ZM*, Han XG. 2017. Differences in belowground bud bank density and composition along a climatic gradient in the temperate steppe of northern China. Annals of Botany, 120: 755-764.
Luo WT, Li MH, Sardans J, Lv XT, Wang C, Pe?uelas J, Wang ZW, Han XG, Jiang Y*. 2017. Carbon and nitrogen allocation shifts in plants and soils along aridity and fertility gradients in grasslands of China. Ecology and Evolution, 7: 6927–6934.
Liu MZ, Wang ZW*, Li SS, L XT, Wang XB, Han XG. 2017. Changes in specific leaf area of dominant plants in temperate grasslands along a 2500-km transect in northern China. Scientific Reports, 7: 10780, doi: 10.1038/s41598-017-11133-z
Wang XB, L XT, Yao J, Wang ZW, Deng Y, Cheng WX, Zhou JZ, Han XG*. 2017. Habitat-specific patterns and drivers of bacterial -diversity in China’s drylands. The ISME Journal, doi:10.1038/ismej.2017.11.
Li SS, Tong YW, Wang ZW*. 2017. Species and genetic diversity affect leaf litter decomposition in subtropical broadleaved forest in southern China. Journal of Plant Ecology, 10(1): 232–241.
Luo WT, Sardans J, Dijkstra FA, Penuelas J, Lu XT, Wu HH, Li MH, Bai E, Wang ZW, Han XG, Jiang Y*. 2016. Thresholds in decoupled soil-plant elements under changing climatic conditions. Plant and Soil, 409: 159–173.
Zhou C, Busso C, Liu J, Yang YG, Sun Y, Fang YZ, Zhang QQ, Zhou YB, Wang YN, Zhang Z*, Wang ZW, Yang YF. 2016. Total aboveground plant biomass is more strongly affected by climate than species diversity on a grassland in Liaoning, China. Phyton-International Journal of Experimental Botany, 85: 125–130.
Sun T, Dong LL, Wang ZW, Lu XT, Mao ZJ*. 2016. Effects of long-term nitrogen deposition on fine root decomposition and its extracellular enzyme activities in temperate forests. Soil Biology and Biochemistry, 93: 50–59.
Sun T*, Dong LL, Zhang LL, Wu ZJ, Wang QK, Li YY, Zhang HG, Wang ZW. 2016. Early stage fine-root decomposition and its relationship with root order and soil depth in a Larix gmelinii plantation. Forests, 7: DOI: 10.3390/f7100234
Tian QY, Liu NN, Bai WM, Li LH, Chen JQ, Reich PB, Yu Q, Guo DL, Smith MD, Knapp AK, Cheng WX, Lu P, Gao Y, Yang A, Wang TZ, Li X, Wang ZW, Ma YB, Han XG, Zhang WH*. 2016. A novel soil manganese mechanism drives plant species loss with increased nitrogen deposition in a temperate steppe. Ecology, 97: 65–74.
Wang ZW*, Bossdorf O, Prati Daniel, Fischer M, van Kleunen M. 2016. Transgenerational effects of land use on offspring performance and growth in Trifolium repens. Oecologia, 180: 409–420.
Zhao N, Wang ZW, Shao XQ, Wang K*. 2016. Diversity components and assembly patterns of plant functional traits determine community spatial stability under resource gradients in a desert steppe. Rangeland Journal, 38: 511–521.
Lu LY, Wang RZ*, Liu HY, Yin JF, Xiao JT, Wang ZW, Zhao Y, Yu GQ, Han XG, Jiang Y. 2016. Effect of soil coarseness on soil base cations and available micronutrients in a semi-arid sandy grassland. Solid Earth, 7: 549–556.
L XT*, Freschet GT, Kazakou E, Wang ZW, Zhou LS, Han XG. 2015. Contrasting responses in leaf nutrient-use strategies of two dominant grass species along a 30-yr temperate steppe grazing exclusion chronosequence. Plant and Soil, 387:69–79.
Luo WT, Elser JJ, L XT, Wang ZW, Bai E, Yan CF, Wang C, Li MH, Zimmermann NE, Han XG, Xu ZW, Li Hui, Wu YN, Jiang Y*. 2015. Plant nutrients do not covary with soil nutrients under changing climatic conditions. Global Biogeochemical Cycles, 29: 1298–1308.
Qian JQ, Busso CB, Wang ZW, Liu ZM*. 2015. Ramet Recruitment from Different Bud Types along a Grassland Degradation Gradient in Inner Mongolia, China. Polish Journal of Ecology 63(1): 38-52.
Luo WT, Nelson PN, Li MH, Cai JP, Zhang YY, Zhang YG, Yang S, Wang RZ, Wang ZW, Wu YN, Han XG, Jiang Y*. 2015. Contrasting pH buffering patterns in neutral-alkaline soils along a 3600km transect in northern China. Biogeosciences, 12, 7047–7056.
Yu Q*, Wu HH, Wang ZW*, Flynn DFB, Yang H, L FM, Smith M, Han XG. 2015. Long term prevention of disturbance induces the collapse of a dominant species without altering ecosystem function. Scientific Reports 5, DOI:10.1038/srep14320
Zhou C, Wang ZW (Co-first author), Guo JY, Zhang Z, Yang YF. 2015. Clonal patch size and ramet position of Leymus chinensis affected reproductive allocation. PLoS ONE, 10(10): e0140350. DOI: 10.1371/journal.pone.0140350
Zhou C, Zhang Z, Wang ZW*, Yang YF. 2014. Difference in capacity of physiological integration between two ecotypes of Leymus chinensis underlies their different performance. Plant and soil, 383:191-202.
Li YY, Lv XT, Wang ZW*, Zhou C, Han XG. 2014. Linking relative growth rate to biomass allocation: the responses of a grass (Leymus chinensis) to nitrogen addition. Phyton-International Journal of Experimental Botany, 83: 283-289.
Lv XT*, Dijkstra FA, Kong, DL, Wang ZW, Han XG. 2014. Plant nitrogen uptake drives responses of productivity to nitrogen and water addition in a grassland. Scientific Reports, doi:10.1038/srep04817
Qian JQ, Wang ZW*, Liu ZM*, Busso C. 2014. Belowground bud bank responses to grazing intensity on a typical steppe in Inner-Mongolia, China. Land Degradation & Development, DOI: 10.1002/ldr.2300
Qian JQ, Wang ZW, Liu ZM*, Kuang WN, CA Busso. 2014. Contribution of different bud types to community regeneration on a typical steppe under various enclosure durations in Inner Mongolia, China. Phyton-international Journal of Experimental Botany, 83: 247-254.
Lu XT*, Reed S, Yu Q, He NP, Wang ZW, Han XG. 2013. Convergent responses of nitrogen and phosphorus resorption to nitrogen inputs in a semiarid grassland. Global Change Biology, 19: 2775-2784.
Wang ZW*, van Kleunen M, During HJ, Werger MJA. 2013. Root foraging increases performance of the clonal plant Potentilla reptans in heterogeneous nutrient environments. PLoS ONE, 8(3): e58602. doi:10.1371/journal.pone.0058602.
Wei CZ, Yu Q (co-first author), Bai E, Lu XT, Li Q, Xia JY, Kardol P, Liang WJ, Wang ZW, Han XG*. 2013. Nitrogen deposition weakens plant-microbe interactions in grassland ecosystems. Global Change Biology, 19: 3688-3697.
Zhang HY, Wu HH, Yu Q*, Wang ZW, Wei CZ, Long M, Kattge J, Smith M, Han XG*. 2013. Sampling date, leaf age and root size: Implications for the study of plant C:N:P stoichiometry. PLoS ONE, 8(4): e60360.
Wang ZW*, Li YH, During HJ, Li LH. 2011. Do Clonal Plants Show Greater Division of Labour Morphologically and Physiologically at Higher Patch Contrasts? PLoS ONE, 6(9): e25401. doi:10.1371/journal.pone.0025401.
Zhao N, Wang ZW, Lv JY, Wang K*. 2010. Relationship between plant diversity and spatial stability of aboveground net primary productivity (ANPP) across different grassland ecosystems. African Journal of Biotechnology, 9: 6708-6715.
Bai WM, Sun XQ, Wang ZW, Li LH*. 2009. Nitrogen addition and rhizome severing modify clonal growth and reproductive modes of Leymus chinensis population. Plant Ecology, 205: 13–21.
Bai WM, Wang ZW, Chen QS, Zhang WH, Li LH*. 2008. Spatial and temporal effects of nitrogen addition on root lifespan of Leymus chinensis in a typical steppe of Inner Mongolia. Functional Ecology, 22: 583-591.
Wang ZW, Xu AK, Zhu TC*. 2008. Plasticity in bud demography of a rhizomatous clonal plant Leymus chinensis L. in response to soil water status. Journal of Plant Biology, 51: 102-107.
Yuan ZY, Li LH*, Han XG, Chen SP, Wang ZW, Chen QS, Bai WM. 2006. Nitrogen response efficiency increased monotonically with decreasing soil resource availability: a case study from a semiarid grassland in northern China. Oecologia, 148: 564–572.
Wang ZW*, Li LH, Han XG, Dong M. 2004. Do rhizome severing and shoot defoliation affect clonal growth of Leymus chinensis at ramet population level? Acta Oecologica, 26 (3): 255-260.
李月輝,胡遠滿,王正文*.2023. 山水林田湖草沙一體化保護和修復工程與景觀生態(tài)學.應(yīng)用生態(tài)學報,34(1):249-256.
張效境, 馬望, 王正文.2022. 刈割制度對呼倫貝爾草原群落特征及牧草質(zhì)量的影響. 應(yīng)用生態(tài)學報, 33( 6) : 1555-1562.
張效境, 梁瀟灑, 馬望, 王正文*. 2021. 呼倫貝爾草地植物莖稈和葉片中養(yǎng)分的時間動態(tài)與回收. 植物生態(tài)學報,45 (7): 738-748. DOI: 10.17521/cjpe.2021.0125.
周全來, 王正文, 齊鳳林, 楊達志, 門紅艷, 孫彪, 齊楠, 崔雪,王永翠*. 2021.少花蒺藜草生物生態(tài)學特征與綜合防除策略. 生態(tài)學雜志. 2021, 40 (8): 2593-2600.
王洪義,常繼方, 王正文. 2020. 退化草地恢復過程中群落物種多樣性及生產(chǎn)力對氮磷養(yǎng)分的響應(yīng). 中國農(nóng)業(yè)科學,53(13): 2604-2613.
敖小蔓,孟倩,徐智超,王洪義,王正文,王永慧. 2020. 氮、磷添加對呼倫貝爾草甸草原生態(tài)系統(tǒng)凈 CO2 交換的影響. 草業(yè)科學, 37(8): 1428-1439.
白龍, 段博文, 陳曦, 王正文, 于景華, 曹偉, 呂林有, 周嬋, 曲波, 馬鳳江. 2020. 遼寧省西部低山丘陵區(qū)草地類型分布及植物區(qū)系特征. 草地學報, 28(6): 1726-1735.
宋琳, 雒文濤*, 馬望, 何鵬, 梁瀟灑, 王正文. 2020. 極端干旱對草甸草原優(yōu)勢植物非結(jié)構(gòu)性碳水化合物的影響. 植物生態(tài)學報, 44 (6): 669-676. DOI: 10.17521/cjpe.2019.0331
郝建輝, 陳 曦, 齊鳳林, 李瑛芙, 劉英, 劉軍, 任百慧, 王正文, 白龍. 2020. 遼西北沙地草原鄉(xiāng)土植物資源及園林應(yīng)用綜合評價. 草地學報, 28(3): 852-856.
梁瀟灑,張立奇,閆慶忠,張慶宏,宋志永,莊 艷,吳一鳴,張自良,王正文*. 2019. 圍欄封育恢復和提升遼西退化草地的碳固持功能. 中國草地學報, 41(2): 65-70.
梁瀟灑,馬望,王洪義,雒文濤,王正文*. 2019. 呼倫貝爾草原3種植物的功能性狀對氮磷添加的響應(yīng). 中國草地學報, 41(1): 61-67.
白龍,閆加樂,劉英,劉軍,楊季云,陳曦,劉慧林,王正文*. 2018. 遼河平原北部草地類型特征及分布現(xiàn)狀. 草地學報,26 (3): 566-575.
楊筑筑,呂曉濤,宋彥濤,賈子金,烏云娜,王正文*. 2017. 草原植物群落分類方法的比較研究—以呼倫貝爾草原為例. 生態(tài)學雜志,36 (8): 2375-2384.
高宗寶,王洪義,呂曉濤,王正文*. 2017. 氮磷添加對呼倫貝爾草甸草原4種優(yōu)勢植物根系和葉片C∶N∶P化學計量特征的影響. 生態(tài)學雜志,36 (1): 80-88.
李媛媛, 王正文, 孫濤*. 2017. 氮添加對溫帶森林細根長期分解的影響. 植物研究,37(6): 848-854.
李姍姍, 王正文*, 楊俊杰. 2016. 凋落物分解過程中土壤微生物群落的變化. 生物多樣性, 24(2): 195-204.
馬俐, 周志強, 王正文*. 2016. 刈割和氮添加對松嫩平原羊草草原碳固持的影響. 生態(tài)學雜志, 35(1): 87-94.
李元恒,韓國棟,王珍,王正文,趙萌莉,王薩仁娜.2015. 增溫和氮素添加降低荒漠草原多年生植物氮素回收效率.生態(tài)學報,35( 18) : 5948-5956.
李元恒,韓國棟,王珍,趙萌莉,王正文,趙鴻彬. 2014. 增溫和氮素添加對內(nèi)蒙古荒漠草原植物生殖物候的影響. 生態(tài)學雜志,33( 4) : 849-856.
李元恒,韓國棟,王正文,白文明,趙萌莉. 2014. 內(nèi)蒙古克氏針茅草原土壤種子庫對刈割和放牧干擾的響應(yīng). 生態(tài)學雜志,33 (1): 1-9.
童躍偉、項文化、王正文*、Walter Durka、Markus Fischer. 2013. 地形、鄰株植物及自身大小對紅楠幼樹生長與存活的影響. 生物多樣性, 21 (3): 269-277.
王洪義,王正文*. 2013. 羊草種群對遮蔭的適應(yīng)性生長對策. 生態(tài)學雜志,32 (8): 1987-1993.
周嬋、張卓、王紅艷、熊乾、郭平、王正文、楊允菲. 2013. 異質(zhì)生境不同葉色羊草生殖生長規(guī)律的研究. 草地學報,21(2):253-259.
李元恒,金龍,韓國棟,王正文,趙萌莉,王玉璽. 2013. 植物單寧在反芻動物營養(yǎng)和健康養(yǎng)殖作用中的研究進展. 草地學報,21(6):1043-1051.
李元恒,王正文*,馬暉玲. 2008. 克隆植物的勞動分工與生境斑塊對比度. 植物生態(tài)學報, 32: 1166-1174.
Zhao N, Li YH, Wang ZW*, Liu RT. 2008. Seedling dynamics in response to mowing and grazing in a typical steppe community in Inner Mongolia, China. Acta Phytoecologica Sinica, 32: 591-600.
Wang ZW. 2007. Temporal variation of water-soluble carbohydrate in the rhizome clonal grass Leymus chinensis in response to defoliation. Acta Phytoecologica Sinica, 31(4): 673-679.
王洪義、王正文*、李凌浩、 陳雅君、任麗昀. 2005. 不同生境中克隆植物的繁殖傾向. 生態(tài)學雜志, 24(6): 670-676.
王正文、祝廷成. 2004. 松嫩草原主要草本植物的生態(tài)位關(guān)系及其對水淹干擾的響應(yīng),草業(yè)學報, 13(3): 27-33.
王正文、祝廷成、臧傳來. 2004.水淹干擾對松嫩草原三種禾草種群分布格局的影響. 草地學報, 12(1): 3-7.
王正文、祝廷成. 2003. 松嫩草原主要草本植物的種間關(guān)系及其對水淹干擾的響應(yīng). 應(yīng)用生態(tài)學報,14(6): 892-896.
王正文、祝廷成. 2003. 水淹干擾對羊草草地地上生物量影響的初步研究. 應(yīng)用生態(tài)學報14(12): 2162-2166.
王正文,邢福,祝廷成,李憲長. 2002. 松嫩平原羊草草地植物功能群組成及多樣性特征對水淹梯度的響應(yīng). 植物生態(tài)學報,26(6): 708-716.
王正文、祝廷成. 2002. 松嫩草地水淹干擾后的土壤種子庫特征及其與植被關(guān)系.生態(tài)學報,22 (9): 21-28.
王正文、李凌浩. 2001. 水淹干擾生態(tài)學研究進展. 植物科學進展,4: 311-320.
王正文、王德利、藏傳來、楊蓮雙. 2001.大興安嶺次生林白樺對林下日陰菅及其它草本植物的影響.生態(tài)學報,21(8): 1301-1307.
王正文、王德利. 2001.大興安嶺森林草原過渡帶白樺及主要草本植物生態(tài)位關(guān)系的研究. 應(yīng)用生態(tài)學報,12 (5): 677-681.
邢福,王正文. 2000. 科爾沁草地有毒植物及保障家畜安全的對策. 草業(yè)學報,9(3): 66-73.
王德利,王正文,張喜軍. 1999. 羊草兩個趨異類型的光合生理生態(tài)特性比較的初步研究. 生態(tài)學報,19(6): 837-843.
王萍、張宏一、殷立娟、王正文、周波. 1997. 鹽堿生境對星星草吸收Na+ 及Na+在體內(nèi)區(qū)域化分布的影響. 草業(yè)學報,6(4): 44-48.
會議論文
王正文. 2001. 松嫩草原對水淹的擾動生態(tài)學研究. 新世紀、新機遇、新挑戰(zhàn)——知識創(chuàng)新和高新技術(shù)產(chǎn)業(yè)發(fā)展會議論文集.
祝廷成; 楊允菲; 王正文. 2000. 吉林省西部的草地. 草業(yè)與西部大開發(fā)學術(shù)研討會暨中國草原學會2000年學術(shù)年會論文集.
Presentations at Conferences
Wang ZW. 2019. How plant adapt to extreme drought at species and community level? The 18th Chinese Ecological Conference. Kunming, Nov. 28-30, 2019 (Oral presentation)
Wang ZW. 2019. The adaptive strategies of plants under extreme drought. China Grassland Science 2019 Annual Meeting. Xi’an, Nov. 21-23, 2019 (Oral presentation)
Wang ZW. 2019. The plot and conception for regional biodiversity monitoring of Erguna Ecological Research Station. The 3rd nation-wide symposium on biodiversity monitoring. Kaihua, Oct. 13-14, 2019 (Oral presentation)
Wang ZW. 2017. Advantages and Disadvantages of Grassland Enclosing. China Grassland Science 2017 Annual Meeting. Guangzhou, Nov. 5-8, 2017 (Oral presentation), Guangzhou, China.
Wang ZW. 2015. Effects of tree species & genetic diversity on litter decomposition in the subtropical forest in China. The Sino-German-Swiss workshop “Next generation Biodiversity Ecosystem Functioning research in Chinese subtropical forests”. Jingdezhen, March 18-22, 2015 (Oral presentation), Jingdezhen, China
Wang ZW. 2014. Relative contribution of species diversity and genetic diversity to litter decomposition. The Sino-German-Swiss workshop“Linking Chinese and German Biodiversity Ecosystem Functioning research in forests”. Halle and Tuebingen, May 4-10, 2014 (Oral presentation), Halle and Tuebingen, Germany
Wang ZW. 2013. Stoichiometric homeostasis underlies species dominance, stability and responses to global change. Workshop Biodiversity-Ecosystem Functioning research in subtropical forests. Wuyuan, Oct. 26- 28, 2013(oral presentation) , Wuyuan, China
Wang ZW, van Kleunen M, During HJ, Werger MJA. 2012. Benefits and costs of root foraging in the clonal plant Potentilla reptans. The 10th clonal plant workshop. Beijing. Oct. 12-16, 2012 (oral presentation), Beijing, China
Wang ZW. 2011. Genetic variation, evolutionary cost and the driving factors. The Workshop Biodiversity-Ecosystem Functioning research in subtropical forests. Beijing, May 4th, 2011 (oral presentation), Beijing, China
Wang ZW, During HJ. 2010. Cost of root foraging and sexual reproduction during genotypic selection in Potentilla reptans. Plant Population Biology: Crossing Borders. Nijmegen, May 13-15, 2010 (Poster), Nijmegen, the Netherlands
Wang ZW. 2007. Division of Labor of clonal plants needs a minimum patchy contrast—A case study with Potentilla anserina L. The 2nd Nationwide Forum of Clonal Plant Ecology of China. Yantai, Oct. 20-21, 2007 (Oral presentation), Yantai, China
Wang ZW. 2005. Growing Strategies of a Rhizomatous Clonal Plant Leymus chinensis (Trin.) Tzvel. in Response to Defoliation at Ramet Population Level. The 1st Nationwide Forum of Clonal Plant Ecology of China. Guilin, June 8-10, 2005 (Oral presentation), Guilin, China
培養(yǎng)的研究生(含學位論文信息):
2 博士研究生培養(yǎng)
錢建強. 2014. 內(nèi)蒙古草原地下芽庫時空格局及其繁殖貢獻. 中國科學院大學博士學位論文(論文完成單位:中國科學院沈陽應(yīng)用生態(tài)研究所),沈陽 (副導師,與劉志民研究員聯(lián)合培養(yǎng)).
劉夢舟. 2017. 中國北方草原優(yōu)勢植物種內(nèi)與種間性狀變異的研究. 中國科學院大學博士學位論文(論文完成單位:中國科學院沈陽應(yīng)用生態(tài)研究所),沈陽(副導師,與韓興國研究員聯(lián)合培養(yǎng)).
王洪義. 2018. 磷氮添加對呼倫貝爾草地生態(tài)系統(tǒng)結(jié)構(gòu)和功能的影響. 中國科學院大學博士學位論文(論文完成單位:中國科學院沈陽應(yīng)用生態(tài)研究所),沈陽 (副導師,與韓興國研究員聯(lián)合培養(yǎng)).
馬望. 2020. 內(nèi)蒙古草原干旱誘導的植物地上功能性狀變異與群落構(gòu)建過程. 中國科學院大學博士學位論文(論文完成單位:中國科學院沈陽應(yīng)用生態(tài)研究所),沈陽 (副導師,與韓興國研究員聯(lián)合培養(yǎng)).
胡艷宇. 2021.
2 碩士研究生培養(yǎng)
王洪義. 2005. 羊草分株種群特征及繁殖策略對遮蔭干擾的響應(yīng). 東北農(nóng)業(yè)大學碩士學位論文,哈爾濱(副導師,與東北農(nóng)業(yè)大學陳雅君教授聯(lián)合培養(yǎng)).
趙娜. 2007. 內(nèi)蒙古典型草原群落及實生苗更新動態(tài)對刈牧干擾的響應(yīng). 甘肅農(nóng)業(yè)大學碩士學位論文,蘭州(副導師,與甘肅農(nóng)業(yè)大學劉榮堂教授聯(lián)合培養(yǎng))
李元恒. 2008. 內(nèi)蒙古典型草原植物生殖物候?qū)夂蜃兓腿藶楦蓴_的響應(yīng). 甘肅農(nóng)業(yè)大學碩士學位論文,蘭州(副導師,與甘肅農(nóng)業(yè)大學馬暉玲教授聯(lián)合培養(yǎng))
童躍偉. 2013. 紅楠幼樹生長與地形、鄰株植物及自身大小的關(guān)系研究. 中南林業(yè)科技大學碩士學位論文,長沙 (副導師,與中南林業(yè)科技大學項文化教授聯(lián)合培養(yǎng))
張春艷. 2014. 克氏針茅草原芽庫及主要植物有性生殖對模擬增雨和氮沉降的響應(yīng). 東北師范大學碩士學位論文,長春 (副導師,與東北師范大學楊允菲教授聯(lián)合培養(yǎng))
馬俐. 2015. 松嫩草原羊草草地的碳儲量現(xiàn)狀及其碳通量對刈割和氮添加的響應(yīng). 東北林業(yè)大學碩士學位論文,哈爾濱 (副導師,與東北林業(yè)大學周志強教授聯(lián)合培養(yǎng))
李姍姍. 2015. 植物多樣性對亞熱帶闊葉林葉凋落物分解的影響. 中國科學院大學碩士學位論文(論文完成單位:中國科學院沈陽應(yīng)用生態(tài)研究所),沈陽.
高宗寶. 2016. 呼倫貝爾草甸草原4種優(yōu)勢植物根系和葉片碳氮磷化學計量特征及對氮磷添加的響應(yīng). 中國科學院大學碩士學位論文(論文完成單位:中國科學院沈陽應(yīng)用生態(tài)研究所),沈陽.
楊筑筑. 2017. 呼倫貝爾草原不同尺度下的植物多樣性和生產(chǎn)力關(guān)系. 中國科學院大學碩士學位論文 (論文完成單位:中國科學院沈陽應(yīng)用生態(tài)研究所),沈陽.
劉宏達. 2017. 人工草地羊草種群對水肥調(diào)控的生理生態(tài)響應(yīng). 大連民族大學碩士學位論文,大連 (副導師,與大連民族大學烏云娜教授聯(lián)合培養(yǎng))
胡艷宇. 2018. 草地生態(tài)系統(tǒng)結(jié)構(gòu)與功能對氮沉降的響應(yīng):氮沉降歷史的重要性. 中國科學院大學碩士學位論文 (論文完成單位:中國科學院沈陽應(yīng)用生態(tài)研究所),沈陽.
梁瀟灑. 2019. 養(yǎng)分添加及極端干旱對草甸草地植物養(yǎng)分回收的影響. 中國科學院大學碩士學位論文 (論文完成單位:中國科學院沈陽應(yīng)用生態(tài)研究所),沈陽.
宋琳. 2020.
周一平. 2020. 氮沉降和干旱對北方草原植物群落性狀的影響. 沈陽大學碩士學位論文,沈陽 (副導師,與沈陽大學張玉革教授聯(lián)合培養(yǎng)).
張效境. 2022.
胡嘉芯. 2023.
在讀研究生
博士研究生:張炳川(2019級)、宋琳(2020級)、郭佳(2020級)、崔雪(2022級)
碩士研究生:王平周(2022級)
主編專著:
1. 《中國東北草地植物資源及其保護與利用》(王正文、張文浩主編), 2023. 北京:科學出版社.
2. 《遼寧草地植物圖譜》(王艷、呂林有、陳曦、王正文等著),2022. 北京:科學出版社.
參編:
1.《中國長白山植物》(祝廷成主編),北京科學技術(shù)出版社,2003,北京。
2. 《羊草生物生態(tài)學》(祝廷成主編),吉林科學技術(shù)出版社,2004,長春。
3. 《東北草地常見植物圖譜》(崔國文等編著),科學出版社,2016,北京。
獎勵和榮譽:
1. 圍封對遼西北半農(nóng)半牧區(qū)草原生態(tài)服務(wù)功能影響的研究,遼寧省畜牧業(yè)科技貢獻(一等獎),遼寧省畜牧獸醫(yī)局. 2017. (排名第2).
2. “遼西北草原生產(chǎn)和生態(tài)服務(wù)功能圍封效應(yīng)評估與可持續(xù)管理模式構(gòu)建”,中國草業(yè)科學技術(shù)獎(二等獎),中國草學會. 2020. (排名第2).
3. 2020年12月榮獲“遼寧省學術(shù)頭雁”榮譽稱號。
4. 2023年獲得遼寧省“興遼英才”計劃領(lǐng)軍人才榮譽稱號。
學術(shù)組織兼職:
|
重要學術(shù)任﹁兼﹂職 |
起止年月 |
名 稱 |
職 務(wù) |
|
2015年12月至今 |
中國科學院沈陽應(yīng)用生態(tài)研究所額爾古納森林草原過渡帶生態(tài)系統(tǒng)研究站 |
站長 | |
|
2016年12月至今 |
中國草學會 |
理事 | |
|
2020年8月至今 |
遼寧省科研誠信建設(shè)咨詢委員會 |
委員 | |
|
2020年11月至今 |
中國自然資源學會草原資源專業(yè)委員會 |
委員 | |
|
2021年1月至今 |
《應(yīng)用生態(tài)學報》 |
編委 | |
|
2020年12月至今 |
農(nóng)牧交錯帶草地保護國家創(chuàng)新聯(lián)盟 |
學術(shù)委員會主任、副理事長 | |
|
2013年5月-2019年7月 |
Phyton-International Journal of Experimental Botany |
副編輯(Associate editor) |