职  称:教授
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办公地点:惟真楼1027

个人简历

教授,博士生导师,国家级青年拔尖人才,吉林省杰青,长春市有突出贡献专家。现任生命科学学院副院长,农业基因工程教育部工程研究中心执行主任,中国草学会种子科学与技术委员会常务理事、草地资源与利用专业委员会常务理事、教育专业委员会常务理事。在生态学Top期刊Ecology、Global Change Biology,农学Top期刊Field Crops Research、Biology and Fertility Soils、Journal of Agronomy and Crop Science、Agricultural and Forest Meteorology、Plant and Soil,农学主流期刊Agronomy Journal等刊物上发表论文66篇,以参加人身份获得吉林省科学技术进步奖三等奖1项,申请国家专利3项。同时,为Agriculture Communications青年编委、Grass Research青年编委、应用生态学报青年编委,生态学Top刊物Ecology Letters、Ecology、Global Change Biology、Journal of Ecology,农学TOP期刊Soil & Tillage Research、Plant and soil等期刊的审稿人。 从事的主要研究领域:禾本科和豆科牧草栽培学、生理生态学等。 工作/学习经历 2020-至今 东北师范大学 草地科学研究所 教授 硕士/博士生导师 2017-2018 University of Nebraska-Lincoln,USA Visiting Scholar 2014-2015 University of Nebraska-Lincoln,USA Research Scholar 2014-2020 东北师范大学 草地科学研究所 副教授 硕士/博士生导师 2011-2014 东北师范大学 草地科学研究所 讲师 2007-2010 东北师范大学 草地科学研究所 草业科学 获博士学位 2005-2007 东北师范大学 草地科学研究所 生态学 获硕士学位 2001-2005 吉林农业大学 资源与环境学院 水土保持 获学士学位 一、教学与指导学生获奖 本科生课程:文献阅读与科技写作;草地学 研究生课程:作物育种与栽培学 指导研究生获奖:学生获国家奖学金、校长奖学金(2人)、东北师范大学优秀毕业生(2人)、吉林省优秀硕士学位论文、东北师范大学优秀硕士学位论文各一次 二、主持项目 2024-2027 羊草成穗关键障碍因子解析及调控技术研究 吉林省“杰青”人才专项 2023-2027 水氮失耦后果聚糖积累与分配对羊草芽库动态及种群恢复力的调节机理 国家自然科学基金面上项目 2021-2023 羊草根茎及根系空间结构对种群密度的调节机制 吉林省自然科学基金联合基金 2020-2022 羊草地下器官构型对水氮协同的响应 吉林省教育厅“十三五”科技规划项目 2020-2023 氮沉降和降雨变化下羊草地下器官构型与碳分配对芽库动态的调节机理 国家自然科学基金面上项目 2017-2019 草地土壤氮水耦合效应对氮素氧化亚氮损失的影响 吉林省自然科学基金面上项目 2017-2018 草地氧化亚氮排放对不同形态土壤含氮底物的响应机制 东北师范大学“青年人才支持计划”发展基金 2016-2020 退化、沙化草地羊草建植技术研究 国家重点研发计划子课题 2014-2016 松嫩草地氧化亚氮排放对降雨及氮沉降脉冲的响应机制 国家自然科学基金青年基金 2012-2014 水肥耦合技术提高羊草种子产量的研究 吉林省自然科学基金青年基金 2012-2013 羊草种子生产与氮素利用和流失关系的研究 东北师范大学自然基金青年基金 2013-2014 吉林省公主岭市玉米品种分布调查研究 杜邦、大唐集团 三、发表论文 期刊论文 1. Yu D.F., Zheng X.Y., Mu C.S.*, Wang J.F.* 2022. Irrigation and nitrogen application promote population density through altered bud Bank size and components in Leymus chinensis, Agronomy https://doi.org/10.3390/agronomy12061436(农林科学二区) 2. Yan G., Shi Y.J., Chen F.F., Mu C.S.*, Wang J.F. 2022. Physiological and metabolic responses of Leymus chinensis seedlings to alkali Stress. Plants https://doi.org/10.3390/plants11111494 3. Li W.J., Luo S., Wang J.F., Zheng X.Y., Zhou X., Xiang Z. Q., Liu X., Fang X.W. 2022. Nitrogen deposition magnifies destabilizing effects of plant functional groups loss. Science of Total Environment http://dx.doi.org/10.1016/j.scitotenv.2022.155419(生态学二区TOP) 4. Wei X.W., Yang Y.H., Yao J.L., Han J.Y., Yan M., Zhang J.W., Shi Y.J., Wang J.F.*, Mu C.S.* 2022. Improved utilizaiton of nitrate nitrogen through within-leaf nitrogen allocation trade-offs in Leymus chinensis. Frontier in Plant Science https://doi.org/10.3389/fpls.2022.870681(植物学二区TOP) 5. Shi Y., Ao Y.N., Sun B.X., Knops J.M.H., Zhang J.W., Guo Z.H., De X.M., Han J.Y., Yang Y.H., Jiang X.Y., Mu C.S., Wang J.F.*. 2022. Productivity of Leymus chinensis grassland is co-limited by water and nitrogen and resilient to climate change. Plant and Soil (Accepted) Doi: 10.1007/s11104-022-05344-1(农林二区TOP) 6. Shi Y.J., Wang J.F*., Ao Y.N., Han J.Y., Guo Z.H., Liu X.Y., Zhang J.W., Mu C.S., Rous X.L. 2021. Responses of soil N20 emissions and their abiotic and biotic drivers to altered rainfall regimes and co-occurring wet N deposition in a semi-aird grassland. Global Change Biology DOI: 10.1111/gcb.15792(生态学一区TOP) 7. Zhang J.W., Wu X.F., Shi Y.J., Jin C.J., Yang Y.H., Wei X.W., Mu C.S*., Wang J.F*. 2021. A slight increase in soil pH benefits soil organic carbon and nitrogen storage in a semi-aird grassland. Ecological Indicators 10.1016/j.ecolind.2021.108037(生态学二区) 8. Shi Y.J., Wang J.F*., Li Y.N., Zhang J.W., Ao Y.N., Guo Z.H., Mu C.S*., Rous X.L. 2021. Rainfall-associated chronic N deposition induces higher soil N20 emissions than acute N inputs in a semi-arid grassland. Agricultural and Forest Meteorology http://doi.org/10.1016/j.agrformet.2021.108434(农林一区TOP) 9. Zhang J.W., Gao X.D., Zheng X.Y., Yang Y.H., Fan G.H., Shi Y.J., Wang J.F*., Mu C.S*. 2021. A high stem to leaf ratio reduced rainfall-use efficiency under altered rainfall patterns in a semi-arid grassland in Northeast China. Plant Biology https://doi.org/10.1111/PLB.13278(植物科学二区) 10. Zhang J.W., Shen X.J., Mu B.F., Yang Y.H., Wu X.F., Mu C.S*., Wang J.F*. 2021. Moderately prolonged dry intervals between precipitaiton events promote production in Leymus chinensis in a semi-arid grassland of Northeast China. BMC Plant Biology https://doi.org/10.1186/s12870-021-02920-y(植物科学二区) 11. Tong R.Q., Liu X.Y., Mu B.F., Wang J.F*., Liu M.X., Zhou Y.C., Qi B.L., Mu C.S. 2021. Impacts of seed maturation and drought on seed germination and early seedling growth in White Clover (Trifolium repens L.). Legume Research Doi: 10.18805/LR-555 12. Gao S., Wang J.F*., Knops J.M.H., Wang J. 2020. Nitrogen addition increases sexual reproduction and improves seedling growth in the perennial rhizomatous grass Leymus chinensis. BMC Plant Biology Doi:10.1186/s12870-020-2307-8(植物科学二区) 13. Hu Y.Y., Wei H.W., Zhang Z.W., Hou S.L., Yang J.J., Wang J.F., Lü X.T*. 2020. Changes of plant community composition instead of soil nutrient status drive the legacy effects of historical nitrogen deposition on plant community N:P stoichiometry. Plant and Soil Doi:10.1007/s11104-020-04631-z(农林二区TOP) 14. Wei H.W.,Wang X.G., Li Y.B., Yang J.J.,Wang J.F.,Lü X.T*,Han X.G. 2020. Simulated nitrogen deposition decreases of soil microbial diversity in a semiarid grassland, with little mediation of this effect by mowing. Pedobiologia-Journal of Soil Ecology https://doi.org/10.1016/j.pedobi.2020.1506443. 15. Wang J.F*., Shi Y.J., Ao Y.N., Yu D.F., Wang J., Gao S., Knops J.M.H., Mu C.S*., Li Z.J. 2019. Summer drought decreases Leymus chinensis productivity through constraining the bud, tiller and shoot production. Journal of Agronomy and Crop Science DOI: 10.1111/jac.12354 (农林一区TOP) 16. Hu Y.Y., Sistla S., Wei W.H., Zhang Z.W., Wang J.F., Lü X.T*. 2019. Legacy effects of nitrogen deposition on plant nutrient stoichiometry in a temperate grassland. Plant and soil https://doi.org/10.1007/s11104-019-04357-7(农林二区TOP) 17. Shi Y.J., Wang J.F*., Xavier L.R., Ao Y.N.,Gao S., Zhang J.W., Knops J.M.H., Mu S.C*. 2019. Tradeoffs and synergies between seed yield, forage yield and N-related disservices for a semi-arid perennial grassland under different nitrogen fertilization strategies. Biology and Fertility Soils DOI: 10.1007/s00374-019-01367-6.(农林一区TOP) 18. Ao Y.N., Wang J.F*., Liu M.X., Wang J., Knops J.M.H., Mu C.S. 2019. Larger seed size shows less germination and seedling growth decline caused by seed ageing under Na2CO3 stress in Leymus chinensis. Agronomy Journal DOI: 10.2134/agronj2018.12.0757.(超本学科平均影响因子) 19. Li W.J*., Liu S.S., Li J.H., Zhang R.L., Rang C.K.Z., Zhou H.K., Yao B.Q., Wang J.F. 2019. Plant traits response to grazing exclusion by fencing assessed via multiple classification approach: a case from a subalpine meadow. Polish Journal of Ecology 67: 33-52. 20. Wang J.F., Knops J.M.H., Brassil C.E., Mu C.S. 2017. Increased productivity in wet years drives a decline in ecosystem stability with nitrogen additions in arid grasslands. Ecology 98: 1779-1786.(生态学一区TOP期刊) 21. Shi Y.J., Gao S., Zhou D.H., Liu M.X., Wang J.F*., Knops J.M.H., Mu C.S. 2017. Fall nitrogen application increases seed yield, forage yield and nitrogen use efficiency more than spring nitrogen application in Leymus chinensis, a perennial grass. Field Crops Research 214: 66-72.(农林一区TOP期刊) 22. Li Z.L., Lin J.X., Zhang N., Mu C.S*., Wang J.F*. 2014. Effects of summer nocturnal warming on biomass production of Leymus chinensis in the Songnen Grassland of China: from bud bank and photosynthetic compensation. Journal of Agronomy and Crop Science DOI: 10.1111/jac.12041.(农林一区TOP期刊) 23. Wang J.F., Li X.Y., Gao Song., Li Z.L., Mu C.S. 2013. Impacts of fall nitrogen application on seed production in Leymus chinensis, a rhizomatous perennial grass. Agronomy Journal 105: 1378-1384.(超本学科平均影响因子) 24. Gao S., Wang J.F., Dong G., Guo J.X. 2012. Seed production, mass, germinability, and subsequent seedling growth responses to parental warming environment in Leymus chinensis. Crop & Pasture Science 63(1):87-94. (Gao and Wang are co-first author).(超本学科平均影响因子,共同一作) 25. Wang J.F., Xie J.F., Zhang Y.T., Gao S., Zhang J.T., Mu C.S. 2010. Methods to Improve Seed Yield of Leymus chinensis based on Nitrogen Application and Precipitation Analysis. Agronomy Journal 102: 277-281.(超本学科平均影响因子) 26. Wang J.F., Gao S., Mu Y.G., Lin J.X., Mu C.S. 2010. Summer warming effects on biomass production and clonal growth of Leymus chinensis. Crop & Pasture Science 61: 670-676.(超本学科平均影响因子) 27. Zhang N., Lin J.X., Li Z.L., Wang Y., Cheng L.Y., Shi Y.J., Zhang Y.T., Wang J.F., Mu C.S. 2015. The tolerance of growth and clonal propagation of Phragmites australis (common reeds) subjected to lead contamination under elevated CO2 conditions,RSC Advances 5:55527-55535. (超本学科平均影响因子) 28. Zhang N., Zhang J.W., Yang Y.H., Lin J.X., Cheng L.Y., Wang J.F., Mu C.S. 2015. Effects of lead contamination on the clonal propagative ability of Phragmites australis (common reed) grown in wet and dry environment. Plant biology 17:893-903. (超本学科平均影响因子) 29. Li Z.L., Zhang Y.T., Yu D.F., Zhang N., Lin J.X., Zhang J.W., Tang J.H., Wang J.F., Mu C.S. 2014. The Influence of Precipitation Regimes and Elevated CO2 on Photosynthesis and Biomass Accumulation and Partitioning in Seedlings of the Rhizomatous Perennial Grass Leymus chinensis. PLos One 9:1-9.(超本学科平均影响因子) 30. Li X.Y., Wang J.F., Lin J.X., Wang Y., Mu C.S. 2014. Rhizomes Help the Forage Grass Leymus chinensis to Adapt to the Salt and Alkali Stresses. The Scientific World Journal 1-15. 31. Wang Z.F., Li Z.J., Yang Y.F., Zhu J.L., Zhang L.J., Liu Y.M., Wang J.F., 2014. Relationships of cold resistance and soluble carbohydrates in nine alfalfa cultivars in Northern China. Journal of Food, Agriculture & Environment 12:526-530. 32. Lin J.X., Wang J.F., Li X.Y., Zhang Y.T., Xu Q., Mu C.S. 2011. Effects of saline and alkaline stresses in varying temperature regimes on seed germination of Leymus chinensis from Songnen Grassland of China. Grass and Forage Science 66: 578-584.(超本学科平均影响因子) 33. Zhang J.T., Mu C.S., Wang D.L., Wang J.F., Chen G.X. 2009. Shoot population recruitment from a bud bank, over two seasons of undisturbed growth of Leymus chinensis. Canadian Journal of Botany 87: 1242-1249. 34. Lin J.X., Li X.Y., Zhang Z.J., Yu X.Y., Gao Z.W., Wang Y., Wang J.F., Li Z.L., Mu C.S*. 2012. Salinity alkalinity tolerance in wheat: Seed germination, early seedling growth, ion relations and solute accumulation. African Journal of Agricultural Research 7: 467-474. 35. Zhang Z.J., Gao J.C., Zhang Y.T., Jin C.J, Peng X.M., Lin J.X., Wang J.F., Mu C. S. 2011. Apical Meristem Differentiation in Reproductive and Vegetative Shoots in Rhizomatous Leymus chinensis. African Journal of Agricultural Research 21: 5005-5009. 36. 李文晶,王俊锋*,高晓荻,石玉杰,穆春生. 2021. 干旱条件下氮磷添加对羊草干草产量及饲用品质的影响. 草地学报 29(4):743-748. 37. 潘慧超, 王俊锋*, 敖云娜, 穆春生. 2021. 干旱胁迫下华北驼绒藜种子大小及苞片对萌发和幼苗生长的影响. 应用生态学 32(2):399-405. 38. 高嵩,王俊锋*,敖云娜. 2021. PEG与NaCl等渗胁迫对华北驼绒藜种子萌发及幼苗生长影响的差异. 中国草地学报 43(5):115-120. 39. 王俊锋, 穆春生, 李晓雪, 黄鹤, 张涛. 2020. 基于卓越教师培养的生物学本科生“文献阅读与科技论文写作”课程教学改革探索. 高校生物学教学研究 10(3):35-37. 40. 王姣,王俊锋*,刘梦醒,穆春生. 2020.干旱胁迫及复水对甘草实生苗根系生长的影响. 东北师范大学学报 (已接收). 41. 王俊锋, 穆春生, 高嵩, 张继涛, 于辉. 2009. 提高多年生根茎型禾草(羊草)种子产量方法的研究. 中国科技论文在线精品论文 2(7):707-713. 42. 王俊锋, 穆春生, 张继涛, 高嵩, 李晓宇. 2008. 施肥对羊草有性生殖影响的研究. 草业学报 17(3): 53-58. 43. 王俊锋, 高嵩, 王东升, 穆春生, 穆永光. 2007. 施肥对羊草叶面积与穗部数量性状关系的影响. 吉林师范大学学报(自然科学版) 28(1): 34-38. 44. 张涛, 于祥君, 王俊锋, 穆春生, 马玉波. 2017. 师范院校食品安全课程开设的必要性及对策. 40(5): 61-64. 45. 张继涛, 徐安凯, 王俊锋, 穆春生. 2009. 羊草种群各类地下芽的发生、输出与地上植株的形成、维持动态. 草业学报 18(4): 54-60. 46. 蔺吉祥, 李晓宇, 张兆军, 王俊锋, 李卓琳, 穆春生. 2011. 温度与盐碱胁迫交互作用对羊草种子萌发与幼苗生长的影响. 草地学报 19:1005-1009. 47. 蔺吉祥, 张兆军, 李晓宇, 唐佳红, 王俊锋, 穆春生. 2011. 羊草早期幼苗在盐、碱生境下生长与生理适应性的研究. 中国草地学报 33:64-69. 48. 蔺吉祥, 李晓宇, 唐佳红, 王俊锋, 李卓琳, 张兆军, 穆春生. 2011. 温度与盐、碱胁迫交互作用对小麦种子萌发的影响. 作物杂志 6:113-116. 49. 李晓宇, 穆春生, 王颖, 王俊锋, 张继涛. 2009. 不同外源激素对羊草有性生殖数量性状调控作用的研究. 中国草地学报 31(1): 17-22. 50. 刘玉英, 王颖, 穆春生, 李晓宇, 王俊锋, 侯宇. 2009. 广布野豌豆裂荚影响因素与裂荚日动态研究. 草业学报 18(3): 251-254. 51. 张兆军, 穆春生, 张继涛, 王俊锋, 宋金辉, 李晓宇. 2008. 羊草根茎顶芽分生组织分化的动态研究. 草业学报 17(1): 71-79. 52. 冯君, 王宇, 赵兰坡, 刘洪超, 王俊锋. 2007. 应用遥感技术对大安市草原土壤盐渍化现状的调查与对策研究. 吉林农业大学学报 29(2): 181-185,190. 53.... 会议论文 55. Wang J.F*., Ao Y.N., Shi Y.J., Liu M.X., Zhou D.H. 2017. Effects of salt stress, storage time, seed mass on seed germination rate and germination vigor of Leymus Chinensis. Proceedings of INTECOL, 707-708. 56. Shi Y.J., Zhang J.W., Han J.Y., Li S.Z., Wang J.F*., Mu C.S*. 2017. Fall nitrogen application is a proper choice to increase perennial grass seed yield in Leymus Chenisis grassland. Proceedings of INTECOL, 1063-1064 57. Knops J. M.H., Wang J.F., Chad E. Brassil. 2016. Nitrogen addition in dry grasslands lowers stability not because of lower diversity, but due to increased responsiveness to rainfall variability,101st ESA Annual Meeting, Florida, 2016.8.7- 2016.8.12. 58. Wang J.F.,Shi Y.J.,Mu C.S. Ratio of Seed Yield to Nitrogen Loss, an Effective Approach for Assessing Nitrogen Benefits and Risks in Perennial Grasses Seed Production in Semi-arid Regions,10th International Rangeland Congress,Saskatoon, 2016.7.17-22. 59. Shi Y.J., Cui Y.P., Wang J.F.*, Mu C.S. Relationships between nitrogen fertilizer application and nitrous oxide emission in Leymus chinensis grassland, Proceedings for the 5th China-Japan-Korea Grassland Conference: Knowledge Innovation of Grassland Sc, Changchun, 2014.8.20-2014.8.24.

社会兼职

获奖情况 (数据来源:科学技术处、社会科学处)

教学信息 (数据来源:教务处)

  • 草地科学与生态学研究方法
  • 生态学与草业科学研究方法
  • 教育实习8
  • 生物学文献及科技写作
  • 2018级留学生课程
  • 2020草学(硕士)
  • 2018级草学(硕士)
  • 2016级生态学、草学博士课
  • 2017级草学(硕士)
  • 2021草学(硕士)
  • 2016级生态学、草学硕士课
  • 2019级草学(硕士)
  • 毕业论文22
  • 生物微格教学5
  • 草地学
  • 植物学实验5
  • 毕业论文18
  • 基础实践5
  • 毕业论文34
  • 科学研究训练与创新Ⅰ
  • 生物技术专业实践Ⅰ
  • 生物微格教学5组
  • 基础实践5组
  • 植物学实验
  • 生物微格教学4组
  • 毕业论文
  • 基础实践4组

科研信息 (数据来源:科学技术处、社会科学处)

  • 项目:
  • 1. 羊草成穗关键障碍因子解析及调控技术研究,省、市、自治区科技项目,2024年
  • 2. 水氮失耦后果聚糖积累与分配对羊草芽库动态及种群恢复力的调节机理,国家自然科学基金项目,2023年
  • 3. 苦参碱对羊草蝗虫的药效试验,企事业单位委托科技项目,2022年
  • 4. 羊草根茎及根系空间结构对种群密度的调节机制,省、市、自治区科技项目,2021年
  • 5. 羊草地下器官构型对水氮协同的响应及对芽库,省、市、自治区科技项目,2020年
  • 6. 氮沉降和降雨变化下羊草地下器官构型与碳分配对芽库动态的调节机理,国家自然科学基金项目,2019年
  • 7. 草地土壤氮水耦合效应对氮素氧化亚氮损失的影响,省、市、自治区科技项目,2017年
  • 8. 退化、沙化草地羊草建植关键技术研究,“973”计划,2016年
  • 9. 松嫩草地氧化亚氮排放对降雨及氮沉降脉冲的响应机制,国家自然科学基金项目,2013年
  • 10. 吉林省公主岭市玉米品种分布调查及秸秆取样,企事业单位委托科技项目,2012年
  • 11. 水肥耦合技术提高羊草种子产量的研究,省、市、自治区科技项目,2012年
  • 专著:
  • 1. 吉林省草地主要有害生物名录汇编,吉林科学技术出版社,01-9年
  • 论文:
  • 1. Local climate conditions explain the divergent climate change effects on (de)nitrification across the grassland biome: A meta-analysis,SOIL BIOLOGY & BIOCHEMISTRY,2023年
  • 2. Changes in mass allocation play a more prominent role than morphology in resource acquisition of the rhizomatous Leymus chinensis under drought stress,ANNALS OF BOTANY,2023年
  • 3. Differences in Organic Solute and Metabolites of Leymus chinensis in Response to Different Intensities of Salt and Alkali Stress,PLANTS-BASEL,2023年
  • 4. The Shift in Key Functional Traits Caused by Precipitation under Nitrogen and Phosphorus Deposition Drives Biomass Change in Leymus chinensis,PLANTS-BASEL,2023年
  • 5. Physiological and metabolic responses of Leymus chinensis seedlings to alkali stress,PLANTS-BASEL,2022年
  • 6. Irrigation and Nitrogen Application Promote Population Density through Altered Bud Bank Size and Components in Leymus chinensis,AGRONOMY-BASEL,2022年
  • 7. Productivity of Leymus chinensis grassland is co-limited by water and nitrogen and resilient to climate change,PLANT AND SOIL,2022年
  • 8. Improved utilization of nitrate nitrogen through within-leaf nitrogen allocation trade-offs in Leymus chinensis,FRONTIERS IN PLANT SCIENCE,2022年
  • 9. A slight increase in soil pH benefits soil organic carbon and nitrogen storage in a semi-arid grassland,ECOL INDIC,2021年
  • 10. 氮沉降及物种多样性影响草地氧化亚氮排放研究进展,吉林师范大学学报(自然科学版),2021年
  • 11. Responses of soil N2O emissions and their abiotic and biotic drivers to altered rainfall regimes and co-occurring wet N deposition in a semi-arid grassland,GLOBAL CHANGE BIOLOGY,2021年
  • 12. A high stem to leaf ratio reduced rainfall use efficiency under altered rainfall patterns in a semi-arid grassland in Northeast China,PLANT BIOLOGY,2021年
  • 13. Rainfall-associated chronic N deposition induces higher soil N2O emissions than acute N inputs in a semi-arid grassland,AGRICULTURAL AND FOREST METEOROLOGY,2021年
  • 14. Impacts of seed maturation and drought on seed germination and early seedling growth in White Clover (Trifolium repens L.),LEGUME RESEARCH,2021年
  • 15. PEG与NaCl等渗胁迫对华北驼绒藜种子萌发及幼苗生长影响的差异,中国草地学报,2021年
  • 16. 干旱条件下氮磷添加对羊草干草产量及饲用品质的影响,草地学报,2021年
  • 17. Moderately prolonged dry intervals between precipitation events promote production in Leymus chinensis in a semi-arid grassland of Northeast China,BMC PLANT BIOL,2021年
  • 18. 干旱胁迫下华北驼绒藜种子大小及苞片对萌发和幼苗生长的影响,应用生态学报,2021年
  • 19. 基于卓越教师培养的生物学本科生“文献阅读与科技论文写作”课程教学改革探索,高校生物学教学研究(电子版),2020年
  • 20. Simulated nitrogen deposition decreases of soil microbial diversity in a semiarid grassland, with little mediation of this effect by mowing,PEDOBIOLOGIA,2020年
  • 21. Nitrogen addition increases sexual reproduction and improves seedling growth in the perennial rhizomatous grass Leymus chinensis,BMC PLANT BIOL,2020年
  • 22. Legacy effects of nitrogen deposition on plant nutrient stoichiometry in a temperate grassland,PLANT AND SOIL,2020年
  • 23. Summer drought decreases Leymus chinensis productivity through constraining the bud, tiller and shoot production,J AGRON CROP SCI,2019年
  • 24. Larger seed size shows less germination and seedling growth decline caused by seed ageing under Na2CO3 stress in Leymus chinensis,AGRON J,2019年
  • 25. Trade-offs and synergies between seed yield, forage yield and N-related disservices for a semi-arid perennial grassland under different nitrogen fertilization strategies,BIOL FERT SOILS,2019年
  • 26. Plant traits response to grazing exclusion by fencing assessed via multiple classification approach: a case from a subalpine meadow,POL J ECOL,2019年
  • 27. Fall nitrogen application increases seed yield, forage yield and nitrogen use efficiency more than spring nitrogen application in Leymus chinensis, a perennial grass,FIELD CROP RES,2017年
  • 28. 师范院校食品安全课程开设的必要性及对策,教学研究,2017年
  • 29. Effects of Salt Stress, Storaged Time, Seed Mass on Seed Germination Rate and Germination Vigor of Leymus Chinensis,Proceedings of INTECOL 2017 Beijing,2017年
  • 30. Fall Nitrogen Application Is a Proper Choice to Increase Perennial Grass Seed Yield in Leymus Chenisis Grassland,Proceedings of INTECOL 2017 Beijing,2017年
  • 31. Increased productivity in wet years drives a decline in ecosystem stability with nitrogen additions in arid grasslands,ECOLOGY,2017年
  • 32. The tolerance of growth and clonal propagation of Phragmites australis (common reeds) subjected to lead contamination under elevated CO2 conditions,RSC ADVANCES,2015年
  • 33. Effects of lead contamination on the clonal propagative ability of Phragmities australis (common reed) grown in wet and dry environments,PLANT BIOLOGY,2015年
  • 34. Relationships between nitrogen fertilizer application and nitrous oxide emission in Leymucs chinensis,The 5th China-Japan-Korea Grassland Conference,2014年
  • 35. The Influence of Precipitation Regimes and Elevated CO2 on Photosynthesis and Biomass Accumulation and Partitioning in Seedlings of the Rhizomatous Perennial Grass Leymus chinensis,PLoS ONE ,2014年
  • 36. Rhizomes Help the Forage Grass Leymus chinensis to Adapt to the Salt and Alkali Stresses,THESCIENTIFICWORLDJO,2014年
  • 37. Relationships of cold resistance and soluble carbohydrates in nine alfalfa cultivars in Northern China,J FOOD AGRIC ENVIRON,2014年
  • 38. Effects of Summer Nocturnal Warming on Biomass Production of Leymus chinensis in the Songnen Grassland of China: From Bud Bank and Photosynthetic Compensation,J AGRON CROP SCI,2014年
  • 39. Impacts of Fall Nitrogen Application on Seed Production in Leymus chinensis, a Rhizomatous Perennial Grass,AGRON J,2013年
  • 40. Seed production,mass,germinability,and subsequent seedling growth responses to parental warming environment in Leymus chinensis,CROP & PASTURE SCIENCE,2012年
  • 41. Salinity-alkalinity tolerance in wheat: Seed germination, early seedling growth, ion relations and solute accumulation,AFR J AGR RES,2012年
  • 42. 施肥对羊草有性生殖影响的研究,草业学报,2008年
  • 43. 羊草根茎顶芽分生组织分化的动态研究,草业学报,2008年
  • 44. 施肥对羊草叶面积与穗部数量性状关系的影响,吉林师范大学学报(自然科学版),2007年
  • 专利:
  • 一种测定茎中空草本植物茎壁体积和密度的方法 2019-09-27
  • 用芦苇根茎移栽重建和恢复湿地植被的方法 2012-12-12

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