湿地与克隆生态学研究所

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于飞海研究生/博士

学科/专业:克隆生态学、湿地生态学、入侵生态学

职称/职务:教授/博导

Email:feihaiyu@126.com

教育和工作经历

2017 – 今 台州学院,教授

2009 – 2017 北京林业大学,教授、博导

2005 – 2009 中国科学院植物研究所,副研究员,硕导

2002 – 2005 瑞士森林、雪和景观研究所,博士后

1997 – 2002 中国科学院植物研究所,硕-博连读,获生态学博士学位

1993 – 1997 杭州大学,本科,获生物学学士学位

2008.10.1-10.31 捷克科学院植物研究所,访问学者

2008.11- 2009.2 美国麻省大学Amherst校区,访问学者

2014.7-2015.2 美国印第安纳大学Bloomington校区,高级访问学者


主要研究领域

克隆生态学、湿地生态学、入侵生态学


期刊编委

Flora (编委2020-今;学科编委2015-2020; 编委2010-2014)

Biological Invasions (编委, 2013-金)

Forests (编委 2014-今)

Forest Ecosystems (编委2014-今)

Phyton (编委 2020-今)

Frontiers in Plant Science (客座编委, 2016, 2018, 2020-今)

《生物多样性》 (编委2009-今) 、

《植物生态学报》 (编委2011-今)

《生态学报》(编委2013-今)

《北京林业大学学报》(副主编2013-今)

《湖南生态科学学报》(编委2020-今)

Journal of Plant Research (编委2015-2019)

PloS ONE (编委2013-2014)

Dataset Papers in Science (编委2012-2014)

The Open Forest Science Journal (编委2010-2013)


奖励和荣誉

入选“爱思唯尔2020年和2021年中国高被引学者”(2021和2022年)

入选“中国生态与演化领域顶尖科学家”(来自Research.com)榜单(2022年)

入选“全球顶尖前10万科学家排名”(来自全球学者库)榜单(2021和2022年)

浙江省自然科学奖三等奖(2020;植物克隆生长的生态对策意义,2019-Z-3-020-R03,排名第三,董鸣、宋垚彬、于飞海、叶学华、刘建)

入选浙江省“万人计划”科技创新领军人才(2018年)

环境保护科学技术奖二等奖(2017年;主要外来生物入侵机理及控制关键技术研究,KJ2017-2-15,排名第三,李俊生、赵彩云、于飞海、李钧敏、张利权、李军、袁琳、龚世平、郑玉龙)

入选浙江台州市“500精英”A类(2016年)

获中国生态学学会第三届青年科技奖(2013年)

入选首批北京林业大学“杰出青年人才培育计划”(2013年)

入选教育部“新世纪优秀人才支持计划”(2010年)

获中国科学院王宽诚教育基金会奖学金国际会议项目(2009年)

获中国科学院地奥奖学金(二等奖,2002年)


主要科研项目

亲体效应在种群和群落水平的作用及其表观遗传机制(国家自然科学基金面上项目,2021-2024,主持人)

浙江省“万人计划”科技创新领军人才项目(浙江省科技厅,2019-2021,主持人)

植物多样性对有机污染土壤修复的影响机制(浙江省自然科学基金-台州市联合基金/重点项目,2020-2023,主持人)

克隆性对竹林生产力和拓展能力的影响机制(国家自然科学基金面上项目,2019-2022,主持人)

植物共存、多样性与超产效应的微生物生态进化反馈驱动机制(中美(NSFC-NSF)生物多样性合作研究项目,美国合作人James Bever教授,2018 -2022,中方课题主持人)

环境异质性对克隆内和克隆间作用关系的影响(国家自然科学基金面上项目,2016-2019,主持人)

入侵生态系统危害等级划分和快速识别技术(国家重点研发计划——“主要入侵生物生态危害评估与防制修复技术示范研究”第一课题,2016-2018,课题主持人)

教育部“新世纪优秀人才支持计划”(2011-2013;主持人)

克隆多样性与物种多样性的相关性及机制(国家自然科学基金面上项目,2011-2013,主持人)

植物性状在群落中作用的模型研究(国家自然科学基金国际(地区)合作与交流项目,2010-2010,主持人)

湖泊湿地植被恢复与重建关键技术研究(林业公益项目,2011-2013,主持人)

克隆生活史性状在植物入侵过程中的作用(中瑞科技合作联合研究项目,瑞方合作人Mark van Kleunen教授;2009-2011;中方主持人)

克隆植物对沙地异质环境的适应对策(国家重点基础研究发展【973】规划项目子课题,2007-2011;子课题主持人)

沙地游击型克隆植物对沙埋和风蚀的适应机制(国家自然科学基金面上项目,2008-2010,主持人)

克隆整合对草地植物竞争力、群落组成和生态系统功能的影响(国家自然科学基金青年项目,2006-2008,主持人)


论著

迄今发表论著310余篇(部),含SCI论文270余篇,部分论文如下:

1. Wang J, Li S-P, Ge Y, Wang X-Y, Gao S, Chen T, Yu F-H*. 2022. Darwin’s naturalization conundrum reconciled by changes of species interactions. Ecology DOI: 10.1002/ecy.3850.

2. Wang Y-J, Liu Y-Y, Chen D, Du D-L, Müller-Schärer H, Yu F-H*. 2022. Clonal functional traits favor the invasive success of alien plants into native communities. Ecological Applications DOI:10.1002/eap.2756

3. Xue W, Huang L, Yu F-H*, Bezemer M. 2022. Light condition experienced by parent plants influences the response of offspring to light via both parental effects and soil legacy effects. Functional Ecology 36: 2434-2444.

4. Wang X, Wang J, Hu B, Zheng W-L, Li M, Shen Z-X, Yu F-H*, Schmid B, Li M-H. 2022. Richness, not evenness, of invasive plant species promotes invasion success into native plant communities via selection effects. Oikos 2022: e08966.

5. Wang J, Ge Y, Cornelissen JHC, Wang X-Y, Gao S, Bai Y, Chen T, Jing Z-W, Zhang C-B, Liu W-L, Li J-M, Yu F-H*. 2022. Litter nitrogen concentration changes mediate effects of drought and plant species richness on litter decomposition. Oecologia 198: 507-518.

6. Xue W, Huang L, Sheng W-J, Zhu J-T, Li S-Q, Yu F-H*. 2022. Contrasting effects of plant-soil feedbacks on growth and morphology of physically-connected daughter and mother ramets in two clonal plants. Plant and Soil 472: 479-489.

7. Wan J-Z, Wang C-J, Zimmermann N, Li M-H, Pouteau R, Yu F-H*. 2021. Current and future plant invasions in protected areas: does clonality matter? Diversity and Distribution 27: 2465–2478

8. Li Q-W, Zhang X-Y, Liang J-F, Gao J-Q*, Xu X-L, Yu F-H*. 2021. High nitrogen uptake and utilization contribute to the dominance of invasive Spartina alternifora over native Phragmites australis. Biology and Fertility of Soils 57: 1007–1013.

9. Gao F-L, He Q-S, Xie R-Q, Hou J-H, Shi C-L, Li-JM, Yu F-H*. 2021. Interactive effects of nutrient availability, fluctuating supply, and plant parasitism on the post-invasion success of Bidens pilosa. Biological Invasions 23: 3035–3046.

10. Adomako MO, Xue W, Du D-L, Yu F-H*. 2021. Soil biota and soil substrates influence responses of the rhizomatous clonal grass Leymus chinensis to nutrient heterogeneity. Plant and Soil 465:19–29.

11. Liu Y, Oduor A, Dai Z-C, Gao F-L, Li J-M, Zhang X, Yu F-H*. 2021. Suppression of a plant hormone gibberellin reduces growth of invasive plants more than native plants. Oikos 130: 781–789.

12. Wang J, Xu T, Wang Y, Li G, Abdullah I, Zhong Z, Liu J, Zhu W, Wang L*, Wang D, Yu F-H*. 2021. A meta-analysis of effects of physiological integration in clonal plants under homogeneous vs. heterogeneous environments. Functional Ecology 35: 578-589.

13. Wei G-W, Chen Y-H, Sun X-S, Matsubara S, Luo F-L*, Yu F-H*. 2021. Elevation-dependent selection for plasticity in leaf and root traits of Polygonum hydropiper in response to flooding. Environment and Experimental Botany 182: 104331.

14. Xue W, Shen J-X, Guo Z-W, Lei J-P, Li J-M, Yu F-H*, Li M-H. 2021. Shoot removal interacts with soil temperature to affect survival, growth and physiology of young ramets of a bamboo. Forest Ecology and Management 481: 118735.

15. Adomako MO, Alpert P, Du D-L, Yu F-H*. 2021. Effects of fragmentation of clones compound over vegetative generations in the floating plant Pistia stratiotes. Annals of Botany 127: 123–133.

16. Gao F-L, Alpert P, Yu F-H*. 2021. Parasitism induces negative effects of physiological integration in a clonal plant. New Phytologist 229: 585–592.

17. Xue W, Wang W-L, Yuan Q-Y, Yu F-H*. 2020. Clonal integration in Phragmites australis alters soil microbial communities in an oil-contaminated wetland. Environmental Pollution 265: 114828.

18. Liang J-F, Yuan W-Y, Gao J-Q*, Roiloa SR, Song M-H, Zhang X-Y, Yu F-H*. 2020. Soil resource heterogeneity competitively favors an invasive clonal plant over a native one. Oecologia 193:155–165

19. Lu H-Z, Brooker R, Song L, Liu W-Y*, Sack L, Zhang J-L, Yu F-H*. 2020. When facilitation meets clonal integration in forest canopies. New Phytologist 225: 135–142.

20. Wang M-Z, Li H-L, Li J-M, Yu F-H*. 2020. Correlations between genetic, epigenetic and phenotypic variation of an introduced clonal herb. Heredity 124: 146–155.

21. Adomako MO, Ning L, Tang M, Du D-L, van Kleunen M, Yu F-H*. 2019. Diversity- and density-mediated allelopathic effects of resident plant communities on invasion by an exotic plant. Plant and Soil 440: 581-592.

22. Liang J-F, An J, Gao J-Q*, Zhang X-Y, Song M-H, Yu F-H*. 2019. Interactive effects of biochar and AMF on plant growth and greenhouse gas emissions from wetland microcosms. Geoderma 346: 11-17.

23. Dong B-C, Wang M-Z, Liu R-H, Luo F-L, Li H-L, Yu F-H*. 2018. Direct and legacy effects of herbivory on growth and physiology of a clonal plant. Biological Invasions 20: 3631–3645.

24. Luo F-L, Matsubara S, Chen Y, Wei G-W, Dong B-C, Zhang M-X, Yu F-H*. 2018. Consecutive submergence and de-submergence both impede growth of a riparian plant during water level fluctuations with different frequencies. Environmental and Experimental Botany 155: 641-649.

25. Song M-H, Zheng L-L, Yin T-F, Zhang X-Z, Yu F-H*, Cornelissen JHC. 2018. Changes in quantity rather than palatability of alpine meadow species induce cascading effects of long-term nitrogen fertilization on phytophagous insect abundance. Journal of Vegetation Science 29: 867–876

26. Song M-H*, Guo Y, Yu F-H*, Zhang X-Z, Cao G-M, Cornelissen JHC. 2018. Shifts in priming partly explain impacts of long-term nitrogen input in different chemical forms on soil organic carbon storage. Global Change Biology 24: 4160-4172.

27. Wang J*, Yu F-H*. 2018. Effects of functional diversity and functional dominance on complementary light use depend on evenness. Journal of Vegetation Science 29: 726-736.

28. Xue W, Huang L, Yu F-H*, Bezemer TM. 2018. Intraspecific aggregation and soil heterogeneity: competitive interactions of two clonal plants with contrasting spatial architecture. Plant and Soil 425: 231-240.

29. Gao J-Q*, Duan M-Y, Zhang X-Y, Li Q-W, Yu F-H*. 2018. Effects of frequency and intensity of drying-rewetting cycles on Hydrocotyle vulgaris growth and greenhouse gas emissions from wetland microcosms. Catena 164: 44-49.

30. Liu L, Alpert P, Dong B-C, Li J-M, Yu F-H*. 2017. Combined effects of soil heterogeneity, herbivory and detritivory on growth of the clonal plant Hydrocotyle vulgaris. Plant and Soil 421: 429-437.

31. Wang Y-J, Müller-Schärer H, van Kleunen M, Cai A-M, Zhang P, Yan R, Dong B-C, Yu F-H*. 2017. Invasive alien plants benefit more from clonal integration in heterogeneous environments than natives. New Phytologist 216: 1072–1078.

32. Ning L, Yu F-H*, van Kleunen M. 2016. Allelopathy of a native grassland community as a potential mechanism of resistance against invasion by introduced plants. Biological Invasions 18: 3481-3493.

33. Gao J*, Feng J, Zhang X, Yu F-H*, Xu X, Kuzyakov Y. 2016. Drying-rewetting cycles alter carbon and nitrogen mineralization in litter-amended alpine wetland soil. Catena 145: 285-290.

34. Wang P, Alpert P, Yu F-H*. 2016. Clonal integration increases relative competitive ability in an invasive, aquatic plant. American Journal of Botany 103: 2079-2086.

35. Luo F-L, Huang L, Lei T, Xue W, Li H-L, Yu F-H*, Cornelissen JHC. 2016. Responsiveness of performance and morphological traits to experimental submergence predict field distribution pattern of wetland plants. Journal of Vegetation Science 27: 340-351.

36. Song M-H, Zheng L-L, Suding KN, Yin T-F, Yu F-H*. 2015. Plasticity in nitrogen form uptake and preference in response to long-term nitrogen fertilization. Plant and Soil 394: 215–224.

37. Mo Y, Deng Z-H, Gao J-Q*, Guo Y-X, Yu F-H*. 2015. Does richness of emergent plants affect CO2 and CH4 emissions in experimental wetlands? Freshwater Biology 60: 1537–1544.

38. Dong B-C, Alpert P, Zhang Q, Yu F-H*. 2015. Clonal integration in homogeneous environments increases performance of Alternanthera philoxeroides. Oecologia 179: 393–403.

39. Song M-H, Yu F-H*. 2015. Reduced compensatory effects explain the nitrogen-mediated reduction in stability of an alpine meadow on the Tibetan Plateau. New Phytologist 207: 70-77.

40. Luo F-L, Chen Y, Huang L, Wang A, Zhang M-X, Yu F-H*. 2014. Shifting effects of physiological integration on performance of a clonal plant during submergence and de-submergence. Annals of Botany 113: 1265-1274.

41. Gao J-Q, Mo Y, Xu X-L, Zhang X-W, Yu F-H*. 2014. Spatiotemporal variations affect uptake of inorganic and organic nitrogen by dominant plant species in an alpine wetland. Plant and Soil 381: 271-278.

42. Li S-L, Yu F-H*, Werger MJA, Dong M, Ramula S, Zuidema PA. 2013. Understanding the effects of a new grazing policy: the impact of seasonal grazing on shrub demography in the Inner Mongolian steppe. Journal of Applied Ecology 50: 1377–1386.

43. Song Y-B, Yu F-H*, Li J-M, Keser LH, Fischer M, Dong M, van Kleunen M. 2013. Plant invasiveness is not linked to the capacity of regeneration from small fragments: an experimental test with 39 stoloniferous species. Biological Invasions 15: 1367–1376.

44. Song Y-B, Yu F-H*, Keser LH, Dawson W, Fischer M, Dong M*, van Kleunen M. 2013. United we stand, divided we fall: a meta-analysis of experiments on clonal integration and its relationship to invasiveness. Oecologia 171: 317-327.

45. Song M-H, Yu F-H*, Ouyang H, Cao G-M, Xu X-L, Cornelissen JHC. 2012. Different inter-annual responses to availability and form of nitrogen explain species coexistence in an alpine meadow community after release from grazing. Global Change Biology 18: 3100-3111.

46. Xu L, Yu F-H*, van Drunen E, Schieving F, Dong M*, Anten NPR. 2012. Trampling, defoliation and physiological integration affect growth, morphological and mechanical properties of a root-suckering clonal tree. Annals of Botany 109: 1001-1008.

47. Dong B-C, Alpert P, Guo W, Yu F-H*. 2012. Effects of fragmentation on the survival and growth of the invasive, clonal plant Alternanthera philoxeroides. Biological Invasions 14: 1101-1110.

48. Zhou J, Dong B-C, Alpert P, Li H-L, Zhang M-X, Lei G-C, Yu F-H*. 2012. Effects of soil nutrient heterogeneity on intraspecific competition in the invasive, clonal plant Alternanthera philoxeroides. Annals of Botany 109: 813–818.

49. Li S-L, Yu F-H*, Werger MJA, Dong M*, Zuidema PA. 2011. Habitat-specific demography across dune fixation stages in a semi-arid sandland: understanding the expansion, stabilization and decline of a dominant shrub. Journal of Ecology 99: 610-620.

50. Yu F-H*, Wang N, Alpert P, He W-M, Dong M. 2009. Physiological integration in an introduced, invasive plant increases its spread into experimental communities and modifies their structure. American Journal of Botany 96: 1983–1989.

51. Du J, Yu F-H*, Alpert P, Dong M*. 2009. Arbuscular mycorrhizal fungi reduce effects of physiological integration in Trifolium repens. Annals of Botany 104: 335-343.

52. Yu F-H, Wang N, He W-M, Chu Y, Dong M. 2008. Adaptation of rhizome connections in drylands: Increasing tolerance of clones to wind erosion. Annals of Botany 102: 571-577.

53. Yu H, Yu F-H*, Miao S-L, Dong M*. 2008. Holoparasitic Cuscuta campestris suppresses invasive Mikania micrantha and contributes to native community recovery. Biological Conservation 141: 2653-2661.

54. Wang N, Yu F-H*, Li P-X, He W-M, Liu F-H, Liu J-M, Dong M*. 2008. Clonal integration affects growth, photosynthetic efficiency and biomass allocation, but not the competitive ability, of the alien invasive Alternanthera philoxeroides. Annals of Botany 101: 671-678.

55. Liu F-H, Yu F-H*, Liu W-S, Krüsi BO, Cai X-H, Schneller JJ, Dong M*. 2007. Large clones on cliff faces: expanding by rhizomes through crevices. Annals of Botany 100: 51-54.

56. Yu F-H*, Krusi B, Schutz M, Schneller J, Wildi O. 2006. Is vegetation inside Carex sempervirens tussocks highly specific or an image of the surrounding vegetation? Journal of Vegetation Science 17: 567-576.

57. Yu F-H, Dong M, Krusi B. 2004. Clonal integration helps Psammochloa villosa survive sand burial in an inland dune. New Phytologist 162: 697-704.