王俊
职 称: 研究员
邮 编: 510650
专家类别: 正高级
电子邮件: wxj@scbg.ac.cn
通讯地址: 广州市天河区兴科路723号
简历

 王俊,男,安徽芜湖人,副研究员,硕士生导师,中国科学院青年创新促进会会员(2019年),广州市珠江科技新星(2017年)。主要从事生态系统恢复与管理的研究,近年来特别关注极端环境下植被构建与维持、全球变化背景下森林群落更新和养分循环,量化揭示了森林更新种源、优势树种幼苗对降水格局变化和氮沉降的响应规律,阐明了人工林恢复过程中乡土树种定居限制机理。现任《应用生态学报》编委。先后承担国家自然科学基金、科技部科技基础资源调查专项子课题、中科院重点部署项目课题、中国科学院先导科技专项子课题、中国科学院青促会会员项目、广东省自然科学基金、广州市科技创新人才专项等项目十多项。近年来发表研究论文60余篇,其中以第一作者在Journal of Environmental Management, Forest Ecology and Management, Global Ecology and Conservation等学术期刊上发表SCI论文13篇,参与编写专著3部。2012年获广东省科学技术一等奖(12/15)

教育背景与工作经历:

2000/09 – 2004/06,安徽师范大学,获理学学士学位

2004/09 – 2009/06,中国科学院华南植物园,获生态学博士学位

2009/08 – 2016/07,中国科学院华南植物园,助理研究员

2010/09 – 2010/12,美国田纳西州立大学,访问学者

2016/8 –  2022/10,中国科学院华南植物园,副研究员

2022/10-    至今  中国科学院华南植物园,研究员

研究方向
 恢复生态学、森林生态学
社会任职
《应用生态学报》编委(2021-2025) 深圳市城市地质调查高级顾问(2020-2022) 沈阳市中青年科技智库专家成员
代表成果
#Co-first author,*Corresponding author
[1] Wang J, Lu H, Lin Y, Campbell DE, Cai H, Ren H. 2021. Dynamics of community structure and bio-thermodynamic health of soil organisms following subtropical forest succession. Journal of Environmental Management, 280: 111647.

[2] Wang J, Hui D, Ren H, Liu N, Sun Z, Yang L, Lu H. 2021. Short-term canopy and understory nitrogen addition differ in their effects on seedlings of dominant woody species in a subtropical evergreen broadleaved forest. Global Ecology and Conservation, 31: e01855.

[3] Wang J, Huang Y, Guo Q, Yang L, Lu H, Ren H. 2021. Influence of simulated nitrogen deposition on the soil seed bank of a subtropical evergreen broadleaved forest. Forests, 12: 1538.

[4] Wang JHui D, Lu H, Wang F, Liu N, Sun Z, Ren H. 2019. Main and interactive effects of increased precipitation and nitrogen addition on growth, morphology, and nutrition of Cinnamomum burmanni seedlings in a tropical forest. Global Ecology and Conservation, 20: e00734.

[5] Wang J, Sun ZY, Hui DF, Yang L, Wang FM, Liu N, Ren H. 2018. Responses of seedling performance to altered seasonal precipitation in a secondary tropical forest, southern China. Forest Ecology and Management, 410: 27-34.

[6] Ren H#Wang J#, Liu H, Yuan L, Xu Y, Zhang Q, Yu H, Luo J. 2016. Conservation introduction resulted in similar reproductive success of Camellia changii compared with augmentation. Plant Ecology, 217: 219-228.

[7] Sun ZY, Wang J*, Ren H*, Guo QF, Shu JW, Liu N. 2016. To what extent local forest soil pollen can assist restoration in subtropical China? Scientific Reports, 6: 37188.

[8] Wang J, Huang L, Ren H, Sun Z, Guo Q. 2015. Regenerative potential and functional composition of soil seed banks in remnant evergreen broad-leaved forests under urbanization in South China. Community Ecology, 16: 86-94.

[9] Wang J, Ren H, Yang L, Liu N. 2013. Seedling morphological characteristics and seasonal growth of indigenous tree species transplanted into four plantations in South China. Landscape and Ecological Engineering, 9: 203-212.

[10] Wang J, Hui Dafeng, Ren Hai, Liu Zhanfeng, Yang Long. 2013. Effects of understory vegetation and litter on plant nitrogen (N), phosphorus (P), N:P ratio and their relationships with growth rate of indigenous seedlings in subtropical plantations. PLoS One, 8: e84130.

[11] Wang J, Ren H, Yang L, Li D. 2011. Factors influencing establishment by direct seeding of indigenous tree species in typical plantations and shrubland in South China. New Forests, 42:19-33.

[12] Wang J, Li DY, Ren H, Yang L. 2010. Seed supply and the regeneration potential for plantations and shrubland in southern China. Forest Ecology and Management, 259: 2390-2398.

[13] Wang J, Ren H, Yang L, Li D. 2009. Soil seed banks in four 22-year-old plantations in South China: Implications for restoration. Forest Ecology and Management, 258: 2000-2006.

[14] Wang J, Ren H, Yang L, Duan W. 2009. Establishment and early growth of introduced indigenous tree species in typical plantations and shrubland in South China. Forest Ecology and Management, 258: 1293-1300.

[15] Wang J, Zou C, Ren H, Duan W. 2009. Absence of tree seeds impedes shrubland succession in southern China. Journal of Tropical Forest Science, 21: 210-217.

[16] Yuan Y, Li Y, Mou Z, Kuang L, Wu W, Zhang J, Wang F, Hui D,Peuelas J, Sardans J, Lambers H, Wang J, Kuang Y, Li Z, Liu Z. 2021. Phosphorus addition decreases microbial residual contribution to soil organic carbon pool in a tropical coastal forest. Global Change Biology, 27: 454-466.

[17] Wu WJ, Kuang LH, Li Y, He LF, Mou ZJ, Wang FM, Zhang J, Wang J, Li ZA, Lambers H, Sardans J, Penuelas J, Geisen S, Liu ZF*. 2021. Faster recovery of soil biodiversity in native species mixture than in Eucalyptus monoculture after sixty years afforestation in tropical degraded coastal terraces. Global Change Biology, 27: 5329-5340.

[18] Wei L, Gosselin F, Rao X, Lin Y, Wang J, Jian S, Ren H. 2021. Overstory and niche attributes drive understory biomass production in three types of subtropical plantations. Forest Ecology and Management, 482: 118894.

[19] Yang L, Huang Y, Lima LV, Sun Z, Liu M, Wang J, Liu N, Ren H. 2021. Rethinking the ecosystem functions of Dicranopteris, a widespread genus of ferns. Frontiers in Plant Science, 11: 581513.

[20] Huang Y, Ren H, Wang J, Liu N, Jian S, Cai H, Hui D, Guo Q. 2021. Effects of Wollastonia biflora expansion on the soil seed bank in native forest communities on a tropical coral island. Global Ecology and Conservation, 25: e01403.

[21] Wei L, Gosselin F, Rao X, Lin Y, Wang J, Jian S, Ren H. 2021. Overstory and niche attributes drive understory biomass production in three types of subtropical plantations. Forest Ecology and Management, 482: 118894.

[22] Tian Y, Tao LB, Wang J, Lu HF, Zhou LX, Campbell DE, Ren H. 2020. Canopy and understory nitrogen addition did not significantly change the community structure of soil fauna under mature subtropical forest. Science of the Total Environment.718137438.

[23] Han TT, Ren H, Wang J, Lu H, Song G, Chazdon RL. 2020. Variations of leaf eco-physiological traits in relation to environmental factors during forest succession. Ecological Indicators, 117: 106511.

[24] Huang Y, Ren H, Wang J, Liu N, Jian S, Cai H, Hui D, Guo Q. 2020. Relationships between vegetation and soil seed banks along a center-to-edge gradient on a tropical coral island. Ecological Indicators, 117: 106689.

[25] Tian Y, Lu H, Wang J, Lin Y, Campbell DE, Jian S. 2019. Effects of canopy and understory nitrogen addition on the structure and eco-exergy of a subtropical forest community. Ecological Indicators, 106: 105459.

[26] Song GM, Wang J, Han TT, Wang Q, Ren H, Zhu HX, Wen XY, Hui DF. 2019. Changes in plant functional traits and their relationships with environmental factors along an urban-rural gradient in Guangzhou, China. Ecological Indicators, 106: 105558.

[27] Han T, Wang J, Ren H, Yi H, Zhang Q, Guo Q. 2019. Changes in defense traits of young leaves in subtropical forests succession. Plant Ecology, 220: 305-320.

[28] Liu N, Wu S, Guo Q, Wang J, Cao C, Wang J. 2018. Leaf nitrogen assimilation and partitioning differ among subtropical forest plants in response to canopy addition of nitrogen treatments. Science of Total Environment, 637-638: 1026-1034.

[29] Tang S, Xu Y, Lin Y, Hou E, Shen W, Wang J, Kuang Y. 2018. Seasonal drought may alter N availability but not water use efficiency of dominant trees in a subtropical forest. Global Ecology and Conservation, 16: e00475.  

[30] Ren H, Liu H, Wang J, Yuan L, Cui X, Zhang Q, Fu L, Chen H, Zhong W, Yang K, Guo Q. 2016. The use of grafted seedlings increases the success of conservation translocations of Manglietia longipedunculata (Magnoliaceae), a critically endangered tree. Oryx, 50: 437-445.

[31] Yang L, Chen Y, Huang Y, Li Y, Wen W, Liu N, Wang J. 2016. Effects of shrub islands created by Rhodomyrtus tomentosa (AITON) Hassk. on the growth, chlorophyll fluorescence, and chloroplast ultrastructure of pine seedlings in degrade land of South China. Land Degradation & Development, 27: 729-737.

[32] Chen Y, Sayer EJ, Li Z, Mo Q, Li Y, Ding Y, Wang J, Lu X, Tang J, Wang F. 2016. Nutrient limitation of woody debris decomposition in a tropical forest: Contrasting effects of N and P addition. Functional Ecology, 30: 295-304.

[33] 孙中宇,常斌,杨龙,陈燕乔,王俊*. 2017. 地被物处理及补苗对华南退化荒坡乡土树种定居的影响生态环境学报,26(6): 956-963.

[34] 汪越,刘楠,任海,邵玲,陈雄伟,陈刚,王俊*. 2015. 紫背天葵(Begonia fimbristipula Hance)叶片形态和生理生态特征对不同光强的响应生态环境学报,24: 957-964.

[35] 韩涛涛,唐玄,任海,王俊,刘楠,郭勤峰. 2021. 群落/生态系统功能多样性研究方法及展望生态学报,41(8) : 3286-3295.

[36] 任海,简曙光,张倩媚,王发国,沈彤,王俊中国南海诸岛的植物和植被现状生态环境学报,2610):1639-1648.

[37] 任海王俊陆宏芳. 2014. 恢复生态学的理论与研究进展生态学报, 34(15): 4117-4124.

[38] 主编:孙中宇、杨龙、吴林芳副主编:黄钰辉、王俊、黄萧洒. 2021. 华南森林树冠图谱·广东分册华南理工大学出版社.

[39] 主编:简曙光,任海副主编:刘东明,王俊,沈彤. 2017. 热带珊瑚岛礁植被恢复工具种图谱中国林业出版社.

[40] 主编:刘东明,李作恒,王丙兴,赵文忠副主编:陈红锋,王发国,王俊,严慧玲,何蓉蓉,湛金锁,张永夏,唐小清. 2016. 山区高速公路边坡生态恢复与重建技术及实践人民交通出版社. 

专利:

[1]  王俊、刘春常、肖能鑫、陈存颖、吴兴. 2020. 坡面景观绿化系统实用新型专利,ZL202022853211.3.

[2]  林永标、王俊、陆宏芳、汪雁佳. 2021. 一种利用草豆蔻林下快速固碳的方法发明专利,ZL202010501642. 5.

[3]  刘东明、简曙光、王发国、王俊. 2021. 一种用于特殊生境生态修复的绿化种植构件. ZL 202021065224.8.

[4]  任海、简曙光、张倩媚、王俊、石守侠、唐军务、刘锦红、沈彤. 2020. 一种在热带珊瑚岛礁营建近自然植被的方法发明专利,ZL201710581090.1.

[5]  吴兴、王俊、刘春常、肖能鑫,陈存颖. 2020. 屋顶绿化结构实用新型专利, ZL202020686529.4.

[6]  任海、王俊、简曙光、王春南、张倩媚、闫树永. 2018. 一种促进椰子树或露兜树在非滨海沙地定居和结果的方法发明专利,ZL201510338188.5.

[7]  韩涛涛、周浪、王俊、莫定升. 2017. 一种土壤中的小型动物分离装置实用新型专利, ZL201720130553.8.

[8]  周浪、韩涛涛、陆宏芳、王俊、林永标. 2017. 一种轻便式森林穿透雨收集装置实用新型专利,ZL20172013443.16.

[9]  任海、王俊、张倩媚、范桑桑、张佩霞. 2013. 一种利用小花露籽草建立耐荫草坪的方法发明专利,ZL201110420446.6.

承担科研项目情况
[1]     国家自然科学基金面上项目-降水格局变化对磷限制热带森林树种幼苗与林下植物互作的影响机制,2022.01–2025.12.

[2]     科技部科技基础资源调查专项子课题-中沙群岛近纬度海岛植物资源调查及引种、筛选,2019.1–2022.12.

[3]     中国科学院人才项目-中国科学院青年创新促进会会员,2019.1–2022.12.

[4]     广东省自然科学基金面上项目-华南热带森林幼苗定居和生长对降水格局变化和模拟氮沉降的响应,2017.05–2020.05.

[5]     广州市创新人才计划项目-亚热带常绿阔叶林幼苗生长与种间互作对林冠模拟氮沉降的响应机制,2017.05–2020.04.

[6]     广东省科技计划项目-广东省热带亚热带植物种质资源库建设,2014.01–2018.12.

[7]     国家自然科学基金青年项目-城郊梯度下的南亚热带常绿阔叶林天然更新过程与响应机制,2012.01–2014.12.