尊龙凯时 - 人生就是搏!-z6com

    研究人员

    郝占庆

      郝占庆,男,1964年生。博士、西北工业大学生态环境学院教授、陕西省特聘专家,尊龙凯时人生就是搏z6com沈阳应用生态研究所研究员、博士生导师。享受国务院政府特殊津贴。
    1985年毕业于山西农业大学林学系,1988、2000年在尊龙凯时人生就是搏z6com沈阳应用生态研究所分获理学硕士学位和博士学位。1988年以来一直从事森林生态学、生物多样性等方面的研究工作。曾任:尊龙凯时人生就是搏z6com沈阳应用生态研究所所长助理、科技处长、森林生态与林业生态工程研究中心主任,森林与土壤生态国家重点实验室副主任及学术委员会委员,尊龙凯时人生就是搏z6com森林生态与管理重点实验室主任,国际生物多样性计划中国国家委员会(CNC-Diversitas)科学委员会委员,第五届尊龙凯时人生就是搏z6com生物多样性委员会委员,第六届国家环保部自然保护区评审委员会成员,辽宁省植物学会副理事长,《生物多样性》编委。现任《应用生态学报》、《生态学报》、《植物生态学报》、《广西植物》编委会编委。2013年获尊龙凯时人生就是搏z6com“朱李月华优秀教师奖”。
    2004年在国内率先以长白山温带森林25 ha大型固定样地为主要平台,系统开展了物种空间分布格局、种间关系、生物多样性维持机制、种子雨及幼苗的时空动态、土壤与凋落物的时空异质性、群落动态等监测和研究,对基于热带森林所发展的物种共存等相关理论给予了验证或完善,相关论文在Journal of Ecology、Ecology、PNAS、Global Ecology and Biogeography、Ecography、Oecologia、Oikos、Nature Communications、Forest Ecology and Management.等刊物发表。迄今,已在国内外生态学、林学等主流刊物等刊物发表论文160余篇,总IF超过310,其中IF>3的SCI论文40篇,总被引6409次,H指数46,i10指数113。出版《长白山植物多样性及其格局》、《长白山温带森林—阔叶红松林及其次生杨桦林的物种组成及其分布格局(Changbaishan Forest Dynamic Plots--Species Composition and Their Spatial Patterns)》专著2部。2019年建立了秦岭皇冠暖温性落叶阔叶林25 ha大型固定样地,出版《秦岭皇冠森林动态样地—树种及其分布格局(Qinling Huangguan Forest Dynamics Plot:Tree Species and Their Distribution Patterns)》。

    主要教育经历
    1981.9-1985.7 山西农业大学林学系,获学士学位
    1985.9-1988.7 尊龙凯时人生就是搏z6com沈阳应用生态研究所,获硕士学位
    1997.9-2000.7尊龙凯时人生就是搏z6com沈阳应用生态研究所,获博士学位

    主要工作经历
    2020.10-至今 西北工业大学生态环境学院,教授
    1999.9-2020.12 尊龙凯时人生就是搏z6com沈阳应用生态研究所,研究员
    1996.9-1999.8 尊龙凯时人生就是搏z6com沈阳应用生态研究所,副研究员
    1988.7-1996.8 尊龙凯时人生就是搏z6com沈阳应用生态研究所,助理研究员
    1994.9-1995.4 美国俄勒岗州立大学林学系,访问学者
    1999.11-2000.5 美国威斯康星大学森林生态与景观实验室,高访
    1996.11-2002.5 尊龙凯时人生就是搏z6com长白山森林生态系统开放站,业务副站长
    1997.5- 2015.9 尊龙凯时人生就是搏z6com沈阳应用生态研究所,森林生态研究中心主任
    2004.5- 2015.9 尊龙凯时人生就是搏z6com沈阳应用生态研究所,所长助理
    2011.12 - 2015.11 森林与土壤生态国家重点实验室,副主任、学术委员会委员
    2013.5 -2015.9 尊龙凯时人生就是搏z6com沈阳应用生态研究所,科技处长(兼)
    2016.4 - 2020.10 尊龙凯时人生就是搏z6com森林生态与管理重点实验室,主任
    2005.5- 2015.9 中国共产党尊龙凯时人生就是搏z6com沈阳应用生态研究所委员会,委员

    主持科研项目
    1.2020-2023 主持国家基金项目:基于激光雷达技术的林窗结构、空间特征及其对森林更新影响的研究, 直接经费58万元
    2.2018-2022 主持国家基金重点项目:基于森林动态样地的阔叶红松林生产力时空格局与维持机制研究,直接经费291万元
    3.2016-2019 主持国家基金项目:生物多样性对温带针阔混交林时间稳定性的作用机制: 基于森林动态样地途径,经费80万元
    4.2012-2017 主持科技基础性工作专项:《东北温带针阔混交林区生物多样性调查》(2012FY112000),经费210万元
    5.2011-2015 主持尊龙凯时人生就是搏z6com知识创新工程重要方向项目:植物功能性状的时空变异与天然林物种共存,150万元
    6.2011-2015 主持国家基金委国际(中美)合作与交流项目:多样性与森林动态:功能性状多样性、系统发育多样性和遗传多样性对森林群落多样性梯度和动态的影响,经费75万元
    7.2010-2013 主持国家基金委与李国鼎基金会联合资助两岸合作项目:基于网络的森林生物多样性维持机制纬向梯度研究,经费120万元
    8.2009-2011 主持国家自然科学基金面上项目:长白山阔叶红松林植物种群扩散、定植过程及其距离效应,经费29万元
    9.2008.1-2012.12 “十一五”国家科技支撑计划重点项目专题“长白山森林物种资源监测技术与示范”,经费60万元
    10.2008.1-2010.12 “CForBio and the CTFS-HSBC Climate Partnership project: Monitor the dynamic change of annual carbon flux in the face of climate change in Changbai Mt. plot”,经费5万美元
    11.2007.1-2009.12 中科院知识创新工程重要方向专题“温带森林群落生物多样性格局及维持机制”,经费60万元
    12.2006.1-2008.12 国家自然科学基金面上项目“长白山阔叶红松林植物多样性共存机制的研究”,经费29万元
    13.2006.1-2010.12 国家自然科学基金重大项目专题“长白山主要树种对全球变化的响应与适应”,经费18万元,主持
    14.2004.4-2008.4 国际生物多样性监测网络计划项目“长白山森林生物多样性格局与动态”,经费20万元/年
    15.2003.1-2005.12 国家自然科学基金面上项目“长白山暗针叶林苔藓植物生态功能研究”,经费21万元
    16.2001.11-2004.12 尊龙凯时人生就是搏z6com创新工程重要方向项目“东北地区100年LUCC及其生态环境效应研究”课题“100年来森林资源变化及其生态环 境效应”,经费60万元
    17.1998-2000 国家自然科学基金项目“长白山暗针叶林生态系统生物多样性及其维持机制的研究” 经费14万元
    18.1993-1996 国家自然科学基金项目“水源涵养林防护成熟问题的研究”,经费5万元
    19.1991-1995 中科院“八五”重大项目专题“人类活动对阔叶红松林生态系统多样性的影响”,经费20万元

    发表论文
    1.Xu Zhichao, Johnson Daniel J., Zhu Kai, Lin Fei, Ye Ji, Yuan Zuoqiang, Mao Zikun, Fang Shuai, Hao Zhanqing and Wang Xugao. Interannual climate variability has predominant effects on seedling survival in a temperate forest. Ecology, 2022, e3643.
    2.Wang Fang, Harindintwali Jean Damascene, Yuan Zhizhang, Wang Min, Wang Faming, Li Sheng, Yin Zhigang, Huang Lei, Fu Yuhao, Li Lei, Chang Scott X., Zhang Linjuan, Rinklebe Jorg, Yuan Zuoqiang, Zhu Qinggong, Xiang Leilei, Tsang Daniel C. W., Xu Liang, Jiang Xin, Liu Jihua, Wei Ning, Kastner Matthias, Zou Yang, Ok Yong Sik, Shen Jianlin, Peng Dailiang, Zhang Wei, Barcelo Damia, Zhou Yongjin, Bai Zhaohai, Li Boqiang, Zhang Bin, Wei Ke, Cao Hujun, Tan Zhiliang, Zhao Liubin, He Xiao, Zheng Jinxing, Bolan Nanthi, Liu Xiaohong, Huang Changping, Dietmann Sabine, Luo Ming, Sun Nannan, Gong Jirui, Gong Yulie, Brahushi Ferdi, Zhang Tangtang, Xiao Cunde, Li Xianfeng, Chen Wenfu, Jiao Nianzhi, Lehmann Johannes, Zhu Yongguan, Jin Hongguang, Schaffer Andreas, Tiedje James M. and Chen Jing M. Technologies and perspectives for achieving carbon neutrality. The Innovation, 2021, 2: 100180.
    3.Biurrun Idoia, ......Sanaei Anvar,......Yuan Zuoqiang, et al. Benchmarking plant diversity of Palaearctic grasslands and other open habitats. Journal of Vegetation Science, 2021, 32(4): e13050.
    4.Sanaei Anvar, Sayer Emma J., Saiz Hugo, Yuan Zuoqiang and Ali Arshad. Species co-occurrence shapes spatial variability in plant diversity–biomass relationships in natural rangelands under different grazing intensities. Land Degradation and Development, 2021, 32(15): 4390-4401.
    5.Ren Siyuan, Ali Arshad, Liu Heming, Yuan Zuoqiang, Yang Qingsong, Shen Guochun, Zhou Shuangshuang and Wang Xihua. Response of community diversity and productivity to canopy gap disturbance in subtropical forests. Forest Ecology and Management, 2021, 502: 119740.
    6.Liu Shufang, Yuan Zuoqiang, Ali Arshad, Sanaei Anvar, Mao Zikun, Ding Fan, Zheng Di, Fang Shuai, Jia Zhaojie, Tao Zhao, Lin Fei, Ye Ji, Wang Xugao and Hao Zhanqing. Anthropogenic disturbances shape soil capillary and saturated water retention indirectly via functional traits and soil organic carbon in temperate forests. Forests, 2021, 12:1588.
    7.Ren Jing, Fang Shuai, Lin Guigang, Lin Fei, Yuan Zuoqiang, Ye Ji, Wang Xugao, Hao Zhanqing and Fortunel Claire. Tree growth response to soil nutrients and neighborhood crowding varies between mycorrhizal types in an old-growth temperate forest. Oecologia, 2021, 197(2): 523-535.
    8.Wang Shuyue, Jimenez-Alfaro Borja, Pan Shaoan, Yu Jinghua, Sanaei Anvar, Sayer Emma J., Ye Ji, Hao Zhanqing, Fang Shuai, Lin Fei, Yuan Zuoqiang and Wang Xugao. Differential responses of forest strata species richness to paleoclimate and forest structure. Forest Ecology and Management, 2021, 499: 119605.
    9.Sanaei Anvar, Sayer Emma J., Yuan Zuoqiang, Lin Fei, Fang Shuai, Ye Ji, Liu Shufang, Hao Zhanqing and Wang Xugao. Soil Stoichiometry Mediates Links Between Tree Functional Diversity and Soil Microbial Diversity in a Temperate Forest. Ecosystems, 2021, https:// doi. org/ 10. 1007/s10021-021-00655-3.
    10.Yuan Zuoqiang, Ali Arshad, Loreau Michel, Ding Fang, Liu Shufang, Sanaei Anvar, Zhou Wangming, Ye Ji, Lin Fei, Fang Shuai, Hao Zhanqing, Wang Xugao and Bagousse-Pinguet Yoann Le. Divergent above- and below-ground biodiversity pathways mediate disturbance impacts on temperate forest multifunctionality. Global change biology, 2021, 27(12): 2883-2894.
    11.Sanaei Anvar, Yuan Zuoqiang, Ali Arshad, Loreau Michel, Mori Akira S., Reich Peter B., Jucker Tommaso, Lin Fei, Ye Ji, Fang Shuai, Hao Zhanqing and Wang Xugao. Tree species diversity enhances plant-soil interactions in a temperate forest in northeast China. Forest Ecology and Management, 2021, 491: 119160.
    12.Wu Shengbiao, Wang Jing, Yan Zhengbing, Song Guangqin, Chen Yang, Ma Qin, Deng Meifeng, Wu Yuntao, Zhao Yingyi, Guo Zhengfei, Yuan Zuoqiang, Dai Guanhua, Xu Xiangtao, Yang Xi, Su Yanjun, Liu Lingli and Wu Jin. Monitoring tree-crown scale autumn leaf phenology in a temperate forest with an integration of PlanetScope and drone remote sensing observations. ISPRS Journal of photogrammetry and remote sensing, 2021, 171: 36-48.
    13.Yuan Zuoqiang, Ali Arshad, Sanaei Anvar, Ruiz-Benito Paloma, Jucker Tommaso, Fang Lei, Bai Edith, Ye Ji, Lin Fei, Fang Shuai, Hao Zhanqing and Wang Xugao. Few large trees, rather than plant diversity and composition, drive the above-ground biomass stock and dynamics of temperate forests in northeast China. Forest Ecology and Management, 2021, 481: 118698.
    14.Sanaei Anvar, Ali Arshad, Yuan Zuoqiang, Liu Shufang, Lin Fei, Fang Shuai, Ye Ji, Hao Zhanqing, Loreau Michel, Bai Edith and Wang Xugao. Context-dependency of tree species diversity, trait composition and stand structural attributes regulate temperate forest multifunctionality. Science of the total environment, 2021, 757: 143724.
    15.郑迪,沈国春,王舶鉴,戴冠华,胡家瑞,蔺菲,叶吉,房帅,郝占庆,王绪高,原作强. 基于无人机高光谱影像和深度学习算法的长白山针阔混交林优势树种分类研究. 生态学杂志,40(7): 1871-1878.
    16.Zuoqiang Yuan, Arshad Ali, Paloma Ruiz-Benito, Tommaso Jucker, Akira S. Mori, Shaopeng Wang, Xiaoke Zhang, Hui Li, Zhanqing Hao, Xugao Wang and Michel Loreau. Above-and below-ground biodiversity jointly regulate temperate forest multifunctionality along a local-scale environmental gradient. Journal of Ecology, 2020, 108(5): 2012-2024.
    17.Shihong Jia, Xugao Wang, Zuoqiang Yuan, Fei Lin, Ji Ye, Guigang Lin, Zhanqing Hao and Robert Bagchi. Tree species traits affect which natural enemise drive the Janzen-Connell effect in a temperate forest.. Nature communications, 2020, 11: 286.
    18.Wang Yunyun, LaMontagne Jalene M., Lin Fei, Yuan Zuoaiqng, Ye Ji, Wang Xugao and Hao Zhanqing. Similarity between seed rain and neighbouring mature tree communities in an old-growth temperate forest. Journal of forestry research, 2020, 31(6): 2435-2444.
    19.Bai Zhen, Yuan Zuoqiang, Wang Dongmei, Fang Shuai, Ye Ji, Wang Xugao and Yuan Haisheng. Ectomycorrhizal fungus-associated determinants jointly reflect ecological processes in a temperature broad-leaved mixed forest. Science of the total environment, 2020, 703: 135475.
    20.毛子昆, 郝占庆, 原作强, 蔺菲, 叶吉, 匡旭, 王绪高. 物种聚集分布与种间关系的多度不对称性. 中国科学: 生命科学, 2020,50(4): 381-390.
    21.Mao Zikun, Corrales Adriana, Zhu Kai, Yuan Zuoqiang, Lin Fei, Ye Ji, Hao Zhanqing and Wang Xugao. Tree mycorrhizal associations mediate soil fertility effects on forest community structure in a temperate forest. New Phytologist, 2019, 223(1): 475-486.
    22.Yuan Zuoqiang, Ali Arshad, Wang Shaopeng, Wang Xugao, Lin Fei, Wang Yunyun, Fang Shuai, Hao Zhanqing, Loreau Michel and Jiang Lin. Temporal stability of aboveground biomass is governed by species asynchrony in temperate forests. Ecological Indicators, 2019, 107: 105661.
    23.Yuan Zuoqiang, Ali Arshad, Jucker Tommaso, Ruiz-Benito Paloma, Wang Shaopeng, Jiang Lin, Wang Xugao, Lin Fei, Ye Ji and Hao Zhanqing. Multiple abiotic and biotic pathways shape biomass demographic processes in temperate forests. Ecology, 2019, 100(5): e02650.
    24.Wang Yunyun, Mazer Susan J., Freckleton Robert P., Yuan Zuoqiang, Wang Xugao, Du Yanjun, Lin Luxiang, Wang Xihua, Sang Weiguo, Liu Xiaojuan and Hao Zhanqing. Testing mechanisms of compensatory fitness of dioecy in a cosexual world. Journal of Vegetation Science, 2019, 30(3): 413-426.
    25.Fang Shuai, Munoz Francois, Ye Ji, Lin Fei, Yuan Zuoqiang, Kuang Xu, Hao Zhanqing and Wang Xugao. Deterministic processes drive functional and phylogenetic temporal changes of woody species in temperate forests in Northeast China. Annals of Forest Science, 2019, 76(2): 42.
    26.Fang Shuai, Cadotte MarcWilliam, Yuan Zuoqiang, Lin Fei, Ye Ji, Hao Zhanqing and Wang Xugao. Intraspecific trait variation improves the detection of deterministic community assembly processes in early successional forests, but not in late successional forests. Journal of Plant Ecology, 2019, 12(4): 593-602.
    27.王国杰, 蔺菲, 胡家瑞, 原作强, 郝占庆, 王绪高. 氮和土壤微生物对水曲柳幼苗生长和光合作用的影响. 应用生态学报, 2019, 30(5): 1445-1453.
    28.钱多多, 匡旭, 王绪高, 蔺菲, 原作强, 叶吉, 郝占庆. 2006—2017年长白山阔叶红松林木本植物种子雨的时空动态. 应用生态学报, 2019, 30(5): 1484-1493.
    29.毛英, 原作强, 高清明, 胡进耀, 胡连通, 王新, 周大松. 基于MODIS-NDVI的乐安湿地植被覆盖动态分析. 四川林业科技, 2019, 40(3): 42-70.
    30.Jia Shihong, Wang Xugao, Yuan Zuoqiang, Lin Fei, Ye Ji, Hao Zhanqing and Luskin Matthew Scott. Global signal of top-down control of terrestrial plant communities by herbivores. PNAS, 2018, 115(24): 6237-6242.
    31.Yuan Zuoqiang, Ali Arshad, Wang Shaopeng, Gazol Antonio, Freckleton Robert, Wang Xugao, Lin Fei, Ye Ji, Zhou Li, Hao Zhanqing and Loreau Michel. Abiotic and biotic determinants of coarse woody productivity in temperate mixed forests. Science of the Total Environment, 2018, 630(51): 422-431.
    32.Yuan Zuoqiang, Wang Shaopeng, Ali Arshad, Gazol Antonio, Ruiz-Benito Paloma, Wang Xugao, Lin Fei, Ye Ji, Hao Zhanqing and Loreau Michel. Aboveground carbon storage is driven by functional trait composition and stand structural attributes rarher than biodiversity in temperate mixed forests recovering from disturbances. Annals of Forest Science, 2018, 75(3):67-79.
    33.Wang Yunyun, Freckleton Robert P., Wang Bojian, Kuang Xu, Yuan Zuoqiang, Lin Fei, Ye Ji, Wang Xugao and Hao Zhanqing. The role of breeding system in community dynamics: Growth and mortality in forests of different successional stages. Ecology and Evolution, 2018, 8(15): 7285-7296.
    34.Wang Yunyun, Zhang Jian, LaMontagne Jalene M., Lin Fei, Li Buhang, Ye Ji, Yuan Zuoqiang, Wang Xugao and Hao Zhanqing. Variation and synchrony of tree species mast seeding in an old-growth temperate forest. Journal of Vegetation Science, 2017, 28(2):413-423.
    35.Kuang Xu, Zhu Kai, Yuan Zuoqiang, Lin Fei, Ye Ji, Wang Xugao, Wang Yunyun and Hao Zhanqing. Conspecific density dependence and community structure: Insights from 11 years of monitoring in an old-growth temperate forest in Northeast China. Ecology and Evolution, 2017,7(14):5191-5200.
    36.Zhang Zhaochen, Papaik Michael J., Wang Xugao, Hao Zhanqing, Ye Ji, Lin Fei and Yuan Zuoqiang. The effect of tree sizes, neighborhood competition and environment on tree growth in an old-growth temperate forest. Journal of Plant Ecology,2017, 10(6): 970-980.
    37.蔡礼蓉, 匡旭, 房帅, 原作强, 蔺菲, 叶吉, 郝占庆, 王绪高. 长白山阔叶红松林3个常见树种径向生长的影响因素. 应用生态学报, 28(5), 1407-1413.
    38.Suo Yanyan, Yuan Zuoqiang, Lin Fei, Wang Xugao, Ye Ji, Bai Edith, Hao Zhanqing. Local-scale determinants of elemental stoichiometry of soil in an old growth forest. Plant soil, 2016, 408(1-2): 401-414.
    39.Yuan Zuoqiang, Wang Shaopeng, Antonio Gazol,  Jarad Mellard, Lin Fei, Ye Ji, Hao Zhanqing, Wang Xugao and Michel Loreau. Multiple metrics of diversity have different effects on temperate forest functioning over succession. Oecologia, 2016, 182(4): 1175-1185.
    40.Yuan Zuoqiang, Antonio Gazol, Lin Fei, Wang Xugao, Ye Ji, Suo Yanyan, Fang Shuai, Jarad Mellard and Hao Zhanqing. Scale-dependent effect of biotic interactions and environmental conditions in community assembly: insight from a large temperate forest plot. Plant Ecology, 2016, 217:1003-1014.
    41.Yuan Zuoqiang, Antonio Gazol, Wang Xugao, Lin Fei, Ye Ji, Zhang Zhaochen, Suo Yanyan, Kuang Xu, Wang Yunyun, Jia Shihong and Hao Zhanqing. Pattern and dynamics of biomass stock in old growth forests: The role of habitat and tree size. Acta Oecologica, 2016, 75: 15-23.
    42.Wang Xugao, Wiegand Thorsten, Swenson Nathan G., Wolf Amy T., Howe Robert W., Hao Zhanqing, Lin Fei, Ye Ji and Yuan Zuoqiang. Mechanisms underlying local functional and phylogenetic beta diversity in two temperate forests. Ecology, 2015, 96(4): 1062-1073.
    43.Ye Ji, Hao Zhanqing, Wang Xugao, Bai Xuejiao, Xing Dingliang and Yuan Zuoqiang. Local-scale drivers of multi-stemmed tree formation in Acer, in a temperate forest of Northeast China. Chinese Science Bulletin, 2014, 59(3): 320-325.
    44.Lin Fei, Comita Liza S., Wang Xugao, Bai Xuejiao, Yuan Zuoqiang, Xing Dingliang and Hao Zhanqing. The contribution of understory light availability and biotic neighborhood to seedling survival in secondary versus old-growth temperate forest. Plant Ecology, 2014, 215(8): 795-807.
    45.Yuan ZQ, et al., (2013) Soil Organic Carbon in an old-growth temperate forest: spatial pattern, determinants and bias in its quantification. Geoderma 195: 48-55 (IF=2.35)
    46.Wang XG, Swenson NG, Wiegand T, Wolf A, Howe R, Lin F, Ye J, Yuan ZQ, Shi S, Bai XJ, Xing DL,Hao ZQ*. Phylogenetic and functional diversity area relationships in two temperate forests.Ecography 36: 001–011, 2013(IF=5.12)
    47.Ye J*, Hao ZQ, Wang XG, Bai XJ, Xing DL, Yuan ZQ (2013) Local-scale drivers of multi-stemmed tree formation in Acer, in a temperate forest of Northeast China. Chinese Science Bulletin (In press)
    48.张昭臣,郝占庆, 叶吉, 蔺菲, 原作强, 邢丁亮, 师帅, 王绪高*. 长白山次生杨桦林树木短期死亡动态. 应用生态学报 24(2):303-310, 2013
    49.Yuan ZQet al., (2012)What happens below the canopy? Direct and indirect influences of the dominant species on forest vertical layers. Oikos 121:1145–1153 (IF=3.33)
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