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中国东北样带(NECT):十年集成与未来挑战
引用本文:倪健,王国宏.中国东北样带(NECT):十年集成与未来挑战[J].Journal of Integrative Plant Biology,2004,46(4):379-391.
作者姓名:倪健  王国宏
作者单位:倪健 (中国科学院植物研究所植被数量生态学重点实验室,北京,100093) ; 王国宏 (马普生物地球化学研究所,耶那,07701,德国) ;
基金项目:国家重点基础研究发展计划(973计划),国家自然科学基金,中国科学院知识创新工程项目
摘    要:Northeast China Transect (NECT), one of the fifteen International Biosphere-Geosphere Programme (IGBP) terrestrial transects, has been established for 10 years by Prof. Zhang Xin-Shi, through a core project of the IGBP - the Global Change and Terrestrial Ecosystems (GCTE). This transect is located in the mid-latitude semi-arid region, ranging 42-46°N latitude and 110-132癊 longitude. The primary driving force for global change is precipitation and the secondary one is land use intensity. Research progresses have been performed during the past decade in the following aspects: ecological database development, climate and its variability, ecophysiological response of plants to environments, vegetation and landscape changes, biodiversity patterns and their changes, plant functional types and traits with relation to climatic gradient, productivity and carbon dynamics, pollen-vegetation relationship, trace gas emissions, land use and land cover changes, as well as biogeographical and biogeochemical modelling. In order to achieve the higher level of integrated research, the NECT needs the consistent basic data sets within the same framework, further field experiments and observations, integrated simulations of vegetation structure, process and function from patch, landscape to biome scales, intercomparisons of results and simulations within the transect and to other IGBP transects, multidisciplinary research, national and international co-ordinates, and full scientific plan and implementation strategy.

关 键 词:生物多样性  碳循环  气候变化  土地利用变化  植被模拟  降水梯度  植物功能型  植被格局和动态

Northeast China Transect (NECT):Ten-Year Synthesis and Future Challenges
Authors:NI Jian  WANG Guo-Hong
Abstract:
Keywords:CO2  biodiversity  carbon cycle  climate change  CO2  land use change  vegetation modeling  precipitation gradient  plant functional types  vegetation pattern and dynamics
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