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青藏高原两种高寒草甸地下生物量及其碳分配对长期增温的响应差异
Variable responses to long-term simulated warming of underground biomass and carbon allocations of two alpine meadows on the Qinghai-Tibet Plateau

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余欣超 1   姚步青 1 *   周华坤 1   金艳霞 1   杨月娟 1   王文颖 2   董世魁 3   赵新全 1  
文摘 增温可以改变植物的生长, 不同植被类型的响应方式有差异.植物根系是植物生产量的重要组成部分, 但对其增温响应的研究仍然较少.本研究采用开顶式生长室(OTC)模拟增温的方法, 对比了长期增温对青藏高原矮嵩草草甸和金露梅灌丛群落地下生物量和有机碳含量的影响.通过分析不同土层地下生物量的垂直分布、土壤和根系含碳量, 发现在长期增温条件下: (1)矮嵩草草甸地下生物量显著减少; (2) 2种草甸地下生物量分配明显向深层转移; (3) 2种草甸植物根系总碳含量变化不显著, 矮嵩草草甸10~30 cm土层根含碳量增加, 金露梅灌丛草甸20~30 cm土层的根系碳含量减少; (4) 2种草甸土壤总碳含量无显著变化(0~30 cm), 但20~30 cm土层矮嵩草草甸土壤有机碳含量增加, 金露梅灌丛草甸土壤有机碳含量降低. 2种草甸地下资源分配差异将影响全球变暖背景下该地区的植被演替和碳循环.
其他语种文摘 Global warming could change plant growth, and there are differences in response among vegetation types. Plant roots are an important part of plant production, but their response to temperature is weak. Using simulated warming with an open-top chamber, we studied the effects of long-term warming on allocations of underground biomass and carbon in a Kobresia humilis meadow and Potentilla fruticosa shrub meadow on the Qinghai-Tibet Plateau. We analyzed vertical distributions of underground biomass, root carbon content, and soil organic carbon content. The results show the following after long-term warming via the open-top chamber: (1) underground biomass of the K. humilis meadow decreased significantly; (2) underground biomass moved to deeper soil layers in both meadows; (3) root carbon contents of underground biomass at 0-30 cm depths did not change significantly in both meadows, but it increased in the alpine K. humilis meadow from 10 to 30 cm and decreased in the P. fruticosa shrub meadow at depths 20-30 cm; (4) soil organic carbon content did not change significantly in the soil layer 0-30 cm, but it increased in the K. humilis meadow and decreased in the P. fruticosa meadow in the 20-30 cm layer. Such differences in resource allocation will impact regional vegetation succession and the carbon cycle under a background of global warming.
来源 科学通报 ,2015,60(4):379-388 【核心库】
关键词 矮嵩草草甸 ; 金露梅灌丛草甸 ; 长期增温 ; 地下生物量 ; 碳含量
地址

1. 中国科学院西北高原生物研究所, 中国科学院高原生物适应与进化重点实验室, 西宁, 810008  

2. 青海师范大学生命与地理科学学院, 西宁, 810008  

3. 北京师范大学环境学院, 北京, 100875

语种 中文
文献类型 研究性论文
ISSN 0023-074X
学科 畜牧、动物医学、狩猎、蚕、蜂
基金 青海省重点实验室发展专项资金计划 ;  国家科技支撑计划项目 ;  中国科学院战略性先导科技专项 ;  青海省自然科学基金 ;  国家自然科学基金
文献收藏号 CSCD:5362531

参考文献 共 58 共3页

1.  Hansen J. Global temperature change. Proc Natl Acad Sci USA,2006,103:14288-14293 被引 81    
2.  Hansen J. Global surface temperature change. Rev Geophys,2010,48:RG4004 被引 97    
3.  Oreskes N. The scientific consensus on climate change. Science,2004,306:1686 被引 82    
4.  Rustad L. A meta-analysis of the response of soil respiration, net nitrogen mineralization, and aboveground plant growth to experimental ecosystem warming. Oecologia,2001,126:543-562 被引 217    
5.  王连喜. 植物物候与气候研究进展. 生态学报,2010,30:447-454 被引 112    
6.  Dormann C F. Climate change in the Arctic: Using plant functional types in a meta-analysis of field experiments. Funct Ecol,2002,16:4-17 被引 22    
7.  Penuelas J. Response of plant species richness and primary productivity in shrublands along a north-south gradient in Europe to seven years of experimental warming and drought: Reductions in primary productivity in the heat and drought year of 2003. Glob Change Biol,2007,13:2563-2581 被引 12    
8.  Wang S. Effects of warming and grazing on soil N availability, species composition, and ANPP in an alpine meadow. Ecology,2012,93:2365-2376 被引 25    
9.  Luo Y. Terrestrial carbon-cycle feedback to climate warming: Experimental evidence on plant regulation and impacts of biofuel feedstock harvest. GCB Bioenergy,2009,1:62-74 被引 8    
10.  De Boeck H J. Biomass production in experimental grasslands of different species richness during three years of climate warming. Biogeosciences,2008,5:585-594 被引 8    
11.  De Valpine P. Plant responses to experimental warming in a montane meadow. Ecology,2001,82:637-648 被引 14    
12.  Liu W. Predominant role of water in regulating soil and microbial respiration and their responses to climate change in a semiarid grassland. Glob Change Biol,2009,15:184-195 被引 20    
13.  Atkin O K. Response of root respiration to changes in temperature and its relevance to global warming. New Phytol,2000,147:141-154 被引 72    
14.  Hartley A E. Plant performance and soil nitrogen mineralization in response to simulation climate change in subarctic dwarf shrub heath. Oikos,1999,86:331-343 被引 14    
15.  Zogg G P. Compositional and functional shifts in microbial communities due to soil warming. Soil Sci Soc Am J,1997,61:475-481 被引 109    
16.  Shen H. Leaf photosynthesis and simulated carbon budget of Gentiana straminea from a decade-long warming experiment. J Plant Ecol,2006,2:207-216 被引 1    
17.  李娜. 短期增温对青藏高原高寒草甸植物群落结构和生物量的影响. 生态学报,2011,31:895-905 被引 58    
18.  Wu Z. Responses of terrestrial ecosystems to temperature and precipitation change: A meta-analysis of experimental manipulation. Glob Change Biol,2011,17:927-942 被引 53    
19.  鄢燕. 西藏那曲地区高寒草地地下生物量. 生态学报,2005,25:2818-2823 被引 48    
20.  Arndt S K. Use of decreasing foliar carbon isotope discrimination during water limitation as a carbon tracer to study whole plant carbon allocation. Plant Cell Environ,2002,25:609-616 被引 8    
引证文献 21

1 武倩 模拟增温对草地植物、土壤和生态系统碳交换的影响 中国草地学报,2016,38(4):105-114
被引 15

2 马丽 高寒草甸植被-土壤系统对气候变暧响应的研究进展 生态学杂志,2017,36(6):1708-1717
被引 26

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