CO2浓度增加对草地生态系统及碳平衡的影响

被引:8
作者
杨峰
李建龙
钱育蓉
邓蕾
机构
[1] 南京大学生命科学学院
关键词
全球变化; 二氧化碳增加; 陆地生态系统; 草地生态系统; 碳循环;
D O I
暂无
中图分类号
S812 [草地学、草原学];
学科分类号
090503 ; 0909 ;
摘要
陆地生态系统碳平衡是全球变化科学中的核心问题之一,也是目前生态科学中的前沿与热点问题,而草地生态系统的复杂性与不确定性决定了对陆地生态系统碳平衡估测的复杂性和不确定性。概述了全球气候变化中CO2浓度增加对草地生态系统及碳平衡的影响,阐明了种间和种内对CO2浓度增加的响应差异性,强调这种差异不仅影响物种的生理和生化过程,而且对高层次生物互作和生存适应性产生影响,最终导致新生态系统的装配,碳的生物地球化学循环过程受到影响。因而,草地生态系统中物种或基因型的特性以及它们之间的相互关系对CO2浓度增加的响应,在全球变化过程中碳平衡的预测是一个重要的考虑因素。
引用
收藏
页码:99 / 105
页数:7
相关论文
共 27 条
[11]   Ecosystem assembly and terrestrial carbon balance under elevated CO2 [J].
Bradley, Kate L. ;
Pregitzer, Kurt S. .
TRENDS IN ECOLOGY & EVOLUTION, 2007, 22 (10) :538-547
[12]   Tree species effects on decomposition and forest floor dynamics in a common garden [J].
Hobbie, Sarah E. ;
Reich, Peter B. ;
Oleksyn, Jacek ;
Ogdahl, Megan ;
Zytkowiak, Roma ;
Hale, Cynthia ;
Karolewski, Piotr .
ECOLOGY, 2006, 87 (09) :2288-2297
[13]  
Plant–plant interactions and environmental change[J] . Rob W.Brooker.New Phytologist . 2006 (2)
[14]  
Newer Classification and Regression Tree Techniques: Bagging and Random Forests for Ecological Prediction[J] . Anantha M. Prasad,Louis R. Iverson,Andy Liaw.Ecosystems . 2006 (2)
[15]  
From Transient to Steady-state Response of Ecosystems to Atmospheric CO2-enrichment and Global Climate Change: Conceptual Challenges and Need for an Integrated Approach[J] . Lindsey E. Rustad.Plant Ecology . 2006 (1)
[16]   Nonadditive effects of mixing cottonwood genotypes on litter decomposition and nutrient dynamics [J].
Schweitzer, JA ;
Bailey, JK ;
Hart, SC ;
Whitham, TG .
ECOLOGY, 2005, 86 (10) :2834-2840
[17]   Fungal community composition and metabolism under elevated CO2 and O3 [J].
Chung, HG ;
Zak, DR ;
Lilleskov, EA .
OECOLOGIA, 2006, 147 (01) :143-154
[18]   Evolutionary responses to changing climate [J].
Davis, MB ;
Shaw, RG ;
Etterson, JR .
ECOLOGY, 2005, 86 (07) :1704-1714
[19]   Contrasting effects of substrate and fertilizer nitrogen on the early stages of litter decomposition [J].
Hobbie, SE .
ECOSYSTEMS, 2005, 8 (06) :644-656
[20]   Elevated CO2 influences herbivory-induced defense responses of Arabidopsis thaliana [J].
Bidart-Bouzat, MG ;
Mithen, R ;
Berenbaum, MR .
OECOLOGIA, 2005, 145 (03) :415-424