氮沉降对森林土壤有机质和凋落物分解的影响及其微生物学机制

被引:84
作者
王晶苑
张心昱
温学发
王绍强
王辉民
机构
[1] 中国科学院地理科学与资源研究所生态系统网络观测与模拟重点实验室
关键词
氮沉降; 磷限制; 分解; C:N:P计量比; 土壤微生物;
D O I
暂无
中图分类号
S714 [森林土壤学];
学科分类号
0903 ; 090301 ;
摘要
氮沉降持续增加背景下土壤C:N:P化学计量比和pH环境等的改变及其可能的土壤微生物学机制已经成为陆地生态系统与全球变化研究的新生长点和科学研究前沿。以生态化学计量学和土壤微生物生态学为理论基础,综述了氮沉降对森林土壤有机质和凋落物分解的影响及其微生物学机制的基本理论、最新进展、研究热点与难点,旨在促进全球变化背景下陆地生态系统地下生态学的研究。氮沉降持续增加会导致森林生态系统磷循环加速,导致磷限制。氮沉降不但改变森林土壤有机质和凋落物的C:N:P化学计量比和降低土壤pH值,而且改变土壤微生物生物量碳氮磷、细菌、真菌和放线菌的组成以及影响碳氮磷分解的关键酶活性。氮沉降对森林土壤有机质和凋落物分解的影响表现为促进、抑制和无影响,其影响的差异可能来源于微生物效应的不同。叶片在凋落前有显著的氮磷养分回收,但是根无明显的养分回收,造成土壤有机质和凋落物的C:N:P化学计量比存在明显差异。基于DNA/RNA等分子生物学方法为土壤微生物生态学研究提供了强有力的手段,将促进氮沉降对森林土壤有机质和凋落物化学计量比改变的微生物学机制研究。
引用
收藏
页码:1337 / 1346
页数:10
相关论文
共 50 条
[41]  
CARBON SEQUESTRATION IN ECOSYSTEMS: THE ROLE OF STOICHIOMETRY[J] . Dag O. Hessen,G?ran I. ?gren,Thomas R. Anderson,James J. Elser,Peter C. de Ruiter.Ecology . 2004 (5)
[42]   A model analysis of N and P limitation on carbon accumulation in Amazonian secondary forest after alternate land-use abandonment [J].
Herbert, DA ;
Williams, M ;
Rastetter, EB .
BIOGEOCHEMISTRY, 2003, 65 (01) :121-150
[43]   The effects of long term nitrogen deposition on extracellular enzyme activity in an Acer saccharum forest soil [J].
Saiya-Cork, KR ;
Sinsabaugh, RL ;
Zak, DR .
SOIL BIOLOGY & BIOCHEMISTRY, 2002, 34 (09) :1309-1315
[44]  
Allocation of extracellular enzymatic activity in relation to litter composition, N deposition, and mass loss[J] . R.L. Sinsabaugh,M.M. Carreiro,D.A. Repert.Biogeochemistry . 2002 (1)
[45]   Effects of soil nutrient availability on investment in acquisition of N and P in Hawaiian rain forests [J].
Treseder, KK ;
Vitousek, PM .
ECOLOGY, 2001, 82 (04) :946-954
[46]   Signature fatty acids provide tools for determination of the distribution and interactions of mycorrhizal fungi in soil [J].
Olsson, PA .
FEMS MICROBIOLOGY ECOLOGY, 1999, 29 (04) :303-310
[47]  
The globalization of N deposition: ecosystem consequences in tropical environments[J] . Pamela A. Matson,William H. McDowell,Alan R. Townsend,Peter M. Vitousek.Biogeochemistry . 1999 (1)
[48]  
Nitrate leaching in forest ecosystems is related to forest floor C N ratios[J] . P. Gundersen,I. Callesen,W. de Vries.Environmental Pollution . 1998 (1)
[49]  
The global nitrogen cycle: changes and consequences[J] . James N. Galloway.Environmental Pollution . 1998 (1)
[50]  
Effect of N deposition on decomposition of plant litter and soil organic matter in forest systems[J] . Environmental Reviews . 1997 (1)