Leaf traits and associated ecosystem characteristics across subtropical and timberline forests in the Gongga Mountains, Eastern Tibetan Plateau

被引:70
作者
Luo, TX
Luo, J
Pan, Y
机构
[1] Chinese Acad Sci, Inst Tibetan Plateau Res, Beijing 100085, Haidian Dist, Peoples R China
[2] Chinese Acad Sci, Chengdu Inst Mt Hazards & Environm, Chengdu 610041, Peoples R China
[3] US Forest Serv, USDA, No Global Change Res Program, Newtown Sq, PA 19073 USA
基金
中国国家自然科学基金;
关键词
altitudinal patterns; leaves; tree canopies; communities; scaling-up;
D O I
10.1007/s00442-004-1729-6
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Knowledge of how leaf characteristics might be used to deduce information on ecosystem functioning and how this scaling task could be done is limited. In this study, we present field data for leaf lifespan, specific leaf area (SLA) and mass and area-based leaf nitrogen concentrations (N-mass, N-area) of dominant tree species and the associated stand foliage N-pool, leaf area index (LAI), root biomass, aboveground biomass, net primary productivity (NPP) and soil available-N content in six undisturbed forest plots along subtropical to timberline gradients on the eastern slope of the Gongga Mountains. We developed a methodology to calculate the whole-canopy mean leaf traits to include all tree species (groups) in each of the six plots through a series of weighted averages scaled up from leaf-level measurements. These defined whole-canopy mean leaf traits were equivalent to the traits of a leaf in regard to their Interrelationships and altitudinal trends, but were more useful for large-scale pattern analysis of ecosystem structure and function. The whole-canopy mean leaf lifespan and leaf N-mass mainly showed significant relationships with stand foliage N-pool, NPP, LAI and root biomass. In general, as elevation increased, the whole-canopy mean leaf lifespan and leaf N-area and stand LAI and foliage N-pool increased to their maximum, whereas the whole-canopy mean SLA and leaf N-mass and stand NPP and root biomass decreased from their maximum. The whole-canopy mean leaf lifespan and stand foliage N-pool both converged towards threshold-like logistic relationships with annual mean temperature and soil available-N variables. Our results are further supported by additional literature data in the Americas and eastern China.
引用
收藏
页码:261 / 273
页数:13
相关论文
共 54 条
[41]   LEAF LIFE-SPAN AS A DETERMINANT OF LEAF STRUCTURE AND FUNCTION AMONG 23 AMAZONIAN TREE SPECIES [J].
REICH, PB ;
UHL, C ;
WALTERS, MB ;
ELLSWORTH, DS .
OECOLOGIA, 1991, 86 (01) :16-24
[42]   LEAF LIFE-SPAN IN RELATION TO LEAF, PLANT, AND STAND CHARACTERISTICS AMONG DIVERSE ECOSYSTEMS [J].
REICH, PB ;
WALTERS, MB ;
ELLSWORTH, DS .
ECOLOGICAL MONOGRAPHS, 1992, 62 (03) :365-392
[43]  
Reich PB, 1995, ECOPHYSIOLOGY CONIFE, P225
[44]  
Ren H, 1997, ACTA ECOL SIN, V17, P220
[45]   RELATIONSHIPS AMONG MAXIMUM STOMATAL CONDUCTANCE, ECOSYSTEM SURFACE CONDUCTANCE, CARBON ASSIMILATION RATE, AND PLANT NITROGEN NUTRITION - A GLOBAL ECOLOGY SCALING EXERCISE [J].
SCHULZE, ED ;
KELLIHER, FM ;
KORNER, C ;
LLOYD, J ;
LEUNING, R .
ANNUAL REVIEW OF ECOLOGY AND SYSTEMATICS, 1994, 25 :629-+
[46]  
Smith ML, 2002, ECOL APPL, V12, P1286
[47]   COST-BENEFIT RELATIONSHIPS IN DECIDUOUS AND EVERGREEN LEAVES OF TROPICAL DRY FOREST SPECIES [J].
SOBRADO, MA .
FUNCTIONAL ECOLOGY, 1991, 5 (05) :608-616
[48]  
Tadaki Y, 1977, JIBP SYNTHESIS, V16, P39
[49]  
Wang X., 2000, ACTA PHYTOECOL SIN, V24, P625
[50]   EVERGREEN CONIFEROUS FORESTS OF THE PACIFIC NORTHWEST [J].
WARING, RH ;
FRANKLIN, JF .
SCIENCE, 1979, 204 (4400) :1380-1386