BELOWGROUND CYCLING OF CARBON IN FORESTS AND PASTURES OF EASTERN AMAZONIA

被引:362
作者
TRUMBORE, SE
DAVIDSON, EA
DECAMARGO, PB
NEPSTAD, DC
MARTINELLI, LA
机构
[1] CTR ENERGIA NUCL AGR, BR-13416000 PIRACICABA, SP, BRAZIL
[2] WOODS HOLE RES CTR, WOODS HOLE, MA 02543 USA
关键词
D O I
10.1029/95GB02148
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Forests in seasonally dry areas of eastern Amazonia near Paragominas, Para, Brazil, maintain an evergreen forest canopy through an extended dry season by taking up soil water through deep (>1 m) roots. Belowground allocation of C in these deep-rooting forests is very large (1900 g C m(-2) yr(-1)) relative to litterfall (460 g C m(-2) yr(-1)). The presence of live roots drives an active carbon cycle deeper than 1 m in the soil. Although bulk C concentrations and C-14 contents of soil organic matter at >1-m depths are low, estimates of turnover from fine-root inputs, CO2 production, and the C-14 content of CO2 produced at depth show that up to 15% of the carbon inventory in the deep soil has turnover times of decades or less. Thus the amount of fast-cycling soil carbon between land 8-m depths (2-3 kg C m(-2), out of 17-18 kg C m(-2)) is significant compared to the amount present in the upper meter of soil (3-4 kg C m(-2) out of 10-11 kg C m(-2)). A model of belowground carbon cycling derived from measurements of carbon stocks and fluxes, and constrained using carbon isotopes, is used to predict C fluxes associated with conversion of deep-rooting forests to pasture and subsequent pasture management, The relative proportions and turnover times of active (including detrital plant material; 1-3 year turnover), slow (decadal and shorter turnover), and passive (centennial to millennial turnover) soil organic matter pools are determined by depth for the forest soil, using constraints from measurements of C stocks, fluxes, and isotopic content. Reduced carbon inputs to the soil in degraded pastures, which are less productive than the forests they replace, lead to a reduction in soil carbon inventory and Delta(14)C, in accord with observations. Managed pastures, which have been fertilized with phosphorous and planted with more productive grasses, show increases in C and C-14 over forest values. Carbon inventory increases in the upper meter of managed pasture soils are partially offset by predicted carbon losses due to death and decomposition of fine forest roots at depths >1 m in the soil. The major adjustments in soil carbon inventory in response to land management changes occur within the first decade after conversion. Carbon isotopes are shown to be more sensitive indicators of recent accumulation or loss of soil organic matter than direct measurement of soil C inventories.
引用
收藏
页码:515 / 528
页数:14
相关论文
共 50 条
  • [21] Deep soil moisture storage and transpiration in forests and pastures of seasonally-dry amazonia
    Jipp, PH
    Nepstad, DC
    Cassel, DK
    De Carvalho, CR
    CLIMATIC CHANGE, 1998, 39 (2-3) : 395 - 412
  • [22] The response of belowground carbon allocation in forests to global change
    Giardina, CP
    Coleman, MD
    Hancock, JE
    King, JS
    Lilleskov, EA
    Loya, WM
    Pregitzer, KS
    Ryan, MG
    Trettin, CC
    TREE SPECIES EFFECTS ON SOILS: IMPLICATIONS FOR GLOBAL CHANGE, 2005, 55 : 119 - 154
  • [23] Above- and belowground carbon stocks of two organic, agroforestry-based oil palm production systems in eastern Amazonia
    Nascimento Ramos, Helen Monique
    Vasconcelos, Steel Silva
    Kato, Osvaldo Ryohei
    Castellani, Debora Cristina
    AGROFORESTRY SYSTEMS, 2018, 92 (02) : 221 - 237
  • [24] ABANDONED PASTURES IN EASTERN AMAZONIA .2. NUTRIENT STOCKS IN THE SOIL AND VEGETATION
    BUSCHBACHER, R
    UHL, C
    SERRAO, EAS
    JOURNAL OF ECOLOGY, 1988, 76 (03) : 682 - 699
  • [25] Above- and belowground carbon stocks of two organic, agroforestry-based oil palm production systems in eastern Amazonia
    Helen Monique Nascimento Ramos
    Steel Silva Vasconcelos
    Osvaldo Ryohei Kato
    Débora Cristina Castellani
    Agroforestry Systems, 2018, 92 : 221 - 237
  • [26] The fate of glucose, a low molecular weight compound of root exudates, in the belowground foodweb of forests and pastures
    Strickland, Michael S.
    Wickings, Kyle
    Bradford, Mark A.
    SOIL BIOLOGY & BIOCHEMISTRY, 2012, 49 : 23 - 29
  • [27] One thousand soils for molecular understanding of belowground carbon cycling
    Bowman, Maggie M.
    Heath, Alexis E.
    Varga, Tamas
    Battu, Anil K.
    Chu, Rosalie K.
    Toyoda, Jason
    Cheeke, Tanya E.
    Porter, Stephanie S.
    Moffett, Kevan B.
    Letendre, Brittany
    Qafoku, Odeta
    Bargar, John R.
    Mans, Douglas M.
    Hess, Nancy J.
    Graham, Emily B.
    FRONTIERS IN SOIL SCIENCE, 2023, 3
  • [28] Carbon Cycling and Storage in Mangrove Forests
    Alongi, Daniel M.
    ANNUAL REVIEW OF MARINE SCIENCE, VOL 6, 2014, 6 : 195 - 219
  • [29] Belowground carbon cycling in a humid tropical forest decreases with fertilization
    Christian P. Giardina
    Dan Binkley
    Michael G. Ryan
    James H. Fownes
    Randy S. Senock
    Oecologia, 2004, 139 : 545 - 550
  • [30] Mangrove forests and carbon and water cycling
    Fuentes, Jose D.
    Barr, Jordan G.
    AGRICULTURAL AND FOREST METEOROLOGY, 2015, 213 : 263 - 265