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Abstract:

Our knowledge about the functional foundations of ecosystem service (ES) provision is still limited and more research is needed to elucidate key functional mechanisms. Using a simplified eco-hydrological scheme, in this work we analyzed how land-use decisions modify the partition of some essential regulatory ES by altering basic relationships between biomass stocks and water flows. A comprehensive meta-analysis and review was conducted based on global, regional and local data from peer-reviewed publications. We analyzed five datasets comprising 1348 studies and 3948 records on precipitation (PPT), aboveground biomass (AGB), AGB change, evapotranspiration (ET), water yield (WY), WY change, runoff (R) and infiltration (I). The conceptual framework was focused on ES that are associated with the ecological functions (e.g., intermediate ES) of ET, WY, R and I. ES included soil protection, carbon sequestration, local climate regulation, water-flow regulation and water recharge. To address the problem of data normality, the analysis included both parametric and non-parametric regression analysis. Results demonstrate that PPT is a first-order biophysical factor that controls ES release at the broader scales. At decreasing scales, ES are partitioned as result of PPT interactions with other biophysical and anthropogenic factors. At intermediate scales, land-use change interacts with PPT modifying ES partition as it the case of afforestation in dry regions, where ET and climate regulation may be enhanced at the expense of R and water-flow regulation. At smaller scales, site-specific conditions such as topography interact with PPT and AGB displaying different ES partition formats. The probable implications of future land-use and climate change on some key ES production and partition are discussed. © 2016 Elsevier B.V.

Registro:

Documento: Artículo
Título:Partition of some key regulating services in terrestrial ecosystems: Meta-analysis and review
Autor:Viglizzo, E.F.; Jobbágy, E.G.; Ricard, M.F.; Paruelo, J.M.
Filiación:INTA, EEA Anguil, Grupo de Investigaciones en Gestión Ambiental (GIGA), Av. Spinetto 785, Santa Rosa, La Pampa, Argentina
INCITAP-CONICET, Ruta 35, km 335, Santa Rosa, La Pampa, Argentina
UNLPam, Facultad de Ciencias Exactas y Naturales, Av. Uruguay 151, Santa Rosa, La Pampa, Argentina
CONICET, San Luis, Andes 950, San Luis, Argentina
Grupo de Estudios Ambientales IMASL, Ejército de los, San Luis, Andes 950, San Luis, Argentina
Laboratorio de Análisis Regional y Teledetección, Departamento de Métodos Cuantitativos Sistemas de información, Facultad de Agronomía and IFEVA, Universidad de Buenos Aires and CONICET, Av. San Martín 4453, Buenos Aires, Argentina
Palabras clave:Biomass stock; Eco-services; Ecological functions; Scale-dependent control; Topography; Water pathways; Biomass; Carbon; Ecology; Ecosystems; Flow of water; Forestry; Hydraulics; Land use; Reforestation; Regression analysis; Soil conservation; Topography; Anthropogenic factors; Conceptual frameworks; Eco-services; Ecological functions; Functional mechanisms; Non-parametric regression; Terrestrial ecosystems; Water-pathway; Climate change; carbon; water; afforestation; ecosystem service; land use change; meta-analysis; terrestrial ecosystem; topography; anthroposphere; Article; biomass; carbon sequestration; climate change; ecosystem service; environmental management; evapotranspiration; geographic and geological phenomena; human; hydrosphere; land use; nonhuman; precipitation; priority journal; resource partitioning; runoff; soil change; terrestrial surface waters; topography; water flow
Año:2016
Volumen:562
Página de inicio:47
Página de fin:60
DOI: http://dx.doi.org/10.1016/j.scitotenv.2016.03.201
Título revista:Science of the Total Environment
Título revista abreviado:Sci. Total Environ.
ISSN:00489697
CODEN:STEVA
CAS:carbon, 7440-44-0; water, 7732-18-5
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00489697_v562_n_p47_Viglizzo

Referencias:

  • Amdan, M.L., Aragón, R., Jobbágy, E.G., Volante, J.N., Paruelo, J.M., Onset of deep drainage and salt movilization following forest clearing and cultivation in the Chaco plains (Argentina) (2013) Water Resour. Res., 49, pp. 1-12
  • Andréassian, V., Waters and forests: from historical controversy to scientific debate (2004) J. Hydrol., 291, pp. 1-27
  • Bailey, R.G., (1996) Ecosystem Geography, p. 204. , Springer-Verlag New York, Inc., Marceline (MO), USA
  • Bailey, R.G., (1998) Ecoregions: The Ecosystem Geography of the Oceans and Continents, p. 176. , Springer-Verlag New York, Inc., Marceline (MO), USA
  • Bennett, E.M., Peterson, G.D., Gordon, L.J., Understanding relationships among multiple ecosystem services (2009) Ecol. Lett., 12, pp. 1394-1404
  • Bennett, E.M., Cramer, W., Begossi, A., Cundill, G., Díaz, S., Egoh, B.N., Linking biodiversity, ecosystem services, and human well-being: three challenges for designing research for sustainability (2015) Curr. Opin. Environ. Sustain., 14, pp. 76-85
  • Bergkamp, G., A hierarchical view of the interactions of runoff and infiltration with vegetation and micro-topography in semiarid shrublands (1998) Catena, 33, pp. 201-220
  • Berthron, S.T., Jobbágy, E.G., Jackson, R.B., A global meta-analysis of soil exchangeable cations, pH, carbon, and nitrogen with afforestation (2009) Ecol. Appl., 19, pp. 2228-2241
  • Best, A., Zhang, L., McMahon, T., Western, A., Vertessy, R., (2003) A Critical Review of Paired Catchment Studies With Reference to Seasonal Flows and Climate Variability, CRC for Catchment Hydrology, Technical Report 03/4, p. 47
  • Bosch, J.M., Hewlett, H.D., A review of catchment experiments to determine the effect of vegetation changes on water yield and evapotranspiration (1982) J. Hydrol., 55, pp. 3-23
  • Bracken, L.J., Croke, J., The concept of hydrological connectivity and its contribution to understanding runoff-dominated geomorphic systems (2007) Hydrol. Process., 21, pp. 1749-1763
  • Bradford, K.J., Hsiao, T.C., Physiological responses to moderate water stress (1982) New Series, Vol. 12B, Lange OR, Nobel PS, Physiological Plant Ecology II, pp. 264-324. , Springer-Verlag, Berlin, O. CB, H. Ziegler (Eds.) Encyclopedia of Plant Physiology
  • Bradshaw, C.J.A., Sodhi, N.S., Peh, K.S.H., Brook, B.W., Global evidence that deforestation amplifies flood risk and severity in the developing world (2007) Glob. Chang. Biol., 13, pp. 2379-2395
  • Brauman, K.A., Daily, G.C., Duarte, T.K., Mooney, H.A., The nature and value of ecosystem services: an overview highlighting hydrologic services (2007) Annu. Rev. Environ. Resour., 32, pp. 67-98
  • Brown, A.E., Lu Zhang, L., McMahon, T.A., Western, A.W., Vertessy, R.A., A review of paired catchment studies for determining changes in water yield resulting from alterations in vegetation (2005) J. Hydrol., 310, pp. 28-61
  • Calder, I.R., Forests and water - ensuring benefits outweigh water costs (2007) For. Ecol. Manag., 251, pp. 110-120
  • Chen, S., Lin, G., Huang, J., Jenerette, G.D., Dependence of carbon sequestration on the differential responses of ecosystem photosynthesis and respiration to rain pulses in a semiarid steppe (2009) Glob. Chang. Biol., 15, pp. 2450-2461
  • Cleveland, W.S., Robust locally weighted regression and smoothing scatterplots (1979) J. Am. Stat. Assoc., 74, pp. 829-836
  • Costanza, R., d'Arge, R., de Groot, R., Farberk, S., Grasso, M., Hannon, B., The value of the world's ecosystem service and natural capital (1997) Nature, 387, pp. 253-260
  • Costanza, R., d'Arge, R., de Groot, R., Farber, S., Grasso, M., Hannon, B., The value of ecosystem services: putting the issues in perspective. Special section: forum on valuation of ecosystem services (1998) Ecol. Econ., 25, pp. 67-72
  • Costanza, R., Fisher, B., Ali, S., Beer, C., Bond, L., Boumans, R., Quality of life: an approach integrating opportunities, human needs, and subjective well-being (2007) Ecol. Econ., 61, pp. 267-276
  • De Vente, J., Poesen, J., Predicting soil erosion and sediment yield at the basin scale: scale issues and semi-quantitative models (2005) Earth Sci. Rev., 71, pp. 95-125
  • Dickinson, R.E., Kennedy, P., Impacts on regional climate of Amazon deforestation (1992) Geophys. Res. Lett., 19, pp. 1947-1950
  • Don, A., Schumacher, J., Freibauer, A., Impact of tropical land-use change on soil organic carbon stocks: a meta-analysis (2011) Glob. Chang. Biol., 17, pp. 1658-1670
  • Dubreuil, V., Debortoli, N., Funatsu, B., Nédélec, V., Durieux, L., Impact of land-cover change in the Southern Amazonia climate: a case study for the region of Alta Floresta, Mato Grosso (2012) Brazil. Environ. Monit. Assess., 184, pp. 877-891
  • Falkowski, P., Scholes, R.J., Boyle, E., Canadell, J., Canfield, D., Elser, J., The global carbon cycle: a test of our knowledge of earth as a system (2000) Science, 290, pp. 291-296
  • Farley, K.A., Jobbagy, E.G., Jackson, R.B., Effects of afforestation on water yield: a global synthesis with implications for policy (2005) Glob. Chang. Biol., 11, pp. 1565-1576
  • Gash, J.H.C., Nobre, C.A., Climatic effects of Amazonian deforestation: some results from ABRACOS (1997) Bull. Am. Meteorol. Soc., 78, pp. 823-830
  • Geist, H.J., Lambin, E.F., Dynamic causal patterns of desertification (2004) Bioscience, 54, pp. 817-829
  • Havstad, K.M., Peters, D.C.P., Skaggs, R., Brown, J., Bestelmeyer, B., Fredrickson, E., Ecological services to and from rangelands of the United States (2007) Ecol. Econ., 64, pp. 261-268
  • Hibbert, A.R., Forest treatment effects on water yield (1967) Proc. Int. Symp. on Forest Hydrology Held at Pennsylvania State Univ., Aug. 29-Sept. 10, pp. 527-543. , Pergamon Press
  • Hoffman, W.A., Schroeder, W., Jackson, R.B., Regional feedbacks among fire, climate, and tropical deforestation (2003) J. Biophys. Res., 108 (D23), p. 4721. , A1-A11
  • Hornbeck, J.W., Adams, M.B., Corbett, E.S., Verry, E.S., Lynch, J.A., Long-term impacts of forest treatments on water yield: a summary for Northeastern USA (1993) J. Hydrol., 150, pp. 323-344
  • Ilstedt, U., Malmer, A., Verbeeten, E., Murdiyarso, D., The effect of afforestation on water infiltration in the tropics: a systematic review and meta-analysis (2007) For. Ecol. Manag., 251, pp. 45-51
  • Revised 2006 IPCC Guidelines for National Greenhouse Gas Inventories (2006) Reference Manual, Prepared by the National Greenhouse Gas Inventories Programme. Vol. 4, Chapters 2-7, , http://www.ipcc-nggip.iges.or.jp/, IGES, Japan, Available from:, H.S. Eggleston, L. Buendia, K. Miwa, T. Ngara, K. Tanabe (Eds.), 2.1-7.24
  • Climate Change 2007: The Physical Science Basis (2007) Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change, , Cambridge University Press, Cambridge, UK and New York, NY, USA
  • Summary for policymakers (2014) Part A: Global and Sectoral Aspects. Contribution of Working Group II to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change, pp. 1-32. , Cambridge University Press, Cambridge, United Kingdom and New York, NY, USA, C.B. Field, V.R. Barros, D.J. Dokken, K.J. Mach, M.D. Mastrandrea, T.E. Bilir (Eds.) Climate Change 2014: Impacts, Adaptation, and Vulnerability
  • Jackson, R.B., Jobbágy, E.G., Avissar, R., Roy, S.B., Barrett, D.J., Cook, C.W., Trading water for carbon with biological carbon sequestration (2005) Science, 310, pp. 1944-1947
  • Jiongxin, X., Yunxia, Y., Scale effects on specific sediment yield in the Yellow River basin and geo-morphological explanations (2005) J. Hydrol., 307, pp. 219-232
  • Jobbágy, E.G., Nosetto, M.D., Santoni, C.S., Baldi, G., El desafío ecohidrológico de las transiciones entre sistemas leñosos y herbáceos en la llanura Chaco-Pampeana (2008) Ecología Austral., 18, pp. 305-322
  • Jobbágy, E.G., Baldi, G., Nosetto, M.D., Tree plantation in South America and the water cycle: impacts and emergent opportunities (2012) Forests in Development: A Vital Balance, pp. 53-63. , Springer Science + Business Media B.V. T. Schlichter, L. Montes (Eds.)
  • Kadry, L.T., Classification and distribution of sandy soils in the near East Region and their agricultural potentialities (1975) FAO, Working Papers III, , http://www.fao.org/docrep/x5869e/x5869e04.htm, FAO, Rome, Available from:
  • Kaimowitz, D., Useful myths and intractable truths: the politics of the link between forests and water in Central America (2005) Forest-Water-People in the Humid Tropics, pp. 86-98. , Cambridge University Press, Cambridge, UK, M. Bonell, L.A. Bruijnzeel (Eds.)
  • Kremen, C., Managing ecosystem services: what do we need to know about their ecology? (2005) Ecol. Lett., 8, pp. 468-479
  • Lagamière, J., Angers, D.A., Paré, D., Carbon accumulation in agricultural soils after afforestation: a meta-analysis (2010) Glob. Chang. Biol., 16, pp. 439-453
  • Lal, R., Sequestration of atmospheric CO2 in global carbon pools (2008) Energy Environ. Sci., 1, pp. 86-100
  • Lal, R., Laws of sustainable soil management (2009) Agronomy for Sustainable Development, 29, pp. 7-9. , https://hal.archives-ouvertes.fr/hal-00886522, Springer Verlag, Germany, Available from:
  • Lane, L.J., Hernandez, M., Nichols, M., Processes controlling sediment yield from watersheds as function of spatial scale (1997) Environ. Model. Softw., 12, pp. 355-369
  • Lawrence, D., Vandecar, K., Effects of tropical deforestation on climate and agriculture (2015) Nat. Clim. Chang., 5, pp. 27-36
  • Lean, J., Warrilow, D.A., Simulation of the regional climatic impact of Amazon deforestation (1989) Nature, 342, pp. 411-413
  • Maetens, W., Vanmaercke, M., Poesen, J., Jankauskas, B., Jankauskien, G., Ionita, I., Effects of land use on annual runoff and soil loss in Europe and the Mediterranean: a meta-analysis of plot data (2012) Prog. Phys. Geogr., 36, pp. 597-651
  • Malmer, A., Murdiyarso, D., Bruijnzeel, L.A., Ilstedt, U., Carbon sequestration in tropical forests and water: a critical look at the basis for commonly used generalizations (2010) Glob. Chang. Biol., 16, pp. 599-604
  • Marvin, S., Possible Changes in Water Yield and Peak Flows in Response to Forest Management (1996) Sierra Nevada Ecosystem Project: Final report to Congress, 3. , University of California, Centers for Water and Wildland Resources
  • Mayor, A.G., Bautista, S., Small, S.E., Dixon, M., Bellot, J., Measurement of the connectivity of runoff source areas as determined by vegetation pattern and topography: a tool for assessing potential water and soil losses in drylands (2008) Water Resour. Res., 44
  • McCarthy, M.C., Enquist, B.J., Consistency between an allometric approach and optimal partitioning theory in global patterns of plant biomass allocation (2007) Funct. Ecol., 21, pp. 713-720
  • McMahon, T.A., Finlayson, B.L., Haines, A.T., Srikanthan, R., (1992) Global Runoff: Continental Comparisons of Annual Flows and Peak Discharges, , Catena, Reiskirchen, Germany
  • Osterkamp, W.R., Toy, T.J., Geomorphic considerations for erosion prediction (1997) Environ. Geol., 29, pp. 152-157
  • Peel, M.C., McMahon, T.A., Finlayson, B.L., Watson, F.G.R., Identification and explanation of continental differences in the variability of annual runoff (2001) J. Hydrol., 250, pp. 224-240
  • Peel, M.C., McMahon, T.A., Finlayson, B.L., Watson, F.G.R., Implications of the relationship between catchment vegetation type and the variability of annual runoff (2002) Hydrol. Process., 16, pp. 2995-3002
  • Pielke, R.A., Avissar, R., Influence of landscape structure on local and regional climate (1990) Landsc. Ecol., 4, pp. 133-156
  • Power, A.G., Ecosystem services and agriculture: tradeoffs and synergies: review (2010) Philos. Trans. R. Soc. B, 365, pp. 2959-2971
  • Raudsepp-Hearne, C., Peterson, G.D., Bennett, E.M., Ecosystem service bundles for analyzing tradeoffs in diverse landscapes (2010) P. Natl. A. Sci., 107, pp. 5242-5247
  • Restrepo, J.D., Kjerfve, B., Hermelin, M., Restrepo, J.C., Factors controlling sediment yield in a major South American drainage basin: the Magdalena River, Colombia (2006) J. Hydrol., 316, pp. 213-232
  • Rockström, J., Lannerstad, M., Falkenmark, M., Assessing the water challenge of a new green revolution in developing countries (2007) P. Natl. A. Sci., 104, pp. 6253-6260
  • Saad, S.I., da Rocha, H.R., Silva Dias, M.A.F., Rosolem, R., Can the deforestation breeze change the rainfall in Amazonia? A case study for the BR-163 highway region (2010) Earth Interact., 14, pp. 18-25
  • Sahin, V., Hall, M.J., The effects of afforestation and deforestation on water yields (1996) J. Hydrol., 178, pp. 293-309
  • Saleska, S.R., Didan, K., Huete, A.R., Rocha, H., Amazon forests green-up during 2005 drought (2007) Science, 318, p. 612
  • Scanlon, B.R., Keese, K.E., Flint, A.L., Flint, L.E., Gaye, C.B., Edmunds, W.M., Global synthesis of groundwater recharge in semiarid and arid regions (2006) Hydrol. Process., 20, pp. 3335-3370
  • Scheffler, R., Neill, C., Krusche, A.V., Elsenbeer, H., Soil hydraulic response to land-use change associated with the recent soybean expansion at the Amazon agricultural frontier (2011) Agric. Ecosyst. Environ., 144, pp. 281-289
  • Scott, D.F., Bruijnzeel, L.A., Mackensen, J., The hydrological and soil impacts of forestation in the tropics (2005) Forests, Water and People in the Humid Tropics, pp. 622-651. , Cambridge University Press, Cambridge, UK, M. Bonell, B. LA (Eds.)
  • Sekercioglu, C.H., Ecosystem functions and services (2010) Conservation Biology for All, pp. 45-72. , Oxford University Press 2010, Oxford (UK), N.S. Sodhi, P.R. Ehrlich (Eds.)
  • Shapiro, S.S., Wilk, M.B., An analysis of variance test for normality (complete samples) (1965) Biometrika, 52, pp. 591-611
  • Sidle, R.C., Ziegler, A.D., Negishi, J.N., Nik, A.R., Siew, R., Turkelboom, F., Erosion processes in steep terrain-truths, myths, and uncertainties related to forest management in Southeast Asia (2006) For. Ecol. Manag., 224, pp. 199-225
  • Slaymaker, O., Towards the identification of scaling relations in drainage basin sediment budgets (2006) Geomorphology, 80, pp. 8-19
  • Sodhi, N.S., Brook, B.W., Bradshaw, C.J.A., (2007) Tropical Conservation Biology, , Wiley-Blackwell, Boston, MA
  • Spaeth, K.E., Pierson, F.B., Weltz, M.A., Awang, J.B., Gradient analysis of infiltration and environmental variables as related to rangeland vegetation (1996) Trans. ASAE., 39, pp. 67-77
  • Stednick, J.D., Monitoring the effects of timber harvest on annual water yield (1996) J. Hydrol., 176, pp. 79-95
  • Steduto, P., Hsiao, T.C., Fereres, E., On the conservative behavior of biomass water productivity (2007) Irrig. Sci., 25, pp. 189-207
  • Steduto, P., Hsiao, T.C., Raes, D., Elías, F.C., Aquacrop - the FAO crop model to simulate yield response to water (2009) Agron. J., 101, pp. 448-459
  • Sterling, S., Ducharne, A., Polcher, J., The impact of global land-cover change on the terrestrial water cycle (2012) Nat. Clim. Chang., 3, pp. 385-390
  • Swartz, K., Belan, G., (2010) Low Impact Development Manual for the Lower Maumee and Ottawa River Watershed, p. 66. , Tetra Tec, Toledo, Ohio
  • Talberth, J., Hanson, C., (2012) Green vs. Gray Infrastructure: When Nature Is Better than Concrete, , http://www.wri.org/blog/2012/06/green-vs-gray-infrastructure-when-nature-better-concrete, World Resources Institute, Washington DC
  • Talberth, J., Gray, E., Branosky, E., Gartner, T., Insights from the Field: Forests for Water (2012) World Resources Institute, Issue Brief 9, p. 7. , http://pdf.wri.org/insightsfromthefieldforestsforwater.pdf
  • Thompson, S.E., Harman, C.J., Heine, P., Katul, G.G., Vegetation-infiltration relationships across climatic and soil type gradients (2010) J. Geophys. Res., 115
  • Trewartha, G.T., Robinson, A.H., Hammond, E.H., (1967) Physical Elements of Geography, p. 527. , McGraw-Hill, New York
  • Van Dijk, A.I., Keenan, R., Planted forests and water in perspective (2007) For. Ecol. Manag., 251, pp. 1-9
  • Van Wilgen, B.W., Le Maitre, D.C., Cowling, R.M., Ecosystem services, efficiency, sustainability and equity: South Africa's working for water programme (1998) Trends Ecol. Evol., 13, p. 378
  • Verhoeven, J.T.A., Arheimer, B., Yin, C., Hefting, M.M., Regional and global concerns over wetlands and water quality (2006) Trends Ecol. Evol., 21, pp. 96-103
  • Viglizzo, E.F., Paruelo, J.M., Laterra, P., Jobbágy, E.G., Ecosystem service evaluation to support land-use policy (2012) Agric. Ecosyst. Environ., 54, pp. 78-84
  • Viglizzo, E.F., Nosetto, M.D., Jobbágy, E.G., Ricard, M.F., Frank, F.C., The ecohydrology of ecosystem transitions: a meta-analysis (2014) Ecohydrology
  • Wang, Y., Jiang, Q., Yang, Z., Sun, W., Wang, D., Effects of water and nitrogen addition on ecosystem carbon exchange in a meadow steppe (2015) PLoS One, 10 (5)
  • Warren, C.E., Toward Classification and Rationale for Watershed Management and Stream Protection (1979) EPA-600/3-79-059, p. 142. , US Environmental Protection Agency, Corvallis, OR
  • Weltzin, J.F., Loik, M.E., Schwinning, S., Williams, D.G., Fay, P.A., Haddad, B.M., Assessing the response of terrestrial ecosystems to potential changes in precipitation (2003) Bioscience, 53, pp. 941-952
  • Wright, S., Tropical forests in a changing environment (2005) Trends Ecol. Evol., 20, pp. 553-560
  • Yaseef, N., Yakir, D., Rotenberg, E., Schiller, G., Cohen, S., Ecohydrology of a semi-arid forest: partitioning among water balance components and its implications for predicted precipitation changes (2010) Ecohydrology, 3, pp. 143-154
  • Zhang, L., Dawes, W.R., Walker, G.R., (1999) Predicting the Effect of Vegetation Changes on Catchment Average Water Balance, Cooperative Research Centre for Catchment Hydrology, Technical Report 99/12, p. 35
  • Zhang, L., Hickel, K., Dawes, W.R., Chiew, F.H.S., Western, A.W., Briggs, P.R., A rational function approach for estimating mean annual evapotranspiration (2004) Water Resour. Res., 40
  • Zhang, W., Ricketts, T.H., Kremen, C., Carney, K., Swinton, S.M., Ecosystem services and dis-services to agriculture (2007) Ecol. Econ., 64, pp. 253-260

Citas:

---------- APA ----------
Viglizzo, E.F., Jobbágy, E.G., Ricard, M.F. & Paruelo, J.M. (2016) . Partition of some key regulating services in terrestrial ecosystems: Meta-analysis and review. Science of the Total Environment, 562, 47-60.
http://dx.doi.org/10.1016/j.scitotenv.2016.03.201
---------- CHICAGO ----------
Viglizzo, E.F., Jobbágy, E.G., Ricard, M.F., Paruelo, J.M. "Partition of some key regulating services in terrestrial ecosystems: Meta-analysis and review" . Science of the Total Environment 562 (2016) : 47-60.
http://dx.doi.org/10.1016/j.scitotenv.2016.03.201
---------- MLA ----------
Viglizzo, E.F., Jobbágy, E.G., Ricard, M.F., Paruelo, J.M. "Partition of some key regulating services in terrestrial ecosystems: Meta-analysis and review" . Science of the Total Environment, vol. 562, 2016, pp. 47-60.
http://dx.doi.org/10.1016/j.scitotenv.2016.03.201
---------- VANCOUVER ----------
Viglizzo, E.F., Jobbágy, E.G., Ricard, M.F., Paruelo, J.M. Partition of some key regulating services in terrestrial ecosystems: Meta-analysis and review. Sci. Total Environ. 2016;562:47-60.
http://dx.doi.org/10.1016/j.scitotenv.2016.03.201