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Assessing the Sensitivity of Riparian Algarrobo Dulce (Prosopis flexuosa DC) Radial Growth to Hydrological Changes


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Abraham E, del Valle HF, Roig F, Torres L, Ares JO, Coronato F, Godagnone R, 2009. Overview of the geography of the Monte Desert biome (Argentina). Journal of Arid Environments 73(2): 144–153, DOI 10.1016/j.jaridenv.2008.09.028.AbrahamEdel ValleHFRoigFTorresLAresJOCoronatoFGodagnoneR2009Overview of the geography of the Monte Desert biome (Argentina)Journal of Arid Environments73(2)144153DOI10.1016/j.jaridenv.2008.09.028Open DOISearch in Google Scholar

Bagnouls F and Gaussen H, 1953. Saison sèche et indice xérothermique (Dry season and xerothermic index). Bulletin de la Société d’histoire naturelle de Toulouse 88: 193–240.BagnoulsFGaussenH1953Saison sèche et indice xérothermique (Dry season and xerothermic index)Bulletin de la Société d’histoire naturelle de Toulouse88193240Search in Google Scholar

Biondi F and Waikul K, 2004. DENDROCLIM2002: A C++ program for statistical calibration of climate signals in tree-ring chronologies. Computers & Geosciences 30(3): 303–311, DOI 10.1016/j.cageo.2003.11.004.BiondiFWaikulK2004DENDROCLIM2002: A C++ program for statistical calibration of climate signals in tree-ring chronologiesComputers & Geosciences30(3)303311DOI10.1016/j.cageo.2003.11.004Open DOISearch in Google Scholar

Blasing TJ, Solomon AM and Duvick DN, 1984. Response functions revisited. Tree-Ring Bulletin 44: 1–15.BlasingTJSolomonAMDuvickDN1984Response functions revisitedTree-Ring Bulletin44115Search in Google Scholar

Boulanger JP, Martinez F and Segura EC, 2006. Projection of future climate change conditions using IPCC simulations, neural networks and Bayesian statistics. Part 1: Temperature mean state and seasonal cycle in South America. Climate Dynamics 27(2–3): 233–259, DOI 10.1007/s00382-006-0134-8.BoulangerJPMartinezFSeguraEC2006Projection of future climate change conditions using IPCC simulations neural networks and Bayesian statistics. Part 1: Temperature mean state and seasonal cycle in South AmericaClimate Dynamics27(2–3)233259DOI10.1007/s00382-006-0134-8Open DOISearch in Google Scholar

Burnham KP and Anderson DR, 2002. Model selection and multimodel inference: a practical information-theoretic approach. Springer Science & Business Media.BurnhamKPAndersonDR2002Model selection and multimodel inference: a practical information-theoretic approachSpringer Science & Business MediaSearch in Google Scholar

Chhin S, Chumack K, Dahl T, David ET, Kurzeja P, Magruder M and Telewski FW, 2013. Growth-climate relationships of Pinus strobus in the floodway versus terrace forest along the banks of the Red Cedar River, Michigan. Tree-Ring Research 69(2): 37–47, DOI 10.3959/1536-1098-69.2.37.ChhinSChumackKDahlTDavidETKurzejaPMagruderMTelewskiFW2013Growth-climate relationships of Pinus strobus in the floodway versus terrace forest along the banks of the Red Cedar RiverMichiganTree-Ring Research69(2)3747DOI10.3959/1536-1098-69.2.37Open DOISearch in Google Scholar

Clements FE, 1905. Research methods in ecology. University Publishing Company.ClementsFE1905Research methods in ecologyUniversity Publishing Company10.5962/bhl.title.160208Search in Google Scholar

Cook ER, 1985. A time series analysis approach to tree ring standardization. PhD Thesis, Lamont-Doherty Geological Observatory, New York.CookER1985A time series analysis approach to tree ring standardizationPhD ThesisLamont-Doherty Geological ObservatoryNew YorkSearch in Google Scholar

Cook ER, 1987. The decomposition of tree-ring series for environmental studies. Tree-Ring Bulletin 47: 37–59.CookER1987The decomposition of tree-ring series for environmental studiesTree-Ring Bulletin473759Search in Google Scholar

Cook ER and Krusic PJ, 2006. ARSTAN 41: a tree-ring standardization program based on detrending and autoregressive time series modeling, with interactive graphics. Tree-Ring Laboratory, Lamont Doherty Earth Observatory of Columbia University, New York.CookERKrusicPJ2006ARSTAN 41: a tree-ring standardization program based on detrending and autoregressive time series modeling with interactive graphicsree-Ring Laboratory Lamont Doherty Earth Observatory of Columbia UniversityNew YorkSearch in Google Scholar

Cropper JP, 1979. Tree-ring skeleton plotting by computer. Tree-Ring Bulletin 39:47–59.CropperJP1979Tree-ring skeleton plotting by computerTree-Ring Bulletin394759Search in Google Scholar

Dudek DM, McClenahen JR and Mitsch WJ, 1998. Tree growth responses of Populus deltoides and Juglans nigra to streamflow and climate in a bottomland hardwood forest in central Ohio. The American midland naturalist 140(2): 233–244.DudekDMMcClenahenJRMitschWJ1998Tree growth responses of Populus deltoides and Juglans nigra to streamflow and climate in a bottomland hardwood forest in central OhioThe American midland naturalist140(2)23324410.1674/0003-0031(1998)140[0233:TGROPD]2.0.CO;2Search in Google Scholar

Farina A, 2008. Principles and methods in landscape ecology: towards a science of the landscape (Vol. 3). Springer Science & Business Media.FarinaA2008Principles and methods in landscape ecology: towards a science of the landscape (Vol. 3).Springer Science & Business MediaSearch in Google Scholar

Goirán SB, Aranibar JN, and Gomez ML, 2012. Heterogeneous spatial distribution of traditional livestock settlements and their effects on vegetation cover in arid groundwater coupled ecosystems in the Monte desert (Argentina). Journal of Arid Environments 87: 188–197, DOI 10.1016/j.jaridenv.2012.07.011GoiránSBAranibarJNGomezML2012Heterogeneous spatial distribution of traditional livestock settlements and their effects on vegetation cover in arid groundwater coupled ecosystems in the Monte desert (Argentina)Journal of Arid Environments87188197DOI10.1016/j.jaridenv.2012.07.011Open DOISearch in Google Scholar

Kark S, 2013. Ecotones and ecological gradients. In Ecological Systems (pp. 147–160). Springer New York.KarkS2013Ecotones and ecological gradientsEcological Systems147160SpringerNew York10.1007/978-1-4614-5755-8_9Search in Google Scholar

Fritts HC, 1976. Tree Rings and Climate. Academic Press, London.FrittsHC1976Tree Rings and ClimateAcademic PressLondonSearch in Google Scholar

Giantomasi MA, Roig Juñent FA, Villagra PE and Srur AM, 2009. Annual variation and influence of climate on the ring width and wood hydrosystem of Prosopis flexuosa DC trees using image analysis. Trees 23: 117–126, DOI 10.1007/s00468-008-0260-5.GiantomasiMARoig JuñentFAVillagraPESrurAM2009Annual variation and influence of climate on the ring width and wood hydrosystem of Prosopis flexuosa DC trees using image analysisTrees23117126DOI10.1007/s00468-008-0260-5Open DOISearch in Google Scholar

Giantomasi MA, Roig-Juñent F, Patón-Domínguez D and Massaccesi G, 2012. Environmental modulation of the seasonal cambial activity in Prosopis flexuosa DC trees from the Monte woodlands of Argentina. Journal of Arid Environments 76: 17–22, DOI 10.1016/j.jaridenv.2011.08.010.GiantomasiMARoig-JuñentFPatón-DomínguezDMassaccesiG2012Environmental modulation of the seasonal cambial activity in Prosopis flexuosa DC trees from the Monte woodlands of ArgentinaJournal of Arid Environments761722DOI10.1016/j.jaridenv.2011.08.010Open DOISearch in Google Scholar

Giantomasi MA, Roig-Juñent FA and Villagra PE, 2013. Use of differential water sources by Prosopis flexuosa DC: a dendroecological study. Plant Ecology 214(1): 11–27, DOI 10.1007/s11258-012-0141-2.GiantomasiMARoig-JuñentFAVillagraPE2013Use of differential water sources by Prosopis flexuosa DC: a dendroecological studyPlant Ecology214(1)1127DOI10.1007/s11258-012-0141-2Open DOISearch in Google Scholar

Gonzalez IG, 2001. Weiser: a computer program to identify event and pointer years in dendrochronological series. Dendrochronologia 19(2): 239–244.GonzalezIG2001Weiser: a computer program to identify event and pointer years in dendrochronological seriesDendrochronologia19(2)239244Search in Google Scholar

Guiot J, 1991. The bootstrapped response function. Tree-Ring Bulletin 51: 39–41.GuiotJ1991The bootstrapped response functionTree-Ring Bulletin513941Search in Google Scholar

Helama S, Arentoft BW, Collin-Haubensak O, Hyslop MD, Brandstrup CK, Mäkelä HM, Tian Q and Wilson R, 2013. Dendroclimatic signals deduced from riparian versus upland forest interior pines in North Karelia, Finland. Ecological Research 28(6): 1019–1028, DOI 10.1007/s11284-013-1084-3.HelamaSArentoftBWCollin-HaubensakOHyslopMDBrandstrupCKMäkeläHMTianQWilsonR2013Dendroclimatic signals deduced from riparian versus upland forest interior pines in North Karelia FinlandEcological Research28(6)10191028DOI10.1007/s11284-013-1084-3Open DOISearch in Google Scholar

Heuzé P, Dupouey JL and Schnitzler A, 2009. Radial growth response of Hedera helix to hydrological changes and climatic variability in the Rhine floodplain. River Research and Applications 25(4): 393–404, DOI 10.1002/rra.1165.HeuzéPDupoueyJLSchnitzlerA2009Radial growth response of Hedera helix to hydrological changes and climatic variability in the Rhine floodplainRiver Research and Applications25(4)393404DOI10.1002/rra.1165Open DOISearch in Google Scholar

Holmes RL, 1983. Computer-assisted quality control in tree-ring dating and measurement. Tree-Ring Bulletin 43: 69–78.HolmesRL1983Computer-assisted quality control in tree-ring dating and measurementTree-Ring Bulletin436978Search in Google Scholar

Iglesias MR, 2010. Evaluación de la vegetación leñosa como depósito de carbono en un gradiente Árido—Semiárido Argentino (Evaluation of woody vegetation as carbon sink in an Argentinean Arid-Semiarid gradient). Doctoral dissertation, Universidad Nacional de Córdoba, Argentina (in Spanish).IglesiasMR2010Evaluación de la vegetación leñosa como depósito de carbono en un gradiente Árido—Semiárido Argentino (Evaluation of woody vegetation as carbon sink in an Argentinean Arid-Semiarid gradient)Doctoral dissertation Universidad Nacional de Córdoba, Argentina(in Spanish)Search in Google Scholar

IPCC WG I, 2007. Climate Change 2007: The Physical Science Basis. Contribution of Working Group. In: Solomon S, Qin D, Manning M, Chen Z, Marquis M, Averyt KB, Tignor M and Miller HL, eds, Fourth Assessment Report of the Intergovernmental Panel on Climate Change. Cambridge University Press, Cambridge.IPCC WG I2007Climate Change 2007: The Physical Science Basis. Contribution of Working GroupSolomonSQinDManningMChenZMarquisMAverytKBTignorMMillerHLFourth Assessment Report of the Intergovernmental Panel on Climate ChangeCambridge University PressCambridgeSearch in Google Scholar

Jobbágy EG, Nosetto MD, Villagra PE and Jackson RB, 2011. Water subsidies from mountains to deserts: their role in sustaining groundwater-fed oases in a sandy landscape. Ecological Applications 21(3): 678–694, DOI 10.1890/09-1427.1.JobbágyEGNosettoMDVillagraPEJacksonRB2011Water subsidies from mountains to deserts: their role in sustaining groundwater-fed oases in a sandy landscapeEcological Applications21(3)678694DOI10.1890/09-1427.121639036Open DOISearch in Google Scholar

Mazerolle MJ and Mazerolle MMJ, 2015. Package ‘AICcmodavg’.MazerolleMJMazerolleMMJ2015Package ‘AICcmodavg’Search in Google Scholar

Morello J, 1958. La Provincia Fitogeográfica del Monte (The Monte Phytogeographical Province). Tucumán: Opera Lilloana II, 155pp (in Spanish).MorelloJ1958La Provincia Fitogeográfica del Monte (The Monte Phytogeographical Province)TucumánOpera Lilloana II155pp (in Spanish)Search in Google Scholar

Naiman RJ and Décamps H, 1997. The ecology of interfaces: riparian zones. Annual Review of Ecology and Systematics 28: 621–658, DOI 10.1146/annurev.ecolsys.28.1.621.NaimanRJDécampsH1997The ecology of interfaces: riparian zonesAnnual Review of Ecology and Systematics28621658DOI10.1146/annurev.ecolsys.28.1.621Open DOISearch in Google Scholar

Odum EP, 1953. Fundamentals of ecology. W.B. Saunders, Philadelphia.OdumEP1953Fundamentals of ecologyW.B. Saunders, PhiladelphiaSearch in Google Scholar

Odum EP, Finn JT and Franz EH, 1979. Perturbation theory and the subsidy-stress gradient. BioScience 29(6): 349–352.OdumEPFinnJTFranzEH1979Perturbation theory and the subsidy-stress gradientBioScience29(6)34935210.2307/1307690Search in Google Scholar

Palta MM, Doyle TW, Jackson CR, Meyer JL and Sharitz RR, 2012. Changes in diameter growth of Taxodium distichum in response to flow alterations in the Savannah River. Wetlands 32(1): 59–71, DOI 10.1007/s13157-011-0245-9.PaltaMMDoyleTWJacksonCRMeyerJLSharitzRR2012Changes in diameter growth of Taxodium distichum in response to flow alterations in the Savannah RiverWetlands32(1)5971DOI10.1007/s13157-011-0245-9Open DOISearch in Google Scholar

Piraino S, Abraham EM, Diblasi A and Roig-Juñent FA, 2015. Geo-morphological-related heterogeneity as reflected in tree growth and its relationships with climate of Monte Desert Prosopis flexuosa DC woodlands. Trees 29(3): 903–916, DOI 10.1007/s00468-015-1173-8.PirainoSAbrahamEMDiblasiARoig-JuñentFA2015Geo-morphological-related heterogeneity as reflected in tree growth and its relationships with climate of Monte Desert Prosopis flexuosa DC woodlandsTrees29(3)903916DOI10.1007/s00468-015-1173-8Open DOISearch in Google Scholar

R Development Core Team, 2011. R: A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria. ISBN 3-900051-07-0, URL http://www.Rproject.org/.R Development Core Team2011R: A language and environment for statistical computing. R Foundation for Statistical Computing Vienna, AustriaISBN 3-900051-07-0, URL http://www.Rproject.org/Search in Google Scholar

Rodríguez-González PM, Stella JC, Campelo F, Ferreira MT and Albuquerque A, 2010. Subsidy or stress? Tree structure and growth in wetland forests along a hydrological gradient in Southern Europe. Forest Ecology and Management 259(10): 2015–2025, DOI 10.1016/j.foreco.2010.02.012.Rodríguez-GonzálezPMStellaJCCampeloFFerreiraMTAlbuquerqueA2010Subsidy or stress? Tree structure and growth in wetland forests along a hydrological gradient in Southern EuropeForest Ecology and Management259(10)20152025DOI10.1016/j.foreco.2010.02.012Open DOISearch in Google Scholar

Rodríguez-González PM, Campelo F, Albuquerque A, Rivaes R, Ferreira T and Pereira JS, 2014. Sensitivity of black alder (Alnus glutinosa [L.] Gaertn.) growth to hydrological changes in wetland forests at the rear edge of the species distribution. Plant Ecology 215(2): 233–245, DOI 10.1007/s11258-013-0292-9.Rodríguez-GonzálezPMCampeloFAlbuquerqueARivaesRFerreiraTPereiraJS2014Sensitivity of black alder (Alnus glutinosa [L.] Gaertn.) growth to hydrological changes in wetland forests at the rear edge of the species distributionPlant Ecology215(2)233245DOI10.1007/s11258-013-0292-9Open DOISearch in Google Scholar

Sakamoto Y, Ishiguro M and Kitagawa G, 1986. Akaike information criterion statistics. Dordrecht, The Netherlands: D. Reidel.SakamotoYIshiguroMKitagawaG1986Akaike information criterion statisticsDordrecht, The NetherlandsD. ReidelSearch in Google Scholar

Salemi LF, Groppo JD, Trevisan R, de Moraes JM, de Paula Lima W and Martinelli LA, 2012. Riparian vegetation and water yield: A synthesis. Journal of Hydrology 454–455: 195–202, DOI 10.1016/j.jhydrol.2012.05.061.SalemiLFGroppoJDTrevisanRde MoraesJMde Paula LimaWMartinelliLA2012Riparian vegetation and water yield: A synthesisJournal of Hydrology454455195–202, DOI 10.1016/j.jhydrol.2012.05.06110.1016/j.jhydrol.2012.05.061Search in Google Scholar

Schweingruber FH, Eckstein D, Serre-Bachet F and Bräker OU, 1990. Identification, presentation and interpretation of event years and pointer years in dendrochronology. Dendrochronologia 8: 9–38.SchweingruberFHEcksteinDSerre-BachetFBräkerOU1990Identification, presentation and interpretation of event years and pointer years in dendrochronologyDendrochronologia8938Search in Google Scholar

Smith TB, Wayne RK, Girman DJ and Bruford MW, 1997. A role for ecotones in generating rainforest biodiversity. Science 276(5320): 1855–1857, DOI 10.1126/science.276.5320.1855.SmithTBWayneRKGirmanDJBrufordMW1997A role for ecotones in generating rainforest biodiversityScience276(5320)18551857DOI10.1126/science.276.5320.1855Open DOISearch in Google Scholar

Snyder KA and Williams DG, 2000. Water sources used by riparian trees varies among stream types on the San Pedro River, Arizona. Agricultural and Forest Meteorology 105(1): 227–240, DOI 10.1016/S0168-1923(00)00193-3.SnyderKAWilliamsDG2000Water sources used by riparian trees varies among stream types on the San Pedro River ArizonaAgricultural and Forest Meteorology105(1)227240DOI10.1016/S0168-1923(00)00193-3Open DOISearch in Google Scholar

Stokes MA and Smiley TL, 1968. An introduction to tree-ring dating. University of Arizona Press.StokesMASmileyTL1968An introduction to tree-ring datingUniversity of Arizona PressSearch in Google Scholar

Stromberg JC, Wilkins SD and Tress JA, 1993. Vegetation-hydrology models: implications for management of Prosopis velutina (velvet mesquite) riparian ecosystems. Ecological Applications 3(2): 307–314, DOI 10.2307/1941833.StrombergJCWilkins TressJA1993Vegetation-hydrology models: implications for management of Prosopis velutina (velvet mesquite) riparian ecosystemsEcological Applications3(2)307314DOI10.2307/1941833Open DOISearch in Google Scholar

Stromberg JC and Patten DT, 1996. Instream flow and cottonwood growth in the eastern Sierra Nevada of California, USA. Regulated Rivers: Research & Management 12(1): 1–12.StrombergJCPattenDT1996Instream flow and cottonwood growth in the eastern Sierra Nevada of California USARegulated Rivers: Research & Management12(1)11210.1002/(SICI)1099-1646(199601)12:1<1::AID-RRR347>3.0.CO;2-DSearch in Google Scholar

Tardif J and Bergeron Y, 1993. Radial growth of Fraxinus nigra in a Canadian boreal floodplain in response to climatic and hydrological fluctuations. Journal of Vegetation Science 4(6): 751–758, DOI 10.2307/3235611.TardifJBergeronY1993Radial growth of Fraxinus nigra in a Canadian boreal floodplain in response to climatic and hydrological fluctuationsJournal of Vegetation Science4(6)751758DOI10.2307/3235611Open DOISearch in Google Scholar

Vich AIJ, Norte FA and Lauro C, 2014. Análisis regional de frecuencias de caudales de ríos pertenecientes a cuencas con nacientes en la cordillera de Los Andes (Regional flow frequency analysis of river basin with headwaters at the Andes cordillera). Meteorologica 39(1): 3–26 (in Spanish).VichAIJNorteFALauroC2014Análisis regional de frecuencias de caudales de ríos pertenecientes a cuencas con nacientes en la cordillera de Los Andes (Regional flow frequency analysis of river basin with headwaters at the Andes cordillera)Meteorologica39(1)326(in Spanish)Search in Google Scholar

Villagra PE, Defossé GE, Del Valle HF, Tabeni S, Rostagno M, Cesca E and Abraham E, 2009. Land use and disturbance effects on the dynamics of natural ecosystems of the Monte Desert: Implications for their management. Journal of Arid Environments 73(2): 202–211, DOI 10.1016/j.jaridenv.2008.08.002.VillagraPEDefosséGEDel ValleHFTabeniSRostagnoMCescaEAbrahamE2009Land use and disturbance effects on the dynamics of natural ecosystems of the Monte Desert: Implications for their managementJournal of Arid Environments73(2)202211DOI10.1016/j.jaridenv.2008.08.002Open DOISearch in Google Scholar

Villagra PE, Vilela A, Giordano C and Alvarez JA, 2010. Ecophisiology of Prosopis species from the arid land of Argentina: What do we know about adaptation to stressful environments? In: Ramawat K.G. (Ed.), Desert Plant, Biology and Biotechnology. Springer-Verlag, Berlin, Heidelberg.VillagraPEVilelaAGiordanoCAlvarezJA2010Ecophisiology of Prosopis species from the arid land of Argentina: What do we know about adaptation to stressful environments?RamawatK.G.Desert Plant Biology and BiotechnologySpringer-VerlagBerlin, Heidelberg10.1007/978-3-642-02550-1_15Search in Google Scholar

Villalba R, 1985. Xylem structure and cambial activity in Prosopis flexuosa DC. IAWA Bulletin 6: 119–130, DOI 10.1163/22941932-90000923.VillalbaR1985Xylem structure and cambial activity in Prosopis flexuosa DCIAWA Bulletin6119130DOI10.1163/22941932-90000923Open DOISearch in Google Scholar

Villalba R and Veblen TT, 1997. Spatial and temporal variation in Austrocedrus growth along the forest-steppe ecotone in northern Patagonia. Canadian Journal of Forest Research 27: 580–597, DOI 10.1139/x96-209.VillalbaRVeblenTT1997Spatial and temporal variation in Austrocedrus growth along the forest-steppe ecotone in northern PatagoniaCanadian Journal of Forest Research27580597DOI10.1139/x96-209Open DOISearch in Google Scholar

Wigley TML, Briffa KR and Jones PD, 1984. On the average value of correlated time series, with applications in dendroclimatology and hydrometeorology. Journal of Climate and Applied Meteorology 23(2): 201–213, DOI 10.1175/1520-0450(1984)023<0201:OTAVOC>2.0.CO;2.WigleyTMLBriffaKRJonesPD1984On the average value of correlated time series with applications in dendroclimatology and hydrometeorologyJournal of Climate and Applied Meteorology23(2)201213DOI10.1175/1520-0450(1984)023<0201:OTAVOC>2.0.CO;2Open DOISearch in Google Scholar

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