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Tree-ring widths and the stable isotope composition of pine tree-rings as climate indicators in the most industrialised part of Poland during CO2 elevation

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Anderson WT, Bernasconi SM, McKenzie JA and Saurer M, 1998. Oxygen and carbon isotopic record of climatic variability in tree ring cellulose, Picea abies.: An example from central Switzerland, 1913 –1995. Journal of Geophysical Research 103: 31625–31636, 10.1029/1998JD200040.AndersonWTBernasconiSMMcKenzieJASaurerM1998Oxygen and carbon isotopic record of climatic variability in tree ring cellulose, Picea abiesAn example from central Switzerland1913–1995Journal of Geophysical Research103316253163610.1029/1998JD200040Open DOISearch in Google Scholar

Barbour MM, Roden JS, Farquhar GD and Ehleringer JR, 2004. Expressing leaf water and cellulose oxygen isotope ratios as enrichment above source water reveals evidence of a Peclet effect. Oecologia 138: 426–435, 10.1007/s00442-003-1449-3.BarbourMMRodenJSFarquharGDEhleringerJR2004Expressing leaf water and cellulose oxygen isotope ratios as enrichment above source water reveals evidence of a Peclet effectOecologia13842643510.1007/s00442-003-1449-314666420Open DOISearch in Google Scholar

Barbour MM, Walcroft AS and Farquhar GD, 2002. Seasonal variation in δ13C and δ18O of cellulose from growth rings of Pinus radiata. Plant, Cell and Environment 25: 1483–1499, 10.1046/j.0016-8025.2002.00931.x.BarbourMMWalcroftASFarquharGD2002Seasonal variation in δ13C and δ18O of cellulose from growth rings of Pinus radiataPlant, Cell and Environment251483149910.1046/j.0016-8025.2002.00931.xOpen DOISearch in Google Scholar

Battipaglia G, Saurer M, Cherubini P, Calfapietra C, McCarthy HR, Norby RJ and Cotrufo MF, 2013. Elevated CO2 increases tree-level intrinsic water use efficiency: insights from carbon and oxygen isotope analyses in tree rings across three forest FACE sites. New Phytologist 197: 544–554, 10.1111/nph.12044.BattipagliaGSaurerMCherubiniPCalfapietraCMcCarthyHRNorbyRJCotrufoMF2013Elevated CO2 increases tree-level intrinsic water use efficiency: insights from carbon and oxygen isotope analyses in tree rings across three forest FACE sitesNew Phytologist19754455410.1111/nph.1204423215904Open DOISearch in Google Scholar

Balanzategui D, Knorr A, Heussner KU, Wazny T, Beck W, Słowiński M, Helle G, Buras A Wilmking M, Van Der Maaten E, Scharnweber T, Dorado-Liñán I and Heinrich I, 2017. An 810-year history of cold season temperature variability for northern Poland. Boreas 47: 443–453, 10.1111/bor.12274.BalanzateguiDKnorrAHeussnerKUWaznyTBeckWSłowińskiMHelleGBurasAWilmkingMVan Der MaatenEScharnweberTDorado-LiñánIHeinrichI2017An 810-year history of cold season temperature variability for northern PolandBoreas4744345310.1111/bor.12274Open DOISearch in Google Scholar

Boettger T, Haupt M, Friedrich M and Waterhouse JS, 2014. Reduced climate sensitivity of carbon, oxygen and hydrogen stable isotope ratios in tree-ring cellulose of silver fir, Abies alba Mill. influenced by background SO2 in Franconia, Germany, central Europe. Environmental Pollution 185: 281–294, 10.1016/j.envpol.2013.10.030.BoettgerTHauptMFriedrichMWaterhouseJS2014Reduced climate sensitivity of carbon, oxygen and hydrogen stable isotope ratios in tree-ring cellulose of silver firAbies alba Mill. influenced by background SO2 in FranconiaGermany, central EuropeEnvironmental Pollution18528129410.1016/j.envpol.2013.10.03024316066Open DOISearch in Google Scholar

Biondi F, 1997. Evolutionary and moving response functions in dendroclimatology. Dendrochronologia 15: 139–150.BiondiF1997Evolutionary and moving response functions in dendroclimatologyDendrochronologia15139150Search in Google Scholar

Boden TA, Marland G and Andres RJ, 2016. Global, Regional and National Fossil-Fuel CO2 Emissions. Carbon Dioxide Information Analysis Center, Oak Ridge National Laboratory, U.S. Department of Energy, Oak Ridge, Tenn., U.S.A., 10.3334/CDIAC/00001_V2016.BodenTAMarlandGAndresRJ2016Global, Regional and National Fossil-Fuel CO2 EmissionsCarbon Dioxide Information Analysis CenterOak Ridge National Laboratory, U.SDepartment of Energy, Oak Ridge, Tenn., U.S.A.10.3334/CDIAC/00001_V2016Open DOISearch in Google Scholar

Briffa KR and Jones PD, 1990. Basic chronology statistics and assessment. In: Cook ER and Kairiukstis LA, eds., Methods of dendrochronology. Applications in the environmental sciences. Kluwer Academic, Dordrecht: 137–152.BriffaKRJonesPD1990Basic chronology statistics and assessmentCookERKairiukstisLAMethods of dendrochronology. Applications in the environmental sciencesKluwer AcademicDordrecht137152Search in Google Scholar

Burk RL and Stuiver M, 1981. Oxygen isotope ratios in trees reflect mean annual temperature and humidity. Science 211: 1417–1419, 10.1126/science.211.4489.1417.BurkRLStuiverM1981Oxygen isotope ratios in trees reflect mean annual temperature and humidityScience2111417141910.1126/science.211.4489.141717731182Open DOISearch in Google Scholar

Cinnirella S, Magnani F, Saracino A and Borghetti M, 2002. Response of a mature Pinus laricio plantation to a three-year restriction of water supply: structural and functional acclimation to drought. Tree Physiology 22: 21–30, 10.1093/treephys/22.1.21.CinnirellaSMagnaniFSaracinoABorghettiM2002Response of a mature Pinus laricio plantation to a three-year restriction of water supply: structural and functional acclimation to droughtTree Physiology22213010.1093/treephys/22.1.2111772552Open DOISearch in Google Scholar

Craig H, 1954. Carbon-13 in plants and the relationship between carbon-13 and carbon-14 variations in nature. Journal of Geology 62: 115–149, 10.1086/626141.CraigH1954Carbon-13 in plants and the relationship between carbon-13 and carbon-14 variations in natureJournal of Geology6211514910.1086/626141Open DOISearch in Google Scholar

Cropper JP and Fritts HC, 1982. Density of tree-ring grids in western North America. Tree-Ring Bulletin 42: 3–10.CropperJPFrittsHC1982Density of tree-ring grids in western North AmericaTree-Ring Bulletin42310Search in Google Scholar

Edwards TWD and Fritz P, 1986. Assessing meteoric water composition and relative humidity from 18O and 2H in wood cellulose: paleoclimatic implications for southern Ontario, Canada. Applied Geochemistry 1(6): 715–723.EdwardsTWDFritzP1986Assessing meteoric water composition and relative humidity from 18O and 2H in wood cellulose: paleoclimatic implications for southern Ontario, CanadaApplied Geochemistry1671572310.1016/0883-2927(86)90093-4Search in Google Scholar

Edwards TWD, Graf W, Trimborn P, Stichler W, Lipp J and Payer HD, 2000. δ13C response surface resolves humidity and temperature signals in trees. Geochimica et Cosmochimica Acta 64: 161–167, 10.1016/S0016-7037(99)00289-6.EdwardsTWDGrafWTrimbornPStichlerWLippJPayerHD2000δ13C response surface resolves humidity and temperature signals in treesGeochimica et Cosmochimica Acta6416116710.1016/S0016-7037(99)00289-6Open DOISearch in Google Scholar

Ehrelinger J and Vogel J, 1993. Historical Aspects of Stable Isotopes in Plant Carbon and Water Relations. In: Ehrelinger JR, Hall AE and Farquhar GD, eds., Stable isotopes and plant Carbon-Water Relation. Academic Press, New York, 9–19EhrelingerJVogelJ1993Historical Aspects of Stable Isotopes in Plant Carbon and Water RelationsEhrelingerJRHallAEFarquharGDStable isotopes and plant Carbon-Water RelationAcademic PressNew York91910.1016/B978-0-08-091801-3.50008-8Search in Google Scholar

Farquhar GD and Lloyd L, 1993. Carbon and oxygen isotope effects in the exchange of carbon dioxide between plants and the atmosphere. In: Ehrelinger JR, Hall AE and Farquhar GD, eds., Stable isotopes and plant Carbon-Water Relation. Academic Press, New York: 47–70,FarquharGDLloydL1993Carbon and oxygen isotope effects in the exchange of carbon dioxide between plants and the atmosphereEhrelingerJRHallAEFarquharGDStable isotopes and plant Carbon-Water Relation.Academic PressNew York477010.1016/B978-0-08-091801-3.50011-8Search in Google Scholar

Feliksik E and Wilczyński S, 2004. Teleconnection of tree-ring increment chronologies of Douglas fir, Pseudotsuga menziesii, Mirb.Franco: nationwide and regional increment patterns. Sylwan 148(12): 14–22.FeliksikEWilczyńskiS2004Teleconnection of tree-ring increment chronologies of Douglas fir, Pseudotsuga menziesii, Mirb.Franco: nationwide and regional increment patternsSylwan148121422Search in Google Scholar

Ferrio J, Voltas J and Araus J, 2003. Use of carbon isotope composition in monitoring environmental changes. Management of Environmental Quality 14: 82–98.FerrioJVoltasJArausJ2003Use of carbon isotope composition in monitoring environmental changesManagement of Environmental Quality14829810.1108/14777830310460405Search in Google Scholar

Fritts HC, 1976. Tree Rings and Climate. Academic Press, London: 567pp.FrittsHC1976Tree Rings and ClimateAcademic PressLondon567ppSearch in Google Scholar

Gagen M, Finsinger W, Wagner-Cremer F, McCarroll D, Loader N, Robertson I, Jalkanen R, Young G and Kirchhefer A, 2011. Evidence of changing intrinsic water-use efficiency under rising atmospheric CO2 concentrations in Boreal Fennoscandia from sub-fossil leaves and tree ring δ13C ratios. Global Change Biology 17: 1064–1072, 10.1111/j.1365-2486.2010.02273.x.GagenMFinsingerWWagner-CremerFMcCarrollDLoaderNRobertsonIJalkanenRYoungGKirchheferA2011Evidence of changing intrinsic water-use efficiency under rising atmospheric CO2 concentrations in Boreal Fennoscandia from sub-fossil leaves and tree ring δ13C ratiosGlobal Change Biology171064107210.1111/j.1365-2486.2010.02273.xOpen DOISearch in Google Scholar

Gagen M, McCarroll D and Edouard JL, 2004. The effect of site conditions on pine tree-ring width, density and δ13C series. Arctic, Antarctic, and Alpine Research, 36(2): 166–171.GagenMMcCarrollDEdouardJL2004The effect of site conditions on pine tree-ring width, density and δ13C seriesArctic, Antarctic, and Alpine Research36216617110.1657/1523-0430(2004)036[0166:LWMDAS]2.0.CO;2Search in Google Scholar

Green J, 1963. Wood cellulose. In: Whistler RL ed., Methods in Carbohydrate Chemistry 3. Academic Press, New York: 9–21..GreenJ1963Wood celluloseWhistlerRLMethods in Carbohydrate Chemistry 3Academic PressNew York921Search in Google Scholar

Gričar J, Zupancic M, Cufar K, Koch G, Schmitt UWE and Oven P, 2006. Effect of local heating and cooling on cambial activity and cell differentiation in the stem of Norway spruce, Picea abies. Annals of Botany 97(6): 943–951, 10.1093/aob/mc1050.GričarJZupancicMCufarKKochGSchmittUWEOvenP2006Effect of local heating and cooling on cambial activity and cell differentiation in the stem of Norway sprucePicea abies. Annals of Botany97694395110.1093/aob/mc1050Open DOISearch in Google Scholar

Helama S, Lindholm M, Meriläinen J, Timonen M and Eronen M, 2005. Multicentennial ring-width chronologies of Scots pine along north-south gradient across Finland. Tree-Ring Research 61: 21–32, 10.3959/1536-1098-61.1.21.HelamaSLindholmMMeriläinenJTimonenMEronenM2005Multicentennial ring-width chronologies of Scots pine along north-south gradient across FinlandTree-Ring Research61213210.3959/1536-1098-61.1.21Open DOISearch in Google Scholar

Helama S, Lindholm M, Timonen M, Meriläinen J and Eronen M, 2002. The supra-long Scots pine tree-ring record for Finnish lapland: part 2, interannual to centennial variability in summer temperatures for 7500 years. Holocene 12: 681–687, 10.1191/0959683602hl581rp.HelamaSLindholmMTimonenMMeriläinenJEronenM2002The supra-long Scots pine tree-ring record for Finnish lapland: part 2, interannual to centennial variability in summer temperatures for 7500 yearsHolocene1268168710.1191/0959683602hl581rpOpen DOISearch in Google Scholar

Hoch G, Richter A and Körner C, 2003. Non-structural carbon compounds in temperate forest trees. Plant, Cell and Environment 26(7): 1067–1081, 10.1046/j.0016-8025.2003.01032.x.HochGRichterAKörnerC2003Non-structural carbon compounds in temperate forest treesPlant, Cell and Environment2671067108110.1046/j.0016-8025.2003.01032.xOpen 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

Irvine J, Perks MP, Magnani F and Grace J, 1998. The response of Pinus sylvestris to drought: stomatal control of transpiration and hydraulic conductance. Tree Physiology 18: 393–398.IrvineJPerksMPMagnaniFGraceJ1998The response of Pinus sylvestris to drought: stomatal control of transpiration and hydraulic conductanceTree Physiology1839339810.1093/treephys/18.6.393Search in Google Scholar

Keeling CD, Chin JFS and Whorf TP, 1996. Increased activity of northern vegetation inferred from atmospheric CO2 measurements. Nature 382: 146 –149, 10.1038/382146a0.KeelingCDChinJFSWhorfTP1996Increased activity of northern vegetation inferred from atmospheric CO2 measurementsNature38214614910.1038/382146a0Open DOISearch in Google Scholar

Leavitt S and Long A, 1982. Stable carbon isotopes as a potential supplemental tool in dendrochronology. Tree Ring Bulletin 42: 49–56.LeavittSLongA1982Stable carbon isotopes as a potential supplemental tool in dendrochronologyTree Ring Bulletin424956Search in Google Scholar

Leegood RC and Edwards GE, 1996. Carbon metabolism and photorespiration: temperature dependence in relation to other environmental factors. In: Baker NR, ed., Photosynthesis and the Environment. Kluwer Academic, Dordrecht: 191–221.LeegoodRCEdwardsGE1996Carbon metabolism and photorespiration: temperature dependence in relation to other environmental factorsBakerNRPhotosynthesis and the Environment.Kluwer AcademicDordrecht19122110.1007/0-306-48135-9_7Search in Google Scholar

Leonelli G, Battipaglia G, Siegwolf RTW, Saurer M, di Cella UM, Cherubini P and Pelfini M, 2012. Climatic isotope signals in tree rings masked by air pollution: A case study conducted along the Mont Blanc Tunnel access road, Western Alps, Italy. Atmospheric Environment 61: 169–179, 10.1016/j.atmosenv.2012.07.023.LeonelliGBattipagliaGSiegwolfRTWSaurerMdi CellaUMCherubiniPPelfiniM2012Climatic isotope signals in tree rings masked by air pollution: A case study conducted along the Mont Blanc Tunnel access road, Western Alps, ItalyAtmospheric Environment6116917910.1016/j.atmosenv.2012.07.023Open DOISearch in Google Scholar

Lindholm M, Lehtonen H, Kolström T, Meriläinen J, Eronen M and Timonen M, 2000. Climatic signals extracted from ring-width chronologies of Scots pine from the northern, middle and southern parts of the boreal forest belt in Finlands. Silva Fennica 34: 317–329.LindholmMLehtonenHKolströmTMeriläinenJEronenMTimonenM2000Climatic signals extracted from ring-width chronologies of Scots pine from the northern, middle and southern parts of the boreal forest belt in FinlandsSilva Fennica3431732910.14214/sf.616Search in Google Scholar

Lindholm M, Meriläinen J, Timonen M, Vanninen P and Eronen M, 1997. Effects of climate on the growth of Scots pine in the Saimaa Lake District, south-eastern Filand, in the southern part of the boreal forest belt. Dendrochronologia 15: 151–168.LindholmMMeriläinenJTimonenMVanninenPEronenM1997Effects of climate on the growth of Scots pine in the Saimaa Lake District, south-eastern Filand, in the southern part of the boreal forest beltDendrochronologia15151168Search in Google Scholar

Macias M, Timonen Kirchhefer A, Lindholm M, Eronen M and Gutierrez E, 2004. Growth variability of Scots pine along a west-east gradient across northern Fennoscandia: a dendroclimatic approach. Arctic, Antractic, and Alpine Research 36: 565–574, 10.1657/1523-0430(2004)036[0565:GVOSPP]2.0.CO;2.MaciasMTimonen KirchheferALindholmMEronenMGutierrezE2004Growth variability of Scots pine along a west-east gradient across northern Fennoscandia: a dendroclimatic approachArctic, Antractic, and Alpine Research3656557410.1657/1523-0430(2004)036[0565:GVOSPP]2.0.CO;2Open DOISearch in Google Scholar

Mäkinen H, Nöjd P and Mielikäinen K, 2000. Climatic signal in annual growth variation of Norway spruce, Picea abies. along a transect from central Finland to the Arctic timberline. Canadian Journal of Forest Research 30: 769–777, 10.1139/cjfr-30-5-769.MäkinenHNöjdPMielikäinenK2000Climatic signal in annual growth variation of Norway spruce, Picea abies. along a transect from central Finland to the Arctic timberlineCanadian Journal of Forest Research3076977710.1139/cjfr-30-5-769Open DOISearch in Google Scholar

Malik I, Danek M, Marchwinska-Wyrwal E, Danek T, Wistuba M and Krąpiec M, 2012. Scots Pine (Pinus sylvestris L.) Growth Suppression and Adverse Effects on Human Health Due to Air Pollution in the Upper Silesian Industrial District (USID) Southern Poland. Water, Air, and Soil Pollution 223: 3345–3364, 10.1007/s11270-012-1114-8.MalikIDanekMMarchwinska-WyrwalEDanekTWistubaMKrąpiecM2012Scots Pine (Pinus sylvestris L.) Growth Suppression and Adverse Effects on Human Health Due to Air Pollution in the Upper Silesian Industrial District (USID) Southern PolandWater, Air, and Soil Pollution2233345336410.1007/s11270-012-1114-8Open DOISearch in Google Scholar

Martin B, Bytnerowicz A and Thorstenson YR, 1988. Effects of air pollutants on the composition of stable carbon isotopes, δ13C. of leaves and wood and on leaf injury. Plant Physiology 88: 218–223, 10.1104/pp.88.1.218.MartinBBytnerowiczAThorstensonYR1988Effects of air pollutants on the composition of stable carbon isotopes, δ13C. of leaves and wood and on leaf injuryPlant Physiology8821822310.1104/pp.88.1.218Open DOISearch in Google Scholar

McCarroll D and Loader NJ, 2004. Stable isotopes in tree rings. Quaternary Science Reviews 23: 771–801, 10.1016/j.quascirev.2003.06.017.McCarrollDLoaderNJ2004Stable isotopes in tree ringsQuaternary Science Reviews2377180110.1016/j.quascirev.2003.06.017Open DOISearch in Google Scholar

McCarroll D, Gagen MH, Loader NJ, Robertson I, Anchukaitis KJ, Los S, Young GHF, Jalkanen R, Kirchhefer A and Waterhouse JS, 2009. Correction of tree ring stable carbon isotope chronologies for changes in the carbon dioxide content of the atmosphere. Geochimica et Cosmochimica Acta 73(6): 1539–1547, 10.1016/j.gca.2008.11.041.McCarrollDGagenMHLoaderNJRobertsonIAnchukaitisKJLosSYoungGHFJalkanenRKirchheferAWaterhouseJS2009Correction of tree ring stable carbon isotope chronologies for changes in the carbon dioxide content of the atmosphereGeochimica et Cosmochimica Acta7361539154710.1016/j.gca.2008.11.041Open DOISearch in Google Scholar

NASA, http://climate.nasa.gov/vital-signs/carbon-dioxide. Accessed 2018 May./NASAhttp://climate.nasa.gov/vital-signs/carbon-dioxideAccessed 2018 MaySearch in Google Scholar

NOAA, https://www.esrl.noaa.gov/. Accessed 2018 May.NOAAhttps://www.esrl.noaa.gov/Accessed 2018 MaySearch in Google Scholar

Pazdur A, Kuc T, Pawełczyk S, Piotrowska N, Sensuła BM and Różański K, 2013. Carbon Isotope Composition of Atmospheric Carbon Dioxide in Southern Poland: Imprint of Anthropogenic CO2 Emissions in Regional Biosphere. Radiocarbon 55(2–3): 848–864, 10.1017/S003382220005801X.PazdurAKucTPawełczykSPiotrowskaNSensułaBMRóżańskiK2013Carbon Isotope Composition of Atmospheric Carbon Dioxide in Southern Poland: Imprint of Anthropogenic CO2 Emissions in Regional BiosphereRadiocarbon552–384886410.1017/S003382220005801XOpen DOISearch in Google Scholar

Pazdur A, Nakamura T, Pawełczyk S, Pawlyta J, Piotrowska N, Rakowski A, Sensuła B and Szczepanek M, 2007. Carbon isotopes in tree rings: climate and human activities in the last 400 years. Radiocarbon 49(2): 1133–1143.PazdurANakamuraTPawełczykSPawlytaJPiotrowskaNRakowskiASensułaBSzczepanekM2007Carbon isotopes in tree rings: climate and human activities in the last 400 yearsRadiocarbon4921133114310.1017/S003382220004265XSearch in Google Scholar

Piovesan G, Biondi F, Di Filippo A, Alessandrini A and Maugeri M, 2008. Drought-driven growth reduction in old beech, Fagus sylvatica. forests of the central Apennines, Italy. Global Change Biology 14: 1265–1281, 10.1111/j.1365-2486.2008.01570.x.PiovesanGBiondiFDi FilippoAAlessandriniAMaugeriM2008Drought-driven growth reduction in old beech, Fagus sylvatica. forests of the central Apennines, ItalyGlobal Change Biology141265128110.1111/j.1365-2486.2008.01570.xOpen DOISearch in Google Scholar

Richter K, Eckstein D and Holmes RL, 1991. The dendrochronological signal of the pine trees, Pinus sp. in Spain. Tree-Ring Bulletin 51: 1–13.RichterKEcksteinDHolmesRL1991The dendrochronological signal of the pine trees, Pinus sp. in SpainTree-Ring Bulletin51113Search in Google Scholar

Rinne KT, Loader NJ, Switsur VR, Treydte KS and Waterhouse JS, 2010. Investigating the influence of sulphur dioxide, SO2 on the stable isotope ratios, δ13C and δ18O of tree rings. Geochimica et Cosmochimica Acta 74: 2327–2339, 10.1016/j.gca.2010.01.021.RinneKTLoaderNJSwitsurVRTreydteKSWaterhouseJS2010Investigating the influence of sulphur dioxide, SO2 on the stable isotope ratios, δ13C and δ18O of tree ringsGeochimica et Cosmochimica Acta742327233910.1016/j.gca.2010.01.021Open DOISearch in Google Scholar

Roden J, 2008. Cross-dating of tree-ring δ18O and δ13C time series. Chemical Geology 252: 72–79, 10.1016/j.chemgeo.2008.01.007.RodenJ2008Cross-dating of tree-ring δ18O and δ13C time seriesChemical Geology252727910.1016/j.chemgeo.2008.01.007Open DOISearch in Google Scholar

Roden J, Lin G and Ehleringer J, 2000. A mechanistic model for the interpretation of hydrogen and oxygen isotope ratios in tree-ring cellulose. Geochimica et Cosmochimica Acta 64: 21–35, 10.1016/S0016-7037(99)00195-7.RodenJLinGEhleringerJ2000A mechanistic model for the interpretation of hydrogen and oxygen isotope ratios in tree-ring celluloseGeochimica et Cosmochimica Acta64213510.1016/S0016-7037(99)00195-7Open DOISearch in Google Scholar

Rossi S, Deslauries A, Gričar J, Seo JW, Rathegeber C.B, Anfodillo T, Morin H, Levanic T, Oven P and Jalkanen R, 2008. Critical temperatures for xylogenesis in conifers of cold climates. Global Ecology and Biogeography 17(6): 696–707, 10.1111/j.1466-8238.2008.00417.x.RossiSDeslauriesAGričarJSeoJWRathegeberC.BAnfodilloTMorinHLevanicTOvenPJalkanenR2008Critical temperatures for xylogenesis in conifers of cold climatesGlobal Ecology and Biogeography17669670710.1111/j.1466-8238.2008.00417.xOpen DOISearch in Google Scholar

Rozanski K, Arguas-Arguas L and Gonfiantini R, 1993. Isotopic patterns in modern global precipitation. In: Swart PK, Lohmann KC, MacKenzie J and Savin S, eds., Climate Change in Continental Isotopic Records, AGU, Washington D.C.: 1–3.RozanskiKArguas-ArguasLGonfiantiniR1993Isotopic patterns in modern global precipitationSwartPKLohmannKCMacKenzieJSavinSClimate Change in Continental Isotopic RecordsAGUWashington D.C.1310.1029/GM078p0001Search in Google Scholar

Saurer M and Siegwolf RTW, 2007. Human impacts on tree-ring growth reconstructed from stable isotopes. In Dawson TE and Siegwolf RTW eds., Stable isotopes as indicators of ecological change terrestrial ecology series. Elsevier, Amsterdam: 49–62.SaurerMSiegwolfRTW2007Human impacts on tree-ring growth reconstructed from stable isotopesDawsonTESiegwolfRTWStable isotopes as indicators of ecological change terrestrial ecology seriesElsevierAmsterdam496210.1016/S1936-7961(07)01004-4Search in Google Scholar

Saurer M, Borella S, Schweingruber FH and Siegwolf RTW, 1997b. Stable carbon isotopes in tree rings of beech: Climatic versus site-related influences. Trees - Structure and Function 11: 291–297, 10.1007/s004680050087.SaurerMBorellaSSchweingruberFHSiegwolfRTW1997b. Stable carbon isotopes in tree rings of beech: Climatic versus site-related influencesTrees - Structure and Function1129129710.1007/s004680050087Open DOISearch in Google Scholar

Saurer M, Schweingruber F, Vaganov EA, Shiyatov SG and Siegwolf R, 2002. Spatial and temporal oxygen isotope trends at the northern tree-line in Eurasia. Geophysical Research Letters 29(9): 1296, 10.1029/2001GL013739.SaurerMSchweingruberFVaganovEAShiyatovSGSiegwolfR2002Spatial and temporal oxygen isotope trends at the northern tree-line in EurasiaGeophysical Research Letters299129610.1029/2001GL013739Open DOISearch in Google Scholar

Saurer M, Siegwolf R and Schweingruber F, 2004. Carbon isotope discrimination indicates improving water-use efficiency of trees in northern Eurasia over the last 100 years. Global Change Biology 10: 2109–2120, 10.1111/j.1365-2486.2004.00869.x.SaurerMSiegwolfRSchweingruberF2004Carbon isotope discrimination indicates improving water-use efficiency of trees in northern Eurasia over the last 100 yearsGlobal Change Biology102109212010.1111/j.1365-2486.2004.00869.xOpen DOISearch in Google Scholar

Saurer M, Spahni R, Frank DC, Joos F, Leuenberger M, Loader NJ, McCarroll D, Gagen M, Poulter B, Siegwolf RTW, Andreu-Hayles L, Boettger T, Dorado Liñán I, Fairchild IJ, Friedrich M, Gutierrez E, Haupt M, Hilasvuori E, Heinrich I, Helle G, Grudd H, Jalkanen R, Levanič T, Linderholm HW, Robertson I, Sonninen E, Treydte K, Waterhouse JS, Woodley EJ, Wynn PM and Young GHF, 2014. Spatial variability and temporal trends in water-use efficiency of European forests. Global Change Biology 20: 3700–3712, 10.1111/gcb.12717.SaurerMSpahniRFrankDCJoosFLeuenbergerMLoaderNJMcCarrollDGagenMPoulterBSiegwolfRTWAndreu-HaylesLBoettgerTDorado LiñánIFairchildIJFriedrichMGutierrezEHauptMHilasvuoriEHeinrichIHelleGGruddHJalkanenRLevaničTLinderholmHWRobertsonISonninenETreydteKWaterhouseJSWoodleyEJWynnPMYoungGHF2014Spatial variability and temporal trends in water-use efficiency of European forestsGlobal Change Biology203700371210.1111/gcb.12717Open DOISearch in Google Scholar

Saurer M, Aellen K and Siegwolf R, 1997a. Correlating δ18C and δ18O in cellulose of trees. Plant, Cell and Environment 20: 1543–1550, 10.1046/j.1365-3040.1997.d01-53.x.SaurerMAellenKSiegwolfR1997a. Correlating δ18C and δ18O in cellulose of treesPlant, Cell and Environment201543155010.1046/j.1365-3040.1997.d01-53.xOpen DOISearch in Google Scholar

Scheidegger Y, Saurer M, Bahn M and Siegwolf R, 2000. Linking stable oxygen and carbon isotopes with stomatal conductance and photosynthetic capacity: a conceptual model. Oecologia 125: 350–357, 10.1007/s004420000466.ScheideggerYSaurerMBahnMSiegwolfR2000Linking stable oxygen and carbon isotopes with stomatal conductance and photosynthetic capacity: a conceptual modelOecologia12535035710.1007/s004420000466Open DOISearch in Google Scholar

Schleser GH, Helle G, Lucke A and Vos H, 1999. Isotope signals as climate proxies: The role of transfer functions in the study of terrestrial archives. Quaternary Science Reviews 18: 927–943, 10.1016/S0277-3791(99)00006-2.SchleserGHHelleGLuckeAVosH1999Isotope signals as climate proxies: The role of transfer functions in the study of terrestrial archivesQuaternary Science Reviews1892794310.1016/S0277-3791(99)00006-2Open DOISearch in Google Scholar

Schweingruber FH, 1985. Dendroecological zones in the coniferous forest of Europe. Dendrochronologia 3: 67–75.SchweingruberFH1985Dendroecological zones in the coniferous forest of EuropeDendrochronologia36775Search in Google Scholar

Sensuła B and Pazdur A, 2013a. Influence of climate change on carbon and oxygen isotope fractionation factors between glucose and α-cellulose of pine wood. Geochronometria 40(2): 145–152, 10.2478/s13386-013-0104-y.SensułaBPazdurA2013a. Influence of climate change on carbon and oxygen isotope fractionation factors between glucose and α-cellulose of pine woodGeochronometria40214515210.2478/s13386-013-0104-yOpen DOISearch in Google Scholar

Sensuła B and Pazdur A, 2013b. Stable carbon isotopes of glucose received from pine tree-rings as bioindicators of local industrial emission of CO2 in Niepołomice Forest, 1950–2000. Isotopes in Environmental and Health Studies 49(4): 532–541, 10.1080/10256016.2013.865026.SensułaBPazdurA2013bStable carbon isotopes of glucose received from pine tree-rings as bioindicators of local industrial emission of CO2 in Niepołomice Forest, 1950–2000Isotopes in Environmental and Health Studies49453254110.1080/10256016.2013.86502624313374Open DOISearch in Google Scholar

Sensuła B, 2016a. δ13C and water use efficiency in the glucose of annual pine tree-rings as ecological indicators of the forests in the most industrialized part of Poland. Water, Air, and Soil Pollution 227: 68, 10.1007/s11270-016-2750-1.SensułaB2016a. δ13C and water use efficiency in the glucose of annual pine tree-rings as ecological indicators of the forests in the most industrialized part of PolandWater, Air, and Soil Pollution2276810.1007/s11270-016-2750-1473523226893529Open DOISearch in Google Scholar

Sensuła B, 2016b. The Impact of Climate, Sulfur Dioxide, and Industrial Dust on δ18O and δ13C in Glucose from Pine Tree Rings Growing in an Industrialized Area in the Southern Part of Poland. Water, Air, and Soil Pollution 227: 106, 10.1007/s11270-016-2808-0.SensułaB2016bThe Impact of Climate, Sulfur Dioxide, and Industrial Dust on δ18O and δ13C in Glucose from Pine Tree Rings Growing in an Industrialized Area in the Southern Part of PolandWater, Air, and Soil Pollution22710610.1007/s11270-016-2808-0478919327057072Open DOISearch in Google Scholar

Sensuła B, Opała M, Wilczyński S and Pawełczyk S, 2015a. Long-and short-term incremental response of Pinus sylvestris L. from industrial area nearby steelworks in Silesian Upland, Poland. Dendrochronologia 36: 1–12, 10.1016/j.dendro.2015.08.001.SensułaBOpałaMWilczyński S and PawełczykS2015aLong-and short-term incremental response of Pinus sylvestris L. from industrial area nearby steelworks in Silesian Upland, PolandDendrochronologia3611210.1016/j.dendro.2015.08.001Open DOISearch in Google Scholar

Sensuła B and Wilczyński S, 2017. Climatic signals in tree-ring width and stable isotopes composition of Pinus sylvestris L. growing in the industrialized area nearby Kędzierzyn-Koźle. Geochronometria 44: 240–255, 10.1515/geochr-2015-0070.SensułaBWilczyńskiS2017Climatic signals in tree-ring width and stable isotopes composition of Pinus sylvestris L. growing in the industrialized area nearby Kędzierzyn-KoźleGeochronometria4424025510.1515/geochr-2015-0070Open DOISearch in Google Scholar

Sensuła B, Wilczyński S, Monin L, Allan M, Pazdur A and Fagel N, 2017. Variations of tree ring width and chemical composition of wood of pine growing in the area nearby chemical factories. Geochronometria 44: 226–239, 10.1515/geochr-2015-0064.SensułaBWilczyńskiSMoninLAllanMPazdurAFagelN2017Variations of tree ring width and chemical composition of wood of pine growing in the area nearby chemical factoriesGeochronometria4422623910.1515/geochr-2015-0064Open DOISearch in Google Scholar

Sensuła B, Wilczyński S and Opała M, 2015b. Tree growth and climate relationship: Dynamics of Scots pine, Pinus sylvestris L. growing in the near-source region of the combined heat and power plant during the development of the pro-ecological strategy in Poland. Water, Air, and Soil Pollution 226: 220, 10.1007/s11270-015-2477-4.SensułaBWilczyński S and OpałaM2015bTree growth and climate relationship: Dynamics of Scots pine, Pinus sylvestris L. growing in the near-source region of the combined heat and power plant during the development of the pro-ecological strategy in PolandWater, Air, and Soil Pollution22622010.1007/s11270-015-2477-4447554326109744Open DOISearch in Google Scholar

Sensuła BM, Pazdur A and Marais MF, 2011. First application of mass spectrometry and gas chromatography in investigation of α-cellulose hydrolysates: the influence of climate changes on glucose molecules in pine tree-rings. Rapid Communications in Mass Spectrometry 25(4): 489–494, 10.1002/rcm.4882.SensułaBMPazdurAMaraisMF2011First application of mass spectrometry and gas chromatography in investigation of α-cellulose hydrolysates: the influence of climate changes on glucose molecules in pine tree-ringsRapid Communications in Mass Spectrometry25448949410.1002/rcm.488221259357Open DOISearch in Google Scholar

Siegenthaler U and Oeschger H, 1980. Correlation of 18O in precipitation with temperature and altitude. Nature 285: 314–317, 10.1038/285314a0.SiegenthalerUOeschgerH1980Correlation of 18O in precipitation with temperature and altitudeNature28531431710.1038/285314a0Open DOISearch in Google Scholar

Silva LCR and Horwath WR, 2013. Explaining Global Increases in Water Use Efficiency: Why Have We Overestimated Responses to Rising Atmospheric CO2 in Natural Forest Ecosystems? PLoS ONE 8(1): e53089, 10.1371/journal.pone.0053089.SilvaLCRHorwathWR2013Explaining Global Increases in Water Use Efficiency: Why Have We Overestimated Responses to Rising Atmospheric CO2 in Natural Forest Ecosystems?PLoS ONE81e5308910.1371/journal.pone.0053089354479823341924Open DOISearch in Google Scholar

StatSoft Inc, 2014. STATISTICA, data analysis software system. version 12. http://www.statsoft.com/.StatSoft Inc2014STATISTICA, data analysis software system. version 12http://www.statsoft.com/Search in Google Scholar

Stips A, Macias D, Coughlan C, Garcia-Gorriz E and Liang XS, 2016. On the causal structure between CO2 and global temperature. Scientific Reports 6: 21691, 10.1038/srep21691.StipsAMaciasDCoughlanCGarcia-GorrizELiangXS2016On the causal structure between CO2 and global temperatureScientific Reports62169110.1038/srep21691476198026900086Open DOISearch in Google Scholar

Switsur R and Waterhouse J, 1998. Stable isotopes in tree ring cellulose. In Griffiths H ed.,Stable Isotopes. Bios Scientific, Oxford: 303–321.SwitsurRWaterhouseJ1998Stable isotopes in tree ring celluloseGriffithsHStable IsotopesBios ScientificOxford30332110.1201/9781003076865-18Search in Google Scholar

Szczepanek M, Pazdur A, Pawełczyk S, Boettger T and Szychowska-Krąpiec E, 2006. Hydrogen, carbon and oxygen isotopes in pine and oak tree rings from Southern Poland as climatic indicators in years 1900–2003. Geochronometria 25: 67–76.SzczepanekMPazdurAPawełczykSBoettgerTSzychowska-KrąpiecE2006Hydrogen, carbon and oxygen isotopes in pine and oak tree rings from Southern Poland as climatic indicators in years 1900–2003Geochronometria256776Search in Google Scholar

Treydte K, Frank D, Esper J, Andreu L, Bednarz, Z, Berninger, F, Boettger T, D’Alessandro C, M, Etien N, Filot M, Grabner M, Guillemin M, T, Gutierrez E, Haupt M, Helle G, Hilasvuori E, Jungner H, Kalela-Brundin M, Krapiec M, Leuenberger M, Loader NJ, Masson-Delmotte V, Pazdur A, Pawelczyk S, Pierre M, Planells O, Pukiene R, Reynolds-Henne CE, Rinne KT, Saracino A, Saurer M, Sonninen E, Stievenard M, Switsur VR, Szczepanek M, Szychowska-Krapiec E, Todaro L, Waterhouse J S, Weigl M and Schleser GH, 2007. Signal strength and climate calibration of a European tree-ring isotope network. Geophysical Research Letters 34: L24302, 10.1029/2007GL031106.TreydteKFrankDEsperJAndreuLBednarzZBerningerFBoettgerTD’AlessandroCMEtienNFilotMGrabnerMGuilleminMTGutierrezEHauptMHelleGHilasvuoriEJungnerHKalela-BrundinMKrapiecMLeuenbergerMLoaderNJMasson-DelmotteVPazdurAPawelczykSPierreMPlanellsOPukieneRReynolds-HenneCERinneKTSaracinoASaurerMSonninenEStievenardMSwitsurVRSzczepanekMSzychowska-KrapiecETodaroLWaterhouseJSWeiglMSchleserGH2007Signal strength and climate calibration of a European tree-ring isotope networkGeophysical Research Letters34L2430210.1029/2007GL031106Open DOISearch in Google Scholar

Vaganov EA, Hughes MK and Shaskin AV, 2006. Growth dynamics of conifer tree rings-images of past and futures environments. Springer, Heidelberg: 354 pp.VaganovEAHughesMKShaskinAV2006Growth dynamics of conifer tree rings-images of past and futures environmentsSpringerHeidelberg354Search in Google Scholar

Waterhouse JS, Switsur VR, Barker AC, Carter AHC, Hemming DL, Loader NJ and Robertson I, 2004. Northern European trees show a progressively diminishing response to increasing atmospheric carbon dioxide concentrations. Quaternary Science Reviews 23: 803–810, 10.1016/j.quascirev.2003.06.011.WaterhouseJSSwitsurVRBarkerACCarterAHCHemmingDLLoaderNJRobertsonI2004Northern European trees show a progressively diminishing response to increasing atmospheric carbon dioxide concentrationsQuaternary Science Reviews2380381010.1016/j.quascirev.2003.06.011Open DOISearch in Google Scholar

Wigley TM, Briffa KR and Jones PD, 1984. On the average value of correlated time series, with applications in dendroclimatology and hydrometeorology. Journal of Applied Meteorology and Climatology 23: 201–213, 10.1175/1520-0450(1984)023<0201:OTAVOC>2.0.CO;2.WigleyTMBriffaKRJonesPD1984On the average value of correlated time series, with applications in dendroclimatology and hydrometeorologyJournal of Applied Meteorology and Climatology2320121310.1175/1520-0450(1984)023<0201:OTAVOC>2.0.CO;2Open DOISearch in Google Scholar

Wilczyński S and Skrzyszewski J, 2002. The climatic signal in tree-rings of Scots pine, Pinus sylvestris L. from foot-hills of the Sudetic Mountains, southern Poland. Forestwisenschaftliches Centralblatt 121: 15–24, 10.1046/j.1439-0337.2002.01042.x.WilczyńskiSSkrzyszewskiJ2002The climatic signal in tree-rings of Scots pine, Pinus sylvestris L. from foot-hills of the Sudetic Mountains, southern PolandForestwisenschaftliches Centralblatt121152410.1046/j.1439-0337.2002.01042.xOpen DOISearch in Google Scholar

Wilczyński S and Szymański N, 2015. Climatic signal in the tree-ring series of Norway spruces from the lower and upper montane forest belt in the Tatra Mountains. Sylwan 159(12): 1008–1017.WilczyńskiSSzymańskiN2015Climatic signal in the tree-ring series of Norway spruces from the lower and upper montane forest belt in the Tatra MountainsSylwan1591210081017Search in Google Scholar

Wilczyński S, Krąpiec M, Szychowska-Krąpiec E and Zielski A, 2001. Dendroclimatic regions of Scots pine, Pinus sylvestris L. in Poland. Sylwan 8: 53–61.WilczyńskiSKrąpiecMSzychowska-KrąpiecEZielskiA2001Dendroclimatic regions of Scots pinePinus sylvestris L. in PolandSylwan85361Search in Google Scholar

Yakir D, DeNiro MJ and Gat J, 1990. Natural Deuterium and oxygen-18 enrichment in leaf water of cotton plants grown under wet and dry conditions: Evidence for water compartmentalization and its dynamics. Plant Cell and Environment 13: 49–56.YakirDDeNiroMJGatJ1990Natural Deuterium and oxygen-18 enrichment in leaf water of cotton plants grown under wet and dry conditions: Evidence for water compartmentalization and its dynamicsPlant Cell and Environment13495610.1111/j.1365-3040.1990.tb01298.xSearch in Google Scholar

Yoder BJ, Ryan MG, Waring RH, Schoettle AW and Kaufmann MR, 1994. Evidence of reduced photosynthetic rates in old trees. Forest Science 40: 513–527.YoderBJRyanMGWaringRHSchoettleAWKaufmannMR1994Evidence of reduced photosynthetic rates in old treesForest Science40513527Search in Google Scholar

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