Cite

Allen R.G., Pereira L.S., Raes D., Smith M. 1998. Crop evapotranspiration. Guidelines for computing crop water requirements. Food and Agriculture Organization of the United Nations, Rome, Italy. FAO Irrigation and Drainage 56, 15 p.AllenR.G.PereiraL.S.RaesD.SmithM.1998Crop evapotranspiration. Guidelines for computing crop water requirementsFood and Agriculture Organization of the United NationsRome, ItalyFAO Irrigation and Drainage 56,15Search in Google Scholar

Badger M.R., Björkman O., Armond P.A. 1982. An analysis of photosynthetic response and adaptation to temperature in higher plants: temperature acclimation in the desert evergreen Nerium oleander L. Plant, Cell and Environment 5: 85–99. DOI: 10.1111/1365-3040.ep11587620.BadgerM.R.BjörkmanO.ArmondP.A.1982An analysis of photosynthetic response and adaptation to temperature in higher plants: temperature acclimation in the desert evergreen Nerium oleander LPlant, Cell and Environment5859910.1111/1365-3040.ep11587620Open DOISearch in Google Scholar

Björkman O., Downton W.J.S., Mooney H.A. 1980. Response and adaptation to water stress in Nerium oleander. Carnegie Institution of Washington. Year Book 79: 150–157.BjörkmanO.DowntonW.J.S.MooneyH.A.1980Response and adaptation to water stress in Nerium oleanderCarnegie Institution of Washington. Year Book79150157Search in Google Scholar

Björkman O., Powles S.B. 1984. Inhibition of photosynthetic reactions under water stress: inter-action with light level. Planta 161: 490–504. DOI: 10.1007/bf00407081.BjörkmanO.PowlesS.B.1984Inhibition of photosynthetic reactions under water stress: inter-action with light levelPlanta16149050410.1007/bf00407081Open DOISearch in Google Scholar

Cassel D.K., Klute A. 1986. Water Potential: Tensiometry. In: Klute A. (Ed.), Methods of Soil Analysis, Part 1: Physical and Mineralogical Methods, 2nd ed. Agronomy 9(1): 563–596. DOI: 10.2136/sssabookser5.1.2ed.c23.CasselD.K.KluteA.1986Water Potential: Tensiomet. In: Klute A. (Ed.), Methods of Soil Analysis, Part 1: Physical and Mineralogical Methods, 2nd edAgronomy9156359610.2136/sssabookser5.1.2ed.c23Open DOISearch in Google Scholar

Demmig B., Winter K., Krüger A., Czygan F.C. 1988. Zeaxanthin and the heat dissipation of excess light energy in Nerium oleander exposed to a combination of high light and water stress. Plant Physiology 87: 17–24. DOI: 10.1104/pp.87.1.17.DemmigB.WinterK.KrügerA.CzyganF.C.1988Zeaxanthin and the heat dissipation of excess light energy in Nerium oleander exposed to a combination of high light and water stressPlant Physiology87172410.1104/pp.87.1.17Open DOISearch in Google Scholar

Denys S., Rollin C., Guillot F., Baroudi H. 2006. In-situ phytoremediation of PAHs contaminated soils following a bioremediation treatment. Water, Air, and Soil Pollution: Focus 6: 299–315. DOI: 10.1007/s11267-005-9024-z.DenysS.RollinC.GuillotF.BaroudiH.2006In-situ phytoremediation of PAHs contaminated soils following a bioremediation treatmentWater, Air, and Soil Pollution: Focus629931510.1007/s11267-005-9024-zOpen DOISearch in Google Scholar

Di Lorenzo R., Pisciotta A., Santamaria P., Scariot V. 2013. From soil to soil-less in horticulture: quality and typicity. Italian Journal of Agronomy 8: 255–260. DOI: 10.4081/ija.2013.e30.Di LorenzoR.PisciottaA.SantamariaP.ScariotV.2013From soil to soil-less in horticulture: quality and typicityItalian Journal of Agronomy825526010.4081/ija.2013.e30Open DOISearch in Google Scholar

Gu Z., Qi Z., Burghate R., Yuan S., Jiao X., Xu J. 2020. Irrigation scheduling approaches and applications: A review. Journal of Irrigation and Drainage Engineering 146; 04020007; 15 p. DOI: 10.1061/(asce)ir.1943-4774.0001464.GuZ.QiZ.BurghateR.YuanS.JiaoX.XuJ.2020Irrigation scheduling approaches and applications: A reviewJournal of Irrigation and Drainage Engineering14604020007;1510.1061/(asce)ir.1943-4774.0001464Open DOISearch in Google Scholar

Hoekstra A.Y., Chapagain A.K. 2007. Water footprints of nations: water use by people as a function of their consumption pattern. Water Resources Management 21: 35–48. DOI: 10.1007/s11269-006-9039-x.HoekstraA.Y.ChapagainA.K.2007Water footprints of nations: water use by people as a function of their consumption patternWater Resources Management21354810.1007/s11269-006-9039-xOpen DOISearch in Google Scholar

IEEE 2010. The coming clash between water and energy. The Institute of Electrical and Electronic Engineers, USA. IEEE Spectrum 47: 22–23.IEEE2010The coming clash between water and energy. The Institute of Electrical and Electronic Engineers, USAIEEE Spectrum47222310.1109/MSPEC.2010.5466788Search in Google Scholar

Incrocci L., Marzialetti P., Incrocci G., Di Vita A., Balendonck J., Bibbiani C. et al. 2014. Substrate water status and evapotranspiration irrigation scheduling in heterogenous container nursery crops. Agricultural Water Management 131: 30–40. DOI: 10.1016/j.agwat.2013.09.004.IncrocciL.MarzialettiP.IncrocciG.Di VitaA.BalendonckJ.BibbianiC.2014Substrate water status and evapotranspiration irrigation scheduling in heterogenous container nursery cropsAgricultural Water Management131304010.1016/j.agwat.2013.09.004Open DOISearch in Google Scholar

Jones H.G. 2004. Irrigation scheduling: advantages and pitfalls of plant-based methods. Journal of Experimental Botany 55: 2427–2436. DOI: 10.1093/jxb/erh213.JonesH.G.2004Irrigation scheduling: advantages and pitfalls of plant-based methodsJournal of Experimental Botany552427243610.1093/jxb/erh213Open DOISearch in Google Scholar

Knox G.W. 1989. Water use and average growth index of five species of container grown woody landscape plants. Journal of Environmental Horticulture 7: 136–139. DOI: 10.24266/0738-2898-7.4.136.KnoxG.W.1989Water use and average growth index of five species of container grown woody landscape plantsJournal of Environmental Horticulture713613910.24266/0738-2898-7.4.136Open DOISearch in Google Scholar

Mugnai S. 2004. Elementi di Ecofisiologia vegetale. In: Pardossi A., Incrocci L., Marzialetti P. (Eds.), Uso razionale delle risorse nel florovivaismo: l'acqua. Quaderno ARSIA 5: 35–47. [in Italian]MugnaiS.2004Elementi di Ecofisiologia vegetale. In: Pardossi A., Incrocci L., Marzialetti P. (Eds.), Uso razionale delle risorse nel florovivaismo: l'acquaQuaderno ARSIA53547[in Italian]Search in Google Scholar

Mugnai S., Tognoni F., Serra G. 1999. Water consumption and growth in nine container-grown ornamental species. Agricoltura Mediterranea 129: 143–147.MugnaiS.TognoniF.SerraG.1999Water consumption and growth in nine container-grown ornamental speciesAgricoltura Mediterranea129143147Search in Google Scholar

Pearcy R.W., Schulze E.D., Zimmermann R. 1991. Measurement of transpiration and leaf conductance. In: Pearcy R.W., Ehleringer J., Mooney H.A., Rundel P.W. (Eds.), Plant Physiological Ecology, UK, pp. 137–160. DOI: 10.1007/978-94-009-2221-1_8.PearcyR.W.SchulzeE.D.ZimmermannR.1991Measurement of transpiration and leaf conductanceIn:PearcyR.W.EhleringerJ.MooneyH.A.RundelP.W.(Eds.),Plant Physiological EcologyUK13716010.1007/978-94-009-2221-1_8Open DOISearch in Google Scholar

Postel S.L. 2000. Entering an era of water scarcity: The challenges ahead. Ecological Applications 10: 941–948. DOI: 10.1890/1051-0761(2000)010[0941:eaeows]2.0.co;2.PostelS.L.2000Entering an era of water scarcity: The challenges aheadEcological Applications1094194810.1890/1051-0761(2000)010[0941:eaeows]2.0.co;2Open DOISearch in Google Scholar

Reinert F., Leal-Costa M.V., Junqueira N.E., Tavares E.S. 2013. Are sun- and shade-type anatomy required for the acclimation of Neoregelia cruenta? Anais da Academia Brasileira de Ciências 85: 561–573. DOI: 10.1590/s0001-37652013005000034.ReinertF.Leal-CostaM.V.JunqueiraN.E.TavaresE.S.2013Are sun- and shade-type anatomy required for the acclimation of Neoregelia cruenta?Anais da Academia Brasileira de Ciências8556157310.1590/s0001-37652013005000034Open DOISearch in Google Scholar

Ristvey A.G., Lea-Cox J.D., Ross D.S. 2004. Nutrient uptake, partitioning and leaching losses from container-nursery production systems. Acta Horticulturae 630: 321–328. DOI: 10.17660/acta-hortic.2004.630.40.RistveyA.G.Lea-CoxJ.D.RossD.S.2004Nutrient uptake, partitioning and leaching losses from container-nursery production systemsActa Horticulturae63032132810.17660/acta-hortic.2004.630.40Open DOISearch in Google Scholar

Sade N., Gebremedhin A., Moshelion M. 2012. Risk-taking plants: Anisohydric behavior as a stress-resistance trait. Plant Signaling and Behavior 7: 767–770. DOI: 10.4161/psb.20505.SadeN.GebremedhinA.MoshelionM.2012Risk-taking plants: Anisohydric behavior as a stress-resistance traitPlant Signaling and Behavior776777010.4161/psb.20505Open DOISearch in Google Scholar

Sample J. 2009. World faces “perfect storm” of problems by 2030, chief scientist to warn. Retrieved September 06, 2010 from the Guardian, UK. http://bit.ly/39qAMmySampleJ.2009World faces “perfect storm” of problems by 2030, chief scientist to warnRetrieved September 06, 2010 from the Guardian, UK. http://bit.ly/39qAMmySearch in Google Scholar

SAS 1990. SAS User's Guide: Basics. SAS Institute, Cary, USA.SAS1990SAS User's Guide: BasicsSAS InstituteCary, USASearch in Google Scholar

Savé R., Castell C., Terradas J. 1999. Gas exchange and water relations. In: Rodà F., Retana J., Gracia C.A., Bellot J. (Eds.), Ecology of Mediterranean Evergreen Oak Forests. Springer, Ecological Studies 137: 135–147. DOI: 10.1007/978-3-642-58618-7_10.SavéR.CastellC.TerradasJ.1999Gas exchange and water relations. In: Rodà F., Retana J., Gracia C.A., Bellot J. (Eds.), Ecology of Mediterranean Evergreen Oak ForestsSpringer, Ecological Studies13713514710.1007/978-3-642-58618-7_10Open DOISearch in Google Scholar

Schuch U.K., Burger D.W. 1997. Water use and crop coefficients of woody ornamentals in containers. Journal of the American Society for Horticultural Science 122: 727–734. DOI: 10.21273/jashs.122.5.727.SchuchU.K.BurgerD.W.1997Water use and crop coefficients of woody ornamentals in containersJournal of the American Society for Horticultural Science12272773410.21273/jashs.122.5.727Open DOISearch in Google Scholar

Sperry J.S., Tyree M.T. 1988. Mechanism of water stress-induced xylem embolism. Plant Physiology 88: 581–587. DOI: 10.1104/pp.88.3.581.SperryJ.S.TyreeM.T.1988Mechanism of water stress-induced xylem embolismPlant Physiology8858158710.1104/pp.88.3.581Open DOISearch in Google Scholar

Stewart-Wade S.M. 2011. Plant pathogens in recycled irrigation water in commercial plant nurseries and greenhouses: their detection and management. Irrigation Science 29: 267–297. DOI: 10.1007/s00271-011-0285-1.Stewart-WadeS.M.2011Plant pathogens in recycled irrigation water in commercial plant nurseries and greenhouses: their detection and managementIrrigation Science2926729710.1007/s00271-011-0285-1Open DOISearch in Google Scholar

Styles J.M., Raupach M.R., Farquhar G.D., Kolle O., Lawton K.A., Brand W.A. et al. 2002. Soil and canopy CO2, 13CO2, H2O and sensible heat flux partitions in a forest canopy inferred from concentration measurements. Tellus 54B: 655–676. DOI: 10.3402/tellusb.v54i5.16708.StylesJ.M.RaupachM.R.FarquharG.D.KolleO.LawtonK.A.BrandW.A.2002Soil and canopy CO2, 13CO2, H2O and sensible heat flux partitions in a forest canopy inferred from concentration measurementsTellus54B65567610.3402/tellusb.v54i5.16708Open DOISearch in Google Scholar

Sun Y., Zhou Q., Xu Y., Wang L., Liang X. 2011. Phytoremediation for co-contaminated soils of benzo[a]pyrene (B[a]P) and heavy metals using ornamental plant Tagetes patula. Journal of Hazardous Materials 186: 2075–2082. DOI: 10.1016/j.jhazmat.2010.12.116.SunY.ZhouQ.XuY.WangL.LiangX.2011Phytoremediation for co-contaminated soils of benzo[a]pyrene (B[a]P) and heavy metals using ornamental plant Tagetes patulaJournal of Hazardous Materials1862075208210.1016/j.jhazmat.2010.12.11621269763Open DOISearch in Google Scholar

Tardieu F., Simonneau T. 1998. Variability among species of stomatal control under fluctuating soil water status and evaporative demand: modelling isohydric and anisohydric behaviours. Journal of Experimental Botany 49: 419–432. DOI: 10.1093/jxb/49.special_issue.419.TardieuF.SimonneauT.1998Variability among species of stomatal control under fluctuating soil water status and evaporative demand: modelling isohydric and anisohydric behavioursJournal of Experimental Botany4941943210.1093/jxb/49.special_issue.419Open DOISearch in Google Scholar

Trombetta A. et al. 1992. Metodi di analisi dei compost. Determinazioni chimiche, fisiche, biologiche e microbiologiche. DIVAPRA, IPLA, ARPA. Collana Ambiente, Regione Piemonte, Assessorato all’Ambiente, Italy, 187 p. [in Italian]TrombettaA.1992Metodi di analisi dei compost. Determinazioni chimiche, fisiche, biologiche e microbiologicheDIVAPRA, IPLA, ARPA.Collana Ambiente, Regione Piemonte, Assessorato all’AmbienteItaly187[in Italian]Search in Google Scholar

UNEP 2007. Global Environment Outlook. GEO4: environment for development. United Nations Environment Programme, Valletta, Malta.UNEP2007Global Environment Outlook. GEO4: environment for developmentUnited Nations Environment ProgrammeValletta, MaltaSearch in Google Scholar

Vilagrosa A., Morales F., Abadía A., Bellot J., Cochard H., Gil-Pelegrin E. 2010. Are symplast tolerance to intense drought conditions and xylem vulnerability to cavitation coordinated? An integrated analysis of photosynthetic, hydraulic and leaf level processes in two Mediterranean drought-resistant species. Environmental and Experimental Botany 69: 233–242. DOI: 10.1016/j.envexpbot.2010.04.013.VilagrosaA.MoralesF.AbadíaA.BellotJ.CochardH.Gil-PelegrinE.2010Are symplast tolerance to intense drought conditions and xylem vulnerability to cavitation coordinated? An integrated analysis of photosynthetic, hydraulic and leaf level processes in two Mediterranean drought-resistant speciesEnvironmental and Experimental Botany6923324210.1016/j.envexpbot.2010.04.013Open DOISearch in Google Scholar

Yan H., Wang S.Q., Billesbach D., Oechel W., Zhang J.H., Meyers T. et al. 2012. Global estimation of evapotranspiration using a leaf area index-based surface energy and water balance model. Remote Sensing of Environment 124: 581–595. DOI: 10.1016/j.rse.2012.06.004.YanH.WangS.Q.BillesbachD.OechelW.ZhangJ.H.MeyersT.2012Global estimation of evapotranspiration using a leaf area index-based surface energy and water balance modelRemote Sensing of Environment12458159510.1016/j.rse.2012.06.004Open DOISearch in Google Scholar

Zuccarini P., Ciurli A., Alpi A., Hegedüšová K. 2011. Hydraulic and chemical mechanisms in the response of Pinus pinaster Ait. to conditions of water stress. Ekológia (Bratislava) 30: 422–437. DOI: 10.4149/ekol_2011_04_422.ZuccariniP.CiurliA.AlpiA.HegedüšováK.2011Hydraulic and chemical mechanisms in the response of Pinus pinaster Ait. to conditions of water stressEkológia (Bratislava)3042243710.4149/ekol_2011_04_422Open DOISearch in Google Scholar

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