References
- Abood J.K. & Losel DM. (1991): Lithium chloride and cucumber powdery mildew infection. Plant Pathology, 40(1): 108-117.
- Anderson C.E. (1990): Lithium in plants. In: Lithium and the Cell Physiology (R.O. Bach et al., Ed.). Springer Verlag, New York, pp. 25-46.10.1007/978-1-4612-3324-4_3
- Anderson M.A., Bertsch P.M., Miller W.P. (1988): The distribution of lithium in selected soils and surface waters of the southeastern USA. Applied Geochemistry, 3: 205-212.10.1016/0883-2927(88)90008-X
- Antonkiewicz J., Jasiewicz C., Koncewicz-Baran M., Baczek-Kwinta R. (2017): Determination of lithium bioretention by maize under hydroponic conditions. Archives of Environmental Protection, 43(4): 94-104.10.1515/aep-2017-0036
- Aral H. & Vecchio-Sadus A. (2008): Toxicity of lithium to humans and the environment - A literature review. Ecotoxicology and Environmental Safety, 70(3): 349-356.10.1016/j.ecoenv.2008.02.02618456327
- Bernard A. (2015): Lithium. In: Handbook on the Toxicology of Metals, 4th (G.F. Nordberg, B.A Fowler, M. Nordberg, Eds.). Academic Press, San Diego, pp. 969-974.10.1016/B978-0-444-59453-2.00044-5
- Bibienne T., Magnan J.F., Rupp A., Laroche N. (2020): From mine to mind and mobiles: Society’s increasing dependence on lithium. Elements, 16: 265-270.10.2138/gselements.16.4.265
- Bingham F.T., Bradford G.E., Page A.L. (1964): Toxicity of lithium. California Agriculture, 18: 6-7.
- Bodot P.M. (1992): Possible mechanisms of action of lithium in plants. Lithium, 3: 155-167.
- Borovnik-Romanov T.F. (1969): K biologiceskii scelonih elementov. Geohimija, 9: 1130-1138.
- Brich N J. (1988): Lithium. In: Handbook on the Toxicity of Inorganic Compounds (H.G. Seiker, H. Sigel, A. Sigel, Ed.) Marcel Dekker, New York, pp. 175-193.
- Brinner R. & Lucaaus N. (1866): Wasserkulturversuch mit Hafer. Landwirtschaftliche Vesuchsstation, 8: 146-158.
- Cade J.F.J. (1949): Lithium salts in the treatment of psychotic excitement. Medical Journal of Australia, 2(10): 349-352.10.5694/j.1326-5377.1949.tb36912.x
- Choi H.B., Ryu J.S., Shin W.J., Vigier N. (2019): The impact of anthropogenic inputs on lithium content in river and tap water. Nature Communications, 10: 5371. https://doi.org/10.1038/s41467-019-13376-y689077231796732
- Codina M.C., Morales P.C., Serrano G.M. (1983): Influencia de ios elementos alcalinos sobre el crecimento y niveles de pigmentos cloroplasticos em plantas de Nicotiana rustica L., Ad Edafol Agrobiology, 42: 601-612.
- Darby J.F. & Westgatge P.J. (1958): Lithium as a fungicide on celery. Proceedings of the Florida State Horticultural Society, 71: 59-62.
- Duff M.C., Kuhne W.W., Halverson N.V., Chang C.S., Kitamura E., Hawthorn L., Stive-Caldwell E. (2014): mRNA Transcript abundance during plant growth and the influence of Li+ exposure. Plant Science, 229: 262-279.10.1016/j.plantsci.2014.10.00425443852
- Epstein E. (1960): Calcium-lithium competition in absorption by plant root. Nature, 185: 4714-4719.10.1038/185705a0
- Evangelou M.W.H., Burgi A., Robinson B. H., Gunhardt-Goerg M.S., Schongens M., Schulin R. (2016): Novel method to determine element concentrations in foliage of poplar and willow cuttings. International Journal of Phytoremediation, 18(9): 943-948.10.1080/15226514.2015.113123426691784
- Ezdakova L.A. (1964): Litii v rastenijah. Botaničeskii žurnal, 12: 1798-1810.
- Focke W.O. (1872): Über das Vorkommen von Lithium im Pflanzenreich. Verhandl Naturwissenschaft Verein, 3: 270-285.
- Franzaring J., Schlosser S., Damsohn W., Fangmeier A. (2016): Regional differences in plant levels and investigations on the phytotoxicity of lithium. Environmental Pollution, 216: 858-865.10.1016/j.envpol.2016.06.05927381873
- Gao T., Wang Z., Chen S., Guo L. (2019): Hazardous characteristics of charge and discharge of lithium-ion batteries under adiabatic environment and hot environment. International Journal of Heat and Mass Transfer, 141: 419-431.10.1016/j.ijheatmasstransfer.2019.06.075
- Goldstein M.R. & Mascitelli L. (2016): Is violence in part a lithium deficiency state? Medical Hypotheses, 89: 40-42.10.1016/j.mehy.2016.02.00226968907
- Golovina L.P. (1964): Soderžanie litija v počvah Ukraini i vlijanie ego kak mikroelementa na urožaj i saharistostv saharnoj svekli. Aftoreferat kandidatske disertacije. Harkov.
- Gupta I.C. (1974): Lithium tolerance of wheat, barley, rice and gram at germination seedlings stage. Indian Journal of Agricultural Research, 8(2): 103-107.
- Hao H., Liu Z.W., Zhao F.Q., Geng A.A. (2017): Material flow analysis of lithium in China. Resources Policy, 51(C): 100-106.10.1016/j.resourpol.2016.12.005
- Harpaz-Saad S., Azoulay T., Arazi T., Ben-Yaakov E., Mett A., Shiboleth Y.M., Eyal Y. (2007): Chlorophyllase is a rate-limiting enzyme in chlorophyll catabolism and is posttranslationally regulated. The Plant Cell, 19(3): 1007-1022.10.1105/tpc.107.050633186735817369368
- Harrewijn P. (1983): The effect of cultural measures on behaviour and population development of potato aphids and transmission of viruses. 35th International Symposium on Crop Protection, 48: 791-799.
- Hawrylak-Nowak B., Kalinowska M., Szymanska M. (2012): A study on selected physiological parameters of plant grown under lithium supplementation. Biological Trace Element Research, 149(3): 425-430.10.1007/s12011-012-9435-4350115722576984
- Hawkesford M., Horst W., Kichey Th., Lambers H., Schjoerring J., Skrumsager Moller I., White P. (2012): Functions of macronutrients. In: Marschner’s Mineral Nutrition of Higher Plants. Third Edition (P. Marschner, Ed.) Academic Press, London, pp.135-190.10.1016/B978-0-12-384905-2.00006-6
- Hawrylak-Nowak B., Kalinovska M., Szymanska M. (2012): A study on selected physiological parameters of plants grown under lithium supplementation. Biological Trace Element Research, 149(3): 425-430.10.1007/s12011-012-9435-4
- Hayyat M. U., Nawaz R., Sidding Z., Shakoor M. B., Mushtag M., Ahmad S. R., Ali S., Hussain A., Irshad M. A., Alsahli A. A., Alyemeni M.N. (2021): Investigation of lithium application and effect of organic matter on soil health. Sustainability, 13(4): 1705.10.3390/su13041705
- Hinz U. & Fischer H. (1976): Transport of lithium and caesium along the stolons of Saxifraga sarmentosa L. Zeitschrift für Pflanzenphysiology, 78(4): 283-292.10.1016/S0044-328X(76)80098-0
- Huang Y., Wang L., Wang W., Li T., He Z., Yang X. (2019): Current status of agricultural soil pollution by heavy metals i China: A meta-analysis. Science of the Total Environment, 651(2): 3034-3042.10.1016/j.scitotenv.2018.10.18530463153
- Huh Y., Chan L.H., Zhang L., Edmond J.M. (1998): Lithium and its isotopes in major world rivers: implications for weathering and the oceanic budget. Geochimica et Cosmochimica Acta, 62(12): 2039-2051.10.1016/S0016-7037(98)00126-4
- Jiang I., Wang I., Mu S.Y., Tian C.Y. (2014): Apocynum venetum: A newly found lithium accumulator. Flora, 209(5-6): 285-289.10.1016/j.flora.2014.03.007
- Jurkowska H., Rogo Z.A., Wojciechowicz T. (1998): Comparison of lithium toxic influence on some cultivars of oats, maize and spinach. Acta agraria et silvestria/Agraria, 36: 37-42.
- Kabata-Pendias A. & Mukherjee A.B. (2007): Tracer Elements from Soil to Human. Springer.10.1007/978-3-540-32714-1
- Kabata-Pendias A. & Pendias H. (2000): Trace Elements in Soils and Plants. 3rd Edition, CRC Press.10.1201/9781420039900
- Kalinowska M., Hawrylak-Nowak B., Szymanska M. (2013): The influence of two lithium forms on the growth, L-ascorbic acid content and lithium accumulation in lettuce plants. Biological Trace Element Research, 152(2): 251-257.10.1007/s12011-013-9606-y362400823354541
- Kastori R. (1976): The role of lithium in plant life. Proceedings of the 7th Yugoslav Symposium on Biophysics. Bled Slovenia, 11-15 November, Periodicum Biologorum, 78: 155-156.
- Kastori R. (1978): Uloga litijuma u životnim procesima biljaka. Letopis naučnih radova Poljoprivrednog fakulteta, Novi Sad, 20/21: 115-124.
- Kastori R., Petrović N. Volčević B. (1976): Uticaj različitog nivoa ishrane kalcijumom na distribuciju i translokaciju kalcijuma u mladim biljkama pasulja. Arhiv za poljoprivredne nauke, 106: 345-352.
- Kavanagh L., Keohane J., Cabellos G.G., Lloyd A., Cleary J. (2018): Induced plant accumulation of lithium. Geosciences, 8(2): 56.10.3390/geosciences8020056
- Kessing L.V., Gerds T.A., Knudsen N.N., Jorgensen L.F., Kristiansen S.M., Voutchkova D., Ernstsen V., Schullehner J., Hansen B., Andersen P.K., Ersboll A.K. (2017): Association of lithium in drinking water with the incidence of dementia. JAMA Psychiatry, 74(10): 1005-1010.10.1001/jamapsychiatry.2017.2362571047328832877
- Kőrösi E. (1980): Bioszervetle kémia. Gondolat, Budapest.
- Kszos L.A. & Steward A.J. (2003): Review of lithium in the aquatic environment: distribution in the United States, toxicity and case example of groundwater contamination. Ecotoxicology, 12(5): 439-447.10.1023/A:102611250766414649426
- Kszos L.A., Beauchamp J.J., Stewart A. J. (2003): Toxicity of lithium to three freshwater organisms and the antagonistic effect of sodium. Ecotoxicology, 12(5): 427-437.10.1023/A:1026160323594
- Kugimiya T., Ishii N., Koho K., Kanehsia M., Hatano K., Hirakawa H., Terao T. (2020): Lithium in drinking water and suicide prevention: The largest nationwide epidemiological study from Japan. Bipolar Disorders, 23(1): 33-40.
- Lambert J., Sapek A., Sapek B. (1983): Lithium content in the grassland vegetation. In: Proceedings 4. Spurelementen Symposium (M. Anke, W. Bauman, H. Braunlich, C. Brükner, Ed.) VEB Kongressdruck, Jena, pp. 32-38.
- LENNTECH (2007): Lithium and water: reaction mechanisms, environmental impact and health effects. Available at: https://www.Lenntech.com/periodic/water/lithium/lithium-and-water
- Li X., Gao P., Gjetvaj B., Westcott N., Gruber M.Y. (2009): Analysis of the metabolome and transcriptome of Brassica carrinata seedlings after lithium chloride exposure. Plant Science, 177(1): 66-80.
- Macholz R. & Lewerenz H. J. (1989): Lebensmitteltoxikologie. Springer Verlag.10.1515/9783112640104
- MacStay N.G. (1980): Effect of Lithium on Several Plant Systems. MS Thesis Department of Botany Nort Carolina State University, Raleigh, NC.
- Magalhaes J.R., Wilox C.E., Rocha A.N.F., Silva F.L.M. (1990): Research on lithium physiological metabolism and recovery of hypo-lithium. Pesquisa Agropecuária Brasileira, 25(12): 1781-1787.
- Makus D.J., Zibilske L., Lester G. (2006): Effect of light intensity, soil type, and lithium addition on spinach and mustard greens leaf constituents. Subtropical Plant Science, 58: 35-41.
- Marschner P. (ed.) (2012): Marschner’s Mineral Nutrition of Higher Plants. 3th Edition, Academic Press.
- McStay N.G., Rogers H.H., Anderson C.E. (1980): Effect of lithium on Phaseoulus vulgaris L. Science of the Total Environment. 16(2): 185-191.10.1016/0048-9697(80)90023-6
- Merian E. (ed.) (1991): Metals and Their Compounds in the Environment: Occurrence Analysis and Biological Relevance. VCH Verlagsgesellschaft.
- Mohr S.H., Mudd G.M., Giurco D. (2010): Lithium Resources and Production: Critical Global Assessment. Department of Civil Engineering, Monash University Institute for Sustainable Futures. University of Technology.
- Mohr S.H., Mudd G.M., Giurco D. (2012): Lithium resources and production: Critical assessment and global projections. Minerals, 2(1): 65-84.10.3390/min2010065
- Mulkey T.J. (2005): Alteration of growth and gravitropic response of maize roots by lithium. Gravitational and space biology bulletin, 18(2): 119-120.
- Nakamura M. (1904): Can lithium and caesium salts exert any stimulation action on phanerogams? The bulletin of the College of Agriculture, TMkyM Imperial University, 6: 153-157.
- Naranjo A., Romero C., Belles J.M, Montesinos C., Vicente O., Serrano R. (2003): Lithium treatment induces a hypersensitive-like response in tobacco. Planta, 217(3): 417-424.10.1007/s00425-003-1017-414520568
- Negrel P., Reimann C., Landenberger A., Brike M. (2017): Distribution of lithium in agricultural and grazing soils at European continental scale (GEMAS project). Geophysical Research Abstracts, 19: 10-13.
- Nobbe F., Schroeder J., Erdmann R. (1871): On the action of potassium in vegetation. Landwirtschaftliche Versuchs Station, 13: 321-423.
- Nowack B., Schulin R., Robinson B.H. (2006): Critical assessment of chelate-enhanced metal phytoremediation. Environmental Science & Technology, 40(17): 5225-5232.10.1021/es060491916999093
- Ober J.A. (2018): Mineral commodity summaries 2018. U.S. Geological Survey.10.3133/70194932
- Okhrimenko M.F. & Kuzmenko L.F. (1975): The effect on lithium compounds and their importance in plants. In: Fertilizers and Preparations Containing Trace Elements (P.A. Vlasyuk, Ed.). Naukova Dumka, Kiev, pp. 200-216.
- Patel P.M., Wallace A., Alexander G.V. (1980): Transfer values to fruits of Li in tomato and Cd in bush beans. Journal of Plant Nutrition, 2(1-2): 87-91.10.1080/01904168009362741
- Person E.C., Meyer J.A., Vyvyan J.R. (2005): Structural determination of the principal byproduct of the lithium-ammonia reduction method of methamphetamine manufacture. Journal of Forensic Sciences, 50(1): 87-95.10.1520/JFS2004204
- Robinson B.H., Bischofberger S., Stoll A., Schroer D., Furrer G., Roulier S., Gruenwald A., Attinger W., Schulin R. (2008): Plant uptake of trace elements on a Swiss military shooting range: uptake pathways and land management implications. Environmental Pollution, 153: 668-676.10.1016/j.envpol.2007.08.03417949872
- Robinson B.H., Yalamanchali R., Reiser R., Dickinson N.M. (2018): Lithium as an emerging environmental contaminant: Mobility in the soil-plant system. Chemosphere, 197: 1-6.10.1016/j.chemosphere.2018.01.01229324285
- Rusin G.G. (1979): Application of lithium salts for increased yield and quality of hydroponically grown cucumbers. Nauchnye Trudy Ukraine Stavropol’skii sel’skokhoziaistvennyi Akademie, 228: 58-61.
- Sastre J., Rauret G., Vidal M. (2007): Sorption-desorption tests to assess the risk derived from metal contamination in mineral and organic soils. Environment International, 33(2): 246-256.10.1016/j.envint.2006.09.01717140662
- Schafer U. (2004): Lithium. Elements and their compounds in the environment, occurrence, analysis and biological relevance. In: Metal and Their Compounds. 2nd ed. (E. Merian, M. Anke, M. Ihnar, M. Stoeppler, Ed.) Wiley-VCH, Weinheim, pp. 213-227.10.1002/9783527619634.ch23a
- Schafer U. (2012): Evaluation of beneficial and adverse effects on plants and animals following lithium deficiency and supplementation, and on humans following lithium treatment of mood disorders. Trace Elements and Electrolytes, 29(4): 91-112.10.5414/TEX01222
- Scharrer K. & Schropp W. (1933): Sand-und Wasserkulturversuch mit Lithium und Rubidium unter besonderer Berücksichtigung einer etwaigen Ersatzbarkeit des Kaliums durch diese beiden Elemente. Ernaerung Pflanze, 29: 413-425.
- Scharrer K. (1955): Biochemie der Spurenelemente. Paul Parey, Berlin und Hamburg.
- Schrauzer G. (2002): Lithium: occurrence, dietary, intakes, nutritional essentiality. Journal of the American College of Nutrition, 21(1): 14-21.10.1080/07315724.2002.1071918811838882
- Shahzad B., Tanveer M., Hassan W., Shah A.N., Anjum S.A., Cheema S.A., Ali I. (2016): Lithium toxicity in plants: Reasons, mechanisms and remediation possibilities - A review. Plant Physiology and Biochemistry, 107: 104-115.10.1016/j.plaphy.2016.05.03427262404
- Sims J.L. & Atkinson W.O. (1971): Effects of lithium on growth, salt absorption, and chemical composition of sugar beet plants. Agronomy Journal, 63(5): 755-758.10.2134/agronj1971.00021962006300050029x
- Smith S.E. & Read D.J. (2008): Mycorrhizal Symbiosis. 3th Edition, Academic Press, Amsterdam.
- Sneva F.A. (1979): Lithium toxicity in seedlings of three cool season grasses. Plant and Soil, 53: 219-224.10.1007/BF02181893
- Sposito G. (2016): The Chemistry of Soils. Oxford University Press, New York.10.1093/oso/9780190630881.001.0001
- Steinkoenig L.A. (1915): Lithium in soils. Journal of Industrial & Engineering Chemistry, 7(5): 425-426.10.1021/ie50077a014
- Stolarz M., Krol E., Dziubinska H. (2015): Lithium distinguishes between growth and circumnutation and augments glutamate-induced excitation of Helianthus annuus. Acta Physiologiae Plantarum, 37(4): 69-78.10.1007/s11738-015-1814-y
- Szklarska D. & Rzymski P. (2019): Is lithium a micronutrient? From biological activity and epidemiological observation to food fortification. Biological Trace Element Research, 189(1): 18-27.10.1007/s12011-018-1455-2644360130066063
- Takamatsu S., Ishizaki H., Kunoh H. (1979): Cytological studies of early stages of powdery mildew in barley and wheat. VI. Antagonistic effects of calcium and lithium on the infection coleoptiles of barely by Erysiphe graminis hordei. Canadian Journal of Botany, 57: 408-412.10.1139/b79-053
- Tölgyesi G. (1983): Die Verbreitung des Lithiums in ungarischen Böden und Pflanzen. In: Proceedings 4 Spurelementen Symposium. (M. Anake, W. Bauman, H. Braunlich, C. Brükner, Ed.). VEB Kongressdruck, Jena. pp. 39-44.
- Török A.I., Moldovan A., Level E.A., Cadar O., Tanaselia C., Moldovan O.T. (2021): Assessment of lithium, macro- and microelements in water, soil and plant samples from karst areas in Romania. Materials, 14(14): 4002.10.3390/ma14144002830661134300922
- Tsuruta T. (2005): Removal and recovery of lithium using various microorganisms. Journal of Bioscience and Bioengineering, 100(5): 562-566.10.1263/jbb.100.56216384797
- Vetter J. (2005): Lithium content of some common edible wild-growing mushrooms. Food Chemistry, 90(1-2): 31-37.10.1016/j.foodchem.2004.03.019
- Vidali A. (1951): Field experiments with lithium carbonate for control of tobacco mildew. Not sulle Mal delle Piante. 16: 35-39.
- Vlasyuk P.A., Ohrimenko M.F., Kuzmenko L.M. (1973): Effect of lithium on contents and composition of organic acids in plant of the Solonaceae. Fiziologija i Biokhimiya Kulturnih Rastenii, 5: 121-124.
- Vlasyuk P.A., Ohrimenko M.F., Sivka L.A. (1976): Vlijanie litija na aktivnost fosforilazi v rastenijah tomatov i kartofelja. Fiziologija i Biokhimiya Kulturnih Rastenii, 8: 493-496.
- Voelcker J.A. (1903): The influence of the Iodides and Oxides of manganese, potassium, sodium and lithium on wheat and barley. Woburn Experimental Station Report, 21-27.
- Wallace A. (1979): Excess trace metal effects on calcium distribution in plants. Communications in Soil Science and Plant Analysis, 10: 473-479.10.1080/00103627909366909
- Yalamanchali R.C. (2012): Lithium, an emerging environmental contaminant, is mobile in the soil-plant system. MD of Applied Sciences at Lincoln University, Lincoln University, Lincoln.
- Zeller S. & Feller U. (2000): Long-distance transport of alkali metals in maturing wheat. Biologia Plantarum, 43(4): 523-528.10.1023/A:1002806522138
- Zonia L.E. & Tupy J. (1995a): Lithium treatment of Nicotiana tabacum microspores blocks polar nuclear migration, disrupts the partitioning of membrane-associated Ca2*, and induces symmetrical mitosis. Sexual Plant Reproduction, 8: 152-160.10.1007/BF00242260
- Zonia L.E. & Tupy J. (1995b): Lithium-sensitive calcium activity in the germination of apple (Malus x domestica Borkh.), tobacco (Nicotiana tabacum L.), and potato (Solanum tuberosum L.) pollen. The Journal of Experimental Botany, 46: 973-979.10.1093/jxb/46.8.973
