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Original Articles

Why titanium is a beneficial element for plants

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Pages 655-664 | Published online: 21 Nov 2008

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (6)

Michel Esper Neto, Éder Júnior De Oliveira Zampar, Vitor Rodrigues Cordioli, Bruno Maia Abdo Rahmen Cassim, Gustavo Adélcio Reis Dias, Tadeu Takeyoshi Inoue & Marcelo Augusto Batista. (2020) Biogenic and Common Lime Characterization in Granular and Powder Forms and Their Application in Sowing Furrows for Soybean Crops. Communications in Soil Science and Plant Analysis 51:10, pages 1382-1390.
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HA Bahamonde, V Fernández, F Mattenet & PL Peri. (2016) Mineral elements in grasses growing in contrasting environmental conditions in southern Patagonia. New Zealand Journal of Agricultural Research 59:3, pages 235-249.
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DonnaL. Jacob, JoshuaD. Borchardt, Leelaruban Navaratnam, MarinusL. Otte & AchintyaN. Bezbaruah. (2013) UPTAKE AND TRANSLOCATION OF TI FROM NANOPARTICLES IN CROPS AND WETLAND PLANTS. International Journal of Phytoremediation 15:2, pages 142-153.
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Carlos Alcaraz-Lopez, Maria Botía, Carlos F. Alcaraz & Fernando Riquelme. (2004) Effects of Calcium-Containing Foliar Sprays Combined with Titanium and Algae Extract on Plum Fruit Quality. Journal of Plant Nutrition 27:4, pages 713-729.
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Kornélia Leskó, Éva Stefanovits-Bányai, István Pais & Livia Simon-Sarkadi. (2002) EFFECT OF CADMIUM AND TITANIUM-ASCORBATE STRESS ON BIOLOGICAL ACTIVE COMPOUNDS IN WHEAT SEEDLINGS. Journal of Plant Nutrition 25:11, pages 2571-2581.
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Martin Hrubý, Petr Cígler & Stanislav Kuzel. (2002) CONTRIBUTION TO UNDERSTANDING THE MECHANISM OF TITANIUM ACTION IN PLANT. Journal of Plant Nutrition 25:3, pages 577-598.
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Articles from other publishers (44)

Lei Hou, Qibin Liang, Guiying Yang, Lei Gao & Xue Liu. (2023) Translocation of TiO2 nanoparticles enhances phosphorus uptake by wetland plants: Evidence from Pistia stratiotes and Alisma plantago-aquatica. Journal of Environmental Management 345, pages 118789.
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Sebastian Wojciech Przemieniecki, Marta Borsuk-Stanulewicz, Cezary Purwin, Olga Kosewska & Magdalena Oćwieja. (2023) The Effect of Different Forms of Titanium Dioxide on the Yield, Chemical and Microbiological Parameters of Perennial Ryegrass (Lolium perenne L.) Herbage and Silage. Agriculture 13:8, pages 1588.
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Hamid Mohammadi, Zahra Mousavi, Saeid Hazrati, Ahmad Aghaee, Fatemeh Bovand & Marian Brestic. (2023) Foliar applied titanium dioxide nanoparticles (TiO2 NPs) modulate growth, physiological and phytochemical traits in Melissa officinalis L. under various light intensities. Industrial Crops and Products 197, pages 116642.
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Urvashi Mittal, Vijay Kumar, Sarvjeet Kukreja, Baljeet Singh, Narendra Kumar Pandey & Umesh Goutam. (2022) Role of Beneficial Elements in Developing Resilience to Abiotic and Biotic Stresses in Plants: Present Status and Future Prospects. Journal of Plant Growth Regulation 42:6, pages 3789-3813.
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Sajad Hussain, Maryam Mumtaz, Marian Brestic, Abida Parveen, Zaid Ulhassan, Harvey J.M. Hou, Milan Skalicky, Hassan Shehryar Yasin, Muhammad Hayder Bin Khalid, Amjad Saeed, Irshan Ahmad, Suleyman I. Allakhverdiev, Sana Ur Rehman & Wenyu Yang. 2023. Photosynthesis. Photosynthesis 137 152 .
Pravin Kumar Sahu, Suryakant Chakradhari, Prasanna Kumar Sharma, Khageshwar Singh Patel, Sema Yurdakul & Pablo Martín‐Ramos. (2022) Antioxidant potential and mineral content of medicinal plants grown in urban area of India. Environmental Quality Management 32:2, pages 317-328.
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Mir Hassan, Ahmad Gholamalizadeh Ahangar & Noshin Mir. (2022) Effect of TiO<sub>2</sub> Nanoparticles with High Light Absorption on Improving Growth Parameters and Enzymatic Properties of Sorghum <i>(Sorghum bicolor L. Moench)</i>. Journal of Nano Research 75, pages 29-40.
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Víctor Hugo Carbajal-Vázquez, Fernando Carlos Gómez-Merino, Ernesto Gabriel Alcántar-González, Prometeo Sánchez-García & Libia Iris Trejo-Téllez. (2022) Titanium Increases the Antioxidant Activity and Macronutrient Concentration in Tomato Seedlings Exposed to Salinity in Hydroponics. Plants 11:8, pages 1036.
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Rehana Sardar, Shakil Ahmed & Nasim Ahmad Yasin. (2022) Titanium dioxide nanoparticles mitigate cadmium toxicity in Coriandrum sativum L. through modulating antioxidant system, stress markers and reducing cadmium uptake. Environmental Pollution 292, pages 118373.
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Fatma Rekik & Harold Mathijs van Es. 2022. 67 127 .
Dinesh Kumar, M.R. Yadav, Govind Makarana, Vishnu D. Rajput, Bisworanjita Biswal, Suryakanta Kashyap, Rakesh Kumar, H.S. Jatav & Pratibha Singh. 2022. Toxicity of Nanoparticles in Plants. Toxicity of Nanoparticles in Plants 211 239 .
Rania M. R. Khater, Reham M. Sabry, Luisa Pistelli, Ahmed M. Abd-ElGawad, Walid Soufan & Abdel Nasser G. El-Gendy. (2021) Effect of Compost and Titanium Dioxide Application on the Vegetative Yield and Essential Oil Composition of Coriander. Sustainability 14:1, pages 322.
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Monika Bieniasz & Anna Konieczny. (2021) The Effect of Titanium Organic Complex on Pollination Process and Fruit Development of Apple cv. Topaz. Agronomy 11:12, pages 2591.
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Adam Radkowski, Iwona Radkowska, Jan Bocianowski, Karol Wolski & Henryk Bujak. (2021) Effect of Amino Acid and Titanium Foliar Application on Smooth-Stalked Meadow Grass (Poa pratensis L.) Macronutrient Content. Applied Sciences 11:23, pages 11421.
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Ewa Jajor, Joanna Zamojska, Daria Dworzańska, Joanna Horoszkiewicz-Janka, Jakub Danielewicz, Paweł Węgorek, Marek Korbas, Wiesław Ciecierski, Jan Bocianowski & Radosław Wilk. (2021) Yield, volume, quality, and reduction of biotic stress influenced by titanium application in oilseed rape, winter wheat, and maize cultivations. Open Chemistry 19:1, pages 1089-1095.
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Elżbieta Malinowska & Kazimierz Jankowski. (2021) The Effect of Tytanit Foliar Application and Different Nitrogen on Fibre Fraction Content and the Feed Value of Festulolium braunii. Agronomy 11:8, pages 1612.
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Annabel Arnott, Lakshman Galagedara, Raymond Thomas, Mumtaz Cheema & Jean-Marie Sobze. (2021) The potential of rock dust nanoparticles to improve seed germination and seedling vigor of native species: A review. Science of The Total Environment 775, pages 145139.
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Simonetta Muccifora, Hiram Castillo-Michel, Francesco Barbieri, Lorenza Bellani, Monica Ruffini Castiglione, Carmelina Spanò, Ana E. Pradas del Real, Lucia Giorgetti & Eliana L. Tassi. (2021) Synchrotron Radiation Spectroscopy and Transmission Electron Microscopy Techniques to Evaluate TiO2 NPs Incorporation, Speciation, and Impact on Root Cells Ultrastructure of Pisum sativum L. Plants. Nanomaterials 11:4, pages 921.
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Rasleen Kaur, Jipsi Chandra & S. Keshavkant. (2021) Nanotechnology: an efficient approach for rejuvenation of aged seeds. Physiology and Molecular Biology of Plants 27:2, pages 399-415.
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Elliott Duncan & Gary Owens. 2021. Nanomaterial Biointeractions at the Cellular, Organismal and System Levels. Nanomaterial Biointeractions at the Cellular, Organismal and System Levels 193 208 .
Alicja Auriga, Jacek Wróbel & Ireneusz Ochmian. (2020) Effect of Tytanit® on the Physiological Activity of Wild Strawberry ( Fragaria vesca L.) Grown in Salinity Conditions . Acta Universitatis Cibiniensis. Series E: Food Technology 24:2, pages 279-288.
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Ksenija Jakovljević, Tomica Mišljenović, Jelena Savović, Dragan Ranković, Dragana Ranđelović, Nevena Mihailović & Slobodan Jovanović. (2019) Accumulation of trace elements in Tussilago farfara colonizing post-flotation tailing sites in Serbia. Environmental Science and Pollution Research 27:4, pages 4089-4103.
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Charlotte Poschenrieder, Silvia Busoms & Juan Barceló. (2019) How Plants Handle Trivalent (+3) Elements. International Journal of Molecular Sciences 20:16, pages 3984.
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Shweta Sharma, Rohit K. Sharma, Kavita Gaur, José F. Cátala Torres, Sergio A. Loza-Rosas, Anamaris Torres, Manoj Saxena, Mara Julin & Arthur D. Tinoco. (2019) Fueling a Hot Debate on the Application of TiO2 Nanoparticles in Sunscreen. Materials 12:14, pages 2317.
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Agnieszka Szparaga, Sławomir Kocira, Anna Kocira, Ewa Czerwińska, Michał Świeca, Edmund Lorencowicz, Rafał Kornas, Milan Koszel & Tomasz Oniszczuk. (2018) Modification of Growth, Yield, and the Nutraceutical and Antioxidative Potential of Soybean Through the Use of Synthetic Biostimulants. Frontiers in Plant Science 9.
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Manoj Saxena, Sergio A. Loza-Rosas, Kavita Gaur, Shweta Sharma, Sofía C. Pérez Otero & Arthur D. Tinoco. (2018) Exploring titanium(IV) chemical proximity to iron(III) to elucidate a function for Ti(IV) in the human body. Coordination Chemistry Reviews 363, pages 109-125.
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Rafia Rafique, Zahra Zahra, Nasar Virk, Muhammad Shahid, Eric Pinelli, Tae Jung Park, Jean Kallerhoff & Muhammad Arshad. (2018) Dose-dependent physiological responses of Triticum aestivum L. to soil applied TiO2 nanoparticles: Alterations in chlorophyll content, H2O2 production, and genotoxicity. Agriculture, Ecosystems & Environment 255, pages 95-101.
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Alessandro Mattiello, Daniel Lizzi & Luca Marchiol. 2018. Nanomaterials in Plants, Algae, and Microorganisms. Nanomaterials in Plants, Algae, and Microorganisms 277 296 .
Fernando Carlos Gómez-Merino & Libia Iris Trejo-Téllez. 2018. Biotic and Abiotic Stress Tolerance in Plants. Biotic and Abiotic Stress Tolerance in Plants 137 172 .
Amita Hajra & Naba Kumar Mondal. (2017) Effects of ZnO and TiO2 nanoparticles on germination, biochemical and morphoanatomical attributes of Cicer arietinum L. Energy, Ecology and Environment 2:4, pages 277-288.
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Shiheng Lyu, Xiangying Wei, Jianjun Chen, Cun Wang, Xiaoming Wang & Dongming Pan. (2017) Titanium as a Beneficial Element for Crop Production. Frontiers in Plant Science 8.
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Peter Kováčik, Vladimír Šimanský, Pavel Ryant, Marek Renčo & Jozef Hudec. (2016) Determination of the Titanium Contents in the Winter Oilseed Rape Plants (Brassica napus L.) by the Application of Fertilizer Containing Titanium. Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis 64:1, pages 81-90.
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Adam Radkowski, Iwona Radkowska & Tadeusz Lemek. (2015) Effects of Foliar Application of Titanium on Seed Yield in Timothy ( Phleum pratense L.) . Ecological Chemistry and Engineering S 22:4, pages 691-701.
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S. G. Bezryadin, V. V. Chevela, O. P. Ajsuvakova, V. Yu. Ivanova & D. V. Kuzyakin. (2016) Titanium(iv) tartrate complexes in aqueous solutions. Russian Chemical Bulletin 64:11, pages 2655-2662.
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Lingling Liu, Wenhong Fan, Huiting Lu & Wei Xiao. (2015) Effects of the interaction between TiO2 with different percentages of exposed {001} facets and Cu2+ on biotoxicity in Daphnia magna. Scientific Reports 5:1.
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Maryam Haghighi, Salman Heidarian & Jaime A. Teixeira da Silva. (2012) The Effect of Titanium Amendment in N-Withholding Nutrient Solution on Physiological and Photosynthesis Attributes and Micronutrient Uptake of Tomato. Biological Trace Element Research 150:1-3, pages 381-390.
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Katherine M. Buettner, Joseph M. Collins & Ann M. Valentine. (2012) Titanium(IV) and Vitamin C: Aqueous Complexes of a Bioactive Form of Ti(IV). Inorganic Chemistry 51:20, pages 11030-11039.
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Katherine M. Buettner & Ann M. Valentine. (2011) Bioinorganic Chemistry of Titanium. Chemical Reviews 112:3, pages 1863-1881.
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Petr Cigler, Julie Olejnickova, Martin Hruby, Ladislav Csefalvay, Jiri Peterka & Stanislav Kuzel. (2010) Interactions between iron and titanium metabolism in spinach: A chlorophyll fluorescence study in hydropony. Journal of Plant Physiology 167:18, pages 1592-1597.
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Beata Król. (2009) The effect of foliar fertilization with Tytanit and Ekolist in thyme culture. Annales UMCS, Agricultura 64:1, pages 1-6.
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P. Tlustoš, P. Cígler, M. Hrubý, S. Kužel, J. Száková & J. Balík. (2005) The role of titanium in biomass production and its influence on essential elements' contents in field growing crops. Plant, Soil and Environment 51:1, pages 19-25.
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María Serrano, Domingo Martínez‐Romero, Salvador Castillo, Fabián Guillén & Daniel Valero. (2004) Effect of preharvest sprays containing calcium, magnesium and titanium on the quality of peaches and nectarines at harvest and during postharvest storage. Journal of the Science of Food and Agriculture 84:11, pages 1270-1276.
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Carlos Alcaraz-Lopez, Maria Botia, Carlos F. Alcaraz & Fernando Riquelme. (2003) Effects of foliar sprays containing calcium, magnesium and titanium on plum (Prunus domesticaL.) fruit quality. Journal of Plant Physiology 160:12, pages 1441-1446.
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I. KEREPESI, É STEFANOVITS-BÁNYAI, J KISPÁL & É. SÁRDI. (2001) INFLUENCE OF TI(IV)-ASCORBATE ON SOLUBLE CARBOHYDRATE CONTENT IN WHEAT SEEDLINGS EXPOSED TO CADMIUM. Acta Agronomica Hungarica 49:4, pages 311-318.
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