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Original Article

Origin of the different phytotoxicity and biotransformation of cerium and lanthanum oxide nanoparticles in cucumber

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Pages 262-270 | Received 23 Aug 2013, Accepted 09 Apr 2014, Published online: 30 May 2014

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Arun Dev Singh, Indu Sharma, Kanika Khanna, Neha Handa, Pardeep Kumar, Mohd. Ibrahim, Puja Ohri & Renu Bhardwaj. 2021. Plant Responses to Nanomaterials. Plant Responses to Nanomaterials 249 267 .
Pingfan Zhou, Muhammad Adeel, Noman Shakoor, Manlin Guo, Yi Hao, Imran Azeem, Mingshu Li, Mengyuan Liu & Yukui Rui. (2020) Application of Nanoparticles Alleviates Heavy Metals Stress and Promotes Plant Growth: An Overview. Nanomaterials 11:1, pages 26.
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Eduardo S. Rodrigues, Gabriel S. Montanha, João P.R. Marques, Eduardo de Almeida, Lauren N.M. Yabuki, Amauri A. Menegário & Hudson W. Pereira de Carvalho. (2020) Foliar application of rare earth elements on soybean (Glycine max (L)): Effects on biometrics and characterization of phytotoxicity. Journal of Rare Earths 38:10, pages 1131-1139.
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Crossref
Peng Zhang, Zhiling Guo, Zhiyong Zhang, Hualing Fu, Jason C. White & Iseult Lynch. (2020) Nanomaterial Transformation in the Soil–Plant System: Implications for Food Safety and Application in Agriculture. Small 16:21.
Crossref
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Crossref
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Azam Chahardoli, Naser Karimi, Xingmao Ma & Farshad Qalekhani. (2020) Effects of engineered aluminum and nickel oxide nanoparticles on the growth and antioxidant defense systems of Nigella arvensis L.. Scientific Reports 10:1.
Crossref
Yinglin Liu, Le Yue, Chuanxi Wang, Xiaoshan Zhu, Zhenyu Wang & Baoshan Xing. (2020) Photosynthetic response mechanisms in typical C3 and C4 plants upon La 2 O 3 nanoparticle exposure . Environmental Science: Nano 7:1, pages 81-92.
Crossref
Hajar Salehi, Begoña Miras-Moreno, Abdolkarim Chehregani Rad, Youry Pii, Tanja Mimmo, Stefano Cesco & Luigi Lucini. (2019) Relatively Low Dosages of CeO 2 Nanoparticles in the Solid Medium Induce Adjustments in the Secondary Metabolism and Ionomic Balance of Bean ( Phaseolus vulgaris L.) Roots and Leaves . Journal of Agricultural and Food Chemistry 68:1, pages 67-76.
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Crossref
Eric A. Grulke, Matthew J. Beck, Robert A. Yokel, Jason M. Unrine, Uschi M. Graham & Matthew L. Hancock. (2019) Surface-controlled dissolution rates: a case study of nanoceria in carboxylic acid solutions. Environmental Science: Nano 6:5, pages 1478-1492.
Crossref
Mengyao Liu, Sheng Feng, Yuhui Ma, Changjian Xie, Xiao He, Yayun Ding, Junzhe Zhang, Wenhe Luo, Lirong Zheng, Dongliang Chen, Fang Yang, Zhifang Chai, Yuliang Zhao & Zhiyong Zhang. (2019) Influence of Surface Charge on the Phytotoxicity, Transformation, and Translocation of CeO 2 Nanoparticles in Cucumber Plants . ACS Applied Materials & Interfaces 11:18, pages 16905-16913.
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Lin Qi, Yuan Ge, Tian Xia, Ji-Zheng He, Congcong Shen, Jianlei Wang & Yong-Jun Liu. (2019) Rare earth oxide nanoparticles promote soil microbial antibiotic resistance by selectively enriching antibiotic resistance genes. Environmental Science: Nano 6:2, pages 456-466.
Crossref
Le Yue, Feiran Chen, Kaiqiang Yu, Zhenggao Xiao, Xiaoyu Yu, Zhenyu Wang & Baoshan Xing. (2019) Early development of apoplastic barriers and molecular mechanisms in juvenile maize roots in response to La2O3 nanoparticles. Science of The Total Environment 653, pages 675-683.
Crossref
Peng Zhang, Yuhui Ma, Changjian Xie, Zhiling Guo, Xiao He, Eugenia Valsami-Jones, Iseult Lynch, Wenhe Luo, Lirong Zheng & Zhiyong Zhang. (2019) Plant species-dependent transformation and translocation of ceria nanoparticles. Environmental Science: Nano 6:1, pages 60-67.
Crossref
Changjian Xie, Junzhe Zhang, Yuhui Ma, Yayun Ding, Peng Zhang, Lirong Zheng, Zhifang Chai, Yuliang Zhao, Zhiyong Zhang & Xiao He. (2019) Bacillus subtilis causes dissolution of ceria nanoparticles at the nano–bio interface . Environmental Science: Nano 6:1, pages 216-223.
Crossref
Nian Xu, Andrew W. Rate, Bree Morgan & Martin Saunders. (2018) Micro- and Nanoscale Identification of Rare Earth Element–Mineral Associations in an Acidified Dredge Spoil and Adjacent Reduced Sediments. ACS Earth and Space Chemistry 3:1, pages 51-61.
Crossref
Muhammad Ashar Ayub, Muhammad Irfan Sohail, Muhammad Umair, Muhammad Zia ur Rehman, Muhammad Usman, Muhammad Sabir, Muhammad Rizwan, Shafaqat Ali & Zahoor Ahmad. 2019. Engineered Nanomaterials and Phytonanotechnology: Challenges for Plant Sustainability. Engineered Nanomaterials and Phytonanotechnology: Challenges for Plant Sustainability 209 250 .
Sanchita Kukde, Bijaya Ketan Sarangi & Hemant Purohit. 2019. Engineered Nanomaterials and Phytonanotechnology: Challenges for Plant Sustainability. Engineered Nanomaterials and Phytonanotechnology: Challenges for Plant Sustainability 159 187 .
Marta Marmiroli, Elena Maestri, Luca Pagano, Brett H. Robinson, Roberta Ruotolo & Nelson Marmiroli. 2019. Exposure to Engineered Nanomaterials in the Environment. Exposure to Engineered Nanomaterials in the Environment 209 234 .
Suely Patrícia Costa Gonçalves, Fabrício de Souza Delite, Francine Côa, Laís Luz Rodrigues Neto, Gabriela Helena da Silva, Leandro de Sá Bortolozzo, Ariane Garcia Ferreira, Aline Maria Zigiotto de Medeiros, Mathias Strauss & Diego Stéfani Teodoro Martinez. 2019. Nanomaterials Applications for Environmental Matrices. Nanomaterials Applications for Environmental Matrices 265 304 .
Ruth Hwang, Chong Hyun Chang, Yifang Zhu & Tian Xia. 2019. Nanotechnology Characterization Tools for Environment, Health, and Safety. Nanotechnology Characterization Tools for Environment, Health, and Safety 47 63 .
Josef Jampílek & Katarína Kráľová. 2019. Plant Nanobionics. Plant Nanobionics 255 332 .
Li Wang, Jingyi Wang, Zixuan Wang, Chi He, Wei Lyu, Wei Yan & Liu Yang. (2018) Enhanced antimonate (Sb(V)) removal from aqueous solution by La-doped magnetic biochars. Chemical Engineering Journal 354, pages 623-632.
Crossref
Yuhui Ma, Yao Yao, Jie Yang, Xiao He, Yayun Ding, Peng Zhang, Junzhe Zhang, Guohua Wang, Changjian Xie, Wenhe Luo, Jing Zhang, Lirong Zheng, Zhifang Chai, Yuliang Zhao & Zhiyong Zhang. (2018) Trophic Transfer and Transformation of CeO 2 Nanoparticles along a Terrestrial Food Chain: Influence of Exposure Routes . Environmental Science & Technology 52:14, pages 7921-7927.
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Roberto De La Torre Roche, Luca Pagano, Sanghamitra Majumdar, Brian D. Eitzer, Nubia Zuverza-Mena, Chuanxin Ma, Alia D. Servin, Nelson Marmiroli, Om Parkash Dhankher & Jason C. White. (2018) Co-exposure of imidacloprid and nanoparticle Ag or CeO2 to Cucurbita pepo (zucchini): Contaminant bioaccumulation and translocation. NanoImpact 11, pages 136-145.
Crossref
Yinglin Liu, Lina Xu & Yanhui Dai. (2018) Phytotoxic Effects of Lanthanum Oxide Nanoparticles on Maize ( Zea mays L. ) . IOP Conference Series: Earth and Environmental Science 113, pages 012020.
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Gabriel Gustinelli Arantes de Carvalho, Marcelo Braga Bueno Guerra, Andressa Adame, Cassiana Seimi Nomura, Pedro Vitoriano Oliveira, Hudson Wallace Pereira de Carvalho, Dário Santos, Lidiane Cristina Nunes & Francisco José Krug. (2018) Recent advances in LIBS and XRF for the analysis of plants. Journal of Analytical Atomic Spectrometry 33:6, pages 919-944.
Crossref
Gausiya Bashri, Parul Parihar, Rachana Singh, Anuradha Patel & Sheo M. Prasad. 2018. Nanomaterials in Plants, Algae, and Microorganisms. Nanomaterials in Plants, Algae, and Microorganisms 325 344 .
Muhammad Zia-ur-Rehman, Muhammad F. Qayyum, Fatima Akmal, Muhammad A. Maqsood, Muhammad Rizwan, Maqsoda Waqar & Muhammad Azhar. 2018. Nanomaterials in Plants, Algae, and Microorganisms. Nanomaterials in Plants, Algae, and Microorganisms 143 174 .
Cristiano Soares, Ruth Pereira & Fernanda Fidalgo. 2018. Phytotoxicity of Nanoparticles. Phytotoxicity of Nanoparticles 197 227 .
Sheng Feng, Yuhui Ma, Fang Yang, Jinyu Chu & Zhiyong Zhang. 2018. Phytotoxicity of Nanoparticles. Phytotoxicity of Nanoparticles 119 133 .
S. Silva, H. Oliveira, A. M. S. Silva & C. Santos. (2017) The cytotoxic targets of anatase or rutile + anatase nanoparticles depend on the plant species. Biologia plantarum 61:4, pages 717-725.
Crossref
Eleanor Spielman-Sun, Enzo Lombi, Erica Donner, Daryl Howard, Jason M. Unrine & Gregory V. Lowry. (2017) Impact of Surface Charge on Cerium Oxide Nanoparticle Uptake and Translocation by Wheat ( Triticum aestivum ) . Environmental Science & Technology 51:13, pages 7361-7368.
Crossref
Yuhui Ma, Xiao He, Peng Zhang, Zhiyong Zhang, Yayun Ding, Junzhe Zhang, Guohua Wang, Changjian Xie, Wenhe Luo, Jing Zhang, Lirong Zheng, Zhifang Chai & Ke Yang. (2017) Xylem and Phloem Based Transport of CeO 2 Nanoparticles in Hydroponic Cucumber Plants . Environmental Science & Technology 51:9, pages 5215-5221.
Crossref
Guohua Wang, Yuhui Ma, Peng Zhang, Xiao He, Zhaohui Zhang, Meihua Qu, Yayun Ding, Junzhe Zhang, Changjian Xie, Wenhe Luo, Jing Zhang, Shengqi Chu, Zhifang Chai & Zhiyong Zhang. (2017) Influence of phosphate on phytotoxicity of ceria nanoparticles in an agar medium. Environmental Pollution 224, pages 392-399.
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John H. Priester, Shelly Cole Moritz, Katherine Espinosa, Yuan Ge, Ying Wang, Roger M. Nisbet, Joshua P. Schimel, A. Susana Goggi, Jorge L. Gardea-Torresdey & Patricia A. Holden. (2017) Damage assessment for soybean cultivated in soil with either CeO2 or ZnO manufactured nanomaterials. Science of The Total Environment 579, pages 1756-1768.
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Luca Pagano, Francesco Pasquali, Sanghamitra Majumdar, Roberto De la Torre-Roche, Nubia Zuverza-Mena, Marco Villani, Andrea Zappettini, Robert E. Marra, Susan M. Isch, Marta Marmiroli, Elena Maestri, Om Parkash Dhankher, Jason C. White & Nelson Marmiroli. (2017) Exposure of Cucurbita pepo to binary combinations of engineered nanomaterials: physiological and molecular response. Environmental Science: Nano 4:7, pages 1579-1590.
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Laurie Fréchette-Viens, Madjid Hadioui & Kevin J. Wilkinson. (2017) Practical limitations of single particle ICP-MS in the determination of nanoparticle size distributions and dissolution: case of rare earth oxides. Talanta 163, pages 121-126.
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E. Tassi, L. Giorgetti, E. Morelli, J.R. Peralta-Videa, J.L. Gardea-Torresdey & M. Barbafieri. (2017) Physiological and biochemical responses of sunflower (Helianthus annuus L.) exposed to nano-CeO2 and excess boron: Modulation of boron phytotoxicity. Plant Physiology and Biochemistry 110, pages 50-58.
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Wenchao Du, Wenjuan Tan, Jose R. Peralta-Videa, Jorge L. Gardea-Torresdey, Rong Ji, Ying Yin & Hongyan Guo. (2017) Interaction of metal oxide nanoparticles with higher terrestrial plants: Physiological and biochemical aspects. Plant Physiology and Biochemistry 110, pages 210-225.
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Weilan Zhang, Craig Musante, Jason C. White, Paul Schwab, Qiang Wang, Stephen D. Ebbs & Xingmao Ma. (2017) Bioavailability of cerium oxide nanoparticles to Raphanus sativus L. in two soils. Plant Physiology and Biochemistry 110, pages 185-193.
Crossref
Muhammad Rizwan, Shafaqat Ali, Muhammad Farooq Qayyum, Yong Sik Ok, Muhammad Adrees, Muhammad Ibrahim, Muhammad Zia-ur-Rehman, Mujahid Farid & Farhat Abbas. (2017) Effect of metal and metal oxide nanoparticles on growth and physiology of globally important food crops: A critical review. Journal of Hazardous Materials 322, pages 2-16.
Crossref
Peng Zhang, Yuhui Ma, Shutong Liu, Guohua Wang, Junzhe Zhang, Xiao He, Jing Zhang, Yukui Rui & Zhiyong Zhang. (2017) Phytotoxicity, uptake and transformation of nano-CeO2 in sand cultured romaine lettuce. Environmental Pollution 220, pages 1400-1408.
Crossref
Domingo Martínez-Fernández, Martina Vítková, Zuzana Michálková & Michael Komárek. 2017. Phytoremediation. Phytoremediation 369 403 .
Laxminath Tumburu, Christian P. Andersen, Paul T. Rygiewicz & Jay R. Reichman. (2017) Molecular and physiological responses to titanium dioxide and cerium oxide nanoparticles in Arabidopsis . Environmental Toxicology and Chemistry 36:1, pages 71-82.
Crossref
Peng Zhang. 2016. Toxicology of Nanomaterials. Toxicology of Nanomaterials 367 392 .
Domingo Martínez-Fernández & Michael Komárek. (2016) Comparative effects of nanoscale zero-valent iron (nZVI) and Fe 2 O 3 nanoparticles on root hydraulic conductivity of Solanum lycopersicum L.. Environmental and Experimental Botany 131, pages 128-136.
Crossref
Luca Pagano, Alia D. Servin, Roberto De La Torre-Roche, Arnab Mukherjee, Sanghamitra Majumdar, Joseph Hawthorne, Marta Marmiroli, Elena Maestri, Robert E. Marra, Susan M. Isch, Om Parkash Dhankher, Jason C. White & Nelson Marmiroli. (2016) Molecular Response of Crop Plants to Engineered Nanomaterials. Environmental Science & Technology 50:13, pages 7198-7207.
Crossref
Yongbo Dan, Xingmao Ma, Weilan Zhang, Kun Liu, Chady Stephan & Honglan Shi. (2016) Single particle ICP-MS method development for the determination of plant uptake and accumulation of CeO2 nanoparticles. Analytical and Bioanalytical Chemistry 408:19, pages 5157-5167.
Crossref
Yi Hao, Feifan Yu, Ruitao Lv, Chuanxin Ma, Zetian Zhang, Yukui Rui, Liming Liu, Weidong Cao & Baoshan Xing. (2016) Carbon Nanotubes Filled with Different Ferromagnetic Alloys Affect the Growth and Development of Rice Seedlings by Changing the C:N Ratio and Plant Hormones Concentrations. PLOS ONE 11:6, pages e0157264.
Crossref
Luca Marchiol, Alessandro Mattiello, Filip Pošćić, Guido Fellet, Costanza Zavalloni, Elvio Carlino & Rita Musetti. (2016) Changes in Physiological and Agronomical Parameters of Barley (Hordeum vulgare) Exposed to Cerium and Titanium Dioxide Nanoparticles. International Journal of Environmental Research and Public Health 13:3, pages 332.
Crossref
Margaret West, Andrew T. Ellis, Philip J. Potts, Christina Streli, Christine Vanhoof & Peter Wobrauschek. (2016) 2016 Atomic Spectrometry Update – a review of advances in X-ray fluorescence spectrometry and its applications. Journal of Analytical Atomic Spectrometry 31:9, pages 1706-1755.
Crossref
Domingo Martínez-Fernández, Didac Barroso & Michael Komárek. (2015) Root water transport of Helianthus annuus L. under iron oxide nanoparticle exposure. Environmental Science and Pollution Research 23:2, pages 1732-1741.
Crossref
El-Sayed Belal & Hassan El-Ramady. 2016. Nanoscience in Food and Agriculture 2. Nanoscience in Food and Agriculture 2 311 358 .
Roberto De la Torre Roche, Alia Servin, Joseph Hawthorne, Baoshan Xing, Lee A. Newman, Xingmao Ma, Guangcai Chen & Jason C. White. (2015) Terrestrial Trophic Transfer of Bulk and Nanoparticle La 2 O 3 Does Not Depend on Particle Size . Environmental Science & Technology 49:19, pages 11866-11874.
Crossref
Yuhui Ma, Peng Zhang, Zhiyong Zhang, Xiao He, Junzhe Zhang, Yayun Ding, Jing Zhang, Lirong Zheng, Zhi Guo, Lijuan Zhang, Zhifang Chai & Yuliang Zhao. (2015) Where Does the Transformation of Precipitated Ceria Nanoparticles in Hydroponic Plants Take Place?. Environmental Science & Technology 49:17, pages 10667-10674.
Crossref
Peng Zhang, Yuhui Ma & Zhiyong Zhang. 2015. Nanotechnology and Plant Sciences. Nanotechnology and Plant Sciences 77 99 .
Joseph Hawthorne, Roberto De la Torre Roche, Baoshan Xing, Lee A. Newman, Xingmao Ma, Sanghamitra Majumdar, Jorge Gardea-Torresdey & Jason C. White. (2014) Particle-Size Dependent Accumulation and Trophic Transfer of Cerium Oxide through a Terrestrial Food Chain. Environmental Science & Technology 48:22, pages 13102-13109.
Crossref

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