278
Views
24
CrossRef citations to date
0
Altmetric
Articles

Nonselective uptake of silver and gold nanoparticles by wheat

, , , ORCID Icon &
Pages 1073-1086 | Received 24 Jan 2019, Accepted 02 Jun 2019, Published online: 23 Jul 2019

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

Read on this site (1)

Fei Dang, Qi Wang, Weiping Cai, Dongmei Zhou & Baoshan Xing. (2020) Uptake kinetics of silver nanoparticles by plant: relative importance of particles and dissolved ions. Nanotoxicology 14:5, pages 654-666.
Read now

Articles from other publishers (23)

Na Zhang, Juzhi Sun, Liyan Yin, Junli Liu & Chunli Chen. (2023) Silver nanoparticles: From in vitro green synthesis to in vivo biological effects in plants. Advanced Agrochem 2:4, pages 313-323.
Crossref
Xin Liu, Yaoyu Zhou, Jian Yang, Yuan Yang & Md. Mostafizur Rahman. (2023) Bioavailability and translocation of platinum nanoparticles and platinum ions in rice (Oryza sativa L.): Nanoparticles biosynthesis and size-dependent transformation. Science of The Total Environment 897, pages 165137.
Crossref
Mani Prabha, Tulika Malviya, Shehala, Aayushee, Ashok Kumar & Vandana Singh. (2023) Effect of Gum acacia capped Cu-Ag bimetallic nanoparticles on germination and growth of gram seeds (Cicer arietinum L.). Materials Today: Proceedings.
Crossref
Huijun Yan, Wanying Zhang, Chengcheng Li & Yujun Wang. (2023) Uptake of TiO2 Nanoparticles was Linked to Variation in net Cation flux in Wheat Seedlings. Bulletin of Environmental Contamination and Toxicology 110:4.
Crossref
Yaoyu Zhou, Xin Liu, Xiao Yang, Gijs Du Laing, Yuan Yang, Filip M. G. Tack, Michael S. Bank & Jochen Bundschuh. (2023) Effects of Platinum Nanoparticles on Rice Seedlings ( Oryza sativa L.): Size-dependent Accumulation, Transformation, and Ionomic Influence . Environmental Science & Technology 57:9, pages 3733-3745.
Crossref
Wanwan Wang, Longyi Yuan, Jingzhe Zhou, Xi Zhu, Zuying Liao, Liyan Yin, Wei Li & Hong Sheng Jiang. (2023) Inorganic carbon utilization: A target of silver nanoparticle toxicity on a submerged macrophyte. Environmental Pollution 318, pages 120906.
Crossref
Pinki Sharma. 2023. The Impact of Nanoparticles on Agriculture and Soil. The Impact of Nanoparticles on Agriculture and Soil 115 128 .
M. Bakir, K. Ben-Jeddou, A. C. Gimenez-Ingalaturre, E. Bolea & F. Laborda. 2022. Environmental Nanopollutants. Environmental Nanopollutants 321 338 .
Meng Jiang, Binqiang Wang, Rui Ye, Ning Yu, Zhenming Xie, Yuejin Hua, Ruhong Zhou, Bing Tian & Shang Dai. (2022) Evidence and Impacts of Nanoplastic Accumulation on Crop Grains. Advanced Science 9:33, pages 2202336.
Crossref
Lesław Bernard Lahuta, Joanna Szablińska-Piernik, Karolina Stałanowska, Katarzyna Głowacka & Marcin Horbowicz. (2022) The Size-Dependent Effects of Silver Nanoparticles on Germination, Early Seedling Development and Polar Metabolite Profile of Wheat (Triticum aestivum L.). International Journal of Molecular Sciences 23:21, pages 13255.
Crossref
Jing Wang, Le Yue, Jian Zhao, Xuesong Cao, Chuanxi Wang, Feiran Chen, Zhenggao Xiao, Yan Feng & Zhenyu Wang. (2022) Uptake and bioaccumulation of nanoparticles by five higher plants using single-particle-inductively coupled plasma-mass spectrometry. Environmental Science: Nano 9:8, pages 3066-3080.
Crossref
Adam Laycock, Nathaniel J. Clark, Robert Clough, Rachel Smith & Richard D. Handy. (2022) Determination of metallic nanoparticles in biological samples by single particle ICP-MS: a systematic review from sample collection to analysis. Environmental Science: Nano 9:2, pages 420-453.
Crossref
Danyu Huang, Fei Dang, Yingnan Huang, Ning Chen & Dongmei Zhou. (2022) Uptake, translocation, and transformation of silver nanoparticles in plants. Environmental Science: Nano 9:1, pages 12-39.
Crossref
Jianzhou He, Li Zhang, Sheng Yang He, Elliot T. Ryser, Hui Li & Wei Zhang. (2022) Stomata facilitate foliar sorption of silver nanoparticles by Arabidopsis thaliana. Environmental Pollution 292, pages 118448.
Crossref
Yuliya Venzhik, Alexandr Sokolov, Oleg Sokolov, Igor Moshkov & Lev Dykman. 2022. Toxicity of Nanoparticles in Plants. Toxicity of Nanoparticles in Plants 241 265 .
Kareem A. Mosa, Aya Awad, Rand Alhaj Yahya, Shatha N. Alameeri, Kalidoss Ramamoorthy & Muna A. Ali. 2022. Plant Metal and Metalloid Transporters. Plant Metal and Metalloid Transporters 331 360 .
Santanu Samanta & Aryadeep Roychoudhury. (2021) Recent trend in nanoparticle research in regulating arsenic bioaccumulation and mitigating arsenic toxicity in plant species. Journal of Plant Biochemistry and Biotechnology 30:4, pages 793-812.
Crossref
Abdul Manaf, Xiukang Wang, Fatima Tariq, Hafiz Muhammad Jhanzab, Yamin Bibi, Ahmad Sher, Abdul Razzaq, Sajid Fiaz, Sikander Khan Tanveer & Abdul Qayyum. (2021) Antioxidant Enzyme Activities Correlated with Growth Parameters of Wheat Sprayed with Silver and Gold Nanoparticle Suspensions. Agronomy 11:8, pages 1494.
Crossref
Eduardo Bolea, Maria S. Jimenez, Josefina Perez-Arantegui, Juan C. Vidal, Mariam Bakir, Khaoula Ben-Jeddou, Ana C. Gimenez-Ingalaturre, David Ojeda, Celia Trujillo & Francisco Laborda. (2021) Analytical applications of single particle inductively coupled plasma mass spectrometry: a comprehensive and critical review. Analytical Methods 13:25, pages 2742-2795.
Crossref
Wen-Jing Wei, Lei Li, Yu-Pei Gao, Qiang Wang, Yao-Yu Zhou, Xin Liu & Yuan Yang. (2021) Enzyme digestion combined with SP-ICP-MS analysis to characterize the bioaccumulation of gold nanoparticles by mustard and lettuce plants. Science of The Total Environment 777, pages 146038.
Crossref
Moumita Mondal, Meyappan Vadivel, Leena Louis & Natarajan Sakthivel. 2021. Nanobiotechnology. Nanobiotechnology 187 210 .
Jianzhou He, Yuanbo Li, Haonan Qi, Hui Li & Wei Zhang. (2020) Biochar amendment changed soil-bound fractions of silver nanoparticles and ions but not their uptake by radish at an environmentally-relevant concentration. Biochar 2:3, pages 307-317.
Crossref
Yun Wu, Lei Yang, Hua Gong, Fei Dang & Dong-Mei Zhou. (2020) Contrasting effects of iron plaque on the bioavailability of metallic and sulfidized silver nanoparticles to rice. Environmental Pollution 260, pages 113969.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.