Literature DB >> 23259709

Silver nanoparticles disrupt wheat (Triticum aestivum L.) growth in a sand matrix.

Christian O Dimkpa1, Joan E McLean, Nicole Martineau, David W Britt, Richard Haverkamp, Anne J Anderson.   

Abstract

Hydroponic plant growth studies indicate that silver nanoparticles (Ag NPs) are phytotoxic. In this work, the phytotoxicity of commercial Ag NPs (10 nm) was evaluated in a sand growth matrix. Both NPs and soluble Ag were recovered from water extracts of the sand after growth of plants challenged with the commercial product; the surface charge of the Ag NPs in this extract was slightly reduced compared to the stock NPs. The Ag NPs reduced the length of shoots and roots of wheat in a dose-dependent manner. Furthermore, 2.5 mg/kg of the NPs increased branching in the roots of wheat (Triticum aestivum L.), thereby affecting plant biomass. Micron-sized (bulk) Ag particles (2.5 mg/kg) as well as Ag ions (63 μg Ag/kg) equivalent to the amount of soluble Ag in planted sand with Ag NPs (2.5 mg/kg) did not affect plant growth compared to control. In contrast, higher levels of Ag ions (2.5 mg/kg) reduced plant growth to a similar extent as the Ag NPs. Accumulation of Ag was detected in the shoots, indicating an uptake and transport of the metal from the Ag NPs in the sand. Transmision electron microscopy indicated that Ag NPs were present in shoots of plants with roots exposed to the Ag NPs or high levels of Ag ions. Both of these treatments caused oxidative stress in roots, as indicated by accumulation of oxidized glutathione, and induced expression of a gene encoding a metallothionein involved in detoxification by metal ion sequestration. Our findings demonstrate the potential effects of environmental contamination by Ag NPs on the metabolism and growth of food crops in a solid matrix.

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Year:  2013        PMID: 23259709     DOI: 10.1021/es302973y

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  29 in total

1.  Phytotoxicity and upper localization of Ag@CoFe2O4 nanoparticles in wheat plants.

Authors:  Jaime López-Luna; Soledad Cruz-Fernández; Donald Stewart Mills; Arturo Isaías Martínez-Enríquez; Fernando Amilcar Solís-Domínguez; María Del Carmen Ángeles González-Chávez; Rogelio Carrillo-González; Sergio Martinez-Vargas; Oscar Francisco Mijangos-Ricardez; María Del Carmen Cuevas-Díaz
Journal:  Environ Sci Pollut Res Int       Date:  2019-11-23       Impact factor: 4.223

2.  The effects of metallic engineered nanoparticles upon plant systems: An analytic examination of scientific evidence.

Authors:  Thabet Tolaymat; Ash Genaidy; Wael Abdelraheem; Dionysios Dionysiou; Christian Andersen
Journal:  Sci Total Environ       Date:  2016-11-18       Impact factor: 7.963

3.  Characterizing the uptake, accumulation and toxicity of silver sulfide nanoparticles in plants.

Authors:  Peng Wang; Enzo Lombi; Shengkai Sun; Kirk G Scheckel; Anzhela Malysheva; Brigid A McKenna; Neal W Menzies; Fang-Jie Zhao; Peter M Kopittke
Journal:  Environ Sci Nano       Date:  2017-02-01

4.  The effect of chitosan-PMAA-NPK nanofertilizer on Pisum sativum plants.

Authors:  Noha S Khalifa; Mohammed N Hasaneen
Journal:  3 Biotech       Date:  2018-03-21       Impact factor: 2.406

5.  Uptake and translocation of metals and nutrients in tomato grown in soil polluted with metal oxide (CeO₂, Fe₃O₄, SnO₂, TiO₂) or metallic (Ag, Co, Ni) engineered nanoparticles.

Authors:  Livia Vittori Antisari; Serena Carbone; Antonietta Gatti; Gilmo Vianello; Paolo Nannipieri
Journal:  Environ Sci Pollut Res Int       Date:  2014-09-06       Impact factor: 4.223

Review 6.  Nanoparticle-Plant Interactions: Two-Way Traffic.

Authors:  Mujeebur Rahman Khan; Vojtech Adam; Tanveer Fatima Rizvi; Baohong Zhang; Faheem Ahamad; Izabela Jośko; Ye Zhu; Mingying Yang; Chuanbin Mao
Journal:  Small       Date:  2019-07-18       Impact factor: 13.281

7.  Assessment of silver nanoparticle-induced physiological and molecular changes in Arabidopsis thaliana.

Authors:  Prakash M Gopalakrishnan Nair; Ill Min Chung
Journal:  Environ Sci Pollut Res Int       Date:  2014-04-11       Impact factor: 4.223

8.  A beneficial role of arbuscular mycorrhizal fungi in influencing the effects of silver nanoparticles on plant-microbe systems in a soil matrix.

Authors:  Jiling Cao; Youzhi Feng; Xiangui Lin; Junhua Wang
Journal:  Environ Sci Pollut Res Int       Date:  2020-01-23       Impact factor: 4.223

9.  Phytotoxic effect of silver nanoparticles on seed germination and growth of terrestrial plants.

Authors:  Shruti Budhani; Nzube Prisca Egboluche; Zikri Arslan; Hongtao Yu; Hua Deng
Journal:  J Environ Sci Health C Environ Carcinog Ecotoxicol Rev       Date:  2019-10-29       Impact factor: 3.781

Review 10.  Brief overview of the application of silver nanoparticles to improve growth of crop plants.

Authors:  Ansar Mehmood
Journal:  IET Nanobiotechnol       Date:  2018-09       Impact factor: 1.847

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