Literature DB >> 25437125

Fluorescence reports intact quantum dot uptake into roots and translocation to leaves of Arabidopsis thaliana and subsequent ingestion by insect herbivores.

Yeonjong Koo1, Jing Wang, Qingbo Zhang, Huiguang Zhu, E Wassim Chehab, Vicki L Colvin, Pedro J J Alvarez, Janet Braam.   

Abstract

We explored the impact of quantum dot (QD) coat characteristics on NP stability, uptake, and translocation in Arabidopsis thaliana, and subsequent transfer to primary consumers, Trichoplusia ni (T. ni). Arabidopsis was exposed to CdSe/CdZnS QDs with three different coatings: Poly(acrylic acid-ethylene glycol) (PAA-EG), polyethylenimine (PEI) and poly(maleic anhydride-alt-1-octadecene)-poly(ethylene glycol) (PMAO-PEG), which are anionic, cationic, and relatively neutral, respectively. PAA-EG-coated QDs were relatively stable and taken up from a hydroponic medium through both Arabidopsis leaf petioles and roots, without apparent aggregation, and showed generally uniform distribution in leaves. In contrast, PEI- and PMAO-PEG-coated QDs displayed destabilization in the hydroponic medium, and generated particulate fluorescence plant tissues, suggesting aggregation. PAA-EG QDs moved faster than PEI QDs through leaf petioles; however, 8-fold more cadmium accumulated in PEI QD-treated leaves than in those exposed to PAA-EG QDs, possibly due to PEI QD dissolution and direct metal uptake. T. ni caterpillars that fed on Arabidopsis exposed to QDs had reduced performance, and QD fluorescence was detected in both T. ni bodies and frass, demonstrating trophic transfer of intact QDs from plants to insects. Overall, this paper demonstrates that QD coat properties influence plant nanoparticle uptake and translocation and can impact transfer to herbivores.

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Year:  2014        PMID: 25437125     DOI: 10.1021/es5050562

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


  13 in total

1.  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

2.  Assessing the Environmental Effects Related to Quantum Dot Structure, Function, Synthesis and Exposure.

Authors:  Marissa Giroux; Zahra Zahra; Omobayo A Salawu; Robert M Burgess; Kay T Ho; Adeyemi S Adeleye
Journal:  Environ Sci Nano       Date:  2022-03-01

3.  Developmental and Reproductive Effects of Iron Oxide Nanoparticles in Arabidopsis thaliana.

Authors:  Sergey Bombin; Mitchell LeFebvre; Jennifer Sherwood; Yaolin Xu; Yuping Bao; Katrina M Ramonell
Journal:  Int J Mol Sci       Date:  2015-10-13       Impact factor: 5.923

4.  Fate of neutral-charged gold nanoparticles in the roots of the Hordeum vulgare L. cultivar Karat.

Authors:  Anna Milewska-Hendel; Maciej Zubko; Jagna Karcz; Danuta Stróż; Ewa Kurczyńska
Journal:  Sci Rep       Date:  2017-06-07       Impact factor: 4.379

Review 5.  Nanoparticles based on essential metals and their phytotoxicity.

Authors:  Branislav Ruttkay-Nedecky; Olga Krystofova; Lukas Nejdl; Vojtech Adam
Journal:  J Nanobiotechnology       Date:  2017-04-26       Impact factor: 10.435

6.  Distribution of different surface modified carbon dots in pumpkin seedlings.

Authors:  Kun Qian; Huiyuan Guo; Guangcai Chen; Chuanxin Ma; Baoshan Xing
Journal:  Sci Rep       Date:  2018-05-22       Impact factor: 4.379

Review 7.  The present and potential future methods for delivering CRISPR/Cas9 components in plants.

Authors:  Dulam Sandhya; Phanikanth Jogam; Venkateswar Rao Allini; Sadanandam Abbagani; Anshu Alok
Journal:  J Genet Eng Biotechnol       Date:  2020-07-07

Review 8.  Nanotechnology in Plant Science: To Make a Long Story Short.

Authors:  Ilaria Sanzari; Antonietta Leone; Alfredo Ambrosone
Journal:  Front Bioeng Biotechnol       Date:  2019-05-29

9.  Mycorrhizal Fungi Respond to Resource Inequality by Moving Phosphorus from Rich to Poor Patches across Networks.

Authors:  Matthew D Whiteside; Gijsbert D A Werner; Victor E A Caldas; Anouk Van't Padje; Simon E Dupin; Bram Elbers; Milenka Bakker; Gregory A K Wyatt; Malin Klein; Mark A Hink; Marten Postma; Bapu Vaitla; Ronald Noë; Thomas S Shimizu; Stuart A West; E Toby Kiers
Journal:  Curr Biol       Date:  2019-06-06       Impact factor: 10.834

Review 10.  Dual Effect of Nanomaterials on Germination and Seedling Growth: Stimulation vs. Phytotoxicity.

Authors:  Réka Szőllősi; Árpád Molnár; Selahattin Kondak; Zsuzsanna Kolbert
Journal:  Plants (Basel)       Date:  2020-12-10
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