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751923 
Journal Article 
Complex genetic, photothermal, and photoacoustic analysis of nanoparticle-plant interactions 
Khodakovskaya, MV; de Silva, K; Nedosekin, DA; Dervishi, E; Biris, AS; Shashkov, EV; Galanzha, EI; Zharov, VP 
2011 
Proceedings of the National Academy of Sciences of the United States of America
ISSN: 0027-8424
EISSN: 1091-6490 
108 
1028-1033 
English 
Understanding the nature of interactions between engineered nanomaterials and plants is crucial in comprehending the impact of nanotechnology on the environment and agriculture with a focus on toxicity concerns, plant disease treatment, and genetic engineering. To date, little progress has been made in studying nanoparticle-plant interactions at single nanoparticle and genetic levels. Here, we introduce an advanced platform integrating genetic, Raman, photothermal, and photoacoustic methods. Using this approach, we discovered that multiwall carbon nanotubes induce previously unknown changes in gene expression in tomato leaves and roots, particularly, up-regulation of the stress-related genes, including those induced by pathogens and the water-channel LeAqp2 gene. A nano-bubble amplified photothermal/photoacoustic imaging, spectroscopy, and burning technique demonstrated the detection of multiwall carbon nanotubes in roots, leaves, and fruits down to the single nanoparticle and cell level. Thus, our integrated platform allows the study of nanoparticles' impact on plants with higher sensitivity and specificity, compared to existing assays. 
Other
• Nanoscale Carbon
     All References Cited
     Peer Reviewed Draft
          Impacts
               Lower Priority Areas: Appendices G and H
     Final Case Study
          Product Life Cycle
               Lower Priority Areas: Appendices G and H
          Transport & Fate
               Lower Priority Areas: Appendices G and H
          Exposure, Uptake, and Dose
               Lower Priority Areas: Appendices G and H
          Impacts
               Lower Priority Areas: Appendices G and H