281
Huang YW, Wu CH, Aronstam RS (2010) Toxicity of transition metal oxide nanoparticles: recent
insights from in vitro studies. Materials 3:4842–4859
Husen A, Siddiqi KS (2014) Carbon and fullerene nanomaterials in plant system. J Nanobiotechnol
12:16–26
Judy JD, Unrine JM, Bertsch PM (2011) Evidence for biomagnification of gold nanoparticles
within a terrestrial food chain. Environ Sci Technol 45:776–781
Judy JD, Unrine JM, Rao W, Bertsch PM (2012) Bioaccumulation of gold nanomaterials by
Manduca sexta through dietary uptake of surface contaminated plant tissue. Environ Sci
Technol 46:12672–12678
Karakoti AS, Hench LL, Seal S (2006) The potential toxicity of nanomaterials-the role of surfaces.
JOM 58:77–82
Khodakovskaya MV, de Silva K, Biris AS, Dervishi E, Villagarcia H (2012) Carbon nanotubes
induce growth enhancement of tobacco cells. ACS Nano 6:2128–2135
Kim JH, Lee Y, Kim EJ, Gu S, Sohn EJ, Seo ES, An HJ, Chang YS (2014) Exposure of iron
nanoparticles to Arabidopsis thaliana enhances root elongation by triggering cell wall loosening. Environ Sci Technol 48:3477–3485
Kole C, Kole P, Randunu KM, Choudhary P, Podila R, Ke PC, Rao AM, Marcus RK (2013)
Nanobiotechnology can boost crop production and quality: first evidence from increased plant
biomass, fruit yield and phytomedicine content in bitter melon (Momordica charantia). BMC
Biotechnol 13:37–47
Koo Y, Wang J, Zhang Q, Zhu H, Chehab EW, Colvin VL, Alvarez PJJ, Braam J (2015)
Fluorescence reports intact quantum dot uptake into roots and translocation to leaves of
Arabidopsis thaliana and subsequent ingestion by insect herbivores. Environ Sci Technol
49:626–632
Kouhi SMM, Lahouti M, Ganjeali A, Entezari MH (2014) Comparative phytotoxicity of ZnO
nanoparticles, ZnO microparticles, and Zn
2+ on rapeseed (Brassica napus L.): investigating a
wide range of concentrations. Toxicol Environ Chem 96:861–868
Krishnaraj C, Jagan EG, Ramachandran R, Abirami SM, Mohan N, Kalaichelvan PT (2012) Effect
of biologically synthesized silver nanoparticles on Bacopa monnieri (Linn) Wettst plant growth
metabolism. Process Biochem 47:651–658
Kubo-Irie M, Yokoyama M, Shinkai Y (2016) The transfer of titanium dioxide nanoparticles from
the host plant to butterfly larvae through a food chain. Sci Rep 6:23819
Kumar V, Yadav SK (2009) Plant-mediated synthesis of silver and gold nanoparticles and their
applications. J Chem Technol Biotechnol 84:151–157
Kumar V, Kumari A, Guleria P, Yadav SK (2012) Evaluating the toxicity of selected types of nanochemicals. Rev Environ Contam Toxicol 215:39–121
Kumar V, Guleria P, Kumar V, Yadav SK (2013) Gold nanoparticles exposure induces growth and
yield enhancement in Arabidopsis thaliana. Sci Total Environ 461–462:462–468
Kumar V, Kansal SK, Mehta SK (2014) Toxicity of nanomaterials: present scenario and future
scope. In: Nanotechnology: recent trends, emerging issues and future directions. Nova
Publishers, New York, pp 461–486
Kumari M, Mukherjee A, Chandrasekaran N (2009) Genotoxicity of silver nanoparticles in Allium
cepa. Sci Total Environ 407:5243–5246
Lahiani MH, Dervishi E, Chen J, Puretzky AA, Green MJ, Khodakovskaya MV (2013) Impact of
carbon nanotube exposure to seeds of valuable crops. ACS Appl Mater Interfaces 5:7965–7973
Lahiani MH, Chen J, Irin F (2015) Interaction of carbon nanohorns with plants: uptake and biological effects. Carbon 81:607–619
Lee WM, An YJ, Yoon H, Kweon HS (2008) Toxicity and bioavailability of copper nanoparticles to
the terrestrial plants mung bean (Phaseolus radiatus) and wheat (Triticum aestivum): plant agar
test for water-insoluble nanoparticles. Environ Toxicol Chem 27:1915–1921
Lee WM, Kwak JI, An YJ (2012) Effect of silver nanoparticles in crop plants Phaseolus radiatus
and Sorghum bicolor: media effect on phytotoxicity. Chemosphere 86:491–499
10 Phytoresponse to Nanoparticle Exposure
Huang YW, Wu CH, Aronstam RS (2010) Toxicity of transition metal oxide nanoparticles: recent
insights from in vitro studies. Materials 3:4842–4859
Husen A, Siddiqi KS (2014) Carbon and fullerene nanomaterials in plant system. J Nanobiotechnol
12:16–26
Judy JD, Unrine JM, Bertsch PM (2011) Evidence for biomagnification of gold nanoparticles
within a terrestrial food chain. Environ Sci Technol 45:776–781
Judy JD, Unrine JM, Rao W, Bertsch PM (2012) Bioaccumulation of gold nanomaterials by
Manduca sexta through dietary uptake of surface contaminated plant tissue. Environ Sci
Technol 46:12672–12678
Karakoti AS, Hench LL, Seal S (2006) The potential toxicity of nanomaterials-the role of surfaces.
JOM 58:77–82
Khodakovskaya MV, de Silva K, Biris AS, Dervishi E, Villagarcia H (2012) Carbon nanotubes
induce growth enhancement of tobacco cells. ACS Nano 6:2128–2135
Kim JH, Lee Y, Kim EJ, Gu S, Sohn EJ, Seo ES, An HJ, Chang YS (2014) Exposure of iron
nanoparticles to Arabidopsis thaliana enhances root elongation by triggering cell wall loosening. Environ Sci Technol 48:3477–3485
Kole C, Kole P, Randunu KM, Choudhary P, Podila R, Ke PC, Rao AM, Marcus RK (2013)
Nanobiotechnology can boost crop production and quality: first evidence from increased plant
biomass, fruit yield and phytomedicine content in bitter melon (Momordica charantia). BMC
Biotechnol 13:37–47
Koo Y, Wang J, Zhang Q, Zhu H, Chehab EW, Colvin VL, Alvarez PJJ, Braam J (2015)
Fluorescence reports intact quantum dot uptake into roots and translocation to leaves of
Arabidopsis thaliana and subsequent ingestion by insect herbivores. Environ Sci Technol
49:626–632
Kouhi SMM, Lahouti M, Ganjeali A, Entezari MH (2014) Comparative phytotoxicity of ZnO
nanoparticles, ZnO microparticles, and Zn
2+ on rapeseed (Brassica napus L.): investigating a
wide range of concentrations. Toxicol Environ Chem 96:861–868
Krishnaraj C, Jagan EG, Ramachandran R, Abirami SM, Mohan N, Kalaichelvan PT (2012) Effect
of biologically synthesized silver nanoparticles on Bacopa monnieri (Linn) Wettst plant growth
metabolism. Process Biochem 47:651–658
Kubo-Irie M, Yokoyama M, Shinkai Y (2016) The transfer of titanium dioxide nanoparticles from
the host plant to butterfly larvae through a food chain. Sci Rep 6:23819
Kumar V, Yadav SK (2009) Plant-mediated synthesis of silver and gold nanoparticles and their
applications. J Chem Technol Biotechnol 84:151–157
Kumar V, Kumari A, Guleria P, Yadav SK (2012) Evaluating the toxicity of selected types of nanochemicals. Rev Environ Contam Toxicol 215:39–121
Kumar V, Guleria P, Kumar V, Yadav SK (2013) Gold nanoparticles exposure induces growth and
yield enhancement in Arabidopsis thaliana. Sci Total Environ 461–462:462–468
Kumar V, Kansal SK, Mehta SK (2014) Toxicity of nanomaterials: present scenario and future
scope. In: Nanotechnology: recent trends, emerging issues and future directions. Nova
Publishers, New York, pp 461–486
Kumari M, Mukherjee A, Chandrasekaran N (2009) Genotoxicity of silver nanoparticles in Allium
cepa. Sci Total Environ 407:5243–5246
Lahiani MH, Dervishi E, Chen J, Puretzky AA, Green MJ, Khodakovskaya MV (2013) Impact of
carbon nanotube exposure to seeds of valuable crops. ACS Appl Mater Interfaces 5:7965–7973
Lahiani MH, Chen J, Irin F (2015) Interaction of carbon nanohorns with plants: uptake and biological effects. Carbon 81:607–619
Lee WM, An YJ, Yoon H, Kweon HS (2008) Toxicity and bioavailability of copper nanoparticles to
the terrestrial plants mung bean (Phaseolus radiatus) and wheat (Triticum aestivum): plant agar
test for water-insoluble nanoparticles. Environ Toxicol Chem 27:1915–1921
Lee WM, Kwak JI, An YJ (2012) Effect of silver nanoparticles in crop plants Phaseolus radiatus
and Sorghum bicolor: media effect on phytotoxicity. Chemosphere 86:491–499
10 Phytoresponse to Nanoparticle Exposure
