Agriculture Reference
In-Depth Information
Hadadd PS, Seabra AB (2012) Biomedical applications of magnetic nanoparticles. In: Gotsiridze-
Columbus N (ed) Iron oxides: structure, properties and applications. Nova, Nova York,
pp 165-188
Hasanuzzaman M, Nahar K, Alam MM, Roychowdhury R, Fujita M (2013) Physiological,
biochemical, and molecular mechanisms of heat stress tolerance in plants. Int J Mol Sci 14:
9643-9684
Hayes RT, Owen DJ, Chauhan AS, Pulgam VR (2011) PEHAM dendrimers for use in agriculture.
US Patent 20,110,230,348
Hetrick EM, Shin JH, Stasko NA, Johnson CB, Wespe DA et al (2008) Bactericidal efficacy of
nitric oxide-releasing silica nanoparticles. ACS Nano 2:235-246
Holtz RD, Souza AG, Brocchi M, Martins D, Duran N et al (2010) Development of nanostructured
silver vanadates decorated with silver nanoparticles as a novel antibacterial agent. Nano-
technology 21:185102
Huang SL, Kee PH, Kim H, Moody MR, Chrzanowski SM et al (2009) Nitric oxide-loaded
echogenic liposomes for nitric oxide delivery and inhibition of intimal hyperplasia. J Am
Coll Cardiol 54:652-659
Ignarro LJ (2000) Nitric oxide, biology and pathobiology. Academic, San Diego
Jastrzebska AM, Kurtycz P, Olszyna AR (2012) Recent advances in graphene family materials
toxicity investigations. J Nanopart Res 14:1320
Kaviani M, Mortazavi SN (2013) Effect of nitric oxide and thidiazuron on Lilium cut flowers
during postharvest. Int J Agron Plant Prod 4:64-669
Khan MN, Siddiqui MH, Mohammad F, Naeem M (2012) Interactive role of nitric oxide and
calcium chloride in enhancing tolerance to salt stress. Nitric Oxide 27:210-218
Khodakovskaya M, Dervishi E, Mahmood M, Xu Y, Li ZR et al (2009) Carbon nanotubes are able
to penetrate plant seed coat and dramatically affect seed germination and plant growth.
ACS Nano 3:3221-3227
Khodakovskaya MV, de Silva K, Nedosekin DA et al (2011) Complex genetic, photothermal, and
photoacoustic analysis of nanoparticle-plant interactions. Proc Natl Acad Sci U S A 108:
1028-1033
Kim SW, Kim KS, Lamsal K, Kim YJ, Kim SB et al (2009) An in vitro study of the antifungal
effect of silver nanoparticles on oak wilt pathogen Raffaelea sp. J Microbiol Biotechnol
19:760-764
Koehler JJ, Zhao J, Jedlicka SS, Porterfield DM, Rickus JL (2008) Compartmentalized
nanocomposite for dynamic nitric oxide release. J Phys Chem B 112:15086-15093
Lai F, Wissing SA, Muller RH, Fadda AM (2006) Artemisia arborescens L essential oil-loaded
solid lipid nanoparticles for potential agriculture application: preparation and characterization.
AAPS Pharm Sci Technol 7(1):E2
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
Li ZZ, Chen JF, Liu F, Lu AQ, Wang Q et al (2007) Study of UV shielding properties of novel
porous hollow silica nanoparticle carriers for avermectin. Pest Manag Sci 63:241-246
Li H, Song JB, Zhao WT, Yang ZM (2013) AtHO1 is involved in iron homeostasis in an
no-dependent manner. Plant Cell Physiol 54:1105-1117
Lin D, Xing B (2007) Phytotoxicity of nanoparticles: inhibition of seed germination and root
growth. Environ Pollut 150:243-250
Lin CC, Jih PJ, Lin HH, Lin JS, Chang LL et al (2011) Nitric oxide activates superoxide dismutase
and ascorbate peroxidase to repress the cell death induced by wounding. Plant Mol Biol 77:
235-249
Lin A, Wang Y, Tang J, Xue P, Li C et al (2012) Nitric oxide and protein S-nitrosylation are
integral to hydrogen peroxide-induced leaf cell death in rice. Plant Physiol 158:451-464
Ling Y, Jianan W, Lei B, Hailong S (2013) Effects of exogenous nitric oxide on embryo
germination and ROS accumulation in seedling growth initial stage of Sorbus pohuashanensis .
Sci Silvae Sin 49:60-67
Search WWH ::




Custom Search