Agriculture Reference
In-Depth Information
Jacob, D. L., Borchardt, J. D., Navaratnam, L., Otte, M. L., Bezbaruah, A. N. (2013). Uptake
and translocation of Ti from Nanoparticles in crops and wetland plants. Internal Journal
of Phytoremediantion , 15, 142-153.
Khodakovskaya, M. V., de Silva, K., Biris, A. S., Dervishi, E., Villagarcia, H. (2012). Carbon
Nanotubes Induce Growth Enhancement of Tobacco Cells. ACS Nano , 6, 2128-2135.
Kole, C., Kole, P., Randunu, K. M., Choudhary, P., Podila, R., Ke, P. C., Rao, A. M., Marcus,
R. K. (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 Biotechnology , 13, 13-37.
Kumar, V., Guleria, P., Kumar, V., Yadav, S. K. (2013). Gold nanoparticle exposure induces
growth and yield enhancement in Arabidopsis thaliana . Science of the Total
Environment , 461, 462-468.
Kumari, M., Khan, S. S., Pakrashi, S., Mukherjee, A., Chandrasekaran, N. (2011).
Cytogenetic and genotoxic effects of zinc oxide nanoparticles on root cells of Allium
cepa . Journal of Hazardous Materials , 190, 613-621.
Markwell, J., Osterman, J. C., Mitchell, J. L. (1995). Calibration of the Minolta SPAD-502
leaf chlorophyll meter. Photosynth , 46, 467-472.
Moaveni, P., Farahani, H. A., Maroufi, K. (2011). Effect of TiO 2 nanoparticles spraying on
quality and quantity of wheat ( Triticum Aestium L.). Advances in Environmental Biology ,
5, 2211-2213.
Mushtaq, Y. K. (2011). Effect of nanoscale Fe 3 O 4 , TiO 2 and carbon particles on cucumber
seed germination. Journal of Environmental Science and Health Part A-Toxic /
Hazardous Substances & Environmental Engineering , 46, 1732-1735.
Narayanan, A., Sharma, P., Moudgil, B. M. (2013). Applications of Engineered Particulate
Systems in Agriculture and Food Industry. Kona Powder and Particle Journal , 30, 221-
235.
Pilon-Smits, E. A., Quinn, C. F., Tapken, W., Malagoli, M., Schiavon, M. (2009).
Physiological functions of beneficial elements. Current Opinion in Plant Biology , 12,
267-274.
Pokhrel, L. R., Dubey, B. (2013). Evaluation of developmental responses of two crop plants
exposed to silver and zinc oxide nanoparticles. Science of the Total Environment , 452,
321-332.
Rhoades, J. D., Mantghi, N. A., Shause, P. J., Alves, W. (1989). Estimating soil salinity from
saturated soil-paste electrical conductivity. Soil Science Society of America Journal , 53,
428-433.
Saco, D., Martin, S., San, J. P. (2013). Vanadium distribution in roots and leaves of
Phaseolus vulgaris : morphological and ultrastructural effects. Biologia Plantarum, 57,
128-132.
Sae-Lee, N., Kerdchoechuen, O., Laohakunjit, N. (2012). Chemical qualities and phenolic
compounds of Assam tea after soil drench application of selenium and aluminium. Plant
and Soil, 356, 381-393.
SAS Institute. (1989). Statistic guide for personal computers . Version 6.04 . North Carolina,
SAS.
Song, U., Jun, H., Waldman, B., Roh, J., Kim, Y., Yi, J., Lee, E. J. (2013). Functional
analyses of nanoparticle toxicity: A comparative study of the effects of TiO 2 and Ag on
Search WWH ::




Custom Search