345
Views
15
CrossRef citations to date
0
Altmetric
Original Articles

Effect of different microbubble generation methods on growth of Japanese mustard spinach

, , , &
Pages 115-127 | Received 01 Oct 2014, Accepted 03 Feb 2016, Published online: 29 Nov 2016

References

  • Belkas, E. P., and A. G. Souliotis. 1966. Simultaneous determination of iodine and bromine in urine by neutron-activation analysis. Analyst 91: 199–204.
  • Black, C. A. 1965. Methods of Soil Analysis Part 2. Madison, WI: American Society of Agronomy, Inc.
  • Chun, C., and T. Takakura. 1994. Rate of root respiration of lettuce under various dissolved oxygen concentrations in hydroponics. Environment Control in Biology 32: 125–135.
  • Cuin, T. A., and S. Shabara. 2007. Compatible solutes reduce ROS-induced potassium efflux in Arabidopsis roots. Plant Cell and Environment 30: 875–885.
  • David, D. J. 1960. The determination of exchangeable sodium, potassium, calcium and magnesium in soils by atomic-absorption spectrophotometry. Analyst 85: 495–503.
  • Demidchik, V., T. A. Cuin, and D. Svistunenko. 2010. Arabidopsis root K-efflux conductance activated by hydroxyl radicals: single-channel properties, genetic basis and involvement in stress-induced cell death. Journal of Cell Science 123: 1468–1479.
  • Ditengou, F. A., W. D. Teale, P. Kochersperger, K. Andreas, F. Irina, K. Eric van der Graaff, H. Nzienguia, F. Pinosa, X. Li, R. Nitschke, T. Laux, and K. Palme. Mechanical induction of lateral root initiation in Arabidopsis thaliana. Proceedings of the National Academy of Sciences of United States of America 105: 18818–18823.
  • Frensch, J., and T. C. Hsiao. 1994. Transient responses of cell turgor and growth of maize root as affected by changes in water potential. Plant Physiology 104: 247–254.
  • Green, D. R. 2012. Means to an End: Apoptosis and Other Cell Death Mechanisms. Tokyo: Medical Science International (in Japanese).
  • Hsiao, T. C. 1973. Plant responses to water stress. Annual Review of Plant Physiology 24: 519–570.
  • Ikeura, H., F. Kobayashi, and M. Tamaki. 2011a. Removal of residual pesticide, fenitrothion, in vegetable by using ozone microbubbles generated by different methods. Journal of Engineering 103: 345–349.
  • Ikeura, H., F. Kobayashi, and M. Tamaki. 2011b. Removal of residual pesticides in vegetables using ozone microbubbles. Journal of Hazardous Materials 186: 956–959.
  • Japan Greenhouse Horticulture Association. 2002. Youekisaibaino Shin Manuaru [New manual for hydroponic cultivation]. Tokyo: Seibundo sinnkosya (in Japanese).
  • Kaneko, K., M. Yoshii, T. Isobe, J. S. Park, K. Kurata, and K. Fujiwara. 2009. Nutrient solution prepared with ozonated water does not damage early growth of hydroponically growth tomatoes. Science and Engineering 31: 21–27.
  • Karnovsky, M. J. 1965. A formaldehyde-glutaraldehyde fixative of high osmolarity for use in electron microscopy. Journal of Cell Biology 27: 137–139.
  • Kitson, R. E., and M. G. Mellon. 1944. Colorimetric determination of phosphorus as molybdivanadophosphoric acid. Industrial and Engineering Chemistry Analytical Edition 16: 379–383.
  • Kobayashi, F., H. Ikeura, S. Ohsato, T. Goto, and M. Tamaki. 2011a. Disinfection using ozone microbubbles to inactivate Fusarium oxysporum f. sp. melonis and Pectobacterium carotovorum subsp. carotovorum. Crop Protection 30: 1514–1518.
  • Kobayashi, F., H. Ikeura, S. Ohsato, and M. Tamaki. 2011b. Microbicidal effect of microbubbles with ozone, oxygen, and carbon dioxide against Fusarium oxysporum f. sp. melonis and Pectobacterium carotovorum subsp. carotovorum. Journal of Japanese Society of Agricultural Technology Management 18: 123–128.
  • Kobayashi, F., H. Ikeura, S. Ohsato, T. Goto, and M. Tamaki. 2012. Ozone microbubbles as a disinfection in nutrient solution, and their effects on the composition of fertilizer and the growth of cultivated plants. Biological Engineering Transactions 5: 137–146.
  • Koohakan, P., H. Ikeda, S. Kusakari, T. Masuda, K. Mano, and R. Masuda. 2003. Effects of TiO2 photocatalytic sterilizing system on the suppression of tomato root rot disease in the nutrient solution. Horticultural Research (Japan) 2: 215–219 (in Japanese with English abstract).
  • Lockshin, R A., and Z. Zakeri. 2004. Apoptosis, autophagy and more. The International Journal of Biochemistry and Cell Biology 36: 2405–2419.
  • Mackinney, G. 1941. Absorption of light by chlorophyll solutions. Journal of Biological Chemistry 140: 315–322.
  • Morimoto, T., T. Masuda, and H. Nonami. 1989. Oxygen enrichment in deep Hydroponic culture improves growth of spinach. Environment Control in Biology 27: 97–102.
  • Ogawa, A., C. Kawashima, and A. Yamauchi. 2005. Sugar accumulation along the seminal root axis, as affected by osmotic stress in maize: A possible physiological basis for plastic lateral root development. Plant Production Science 8: 173–180.
  • Ogawa, A., K. Kitamichi, K. Toyofuku, and C. Kawashima. 2006. Quantitative analysis of cell division and cell death in seminal root of rye under salt stress. Plant Production Science 9: 56–64.
  • Park, J. S., and K. Kurata. 2009. Application of microbubble to hydroponics solution promotes lettuce growth. HortTechnology 19: 212–215.
  • Park, J. S., K. Ohashi, K. Kurata, and J. W. Lee. 2010. Promotion of lettuce growth by application of microbubbles in nutrient solution using different rates of electrical conductivity and under periodic intermittent generation in a deep flow technique culture system. Europe Journal of Horticulture Science 75: 198–203.
  • Reihman, M. A., and T. L. Rost. 1990. Regeneration responses in pea roots after tip excision at different levels. American Journal of Botany 77: 1159–1167.
  • Rost, T., and T. Jones. 1988. Pea root regeneration after tip excision at different levels; polarity of new growth. Annals of Botany 61: 513–523.
  • Sharp, R. E., and W. J. Davies. 1979. Solute regulation and growth by root and shoots of water-stressed maize plant. Plant Sciences 147: 43–49.
  • Takahashi, M. 2003. Effect of shrinking microbubble on gas hydrate formation. The Journal of Physical Chemistry B 107: 2171–2173.
  • Takahashi, M. 2005. ζ potential of microbubbles in aqueous solutions: Electrical properties of the gas-water interface. The Journal of Physical Chemistry B 109: 21858–21864.
  • Takahashi, M. 2007. Formation of hydroxyl radicals by collapsing ozone microbubbles under strongly acidic conditions. The Journal of Physical Chemistry B 111: 11443–11446.
  • Takahashi, M. 2009. Base and technological application of micro-bubble and nanobubble. Materials Integration 22: 2–19 (in Japanese).
  • Takahashi, M., and K. Chiba. 2007. Free-radical generation from collapsing microbubbles without a dynamic stimulus. The Journal of Physical Chemistry B 111: 1343–1347.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.