Publication Cover
Caryologia
International Journal of Cytology, Cytosystematics and Cytogenetics
Volume 68, 2015 - Issue 4
807
Views
11
CrossRef citations to date
0
Altmetric
Articles

Induction of genetic variation by electromagnetic fields in Zea mays L. and Brassica napus L.

, , &

References

  • Anand A, Nagarajan S, Verma AP, Jshi DK, Pathak PC, Bhardwaj J. 2012. Pre-treatment of seeds with static magnetic field ameliorates soil water stress in seedlings of maize (Zea mays L.). Indian J Biochem Biophys. 49(1):63–70.
  • Bautista R, Canovas FM, Claros MG. 2003. Genomic evidence for a repetitive nature of the RAPD polymorphisms in Olea europaea (olive-tree). Euphytica. 130(2):185–190.
  • Blank M, Goodman R. 2011. DNA is a fractal antenna in electromagnetic fields source. Int J Rad Biol. 87(4):409–415.
  • Bradford MM. 1976. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principles of protein-dye binding. J Anal Biochem. 72(7):248–254.
  • Bray EA, Bailey-Serres J, Weretilnyk E. 2000. Responses to abiotic stresses. In: Gruissem W, Buchannan B, Jones R, editors. Biochemistry and molecular biology of plants. Rockville, MD: American Society of Plant Physiology; p. 1158–1249.
  • Bybordi A. 2010. Effects of salinity on yield and component characters in canola (Brassica napus L.) cultivars. Notulae Sci Biol. 2(1):81–83.
  • Campisi A, Gulino M, Acquaviva R. 2010. Reactive oxygen species levels and DNA fragmentation on astrocytes in primary culture after acute exposure to low intensity microwave electromagnetic field. Neuroscience Lett. 473(1):52–55.
  • Diem E, Schwarz C, Adlkofer F, Jahn O, Rüdiger H. 2005. Non-thermal DNA breakage by mobilephone radiation (1800 MHz) in human fibroblasts and in transformed GFSH-R17 rat granulosa cells in vitro. Mutat Res. 583(2):178–183.
  • Elbeshehy EKF, Almaghrabi OA. 2013. Effect of weak electro-magnetic treatments on seedling growth and protein properties of different wheat (Triticum aestivum L.) cultivars. J Biotech Sci. 1(1):1–14.
  • Fischer G, Tausz M, Kock M, Grill D. 2004. Effects of weak 16 2/3 Hz magnetic fields on growth parameters of young sunflower and wheat seedlings. Bioelectromagnetics. 25(8):638–641.
  • Focke F, Schuermann D, Kuster N, Schar P. 2010. DNA fragmentation in human fibroblasts under extremely low frequency electromagnetic field exposure. Mutat Res Fundament Mol Mech Mut. 683(1–2):74–83.
  • Franco R, Schoneveld O, Georgakilas AG, Panayiotidis M. 2008. Oxidative stress. DNA methylation and carcinogenesis. Cancer Lett. 266(1):6–11.
  • Goodman EM, Greenebaum B, Marron MT. 1993. Altered protein synthesis in a cell-free system exposed to a sinusoidal magnetic field. Biochimica Biophys Act. 1202(1):107–112.
  • Graciele S, Pipolo VC, Ruas CF, Carvalho VP. 2008. Comparative analysis of genetic diversity among the inbreed lines (Zea mays L.) obtained by RAPD and SSR Markers. Brazil Arch Biol Technol. 51(1):183–192.
  • Gupta AS, Webb RP, Holaday AS, Allen RD. 1993. Overexpression of superoxide dismutase protects plants from oxidative stress. Plant Physiol. 103(4):1067–1073.
  • Gutzeit HO. 2001. Biological effects of ELF-EMF enhanced stress response: New insights and new questions. Electro Magnet. 20(1):15–26.
  • Leibovitz B, Siegel BV. 1980. Aspects of free radical reactions in biological systems. Aging J Gerontol. 35(1):45–56.
  • Majd A, Singh C, Arbabiyan S, Salimpour F, Angaji SA. 2013. Effects of extremely low frequency electromagnetic fields on growth and genetic diversity of (Satureja hortensis L.). Ann. Biol Res. 4(6):41–45.
  • Minasbekyan LA, Abovyan MS. 2013. Changes in DNA methylation wheat seedlings in first and second generations under influence of EHF EMI. Prog Electromagn Res Symp Proc. 12–15.
  • Moon JD, Chung HS. 2000. Acceleration of germination of tomato seed by applying AC electric and magnetic fields. Electrostatics. 48(2):103–114.
  • Panagopoulos DJ, Chavdoula ED, Nezis IP, Margaritis LH. 2007. Cell death induced by GSM 900-MHz and DCS 1800-MHz mobile telephony radiation. Mutat Res. 628(1–2):69–78.
  • Podani J. 2000. Introduction to exploration of multivariate biological data. English translation. Leiden: Backhuys.
  • Rohlf FJ. 1998. NTSYSpc: numerical taxonomy and multivariate analysis system. Version 2.02. Setauket (NY): Exeter Software.
  • Ruiz-Gomez MJ, Martinez-Morillo M. 2009. Electromagnetic fields and the induction of DNA strand breaks. Electromagnetic Biol Med. 28(2):201–214.
  • Savva D. 1996. DNA fingerprinting as a biomarker assay in ecotoxicology. Toxicol and Ecotoxicol News Rev. 3:110–114.
  • Shabrangi A, Majd A. 2009. Comparing effects of electromagnetic fields (60 Hz) on seed germination and seedling development in monocotyledons and dicotyledons. Proc Prog Electromagn Res Symp. 704–709.
  • Shabrangi A, Majd A, Sheidai M. 2011. Effects of extremely low frequency electromagnetic fields on growth, cytogenetic, protein content and antioxidant system of Zea mays L. African J Biotech. 10(46):9362–9369.
  • Shabrangi A, Sheidai M, Majd A, Nabiuni M, Dorranian D. 2010. Cytogenetic abnormalities caused by extremely low frequency electromagnetic fields in canola. Science Asia. 36:292–296.
  • Sushir KV, Mehetre SS, Patil SC, Kamdi SR. 2008. RAPD and cytogenetic study in F1 and F2 of inter specific cross between Gossypium arboretum and Gossypium anomalum. Cytologia. 73(3):213–219.
  • Tkalec M, Malarić K, Pevalek-Kozlina B. 2005. Influence of 400, 900 and 1900 MHz electromagnetic fields on Lemna minor growth and peroxidase activity. Bioelectromagnetics. 26(3):185–193.
  • Valiron O, Peris L, Rikken G, Schweitzer A, Saoudi Y, Remy C, Job D. 2005. Cellular disorders induced by high magnetic fields. J MRI. 22(3):334–340.
  • Vizcaino V. 2003. Biological effects of low frequency electromagnetic fields. Radiobiologia. 3:44–46.

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.