DocumentCode :
3604982
Title :
Physiological and Genetic Analyses of Arabidopsis Thaliana Growth Responses to Electroporation
Author :
Songnuan, Wisuwat ; Siriwattanakul, Umaporn ; Kirawanich, Phumin
Author_Institution :
Dept. of Plant Sci., Mahidol Univ., Bangkok, Thailand
Volume :
14
Issue :
7
fYear :
2015
Firstpage :
773
Lastpage :
779
Abstract :
Stress-induced effect on Arabidopsis thaliana seeds due to high-intensity electrical pulses is described. The pulsed electric field (PEF) treatment system was constructed under the concept of electroporation to deliver 10-nanosecond, 5-Hz pulse train with the energy density per pulse up to 4 kJ·kg -1. The analysis of the growth responses revealed that the optimal specific energy of ~ 1 kJ·kg -1 delivered the positive effect on the early growth with significant enhancement in the germination percentage and leaf area expansion. The same treatment energy, in addition, contributed to the higher level of the gene expression at nearly tenfold (PAD3 and PR1) compared with untreated control. Such optimistic evidences suggest that the PEF treatment may have practical applications such as to stimulate the delayed germination in preserved economical crops and should be preferred over chemical treatments due to its short-term effect.
Keywords :
biochemistry; biological effects of fields; biological techniques; botany; genetics; molecular biophysics; proteins; Arabidopsis thaliana growth; PAD3 gene expression; PEF treatment system; PR1 gene expression; chemical treatment; economical crop; electroporation; energy density; genetic analysis; germination percentage; high-intensity electrical pulse; leaf area expansion; pathogenesis-related protein 1; physiological analysis; pulse train; pulsed electric field; stress-induced effect; treatment energy; Biomembranes; Coaxial cables; Electric fields; Gene expression; Nanobioscience; Stress; Electroporation; gene expression; pulsed electric field; quantitative reverse transcription polymerase chain reaction;
fLanguage :
English
Journal_Title :
NanoBioscience, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1241
Type :
jour
DOI :
10.1109/TNB.2015.2472992
Filename :
7225159
Link To Document :
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