Abstract
We examined the kinetics of electrotropic curvature in solutions of low electrolyte concentration using primary roots of maize (Zea mays L., variety Merit). When submerged in oxygenated solution across which an electric field was applied, the roots curved rapidly and strongly toward the positive electrode (anode). The strength of the electrotropic response increased and the latent period decreased with increasing field strength. At a field strength of 7.5 volts per centimeter the latent period was 6.6 minutes and curvature reached 60 degrees in about 1 hour. For electric fields greater than 10 volts per centimeter the latent period was less than 1 minute. There was no response to electric fields less than 2.8 volts per centimeter. Both electrotropism and growth were inhibited when indoleacetic acid (10 micromolar) was included in the medium. The auxin transport inhibitor pyrenoylbenzoic acid strongly inhibited electrotropism without inhibiting growth. Electrotropism was enhanced by treatments that interfere with gravitropism, e.g. decapping the roots or pretreating them with ethyleneglycol-bis-[beta-ethylether]-N,N,N',N' -tetraacetic acid. Similarly, roots of agravitropic pea (Pisum sativum, variety Ageotropum) seedlings were more responsive to electrotropic stimulation than roots of normal (variety Alaska) seedlings. The data indicate that the early steps of gravitropism and electrotropism occur by independent mechanisms. However, the motor mechanisms of the two responses may have features in common since auxin and auxin transport inhibitors reduced both gravitropism and electrotropism.
Keywords
NASA Discipline Number 29-20
NASA Discipline Plant Biology
NASA Program Space Biology
Non-NASA Center
MeSH Terms
Egtazic Acid/pharmacology
Electricity
Electrolytes/pharmacology
Electrophysiology
Gravitropism/drug effects,physiology
Indoleacetic Acids/antagonists & inhibitors,pharmacology
Kinetics
Membrane Potentials
Peas/drug effects,growth & development,physiology
Plant Root Cap/drug effects,growth & development,physiology
Plant Roots/drug effects,growth & development,physiology
Tropism/drug effects,physiology
Zea mays/drug effects,growth & development,physiology
Chemicals
Electrolytes
Indoleacetic Acids
Egtazic Acid
indoleacetic acid
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Ishikawa H
Department of Plant Biology, Ohio State University, Columbus 43210.
Evans M L
Investigators
1 investigators, click to expand
Evans M L
Ohio St U, Columbus, Dept Plant Biology
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11 references, click to expand
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