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1.
N Biotechnol ; 32(6): 739-46, 2015 Dec 25.
Article in English | MEDLINE | ID: mdl-25639197

ABSTRACT

Ergot alkaloids are widely used in the pharmaceutical industry in drug preparations for treating migraines and Parkinson's disease, inducing uterine contraction, and other purposes. Phytopathogenic fungi of the genus Claviceps (e.g. C. purpurea) comprise a major biological source of ergot alkaloids. Worldwide industrial production of these alkaloids derives almost equally from two biotechnological procedures: submerged culture of the fungus in fermenters and field parasitic production in dormant fungal organs known as sclerotia (also termed ergot). Ergot yields from field cultivation are greatly affected by weather and also can be much reduced by pollen contamination from imperfectly male-sterile rye, as only unfertilized ovaries can be infected by C. purpurea spores. Two substances with gametocidal effect - maleic hydrazide and 2-chloroethylphosphonic acid - were tested during three consecutive seasons in small field experiments for the ability to induce or amplify the male sterility of rye as well as the impacts on germination of C. purpurea spores and general vitality of rye host plants. Maleic hydrazide was proven to be a highly effective gametocide on both a fertile rye variety and a variety with imperfectly induced cytoplasmic male sterility. It showed negligible effect on germination of C. purpurea spores. Both accurate dosaging of the active gametocidal compound and timing of the application just 2-3 weeks before onset of anthesis proved crucial to achieving high ergot yield with minimum grain impurities.


Subject(s)
Ergot Alkaloids/biosynthesis , Germ Cells, Plant/drug effects , Maleic Hydrazide/administration & dosage , Organophosphorus Compounds/administration & dosage , Plant Infertility/physiology , Secale/metabolism , Dose-Response Relationship, Drug , Ergot Alkaloids/isolation & purification , Plant Growth Regulators/pharmacology , Plant Infertility/drug effects , Secale/drug effects , Up-Regulation/drug effects , Up-Regulation/physiology
2.
Drug Chem Toxicol ; 37(4): 459-65, 2014 Oct.
Article in English | MEDLINE | ID: mdl-24495230

ABSTRACT

The toxicity of etephon and maleic hydrazide, used as plant growth regulators in agriculture, were reported as low in mammals in previous studies. However, in vitro cytotoxicity studies in mammalian cells are currently missing to understand their toxicity at molecular level. In the current study, the cytotoxicity of these compounds, were studied in Vero (African green monkey kidney epithelium), HepG2 (human hepatocellular carcinoma), Hep2 (human epidermoid cancer) cells by MTT ((3-(4,5-dimetiltiazol-2-il)-2,5-difeniltetrazolium bromure) and LDH (lactate dehydrogenase) assays. Maleic hydrazide had lower IC50 values for all cell lines compared to ethephon. Least cytotoxic effect treated by ethephon were observed in Vero, followed by HepG2 and Hep2. Similarly maleic hydrazide also showed least cytotoxicity on Vero cells, followed by Hep2 and HepG2 cells (p < 0.05). IC50 values in general were found to be highest in Vero cells, followed by HepG2 and Hep2 cells (p < 0.05). LDH and MTT assays showed correllation and had close relation except HepG2-maleic hydrazide application with the correlation coefficient for all >0.868 (p < 0.05). This study is expected to be a basis to understand the cytotoxic effects of ethephon and maleic hydrazide in mammal cells to be supplemented by further studies.


Subject(s)
Cell Survival/drug effects , Maleic Hydrazide/toxicity , Organophosphorus Compounds/toxicity , Plant Growth Regulators/toxicity , Animals , Cell Line, Tumor , Chlorocebus aethiops , Hep G2 Cells , Humans , Inhibitory Concentration 50 , L-Lactate Dehydrogenase/metabolism , Maleic Hydrazide/administration & dosage , Organophosphorus Compounds/administration & dosage , Tetrazolium Salts/chemistry , Thiazoles/chemistry , Vero Cells
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