Results 211 to 220 of about 247,281 (267)
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Preparation of ethylene gas and comparison of ethylene responses induced by ethylene, ACC, and ethephon

Plant Physiology and Biochemistry, 2010
Ethylene is a gaseous plant hormone used in many physiological studies examining its role in plant growth and development. However, ethylene gas may not be conveniently available to many laboratories for occasional use, and therefore several chemicals can be used as replacements.
Chi-Kuang Wen
exaly   +3 more sources

Determination of Ethylene Oxide, Ethylene Chlorohydrin, and Ethylene Glycol by Gas Chromatography

Journal of Pharmaceutical Sciences, 1971
Abstract The technique of gas chromatography was employed for the quantitative determination of ethylene oxide, ethylene chlorohydrin, and ethylene glycol. The simultaneous determination of ethylene chlorohydrin and ethylene glycol in an aqueous solution using a single polyethylene glycol column was accomplished under isothermal conditions, while ...
H D, Spitz, J, Weinberger
openaire   +2 more sources

Biosynthesis of Ethylene

Nature, 1964
IT is the purpose of the present communication to describe some further results with carbon-14 precursors of ethylene, and to reconcile the pattern which emerges in these investigations using McIntosh apple tissue sections with that of the fungal system, Penicillium digitatum.
S P, BURG, E A, BURG
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BIOGENESIS OF ETHYLENE

Biological Reviews, 1969
Summary1. The main characteristics of the biosynthetic system forming ethylene in plant tissues have been reviewed. The dependence of synthesis on a liberal supply of oxygen is clearly indicated by the fact that atmospheres containing 3–5% oxygen prevent the synthesis in fruits.
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Residual Ethylene Oxide and Ethylene Glycol in Ethylene Oxide Sterilized Pharmaceuticals

Journal of Pharmaceutical Sciences, 1965
The development and application of two methods for the determination of sterilization residues in ethylene oxide sterilized steroids, vitamins, and antibiotics are described. One method is based on the separation and concentration of ethylene oxide (ETO) by distillation and measurement by internal standard gas liquid chromatography.
openaire   +2 more sources

Ethylene and Ethylene Physiology

1980
Ethylene, indeed, is a busy gas. So busy, in fact, that seemingly, each month when the professional journals are published, some new involvement is discovered or a new application for ethylene in agriculture is developed. Prior to the 1950’s, about the only commercial use of ethylene in agriculture was gassing mature green bananas and tomatoes to make ...
openaire   +1 more source

Exhalation of ethylene oxide by rats on exposure to ethylene

Mutation Research Letters, 1983
Abstract When rats are exposed to ethylene in a closed desiccator jar chamber, the rate of metabolic elimination of the compound is influenced by pretreatment with Aroclor 1254 (metabolism increased) and diethyldithiocarbamate (metabolism inhibited). Biotransformation of ethylene leads to ethylene oxide as reactive intermediate.
J G, Filser, H M, Bolt
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The comparative metabolism of ethylene dimethanesulphonate and ethylene dibromide

Experientia, 1968
Athylenglykol-dimethansulfonat (EDS) wird von der Ratte zu N-Acetyl-S-(β-hydroxyathyl)-cystein (V), N-Acetyl-S-(β-hydroxyathyl)-cystein-S-oxyd (VI), und Methansulfonsaure abgebaut. Athylendibromid (EDB) gibt ausser V und VI, S-(β-Hydroxyathyl)-cystein (III) und wird weiter zu Kohlendioxyd und anorganischem Sulphat via S-(β-Hydroxyathyl)-cystein-S-oxyd (
A R, Jones, K, Edwards
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Analysis of Ethylene Receptors: Ethylene-Binding Assays

2017
Plant ethylene receptors bind ethylene with high affinity. Most of the characterization of ethylene binding to the receptors has been carried out using a radioligand-binding assay on functional receptors expressed in yeast. In this chapter, we describe methods for expressing ethylene receptors in yeast and conducting ethylene-binding assays on intact ...
Brad M, Binder, G Eric, Schaller
openaire   +2 more sources

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