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Titlebook: Biochemical and Physiological Aspects of Ethylene Production in Lower and Higher Plants; Proceedings of a Con H. Clijsters,M. Proft,M. Pouc

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發(fā)表于 2025-3-21 19:39:10 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Biochemical and Physiological Aspects of Ethylene Production in Lower and Higher Plants
期刊簡(jiǎn)稱Proceedings of a Con
影響因子2023H. Clijsters,M. Proft,M. Poucke
視頻videohttp://file.papertrans.cn/187/186579/186579.mp4
學(xué)科分類Advances in Agricultural Biotechnology
圖書(shū)封面Titlebook: Biochemical and Physiological Aspects of Ethylene Production in Lower and Higher Plants; Proceedings of a Con H. Clijsters,M. Proft,M. Pouc
影響因子With the demonstration of the "triple response" in plants by Neljubow at the turn of the century, ethylene has been identified as a substance specifically affecting plant growth. Yet it took a few more decades to show that ethylene is a naturally occurring product of plants having all the characteristics of a phytohormone. Ever since much effort has been devoted to a wide variety of physiological and biochemical problems relevant to ethylene. A first meeting was organized in Israel in 1984 to bring together many people active in this rapidly expanding field of experimental research. It is the aim of the present symposium to provide once more a forum at which researchers might expose and comment progress in their work over the last few years. Speakers were invi ted and their contri buti ons ordered ina number of sessions, each of which was centered on a particular topiC. Much of the benefit came from ensuing discussion sessions which were conducted with much competence and expertise by Anderson, Ben-Arie, Goren, Morgan and Osborne. All of these colleagues are recognized leaders in ethylene research today and the organizers owe a very special gratitude to them for their substantial c
Pindex Conference proceedings 1989
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Characterization of the Ethylene-Forming Enzyme , and ,ction of cell-wall degrading enzymes. The results presented in the present paper show that EFE activity is largely retained when slices of apple (.) tissue are incubated in the presence of the cell-wall degrading enzymes, Pectolyase and Caylase, even though the action of these enzymes results in the
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The Nature of an Ethylene Biosynthesis-Inducing Factor Found in Cellulysinaturing protein separation methods employed (Sephacryl S-200 chromatography, preparative isoelectric focusing and agarose electrophoresis), xylanase activity co-purified with the ethylene biosynthesis-inducing activity. Treatment with heat (60°C) or proteases in 8 M urea inhibited both ethylen biosy
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The Influence of Oxygen Concentration on Ethylene Production and the Content of 1-Aminocyclopropane-t at least 8 h exposure to low O. levels is required to initiate high ethylene release. CO. production gradually increased as the O. concentration was increased..The level of endogenous ACC was related to the low O.- stimulated ethylene release. The upper part of the bean seedling contained the high
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Oxygen-Independent Ethylene Action in Cocklebur Seed Germination in Relation to Osmoregulationbur seeds were also responsive to “seed priming”. This effect was significantly increased by ethylene applied during a period of the priming, and the increment rose with increasing the water stress. The respiration-stimulating effect of ethylene was not found under the stressed conditions and its pr
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Ethylene, β-Cyanoalanine Synthase and Cyanide Insensitive Respiration in Ripening Apples: The Effectst to allow cellular functions, such as respiration, to proceed in the presence of cyanide, as well as mechanisms to metabolize the cyanide. Apple fruit at different stages of ripeness were examined for ethylene production, β -cyanoalanne synthase activity, and cyanide insensitive repiration. The fr
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