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Titlebook: Microbial Growth on C1 Compounds; Proceedings of the 5 Henk W. Verseveld,J. A. Duine Conference proceedings 1987 Martinus Nijhoff Publisher

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发表于 2025-3-21 19:22:51 | 显示全部楼层 |阅读模式
书目名称Microbial Growth on C1 Compounds
副标题Proceedings of the 5
编辑Henk W. Verseveld,J. A. Duine
视频video
图书封面Titlebook: Microbial Growth on C1 Compounds; Proceedings of the 5 Henk W. Verseveld,J. A. Duine Conference proceedings 1987 Martinus Nijhoff Publisher
描述The 5th International Symposium on Microbial Growth on C Compounds was held at the Biological 1 Center of the University of Groningen, Haren, The Netherlands, 11-16 August 1986. The meeting attracted well over 200 participants from 15 countries. This volume contains the formal presentations made at that time, which, because of the breadth of topics covered, were divided into seven sections of related papers. This meeting, under the chairmanship of Wim Harder, was both scientifically and socially very successful. This success cannot only be credited to the main presentations, but also to the well cared­ for 121 poster presentations, whereof the abstracts have been published separately. The series of Symposia will be continued in 1989, in the Federal Republic of Germany. We wish to acknowledge the invaluable help of Joke Daniels, Roberta Stroer-Schneider, Karin Uyldert, Hansje Bartelson and Josine van Verseveld-Stroer, who retyped the manuscripts resulting in a uniform presentation of these proceedings.
出版日期Conference proceedings 1987
关键词Assimilat; biology; carbon; development; ecology; gene; genetics; growth; metabolism; molecular biology; molec
版次1
doihttps://doi.org/10.1007/978-94-009-3539-6
isbn_softcover978-94-010-8082-8
isbn_ebook978-94-009-3539-6
copyrightMartinus Nijhoff Publishers, Dordrecht 1987
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C1-Utilizing Acetogenstion will mainly deal with the pathway of CO. reduction to acetate and with the key enzyme involved, namely the carbon monoxide dehydrogenase. The physiological role of this enzyme is discussed as well as some energetical aspects of the carbon monoxide dehydrogenase reaction. For recent reviews on the subject see [1–4].
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Metabolic and Molecular Regulation of the CO2-Assimilating Enzyme System in Aerobic Chemoautotrophsher plants and algae but also in most groups of photo-and chemosynthetic bacteria. The remaining two routes, the reductive tricarboxylic cycle [2, 3] and the newly discovered acetyl-CoA pathway [4] seem to be confined to certain groups of anaerobic bacteria.
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Autotrophic CO2 Fixation in Chemotrophic Anaerobic Bacteriabes have in common that they do not use the reactions of the reductive pentose phosphate cycle (Calvin cycle) for CO. assimilation. Rather, two alternative pathways were found. Reviews on this subject have recently appeared [5–10].
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Physiology and Biochemistry of Methylotrophic Bacteriae section on methylotrophic physiology and biochemistry, is regulation and control, the area in which in the view of the authors, the greatest progress has been made since the last symposium in this series. Table I summarises the important topics discussed herein and in the ensuing contributions.
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Intermediary Steps in Methanogenesis) [1,2,3] (Fig. 1). The pathway shown in Fig. 1 was established for ., but the presence of the typical C.-carriers in all species tested suggests that this CO. reduction route is common to all hydrogenotrophic methanogenic bacteria [4].
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