Deppenmeier Uwe, Ehrenreich Armin
Institut für Mikrobiologie und Biotechnologie der Rheinischen Friedrich-Wilhelms Universität Bonn, Bonn, Deutschland.
J Mol Microbiol Biotechnol. 2009;16(1-2):69-80. doi: 10.1159/000142895. Epub 2008 Oct 29.
Acetic acid bacteria are a distinct group of microorganisms within the family Acetobacteriaceae. They are characterized by their ability to incompletely oxidize a wide range of carbohydrates and alcohols. The great advantage of these reactions is that many substrates are regio- and stereoselectively oxidized. This feature is already exploited in several combined biotechnological-chemical procedures for the synthesis of sugar derivatives. Therefore, it is important to understand the basic concepts of this type of physiology to construct strains for improved or new oxidative fermentations. Based on the genome sequence of Gluconobacteroxydans, we will shed light on the central carbon metabolism, the composition of the respiratory chain and the analysis of uncharacterized oxidoreductases. In this context, the role of membrane-bound and -soluble dehydrogenases are of major importance in the process of incomplete oxidation. Other topics deal with the question of how these organisms generate energy and assimilate carbon. Furthermore, we will discuss how acetic acid bacteria thrive in their nutrient-rich environment and how they outcompete other microorganisms.
醋酸菌是醋酸杆菌科中一类独特的微生物。它们的特点是能够不完全氧化多种碳水化合物和醇类。这些反应的一大优势是许多底物能够进行区域选择性和立体选择性氧化。这一特性已在几种用于合成糖衍生物的联合生物技术 - 化学过程中得到应用。因此,了解这类生理学的基本概念对于构建用于改进或新型氧化发酵的菌株很重要。基于氧化葡萄糖酸杆菌的基因组序列,我们将阐明中心碳代谢、呼吸链的组成以及对未表征氧化还原酶的分析。在此背景下,膜结合脱氢酶和可溶性脱氢酶在不完全氧化过程中起着至关重要的作用。其他主题涉及这些生物体如何产生能量和同化碳的问题。此外,我们将讨论醋酸菌如何在营养丰富的环境中茁壮成长以及它们如何胜过其他微生物。