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首页> 外文期刊>Research in Microbiology >Introduction of bifunctional alcohol/acetaldehyde dehydrogenase gene (adhE) in Fructobacillus fructosus settled its fructophilic characteristics
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Introduction of bifunctional alcohol/acetaldehyde dehydrogenase gene (adhE) in Fructobacillus fructosus settled its fructophilic characteristics

机译:在玻璃甘蓝果果果果冻中引入双官能醇/乙醛脱氢酶基因(Adhe)沉降其露出博物目特征

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摘要

Fructophilic lactic acid bacteria (FLAB) are unique in the sense that they prefer D-fructose over D-glucose as main carbon source. If D-glucose is metabolised, electron acceptors are required and significant levels of acetate are produced. These bacteria are found in environments rich in D-fructose, such as flowers, fruits and the gastrointestinal tract of insects feeding on fructose-rich diets. Fructobacillus spp. are representatives of this unique group, and their fructophilic characteristics are well conserved. In this study, the bifunctional alcohol/acetaldehyde dehydrogenase gene (adhE) from Leuconostoc mesenteroides NRIC 1541(T) was cloned into a plasmid and transferred to Fructobacillus fructosus NRIC 1058(T). Differences in biochemical characteristics between the parental strain (NRIC 1058(T)) and the transformants were compared. Strain 1-11, transformed with the adhE gene, did not show any fructophilic characteristics, and the strain grew well on D-glucose without external electron acceptors. Accumulation of acetic acid, which was originally seen in the parental strain, was replaced with ethanol in the transformed strain. Furthermore, in silico analyses revealed that strain NRIC 1058(T) lacked the sugar transporters/permeases and enzymes required for conversion of metabolic intermediates. This may be the reason for poor carbohydrate metabolic properties recorded for FLAB. (C) 2018 Institut Pasteur. Published by Elsevier Masson SAS. All rights reserved.
机译:感觉中,乳腺乳酸菌(Flab)是独一无二的,因为它们更喜欢通过D-葡萄糖作为主要碳源的D-果糖。如果代谢D-葡萄糖,则需要电子受体,并产生显着水平的乙酸盐。这些细菌在富含D-果糖的环境中被发现,例如鲜花,水果和昆虫的胃肠道饲喂富果糖的饮食。 Fructobacillus spp。是这个独特的群体的代表,他们的培养特征很好。在该研究中,将来自Leuconostoc的双官能醇/乙醛脱氢酶基因(adhe)克隆到质粒中并转移到Fructobacillus Nic 1058(t)中。比较了亲本菌株(Nr ram 1058(T))与转化体之间的生化特性的差异。用Adhe基因转化的菌株1-11没有显示出任何骨肉毛细特性,并且在没有外部电子受体的情况下对D-葡萄糖的菌株很好。最初在亲本菌株中观察到的乙酸的积累被转化的菌株中的乙醇替换。此外,在硅分析中,揭示菌株NRIR 1058(T)缺乏糖转运蛋白/允许和转化代谢中间体所需的酶。这可能是记录的碳水化合物代谢特性差的原因。 (c)2018年Institut Pasteur。由Elsevier Masson SA出版。版权所有。

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