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Genomic characterization of a fructophilic bee symbiont Lactobacillus kunkeei reveals its niche-specific adaptation

机译:果糖蜂共生菌乳杆菌的基因组表征揭示了其利基特异性适应性

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Lactobacillus kunkeei is classified as a sole obligate fructophilic lactic acid bacterium that is found in fructose-rich niches, including the guts of honeybees. The species is differentiated from other lactobacilli based on its poor growth with glucose, enhanced growth in the presence of oxygen and other electron acceptors, and production of high concentrations of acetate from the metabolism of glucose. These characteristics are similar to phylogenetically distant Fructobacillus spp. In the present study, the genomic structure of L. kunkeei was characterized by using 16 different strains, and it had significantly less genes and smaller genomes when compared with other lactobacilli. Functional gene classification revealed that L. kunkeei had lost genes specifically involved in carbohydrate transport and metabolism. The species also lacked most of the genes for respiration, although growth was enhanced in the presence of oxygen. The adhE gene of L. kunkeei, encoding a bifunctional alcohol dehydrogenase (ADH)/aldehyde dehydrogenase (ALDH) protein, lacked the part encoding the ADH domain, which is reported here for the first time in lactic acid bacteria. The deletion resulted in the lack of ADH activity, implying a requirement for electron acceptors in glucose assimilation. These results clearly indicated that L kunkeei had undergone a specific reductive evolution in order to adapt to fructose-rich environments. The reduction characteristics were similar to those of Fructobacillus spp., but distinct from other lactobacilli with small genomes, such as Lactobacillus gasseri and Lactobacillus vaginalis. Fructose-richness thus induced an environment-specific gene reduction in phylogenetically distant microorganisms. (C) 2016 Elsevier GmbH. All rights reserved.
机译:昆克乳杆菌被分类为唯一的专性果糖乳酸菌,存在于富含果糖的壁ni中,包括蜜蜂的内脏。该物种与其他乳酸杆菌的区别在于其在葡萄糖中的生长较差,在氧气和其他电子受体存在下的生长增强以及葡萄糖代谢产生高浓度的乙酸盐。这些特征类似于在系统发育上较远的Fructobacillus spp。在本研究中,通过使用16种不同的菌株表征了L. kunkeei的基因组结构,与其他乳杆菌相比,它具有明显更少的基因和更小的基因组。功能基因分类显示,昆克乳杆菌丢失了专门参与碳水化合物运输和代谢的基因。该物种也缺乏呼吸的大多数基因,尽管在有氧条件下生长会增强。编码双功能醇脱氢酶(ADH)/醛脱氢酶(ALDH)蛋白质的昆克乳杆菌adhE基因缺少编码ADH结构域的部分,这在乳酸菌中首次报道。该缺失导致缺乏ADH活性,这意味着在葡萄糖同化中需要电子受体。这些结果清楚地表明,为了适应富含果糖的环境,L。Kunkeei经历了特定的还原性进化。还原特性类似于果糖杆菌属,但不同于其他具有较小基因组的乳杆菌,如加氏乳杆菌和阴道乳酸杆菌。因此,富含果糖的系统发育远的微生物引起了环境特异性基因的减少。 (C)2016 Elsevier GmbH。版权所有。

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