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Unique niche-specific adaptation of fructophilic lactic acid bacteria and proposal of three Apilactobacillus species as novel members of the group

机译:独特的利基特异性适应强烈的乳酸菌和三种ApiLactobacillus物种的提法作为本集团的新成员

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Fructophilic lactic acid bacteria (FLAB) found in D-fructose rich niches prefer D-fructose over D-glucose as a growth substrate. They need electron acceptors for growth on D-glucose. The organisms share carbohydrate metabolic properties. Fructobacillus spp., Apilactobacillus kunkeei, and Apilactobacillus apinorum are members of this unique group. Here we studied the fructophilic characteristics of recently described species Apilactobacillus micheneri, Apilactobacillus quenuiae, and Apilactobacillus timberlakei. The three species prefer D-fructose over D-glucose and only metabolize D-glucose in the presence of electron acceptors. The genomic characteristics of the three species, i.e. small genomes and thus a low number of coding DNA sequences, few genes involved in carbohydrate transport and metabolism, and partial deletion of adhE gene, are characteristic of FLAB. The three species thus are novel members of FLAB. Reduction of genes involved in carbohydrate transport and metabolism in accordance with reduction of genome size were the common characteristics of the family Lactobacillaceae, but FLAB markedly reduced the gene numbers more than other species in the family. Pan-genome analysis of genes involved in metabolism displayed a lack of specific carbohydrate metabolic pathways in FLAB, leading to a unique cluster separation. The present study expanded FLAB group. Fructose-rich environments have induced similar evolution in phylogenetically distant FLAB species. These are examples of convergent evolution of LAB.
机译:在D-果糖中发现的培养基乳酸菌(Flab)在D-葡萄糖中优选D-果糖作为生长基质。它们需要电子受体对D-葡萄糖的生长。生物体共享碳水化合物代谢性质。 Fructobacillus SPP,ApiLactobacillus kunkeei和ApiLactobacillus apinorum是这个独特的群体的成员。在这里,我们研究了最近描述的物种ApileActobacillus咪肠,ApiLactobacillus Quenuiae和ApiLactobacillus Timberlakei的培养特征。三种物种优选通过D-葡萄糖的D-果糖,并且仅在电子受体存在下代谢D-葡萄糖。三种物种的基因组特征,即小型基因组和少量编码DNA序列,少数参与碳水化合物运输和代谢的基因,以及腺基因的部分缺失是韧皮的特征。因此,这三种物种是韧皮的新成员。根据基因组大小的减少,减少参与碳水化合物运输和代谢的基因是家庭乳酸杆菌的常见特征,但突发率显着降低了基因数,而不是家庭中的其他物种。泛基因组分析参与代谢的基因展示了缺乏特定的碳水化合物代谢途径,导致独特的聚类分离。目前的研究扩展了韧带组。富含果糖的环境在系统源性遥远的松弛物种中诱导了类似的进化。这些是实验室的会聚演化的例子。

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