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Comparative Genomic Study of Lactobacillus jensenii and the Newly Defined Lactobacillus mulieris Species Identifies Species-Specific Functionality

机译:乳酸杆菌的比较基因组研究和新定义的乳杆菌Mulieris物种鉴定了物种特异性功能

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Lactobacilli are dominant members of the “healthy” female urogenital microbiota. One of these species, Lactobacillus jensenii , is routinely identified in the urinary microbiota of women both with and without urinary tract symptoms. In March 2020, the new bacterial species Lactobacillus mulieris was introduced, and phylogenetic and average nucleotide identity analysis identified eight L. jensenii strains that should be classified as members of the L. mulieris species. This prompted our phylogenomic study of all publicly available L. jensenii and L. mulieris genome sequences. While there is little variation in the 16S rRNA gene sequences, the core genome shows a clear distinction between genomes of the two species. We find eight additional strains of the species L. mulieris among these genomes. Furthermore, one strain, currently classified as L. mulieris UMB7784, is distinct from both L. jensenii and L. mulieris strains. As part of our comparative genomic study, we also investigated the genetic content that distinguishes these two species. Unique to the L. jensenii genomes are several genes related to catabolism of disaccharides. In contrast, L. mulieris genomes encode several cell surface and secreted proteins that are not found within the L. jensenii genomes. These L. jensenii -specific and L. mulieris -specific loci provide insight into phenotypic differences of these two species. IMPORTANCE Lactobacillus species play a key role in the health of the urinary tract. For instance, Lactobacillus crispatus and L. jensenii have been found to inhibit uropathogenic Escherichia coli growth. While L. crispatus is typically found only within the microbiota of women without lower urinary tract symptoms (LUTS), L. jensenii has been found in the microbiota of women both with and without LUTS. With the recent introduction of the new species Lactobacillus mulieris , several strains of L. jensenii were reclassified as L. mulieris based upon gene marker and average nucleotide identity. We took a phylogenomic and comparative genomic approach to ascertain the genetic determinants of these two species. Looking at a larger data set, we identified additional L. mulieris strains, including one distinct from other members of the species— L. mulieris UMB7784. Furthermore, we identified unique loci in each species that may have clinical implications.
机译:乳杆菌是“健康”女性泌尿生物生物群的主导成员。其中一种物种乳酸杆菌林氏霉素,在妇女的尿微生物症中常规,无论是尿路症状的尿液。在2020年3月,介绍了新的细菌种类乳杆菌,并且系统发育和平均核苷酸同一性分析鉴定为八升JensenII菌株,其应被归类为L.Mulieris种的成员。这促使我们对所有公开的L. Jensenii和L.Mulieris基因组序列的系统核发学学研究。虽然16S RRNA基因序列几乎没有变化,但核心基因组显示了两种物种的基因组之间的明显区别。我们在这些基因组中发现八种额外的物种L. mulieris菌株。此外,一种目前被归类为L.Mulieris UMB7784的一种菌株,与L.Jensenii和L.Mulieris菌株不同。作为我们对比基因组研究的一部分,我们还研究了区分这两个物种的遗传含量。 L. Jensenii基因组的独特是与二糖的分解代谢有关的几个基因。相比之下,L.Mulieris基因组编码几个细胞表面和分泌的蛋白质,所述细胞表面并未发现在L. JensenII基因组内。这些L. Jensenii-特异性和L.Mulieris-特定的基因座提供了对这两个物种的表型差异的洞察力。重要性乳酸杆菌物种在泌尿道的健康方面发挥着关键作用。例如,已发现乳酸杆菌和L.Jensenii抑制尿羟妥硫脲大肠杆菌生长。虽然L. Crispatus通常仅在没有低尿路症状(LUT)的女性的微生物群内(LUTS),但在妇女的微生物群中发现了L.Jensenii,无论是没有LUT的情况。随着最近引入新物种乳酸杆菌Mulieris,基于基因标记物和平均核苷酸同一性,将几种L.Jensenii的菌株重新分类为L.Mulieris。我们采取了一种系统核发生物和比较基因组方法来确定这两个物种的遗传决定因素。看着更大的数据集,我们确定了额外的L. mulieris菌株,其中包括与物种的其他成员不同的人.Mulieris UMB7784。此外,我们在可能具有临床意义的每个物种中识别出独特的基因座。

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