Characterization of a Bifidobacterium animalis subsp. lactis reference strain based on ecology and transcriptomics.

IF 3.9 2区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Applied and Environmental Microbiology Pub Date : 2024-10-23 Epub Date: 2024-09-05 DOI:10.1128/aem.01080-24
Gabriele Andrea Lugli, Chiara Argentini, Chiara Tarracchini, Leonardo Mancabelli, Alice Viappiani, Rosaria Anzalone, Leonora Angelini, Giulia Alessandri, Giulia Longhi, Massimiliano G Bianchi, Giuseppe Taurino, Ovidio Bussolati, Christian Milani, Francesca Turroni, Marco Ventura
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Abstract

Bifidobacteria are recognized as health-promoting bacteria that reside in the human gut, helping in the digestion of fiber, preventing infections, and producing essential compounds like vitamins. To date, Bifidobacterium animalis subsp. lactis, together with Bifidobacterium adolescentis, Bifidobacterium bifidum, Bifidobacterium breve, and Bifidobacterium longum, represents one of the species that are used as probiotic bacteria. Despite the extensive and detailed scientific research conducted on this microbial taxon, the molecular mechanisms by which B. animalis subsp. lactis exerts health benefits to its host are still largely unknown. Thus, we dissected the genetic repertoire and phylogenetic relationship of 162 strains of B. animalis subsp. lactis to select a representative reference strain of this taxon suitable for investigating its interaction with the host. The B. animalis subsp. lactis PRL2013 strain, which was isolated by a mucosal sample of a healthy adult, was chosen as the reference of the monophyletic cluster of human origin and revealed a greater adhesion index than that observed for another B. animalis subsp. lactis strain used in the industry as a probiotic supplement. Transcriptomics analyses of PRL2013 strain, when exposed to human cell monolayers, revealed 291 significantly upregulated genes, among which were found genes predicted to encode extracellular structures that may directly interact with human cells, such as extracellular polymeric substances, wall teichoic acids, and pili.

Importance: To date, many Bifidobacterium animalis subsp. lactis strains have been isolated from human fecal samples. However, their presence in these samples does not necessarily suggest an ability to colonize the human gut. Furthermore, probiotics of non-human origin may not effectively interact with the gut epithelium, resulting in transient bacteria of the gut microbiota. In vitro experiments with human cells revealed that B. animalis subsp. lactis PRL2013, an autochthonous member of the human gut, shows colonization capability, leading to future applications in functional foods.

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基于生态学和转录组学的动物乳双歧杆菌亚种参考菌株表征。
双歧杆菌被认为是居住在人体肠道中的促进健康的细菌,有助于消化纤维、预防感染并产生维生素等必需化合物。迄今为止,动物双歧杆菌亚种(Bifidobacterium animalis subsp.lactis)与青春期双歧杆菌(Bifidobacterium adolescentis)、双歧杆菌(Bifidobacterium bifidum)、前双歧杆菌(Bifidobacterium breve)和长双歧杆菌(Bifidobacterium longum)一起,是被用作益生菌的菌种之一。尽管对这一微生物类群进行了广泛而细致的科学研究,但 B. animalis subsp.因此,我们对 162 株乳酸杆菌动物亚种的遗传基因和系统发育关系进行了剖析,以选出该类群中适合研究其与宿主相互作用的代表性参考菌株。从一个健康成年人的粘膜样本中分离出的乳酸杆菌亚种 PRL2013 菌株被选为人源单系群的参照菌株,该菌株的粘附指数高于另一株在工业上作为益生菌补充剂使用的乳酸杆菌亚种的粘附指数。当 PRL2013 菌株暴露于人体细胞单层时,其转录组学分析显示有 291 个基因显著上调,其中有一些基因被预测为编码可能与人体细胞直接相互作用的胞外结构,如胞外聚合物质、胞壁茶酸和纤毛:迄今为止,已从人类粪便样本中分离出许多动物双歧杆菌亚种。然而,它们在这些样本中的存在并不一定表明它们具有在人体肠道中定植的能力。此外,非人类来源的益生菌可能无法有效地与肠道上皮相互作用,从而导致肠道微生物群中出现短暂的细菌。用人体细胞进行的体外实验显示,人类肠道中的自生成员 B. animalis subsp.
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来源期刊
Applied and Environmental Microbiology
Applied and Environmental Microbiology 生物-生物工程与应用微生物
CiteScore
7.70
自引率
2.30%
发文量
730
审稿时长
1.9 months
期刊介绍: Applied and Environmental Microbiology (AEM) publishes papers that make significant contributions to (a) applied microbiology, including biotechnology, protein engineering, bioremediation, and food microbiology, (b) microbial ecology, including environmental, organismic, and genomic microbiology, and (c) interdisciplinary microbiology, including invertebrate microbiology, plant microbiology, aquatic microbiology, and geomicrobiology.
期刊最新文献
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