Comparative Genomics and In Silico Evaluation of Genes Related to the Probiotic Potential of Bifidobacterium breve 1101A

Juan Valdez-Baez, Francielly Morais Rodrigues da Costa, Anne Cybelle Pinto Gomide, Rodrigo Profeta, A. L. da Silva, T. Sousa, M. Viana, Rodrigo Bentes Kato, M. Americo, Andria dos Santos Freitas, R. Carvalho, B. Brenig, F. S. Martins, F. Aburjaile, V. Azevedo
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引用次数: 4

Abstract

Bifidobacterium breve is among the first microorganisms colonizing the intestinal tract in humans and is a predominant species in the gut microbiota of newborns and children. This bacterium is widely used in the probiotic industry due to its capacity to improve host health. The search for new targets with probiotic properties is an increasing trend with the help of next-generation sequencing as they facilitate the characterization of the bacterial features. B. breve 1101A was isolated from the faeces of healthy children in Brazil and therefore could play a protective role in the gut. To investigate the beneficial properties of this strain, the present study performed a comprehensive characterization of the genetic features involved in the bacterium resistance and adaptation to gastrointestinal conditions, production of nutrients, and immunomodulatory compounds. Furthermore, this study carried out the prediction of genomic elements (plasmids, prophages, CRISPR-Cas systems, insertion sequences, genomic islands, antibiotic resistance genes) to evaluate the safety of B. breve 1101A. A comparative genomics approach using 45 B. breve complete genomes based on pangenome and phylogenomic analysis was also performed to identify specific genes in B. breve 1101A. The prediction of genetic elements, possibly safety-related, did not detect plasmids, but only one incomplete prophage, two non-functional CRISPR systems, and seven genomic islands. Additionally, three antibiotic resistance genes were identified: ileS (resistance to mupirocin), rpoB, and erm(X). In the comparative genomic analysis, the pangenome was revealed to be open, and B. breve 1101A presented 63 unique genes associated with several processes, such as transmembrane transport, membrane components, DNA processes, and carbohydrate metabolism. In conclusion, B. breve 1101A is potentially safe and well-adapted for intestinal disorder therapeutics, although the role of its unique genetic repertoire needs further investigation.
短双歧杆菌1101A益生菌潜能相关基因的比较基因组学和计算机评价
短双歧杆菌是最早在人类肠道中定植的微生物之一,也是新生儿和儿童肠道微生物群中的优势物种。这种细菌因其改善宿主健康的能力而广泛应用于益生菌行业。在下一代测序的帮助下,寻找具有益生菌特性的新靶点是一个日益增长的趋势,因为它们有助于细菌特征的表征。短弧菌1101A是从巴西健康儿童的粪便中分离出来的,因此可以在肠道中发挥保护作用。为了研究该菌株的有益特性,本研究对涉及细菌抗性和胃肠道条件适应,营养物质生产和免疫调节化合物的遗传特征进行了全面表征。此外,本研究还对基因组元件(质粒、噬菌体、CRISPR-Cas系统、插入序列、基因组岛、抗生素耐药基因)进行了预测,以评价短螺旋藻1101A的安全性。采用基于泛基因组和系统基因组分析的比较基因组学方法,对45个短弧菌全基因组进行了分析,以确定短弧菌1101A的特异性基因。遗传因子的预测,可能与安全性有关,没有检测到质粒,但只有一个不完整的前噬菌体,两个无功能的CRISPR系统和七个基因组岛。此外,还鉴定出三种抗生素耐药基因:ileS(对莫匹罗星耐药)、rpoB和erm(X)。在比较基因组分析中,揭示了泛基因组是开放的,短芽孢杆菌1101A具有63个独特的基因,这些基因与跨膜运输、膜组分、DNA过程和碳水化合物代谢等过程相关。总之,短芽孢杆菌1101A可能是安全的,并且很好地适应于肠道疾病的治疗,尽管其独特的遗传库的作用需要进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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