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通过比较基因组学分析……的遗传多样性和生物技术潜力。(原文中“of”后面缺少具体内容)

Analyzing the genetic diversity and biotechnological potential of by comparative genomics.

作者信息

Gumustop Ismail, Ortakci Fatih

机构信息

BioEngineering Department, Faculty of Life and Natural Sciences, Abdullah Gul University, Kayseri, Turkey.

出版信息

Front Microbiol. 2023 Jan 11;13:1074366. doi: 10.3389/fmicb.2022.1074366. eCollection 2022.

Abstract

is a lactic acid bacteria species widely exist in fermented dairy foods, cane juice, sourdough, kimchi, apple dumpster, caecum, and human adenoid. In the dairy industry, strains are usually found in mesophilic starter cultures with lactococci. This species plays a crucial role in the production of aroma compounds such as acetoin, acetaldehyde, and diacetyl, thus beneficially affecting dairy technology. We performed genomic characterization of 38 from diverse ecological niches to evaluate this species' genetic diversity and biotechnological potential. A mere ~12% of genes conserved across 38 genomes indicate that accessory genes are the driving force for genotypic distinction in this species. Seven main clades were formed with variable content surrounding mobile genetic elements, namely plasmids, transposable elements, IS elements, prophages, and CRISPR-Cas. All but three genomes carried CRISPR-Cas system. Furthermore, a type IIA CRISPR-Cas system was found in 80% of the CRISPR-Cas positive strains. AMBR10, CBA3630, and MGBC116435 were predicted to encode bacteriocins. Genes responsible for citrate metabolism were found in all but five strains belonging to cane juice, sourdough, and unknown origin. On the contrary, arabinose metabolism genes were only available in nine strains isolated from plant-related systems. We found that genomes show evolutionary adaptation to their ecological environment due to niche-specific carbon metabolism and forming closely related phylogenetic clades based on their isolation source. This species was found to be a reservoir of type IIA CRISPR-Cas system. The outcomes of this study provide a framework for uncovering the biotechnological potential of and its future development as starter or adjunct culture for dairy industry.

摘要

是一种广泛存在于发酵乳制品、甘蔗汁、酸面团、泡菜、苹果垃圾、盲肠和人类腺样体中的乳酸菌物种。在乳制品行业,该菌株通常存在于与乳球菌的嗜温发酵剂培养物中。该物种在乙偶姻、乙醛和双乙酰等香气化合物的生产中起着关键作用,从而对乳制品技术产生有益影响。我们对来自不同生态位的38个该物种进行了基因组表征,以评估其遗传多样性和生物技术潜力。在38个基因组中仅约12%的基因是保守的,这表明辅助基因是该物种基因型差异的驱动力。围绕移动遗传元件(即质粒、转座元件、插入序列、原噬菌体和CRISPR-Cas)形成了七个主要进化枝,其内容各不相同。除三个基因组外,所有基因组都携带CRISPR-Cas系统。此外,在80%的CRISPR-Cas阳性菌株中发现了IIA型CRISPR-Cas系统。预测AMBR10、CBA3630和MGBC116435编码细菌素。除了五株来自甘蔗汁、酸面团和未知来源的菌株外,在所有菌株中都发现了负责柠檬酸盐代谢的基因。相反,阿拉伯糖代谢基因仅在从植物相关系统中分离出的九株菌株中存在。我们发现,该物种的基因组由于特定生态位的碳代谢而显示出对其生态环境的进化适应性,并根据其分离来源形成密切相关的系统发育进化枝。该物种被发现是IIA型CRISPR-Cas系统的储存库。这项研究的结果为揭示该物种的生物技术潜力及其作为乳制品行业发酵剂或辅助培养物的未来发展提供了一个框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21cd/9875049/49da96007403/fmicb-13-1074366-g001.jpg

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