Suppr超能文献

鉴定和全基因组分析为新型耐冷不动杆菌菌株的遗传多样性和生物技术潜力提供了新的见解。

Identification and genome-wide analysis provide insights into the genetic diversity and biotechnological potentials of novel cold-adapted Acinetobacter strain.

机构信息

Department of Biosciences, COMSATS University Islamabad, Sahiwal Campus, Sahiwal, Pakistan.

Health Administration Department, College of Business Administration, King Saud University, Riyadh, Saudi Arabia.

出版信息

Extremophiles. 2023 Jun 24;27(2):14. doi: 10.1007/s00792-023-01301-7.

Abstract

Extreme cold environments, such as polar regions or high-altitude mountains, are known for their challenging conditions including low temperatures, high salinity, and limited nutrient availability. Microbes that thrive in these environments have evolved specialized strategies to survive and function under such harsh conditions. The study aims to identify, sequence the genome, perform genome assembly, and conduct a comparative genome-wide analysis of Acinetobacter sp. strain P1, which was isolated from the Batura glacier regions of Pakistan. A basic local alignment search tool of NCBI using 16 s RNA gene sequence confirmed the strain Acinetobacter following phylogenetic analysis revealed that strain P1 clustered with Acinetobacter sp. strain AcBz01. The high-throughput Genome sequencing was done by the NovaSeq 6000 sequencing system following de novo genome assembly reported 23 contigs, a genome size of 3,732,502 bp containing approximately 3489 genes and 63 RNAs (60 tRNA, 3 rRNA). The comparative genome analysis revealed that Acinetobacter sp. strain P1 exhibited the highest homology with the Acinetobacter baumannii ATCC 17978 genome and encompassed 1668 indispensable genes, 1280 conserved genes 1821 specific genes suggesting high genomic plasticity and evolutionary diversity. The genes with functional assignments include exopolysaccharide phosphotransferase enzyme, cold-shock proteins, T6SS, membrane modifications, antibiotic resistance, and set of genes related to a wide range of metabolic characteristics such as exopolysaccharides were also present. Moreover, the structural prediction analysis of EPS proteins reveals that structural flexibility allows for conformational modifications during catalysis, which boosts or increases the catalytic effectiveness at lower temperatures. Overall, the identification of Acinetobacter, a cold-adapted bacterium, offers promising applications in bioremediation, enzyme production, food preservation, pharmaceutical development, and astrobiology. Further research and exploration of these microorganisms can unlock their full biotechnological potential and contribute to various industries and scientific endeavors.

摘要

极端寒冷的环境,如极地或高海拔山区,以其恶劣的条件而闻名,包括低温、高盐度和有限的营养可用性。在这些环境中茁壮成长的微生物已经进化出专门的策略来在如此恶劣的条件下生存和发挥功能。本研究旨在从巴基斯坦巴图拉冰川地区分离的不动杆菌 P1 菌株中进行鉴定、基因组测序、基因组组装,并进行全基因组比较分析。使用 NCBI 的基本局部比对搜索工具(BLAST)对 16S RNA 基因序列进行分析,确认该菌株为不动杆菌。通过系统发育分析发现,P1 菌株与不动杆菌 AcBz01 菌株聚类。使用 NovaSeq 6000 测序系统进行高通量基因组测序,随后进行从头组装,报告了 23 个 contigs,基因组大小为 3732502bp,包含大约 3489 个基因和 63 个 RNA(60 个 tRNA、3 个 rRNA)。比较基因组分析表明,不动杆菌 P1 菌株与鲍曼不动杆菌 ATCC 17978 基因组具有最高的同源性,包含 1668 个必需基因、1280 个保守基因和 1821 个特异性基因,表明其具有较高的基因组可塑性和进化多样性。具有功能分配的基因包括胞外多糖磷酸转移酶酶、冷休克蛋白、T6SS、膜修饰、抗生素抗性以及与广泛代谢特征相关的一组基因,如胞外多糖。此外,EPS 蛋白的结构预测分析表明,结构灵活性允许在催化过程中进行构象修饰,从而在较低温度下提高或增加催化效率。总的来说,冷适应细菌不动杆菌的鉴定为生物修复、酶生产、食品保鲜、药物开发和天体生物学等领域提供了有前景的应用。进一步研究和探索这些微生物可以挖掘它们的全部生物技术潜力,并为各个行业和科学努力做出贡献。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验