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来自纳米比亚的新型 Thermosynechococcaceae 物种的高质量基因组及其在高温下的蛋白质表达模式的特征。

High-quality genome of a novel Thermosynechococcaceae species from Namibia and characterization of its protein expression patterns at elevated temperatures.

机构信息

Department of Chemistry Werner Siemens-Chair of Synthetic Biotechnology, TUM School of Natural Sciences, Technical University of Munich, Garching, Germany.

Department of Integrative Biotechnology, University of Applied Sciences Kaiserslautern, Pirmasens, Germany.

出版信息

Microbiologyopen. 2024 Oct;13(5):e70000. doi: 10.1002/mbo3.70000.

Abstract

Thermophilic cyanobacteria thrive in extreme environments, making their thermoresistant enzymes valuable for industrial applications. Common habitats include hot springs, which act as evolutionary accelerators for speciation due to geographical isolation. The family Thermosynechococcaceae comprises thermophilic cyanobacteria known for their ability to thrive in high-temperature environments. These bacteria are notable for their photosynthetic capabilities, significantly contributing to primary production in extreme habitats. Members of Thermosynechococcaceae exhibit unique adaptations that allow them to perform photosynthesis efficiently at elevated temperatures, making them subjects of interest for studies on microbial ecology, evolution, and potential biotechnological applications. In this study, the genome of a thermophilic cyanobacterium, isolated from a hot spring near Okahandja in Namibia, was sequenced using a PacBio Sequel IIe long-read platform. Cultivations were performed at elevated temperatures of 40, 50, and 55°C, followed by proteome analyses based on the annotated genome. Phylogenetic investigations, informed by the 16S rRNA gene and aligned nucleotide identity (ANI), suggest that the novel cyanobacterium is a member of the family Thermosynechococcaceae. Furthermore, the new species was assigned to a separate branch, potentially representing a novel genus. Whole-genome alignments supported this finding, revealing few conserved regions and multiple genetic rearrangement events. Additionally, 129 proteins were identified as differentially expressed in a temperature-dependent manner. The results of this study broaden our understanding of cyanobacterial adaptation to extreme environments, providing a novel high-quality genome of Thermosynechococcaceae cyanobacterium sp. Okahandja and several promising candidate proteins for expression and characterization studies.

摘要

嗜热蓝藻在极端环境中茁壮成长,其耐热酶在工业应用中具有很高的价值。常见的栖息地包括温泉,由于地理隔离,温泉是物种形成的进化加速器。Thermosynechococcaceae 科包含嗜热蓝藻,它们以在高温环境中茁壮成长而闻名。这些细菌以其光合作用能力而闻名,对极端栖息地的初级生产有重要贡献。Thermosynechococcaceae 科的成员具有独特的适应性,使它们能够在高温下高效地进行光合作用,这使它们成为微生物生态学、进化和潜在生物技术应用研究的对象。在这项研究中,使用 PacBio Sequel IIe 长读长平台对从纳米比亚奥卡汉贾附近温泉中分离出的一株嗜热蓝藻的基因组进行了测序。在 40、50 和 55°C 的高温下进行培养,然后根据注释基因组进行蛋白质组分析。基于 16S rRNA 基因和对齐核苷酸同一性 (ANI) 的系统发育研究表明,新型蓝藻是 Thermosynechococcaceae 科的成员。此外,该新物种被分配到一个单独的分支,可能代表一个新的属。全基因组比对支持了这一发现,显示出很少的保守区域和多个基因重排事件。此外,有 129 种蛋白质被鉴定为温度依赖性差异表达。这项研究的结果拓宽了我们对蓝藻适应极端环境的理解,提供了一个新型 Thermosynechococcaceae 蓝藻属奥卡汉贾的高质量基因组,以及几个有前途的候选蛋白,可用于表达和表征研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8a2/11450739/bf425eef90d3/MBO3-13-e70000-g006.jpg

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