Bioplastics Innovation Hub, Food Futures Institute, Murdoch University, Perth, WA, 6150, Australia.
School of Medical, Molecular and Forensic Sciences, Murdoch University, Perth, WA, 6150, Australia.
Sci Rep. 2024 Nov 6;14(1):27025. doi: 10.1038/s41598-024-78438-8.
The Haloferacaceae are a family of extremely halophilic archaea with many species producing enzymes and products beneficial for industrial biotechnology. They are, however, relatively under-characterised with regards to genetics and gene products. This study aims to use existing sequence data to highlight genetic diversity, create pangenomes for three genera, and provide secondary metabolite and pathway analysis. This will establish current knowledge and identify key gaps in research. We show that the Haloferacaceae have significant genetic diversity between genera, with numerous gene gain and loss events in key genera. It also found that the model genus, Haloferax, has relatively low identified secondary metabolites compared to other genera within the family. Additionally, this study has identified potential biotechnology targets for heterologous expression in model organisms.
盐杆菌科是一类极端嗜盐古菌的科,其中许多物种产生的酶和产物对工业生物技术有益。然而,就遗传学和基因产物而言,它们相对来说还没有得到充分的描述。本研究旨在利用现有序列数据来突出遗传多样性,为三个属创建泛基因组,并提供次生代谢物和途径分析。这将建立当前的知识,并确定研究中的关键差距。我们表明,盐杆菌科在属间具有显著的遗传多样性,在关键属中有许多基因获得和丢失事件。研究还发现,与家族内的其他属相比,模式属盐沼盐杆菌的鉴定次生代谢物相对较少。此外,本研究还确定了在模式生物中进行异源表达的潜在生物技术靶标。