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嗜热菌和嗜冷菌与嗜温菌相比的基因组和代谢网络特性。

Genomic and metabolic network properties in thermophiles and psychrophiles compared to mesophiles.

作者信息

Alblooshi Amal Saeed, Nasar Muhammad Ibtisam, Rehman Syed Sabih Ur, Alam Mohammad Tauqeer

机构信息

Department of Biology, College of Sciences, United Arab Emirates University, Al Ain, Abu Dhabi, United Arab Emirates.

出版信息

Sci Rep. 2025 Jun 5;15(1):19757. doi: 10.1038/s41598-025-05030-z.

Abstract

Thermophiles and psychrophiles, adapted to extreme temperatures, thrive in hot and cold environments, respectively. Despite their importance to biotechnology and environmental research, their adaptation mechanisms remain unclear. We have performed a comparative analysis of the genomes and metabolic networks of these species. Psychrophiles were found to have larger genomes, more genes, bigger metabolic networks, fewer metabolite exchanges, and higher growth rates compared to thermophiles. These species show amino acid and codon preferences: thermophiles favor GC-rich codons, while psychrophiles prefer AT-rich ones. This aligns with their genomic G + C content, which is higher in thermophiles and linked to their growth. Compared to mesophiles, species which are living in normal conditions, extremophiles show significantly reduced metabolite exchange, with psychrophiles importing fewer nutrients and thermophiles exporting fewer metabolites. Both groups exhibit distinct active metabolic reactions enriched with unique and important processes. In summary, both thermophiles and psychrophiles exhibit unique genomic profiles and metabolic network properties that likely support their adaptation to extreme temperatures.

摘要

嗜热菌和嗜冷菌分别适应极端温度,在高温和低温环境中生长旺盛。尽管它们对生物技术和环境研究很重要,但其适应机制仍不清楚。我们对这些物种的基因组和代谢网络进行了比较分析。结果发现,与嗜热菌相比,嗜冷菌的基因组更大、基因更多、代谢网络更大、代谢物交换更少且生长速率更高。这些物种表现出氨基酸和密码子偏好:嗜热菌偏爱富含GC的密码子,而嗜冷菌则更喜欢富含AT的密码子。这与其基因组G+C含量相符,嗜热菌的G+C含量更高,且与它们的生长有关。与生活在正常条件下的嗜温菌相比,极端嗜热菌的代谢物交换显著减少,嗜冷菌摄入的营养物质较少,嗜热菌输出的代谢物较少。两组都表现出独特的活跃代谢反应,这些反应富含独特且重要的过程。总之,嗜热菌和嗜冷菌都表现出独特的基因组特征和代谢网络特性,这些特性可能支持它们对极端温度的适应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9858/12141708/ef0e086be4a9/41598_2025_5030_Fig1_HTML.jpg

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