Genomics-based identification of a cold adapted clade in Deinococcus.

IF 4.4 1区 生物学 Q1 BIOLOGY
Liang Shen, Jiayu Hu, Luyao Zhang, Zirui Wu, Liangzhong Chen, Namita Paudel Adhikari, Mukan Ji, Shaoxing Chen, Fang Peng, Yongqin Liu
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引用次数: 0

Abstract

Background: Microbes in the cold polar and alpine environments play a critical role in feedbacks that amplify the effects of climate change. Defining the cold adapted ecotype is one of the prerequisites for understanding the response of polar and alpine microbes to climate change.

Results: Here, we analysed 85 high-quality, de-duplicated genomes of Deinococcus, which can survive in a variety of harsh environments. By leveraging genomic and phenotypic traits with reverse ecology, we defined a cold adapted clade from eight Deinococcus strains isolated from Arctic, Antarctic and high alpine environments. Genome-wide optimization in amino acid composition and regulation and signalling enable the cold adapted clade to produce CO2 from organic matter and boost the bioavailability of mineral nitrogen.

Conclusions: Based primarily on in silico genomic analysis, we defined a potential cold adapted clade in Deinococcus and provided an updated view of the genomic traits and metabolic potential of Deinococcus. Our study would facilitate the understanding of microbial processes in the cold polar and alpine environments.

基于基因组学鉴定脱氧核糖核酸(Deinococcus)中适应寒冷的支系。
背景:极地和高山寒冷环境中的微生物在放大气候变化影响的反馈中发挥着关键作用。确定适应寒冷的生态型是了解极地和高山微生物对气候变化反应的先决条件之一:在这里,我们分析了 85 个高质量、去重复的 Deinococcus 基因组,它们可以在各种恶劣环境中生存。通过利用反向生态学的基因组和表型特征,我们从从北极、南极和高寒环境中分离出的8个Deinococcus菌株中定义了一个适应寒冷的支系。氨基酸组成、调控和信号传导方面的全基因组优化使冷适应支系能够从有机物中产生二氧化碳,并提高矿物氮的生物利用率:我们主要基于硅基因组学分析,定义了Deinococcus中一个潜在的寒冷适应支系,并提供了关于Deinococcus基因组特征和代谢潜力的最新观点。我们的研究将有助于了解寒冷极地和高山环境中的微生物过程。
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来源期刊
BMC Biology
BMC Biology 生物-生物学
CiteScore
7.80
自引率
1.90%
发文量
260
审稿时长
3 months
期刊介绍: BMC Biology is a broad scope journal covering all areas of biology. Our content includes research articles, new methods and tools. BMC Biology also publishes reviews, Q&A, and commentaries.
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