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科氏菌科冷适应的基因组特征。

Genomic signatures of cold adaptation in the family Colwelliaceae.

机构信息

College of Fisheries and Ocean Sciences, University of Alaska Fairbanks, 2150 Koyukuk Drive, Fairbanks, Alaska, 99775, USA.

Chemistry Department, U.S. Naval Academy, 572M Holloway Road, Annapolis, MD, 21402-5026, USA.

出版信息

Extremophiles. 2024 Aug 23;28(3):39. doi: 10.1007/s00792-024-01356-0.

DOI:10.1007/s00792-024-01356-0
PMID:39177827
Abstract

Psychrophily is a phenotype describing microbial growth at low temperatures; elucidating the biomolecular and genomic adaptations necessary for survival in the cold is important for understanding life in extreme environments on Earth and in outer space. We used comparative genomics and temperature growth experiments of bacteria from the family Colwelliaceae to identify genomic factors correlated with optimal growth temperature (OGT). A phylogenomic analysis of 67 public and 39 newly sequenced strains revealed three main clades of Colwelliaceae. Temperature growth experiments revealed significant differences in mean OGT by clade, wherein strains of Colwelliaceae had similar growth rates at -1 °C but varied in their ability to tolerate 17 °C. Using amino acid compositional indices, a multiple linear regression model was constructed to predict the OGT of these organisms (RMSE 5.2 °C). Investigation of Colwelliaceae functional genes revealed a putative cold-adaptive gene cassette that was present in psychrophilic strains but absent in a closely related strain with a significantly higher OGT. This study also presents genomic evidence suggesting that the clade of Colwelliaceae containing Colwellia hornerae should be investigated as a new genus. These contributions offer key insights into the psychrophily phenotype and its underlying genomic foundation in the family Colwelliaceae.

摘要

嗜冷性是一种描述微生物在低温下生长的表型;阐明在寒冷环境中生存所需的生物分子和基因组适应性对于理解地球上和外太空中极端环境中的生命非常重要。我们使用比较基因组学和科氏菌科细菌的温度生长实验来确定与最适生长温度(OGT)相关的基因组因素。对 67 个公共菌株和 39 个新测序菌株的系统发育基因组分析揭示了科氏菌科的三个主要分支。温度生长实验表明,分支之间的平均 OGT 存在显著差异,其中科氏菌科的菌株在-1°C 时具有相似的生长速率,但在耐受 17°C 的能力上有所不同。使用氨基酸组成指数,构建了一个多元线性回归模型来预测这些生物体的 OGT(RMSE 5.2°C)。对科氏菌科功能基因的研究揭示了一个可能的冷适应基因盒,该基因盒存在于嗜冷菌株中,但在 OGT 明显较高的密切相关菌株中不存在。本研究还提供了基因组证据,表明包含科尔韦利亚霍纳氏菌的科氏菌科分支应作为一个新属进行调查。这些研究结果为科氏菌科的嗜冷性表型及其在科氏菌科中的潜在基因组基础提供了重要的见解。

相似文献

1
Genomic signatures of cold adaptation in the family Colwelliaceae.科氏菌科冷适应的基因组特征。
Extremophiles. 2024 Aug 23;28(3):39. doi: 10.1007/s00792-024-01356-0.
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Amino acid residues involved in cold adaptation of isocitrate lyase from a psychrophilic bacterium, Colwellia maris.嗜冷细菌海氏考氏菌异柠檬酸裂解酶冷适应过程中涉及的氨基酸残基
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本文引用的文献

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Distinctive gene and protein characteristics of extremely piezophilic Colwellia.极端嗜压菌 Colwellia 的独特基因和蛋白质特征。
BMC Genomics. 2020 Oct 6;21(1):692. doi: 10.1186/s12864-020-07102-y.
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Whole-Genome Sequencing Redefines Taxonomy.全基因组测序重新定义了分类学。
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Roles of Active-Site Aromatic Residues in Cold Adaptation of Esterase EstSP1.活性位点芳香族残基在酯酶EstSP1冷适应性中的作用
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Microevolution and Adaptive Strategy of Psychrophilic Species sp. nov. Isolated From Glaciers.从冰川分离出的嗜冷新物种的微观进化与适应策略
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Linezolid in Combination With Azoles Induced Synergistic Effects Against and Protected Against Experimental Candidiasis.利奈唑胺与唑类药物联合使用对实验性念珠菌病具有协同作用并提供保护。
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Appl Microbiol Biotechnol. 2019 Mar;103(6):2537-2549. doi: 10.1007/s00253-019-09631-3. Epub 2019 Feb 5.
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Predicting the optimal growth temperatures of prokaryotes using only genome derived features.仅使用基于基因组的特征预测原核生物的最佳生长温度。
Bioinformatics. 2019 Sep 15;35(18):3224-3231. doi: 10.1093/bioinformatics/btz059.
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Ice-binding proteins and the 'domain of unknown function' 3494 family.冰结合蛋白和“未知功能域”3494 家族。
FEBS J. 2019 Mar;286(5):855-873. doi: 10.1111/febs.14764. Epub 2019 Feb 9.
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Comparative Transcriptomics of Cold Growth and Adaptive Features of a Eury- and Steno-Psychrophile.广嗜冷菌和狭嗜冷菌冷生长及适应性特征的比较转录组学
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Pan-genome analyses of 24 strains re-emphasize the diversification of their functions yet evolutionary dynamics of metal-reducing pathway.对24株菌株的泛基因组分析再次强调了它们功能的多样性以及金属还原途径的进化动态。
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