Comparative genomic analysis of a novel heat-tolerant and euryhaline strain of unicellular marine cyanobacterium Cyanobacterium sp. DS4 from a high-temperature lagoon.

IF 4 2区 生物学 Q2 MICROBIOLOGY
Ching-Nen Nathan Chen, Keng-Min Lin, Yu-Chen Lin, Hsin-Ying Chang, Tze Ching Yong, Yi-Fang Chiu, Chih-Horng Kuo, Hsiu-An Chu
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引用次数: 0

Abstract

Background: Cyanobacteria have diversified through their long evolutionary history and occupy a wide range of environments on Earth. To advance our understanding of their adaptation mechanisms in extreme environments, we performed stress tolerance characterizations, whole genome sequencing, and comparative genomic analyses of a novel heat-tolerant and euryhaline strain of the unicellular cyanobacterium Cyanobacterium sp. Dongsha4 (DS4). This strain was isolated from a lagoon on Dongsha Island in the South China Sea, a habitat with fluctuations in temperature, salinity, light intensity, and nutrient supply.

Results: DS4 cells can tolerate long-term high-temperature up to 50 ℃ and salinity from 0 to 6.6%, which is similar to the results previously obtained for Cyanobacterium aponinum. In contrast, most mesophilic cyanobacteria cannot survive under these extreme conditions. Based on the 16S rRNA gene phylogeny, DS4 is most closely related to Cyanobacterium sp. NBRC102756 isolated from Iwojima Island, Japan, and Cyanobacterium sp. MCCB114 isolated from Vypeen Island, India. For comparison with strains that have genomic information available, DS4 is most similar to Cyanobacterium aponinum strain PCC10605 (PCC10605), sharing 81.7% of the genomic segments and 92.9% average nucleotide identity (ANI). Gene content comparisons identified multiple distinct features of DS4. Unlike related strains, DS4 possesses the genes necessary for nitrogen fixation. Other notable genes include those involved in photosynthesis, central metabolisms, cyanobacterial starch metabolisms, stress tolerances, and biosynthesis of novel secondary metabolites.

Conclusions: These findings promote our understanding of the physiology, ecology, evolution, and stress tolerance mechanisms of cyanobacteria. The information is valuable for future functional studies and biotechnology applications of heat-tolerant and euryhaline marine cyanobacteria.

高温泻湖单细胞海洋蓝藻(cyanobacterium sp. DS4)耐高温和广盐性新菌株的比较基因组分析。
背景:蓝藻在其漫长的进化历史中已经多样化,并在地球上占据了广泛的环境。为了进一步了解它们在极端环境下的适应机制,我们对单细胞蓝藻蓝藻东沙4 (cyanobacterium sp. Dongsha4, DS4)进行了胁迫耐受性表征、全基因组测序和比较基因组分析。该菌株分离自南海东沙岛泻湖,这是一个温度、盐度、光照强度和营养供应波动较大的栖息地。结果:DS4细胞可以耐受50℃以下的长期高温和0 ~ 6.6%的盐度,与之前对蓝细菌aponinum的结果相似。相比之下,大多数嗜中温蓝藻无法在这些极端条件下生存。基于16S rRNA基因的系统发育,DS4与来自日本Iwojima岛的Cyanobacterium sp. NBRC102756和来自印度Vypeen岛的Cyanobacterium sp. MCCB114亲缘关系最近。与已有基因组信息的菌株相比,DS4与蓝细菌aponinum菌株PCC10605 (PCC10605)最相似,具有81.7%的基因组片段和92.9%的平均核苷酸同源性(ANI)。基因含量比较确定了DS4的多个不同特征。与相关菌株不同,DS4具有固氮所需的基因。其他值得注意的基因包括参与光合作用、中心代谢、蓝藻淀粉代谢、胁迫耐受性和新型次生代谢物的生物合成的基因。结论:这些发现促进了我们对蓝藻的生理、生态、进化和耐胁迫机制的理解。这些信息对今后耐热和泛盐海洋蓝藻的功能研究和生物技术应用具有重要价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BMC Microbiology
BMC Microbiology 生物-微生物学
CiteScore
7.20
自引率
0.00%
发文量
280
审稿时长
3 months
期刊介绍: BMC Microbiology is an open access, peer-reviewed journal that considers articles on analytical and functional studies of prokaryotic and eukaryotic microorganisms, viruses and small parasites, as well as host and therapeutic responses to them and their interaction with the environment.
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