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首页> 外文期刊>BMC Microbiology >Genome sequence of Desulfitobacterium hafniense DCB-2, a Gram-positive anaerobe capable of dehalogenation and metal reduction
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Genome sequence of Desulfitobacterium hafniense DCB-2, a Gram-positive anaerobe capable of dehalogenation and metal reduction

机译:Hafniense脱硫杆菌DCB-2的基因组序列,它具有脱卤和还原金属的革兰氏阳性厌氧菌

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Background The genome of the Gram-positive, metal-reducing, dehalorespiring Desulfitobacterium hafniense DCB-2 was sequenced in order to gain insights into its metabolic capacities, adaptive physiology, and regulatory machineries, and to compare with that of Desulfitobacterium hafniense Y51, the phylogenetically closest strain among the species with a sequenced genome. Results The genome of Desulfitobacterium hafniense DCB-2 is composed of a 5,279,134-bp circular chromosome with 5,042 predicted genes. Genome content and parallel physiological studies support the cell's ability to fix N2 and CO2, form spores and biofilms, reduce metals, and use a variety of electron acceptors in respiration, including halogenated organic compounds. The genome contained seven reductive dehalogenase genes and four nitrogenase gene homologs but lacked the Nar respiratory nitrate reductase system. The D. hafniense DCB-2 genome contained genes for 43 RNA polymerase sigma factors including 27 sigma-24 subunits, 59 two-component signal transduction systems, and about 730 transporter proteins. In addition, it contained genes for 53 molybdopterin-binding oxidoreductases, 19 flavoprotein paralogs of the fumarate reductase, and many other FAD/FMN-binding oxidoreductases, proving the cell's versatility in both adaptive and reductive capacities. Together with the ability to form spores, the presence of the CO2-fixing Wood-Ljungdahl pathway and the genes associated with oxygen tolerance add flexibility to the cell's options for survival under stress. Conclusions D. hafniense DCB-2's genome contains genes consistent with its abilities for dehalogenation, metal reduction, N2 and CO2 fixation, anaerobic respiration, oxygen tolerance, spore formation, and biofilm formation which make this organism a potential candidate for bioremediation at contaminated sites.
机译:背景测序革兰氏阳性,金属还原,脱卤呼吸的哈弗脱硫杆菌DCB-2的基因组,以便深入了解其代谢能力,适应性生理学和调控机制,并与系统发育学上的哈弗脱硫细菌Y51进行比较具有测序基因组的物种中最接近的菌株。结果哈弗脱硫杆菌DCB-2的基因组由5,279,134-bp的环状染色体组成,具有5,042个预测基因。基因组含量和平行的生理学研究支持细胞固定N 2 和CO 2 ,形成孢子和生物膜,还原金属以及在呼吸中使用各种电子受体的能力,包括卤代有机化合物。该基因组包含七个还原性脱卤素酶基因和四个固氮酶基因同源物,但缺乏Nar呼吸硝酸盐还原酶系统。哈弗氏杆菌DCB-2基因组包含43个RNA聚合酶sigma因子的基因,包括27个sigma-24亚基,59个双组分信号转导系统和约730个转运蛋白。此外,它含有53种与钼蝶呤结合的氧化还原酶,19种富马酸酯还原酶的黄素蛋白旁系同源物以及许多其他FAD / FMN结合氧化还原酶的基因,证明了细胞在适应能力和还原能力方面的多功能性。结合形成孢子的能力,固定CO 2 的Wood-Ljungdahl途径以及与耐氧性相关的基因,为细胞在压力下的存活选择提供了灵活性。结论D. hafniense DCB-2的基因组包含与其脱卤,金属还原,N 2 和CO 2 固定,厌氧呼吸,耐氧性,孢子形成,以及生物膜的形成,使这种生物体成为在受污染地点进行生物修复的潜在候选者。

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