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高加索磁螺菌新种、黑海磁螺菌新种和莫斯科磁螺菌新种,从俄罗斯欧洲部分三个不同地理位置分离出的淡水趋磁细菌。

Magnetospirillum caucaseum sp. nov., Magnetospirillum marisnigri sp. nov. and Magnetospirillum moscoviense sp. nov., freshwater magnetotactic bacteria isolated from three distinct geographical locations in European Russia.

作者信息

Dziuba Marina, Koziaeva Veronika, Grouzdev Denis, Burganskaya Ekaterina, Baslerov Roman, Kolganova Tatjana, Chernyadyev Alexander, Osipov Georgy, Andrianova Ekaterina, Gorlenko Vladimir, Kuznetsov Boris

机构信息

Institute of Bioengineering, Federal Research Center of Biotechnology of the Russian Academy of Sciences,Leninsky Ave 33, bld. 2, Moscow 119071,Russia.

Education and Research Center Nanotechnology, Vyatka State University,Moscovskaya str. 36, Kirov 610000,Russia.

出版信息

Int J Syst Evol Microbiol. 2016 May;66(5):2069-2077. doi: 10.1099/ijsem.0.000994. Epub 2016 Feb 25.

Abstract

Three strains of helical, magnetotactic bacteria, SO-1T, SP-1T and BB-1T, were isolated from freshwater sediments collected from three distinct locations in European Russia. Phylogenetic analysis showed that the strains belong to the genus Magnetospirillum. Strains SO-1T and SP-1T showed the highest 16S rRNA gene sequence similarity to Magnetospirillum magnetotacticum MS-1T (99.3 and 98.1 %, respectively), and strain BB-1T with Magnetospirillum gryphiswaldense MSR-1T (97.3 %). The tree based on concatenated deduced amino acid sequences of the MamA, B, K, M, O, P, Q and T proteins, which are involved in magnetosome formation, was congruent with the tree based on 16S rRNA gene sequences. The genomic DNA G+C contents of strains SO-1T, SP-1T and BB-1T were 65.9, 63.0 and 65.2 mol%, respectively. As major fatty acids, C18 : 1ω9, C16 : 1ω7c, C16 : 0 and C18 : 0 were detected. DNA-DNA hybridization values between the novel strains and their closest relatives in the genus Magnetospirillum were less than 51.7 ± 2.3 %. In contrast to M. magnetotacticum MS-1T, the strains could utilize butyrate and propionate; strains SO-1T and BB-1T could also utilize glycerol. Strain SP-1T showed strictly microaerophilic growth, whereas strains SO-1T and BB-1T were more tolerant of oxygen. The results of DNA-DNA hybridization and physiological tests allowed genotypic and phenotypic differentiation of the strains from each other as well as from the two species of Magnetospirillum with validly published names. Therefore, the strains represent novel species, for which we propose the names Magnetospirillum caucaseum sp. nov. (type strain SO-1T = DSM 28995T = VKM B-2936T), Magnetospirillum marisnigri sp. nov. (type strain SP-1T = DSM 29006T = VKM B-2938T) and Magnetospirillum moscoviense sp. nov. (type strain BB-1T = DSM 29455T = VKM B-2939T).

摘要

从俄罗斯欧洲部分三个不同地点采集的淡水沉积物中分离出三株螺旋状趋磁细菌,分别为SO-1T、SP-1T和BB-1T。系统发育分析表明,这些菌株属于嗜磁螺菌属。菌株SO-1T和SP-1T与趋磁嗜磁螺菌MS-1T的16S rRNA基因序列相似度最高(分别为99.3%和98.1%),而菌株BB-1T与格氏嗜磁螺菌MSR-1T的相似度为97.3%。基于参与磁小体形成的MamA、B、K、M、O、P、Q和T蛋白推导的串联氨基酸序列构建的树与基于16S rRNA基因序列构建的树一致。菌株SO-1T、SP-1T和BB-1T的基因组DNA G+C含量分别为65.9、63.0和65.2 mol%。检测到的主要脂肪酸为C18 : 1ω9、C16 : 1ω7c、C16 : 0和C18 : 0。新菌株与其在嗜磁螺菌属中最接近的亲缘种之间的DNA-DNA杂交值小于51.7 ± 2.3%。与趋磁嗜磁螺菌MS-1T不同,这些菌株可以利用丁酸盐和丙酸盐;菌株SO-1T和BB-1T还可以利用甘油。菌株SP-1T表现出严格的微需氧生长,而菌株SO-1T和BB-1T对氧气的耐受性更强。DNA-DNA杂交和生理测试结果使得这些菌株之间以及与已有效发表名称的两种嗜磁螺菌在基因型和表型上得以区分。因此,这些菌株代表了新物种,我们提议将其命名为高加索嗜磁螺菌(Magnetospirillum caucaseum)新种(模式菌株SO-1T = DSM 28995T = VKM B-2936T)、黑海嗜磁螺菌(Magnetospirillum marisnigri)新种(模式菌株SP-1T = DSM 29006T = VKM B-2938T)和莫斯科嗜磁螺菌(Magnetospirillum moscoviense)新种(模式菌株BB-1T = DSM 29455T = VKM B-29

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