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模式菌株HBR26的基因组草图序列及新种描述

Draft genome sequence of type strain HBR26 and description of sp. nov.

作者信息

Aserse Aregu Amsalu, Woyke Tanja, Kyrpides Nikos C, Whitman William B, Lindström Kristina

机构信息

Department of Environmental Sciences, University of Helsinki, Viikinkaari 2a, Helsinki, Finland.

DOE Joint Genome Institute, Walnut Creek, USA.

出版信息

Stand Genomic Sci. 2017 Jan 26;12:14. doi: 10.1186/s40793-017-0220-z. eCollection 2017.

Abstract

sp. nov. is a newly proposed species within the genus . This species includes six rhizobial strains; which were isolated from root nodules of the legume plant growing in soils of Ethiopia. The species fixes nitrogen effectively in symbiosis with the host plant and is composed of aerobic, Gram-negative staining, rod-shaped bacteria. The genome of type strain HBR26 of sp. nov. was one of the rhizobial genomes sequenced as a part of the DOE JGI 2014 Genomic Encyclopedia project designed for soil and plant-associated and newly described type strains. The genome sequence is arranged in 62 scaffolds and consists of 6,557,588 bp length, with a 61% G + C content and 6221 protein-coding and 86 RNAs genes. The genome of HBR26 contains genes (plasmid replication genes) homologous to the genes found in five different CFN42 plasmids, suggesting that HBR26 may have five additional replicons other than the chromosome. In the genome of HBR26, the nodulation genes and are located in the same module, and organized in a similar way as genes found in the genome of other known common bean-nodulating rhizobial species. gene is found in a different scaffold, but it is also very similar to genes of other bean-nodulating rhizobial strains. Though HBR26 is distinct on the phylogenetic tree and based on ANI analysis (the highest value 90.2% ANI with CFN42) from other bean-nodulating species, these genes and most nitrogen-fixing genes found in the genome of HBR26 share high identity with the corresponding genes of known bean-nodulating rhizobial species (96-100% identity). This suggests that symbiotic genes might be shared between bean-nodulating rhizobia through horizontal gene transfer. sp. nov. was grouped into the genus but was distinct from all recognized species of that genus by phylogenetic analyses of combined sequences of the housekeeping genes and . The closest reference type strains for HBR26 were CFN42 (94% similarity of the combined and sequences) and BLR175 (93%). Genomic ANI calculation based on protein-coding genes also revealed that the closest reference strains were BLR175 and CFN42 with ANI values 91.8 and 90.2%, respectively. Nevertheless, the ANI values between HBR26 and BLR175 or CFN42 are far lower than the cutoff value of ANI (> = 96%) between strains in the same species, confirming that HBR26 belongs to a novel species. Thus, on the basis of phylogenetic, comparative genomic analyses and ANI results, we formally propose the creation of sp. nov. with strain HBR26 (=HAMBI 3550=LMG 29711) as the type strain. The genome assembly and annotation data is deposited in the DOE JGI portal and also available at European Nucleotide Archive under accession numbers FMAJ01000001-FMAJ01000062.

摘要

新种是该属内新提出的一个物种。该物种包含六个根瘤菌菌株,它们是从生长在埃塞俄比亚土壤中的豆科植物的根瘤中分离出来的。该物种与宿主植物共生时能有效固氮,由需氧、革兰氏阴性染色的杆状细菌组成。新种的模式菌株HBR26的基因组是作为美国能源部联合基因组研究所2014年土壤和植物相关及新描述模式菌株基因组百科全书项目的一部分进行测序的根瘤菌基因组之一。基因组序列排列在62个支架中,长度为6,557,588 bp,G + C含量为61%,有6221个蛋白质编码基因和86个RNA基因。HBR26的基因组包含与在五个不同的CFN42质粒中发现的基因同源的基因(质粒复制基因),这表明HBR26除染色体外可能还有五个额外的复制子。在HBR26的基因组中,结瘤基因和位于同一模块中,其组织方式与在其他已知的菜豆结瘤根瘤菌物种基因组中发现的基因相似。基因位于不同的支架上,但它也与其他菜豆结瘤根瘤菌菌株的基因非常相似。尽管HBR26在系统发育树上以及基于ANI分析(与CFN42的最高ANI值为90.2%)与其他菜豆结瘤物种不同,但在HBR26基因组中发现的这些基因和大多数固氮基因与已知菜豆结瘤根瘤菌物种的相应基因具有高度同一性(96 - 100%同一性)。这表明菜豆结瘤根瘤菌之间的共生基因可能通过水平基因转移共享。新种被归入该属,但通过管家基因和的联合序列的系统发育分析,它与该属所有已认可的物种不同。HBR26最接近的参考模式菌株是CFN42(联合和序列的相似性为94%)和BLR175(93%)。基于蛋白质编码基因的基因组ANI计算也表明,最接近的参考菌株是BLR175和CFN42,ANI值分别为91.8%和90.2%。然而,HBR26与BLR175或CFN42之间的ANI值远低于同一物种内菌株之间的ANI截止值(>= 96%),这证实HBR26属于一个新物种。因此,基于系统发育、比较基因组分析和ANI结果,我们正式提议创建新种,以菌株HBR26(=HAMBI 3550 = LMG 29711)作为模式菌株。基因组组装和注释数据存于美国能源部联合基因组研究所门户,也可在欧洲核苷酸档案馆获取,登录号为FMAJ01000001 - FMAJ01000062。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff0b/5278577/9ff548a1ba36/40793_2017_220_Fig1_HTML.jpg

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