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首页> 外文期刊>Molecular Biology and Evolution >Interspersed DNA Repeats bcr1–bcr18 of Bacillus cereus Group Bacteria Form Three Distinct Groups with Different Evolutionaryn and Functional Patterns
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Interspersed DNA Repeats bcr1–bcr18 of Bacillus cereus Group Bacteria Form Three Distinct Groups with Different Evolutionaryn and Functional Patterns

机译:散布的蜡质芽孢杆菌组细菌的bcr1-bcr18重复形成三个不同的组,具有不同的进化和功能模式

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摘要

Many short (<400 bp) interspersed sequence repeats exist in bacteria, yet little is known about their origins, mode of generation, or possible function. Here, we present a comprehensive analysis of 18 different previously identified repeated DNA elements, bcr1-bcr18 (Økstad OA, Hegna I, Lindback T, Rishovd AL, Kolstø AB. 1999. Genome organization is not conserved between Bacillus cereus and Bacillus subtilis. Microbiology. 145:621–631.; Tourasse NJ, Helgason E, Økstad OA, Hegna IK, Kolstø AB. 2006. The Bacillus cereus group: novel aspects of population structure and genome dynamics. J Appl Microbiol. 101:579–593.), in 36 sequenced genomes from the Bacillus cereus group of bacteria. This group consists of genetically closely related species with variable pathogenic specificity toward different hosts and includes among others B. anthracis, B. cereus, and B. thuringiensis. The B. cereus group repeat elements could be classified into three categories with different properties: Group A elements (bcr1–bcr3) exhibited highly variable copy numbers ranging from 4 to 116 copies per strain, showed a nonconserved chromosomal distribution pattern between strains, and displayed several features characteristic of mobile elements. Group B repeats (bcr4–bcr6) were present in 0–10 copies per strain and were associated with strain-specific genes and disruptions of genome synteny, implying a possible contribution to genome rearrangements and/or horizontal gene transfer events. bcr5, in particular, was associated with large gene clusters showing resemblance to integrons. In agreement with their potentially mobile nature or involvement in horizontal transfers, the sequences of the repeats from Groups A and B (bcr1–bcr6) followed a phylogeny different from that of the host strains. Conversely, repeats from Group C (bcr7–bcr18) had a conserved chromosomal location and orthologous gene neighbors in the investigated B. cereus group genomes, and their phylogeny matched that of the host chromosome. Several of the group C repeats exhibited a conserved secondary structure or had parts of the structure conserved, possibly indicating functional RNAs. Accordingly, five of the repeats in group C overlapped regions encoding previously characterized riboswitches. Similarly, other group C repeats could represent novel riboswitches, encode small RNAs, and/or constitute other types of regulatory elements with specific biological functions. The current analysis suggests that the multitude of repeat elements identified in the B. cereus group promote genome dynamics and plasticity and could contribute to the flexible and adaptive life style of these bacteria.
机译:细菌中存在许多短的(<400 bp)散布的序列重复序列,但对其起源,产生方式或可能的功能知之甚少。在这里,我们对18种先前鉴定的重复DNA元件bcr1-bcr18(ØkstadOA,Hegna I,Lindback T,Rishovd AL,KolstøAB.1999)进行了全面分析。蜡状芽孢杆菌和枯草芽孢杆菌之间的基因组组织并不保守。 145:621–631; Tourasse NJ,Helgason E,ØkstadOA,Hegna IK,KolstøAB。2006年。蜡状芽孢杆菌群:种群结构和基因组动力学的新方面。JAppl Microbiol。101:579-593。)在蜡样芽胞杆菌属细菌的36个测序基因组中。该组由对不同宿主具有可变致病特异性的遗传密切相关的物种组成,其中包括炭疽芽孢杆菌,蜡状芽孢杆菌和苏云金芽孢杆菌。蜡状芽孢杆菌的重复元件可分为三类,它们具有不同的特性:A组元件(bcr1-bcr3)的拷贝数范围很广,每个菌株为4至116拷贝,菌株之间的染色体分布模式不保守,移动元素的几个特征。 B组重复序列(bcr4–bcr6)以每株0–10拷贝的形式存在,并与株特异性基因和基因组同义性的破坏相关,暗示可能对基因组重排和/或水平基因转移事件做出了贡献。尤其是bcr5与大基因簇有关,这些基因簇与整合素相似。与它们潜在的移动特性或参与水平转移相一致,A组和B组的重复序列(bcr1-bcr6)的系统发育不同于宿主菌株。相反,来自C组的重复序列(bcr7–bcr18)在所研究的蜡状芽孢杆菌组基因组中具有保守的染色体位置和直系同源基因邻居,并且它们的系统发育与宿主染色体相匹配。 C组重复序列中的几个表现出保守的二级结构或具有保守的结构部分,可能表示功能性RNA。因此,C组中的五个重复与编码先前表征的核糖开关的区域重叠。同样,其他C组重复序列可代表新型核糖开关,编码小RNA和/或构成具有特定生物学功能的其他类型的调控元件。目前的分析表明,蜡状芽孢杆菌组中鉴定出的大量重复元件可促进基因组动力学和可塑性,并可能有助于这些细菌的灵活适应性生活方式。

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