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Comparative Genome Analysis of Bacillus sporothermodurans with Its Closest Phylogenetic Neighbor, Bacillus oleronius, and Bacillus cereus and Bacillus subtilis Groups

机译:芽孢杆菌与其最近的系统发育邻居,芽孢杆菌和芽孢杆菌和芽孢杆菌植物和枯草芽孢杆菌的比较基因组分析

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摘要

Bacillus sporothermodurans currently possesses one of the most highly heat-resistant spores (HRS), which can withstand ultra-high temperature (UHT) processing. Determination of multiple whole genome sequences of B. sporothermodurans provided an opportunity to perform the first comparative genome analysis between strains and with B. oleronius, B. cereus, and B. subtilis groups. In this study, five whole genome sequences of B. sporothermodurans strains, including those belonging to the HRS clone (SAD and BR12) normally isolated from UHT milk, were compared with the aforementioned Bacillus species for gene clusters responsible for heat resistance. In the phylogenomic analysis, B. sporothermodurans, with its closest phylogenetic neighbor, B. oleronius, clustered with B. thermoamylovorans and B. thermotolerans. Heat shock proteins GrpE, GroES, GroEL, and DnaK presented identical sequences for all B. sporothermodurans strains, indicating that differences in functional efficiency are not involved in the thermal resistance variations. However, comparing all species evaluated, B. sporothermodurans exhibited a different gene configuration in the chromosomal region of the heat shock protein GrpE. Furthermore, only B. sporothermodurans strains presented the stage II sporulation protein P gene located in this region. Multisequence alignment and phylogenetic analysis of the ClpB protein showed differences for HRS and non-HRS strains. The study identified ClpC, ClpE, and ClpX as the three ATPases putatively involved in protein disaggregation in B. sporothermodurans. Bacillussporothermodurans exhibits high homology with other Bacillus species in the DnaK, DnaJ, GroEL, and GroES cluster of genes involved in heat resistance. The data presented here pave the way to select and evaluate the phenotypic effects of genes putatively involved in heat resistance.
机译:芽孢杆菌孢子热疗程目前拥有最高耐热的孢子(HRS)之一,可以承受超高温(UHT)加工。 B.孢子热摩托载体多个全基因组序列的测定提供了在菌株和B. Oleronius,B.Cereus和B.枯草芽孢杆菌之间进行第一个比较基因组分析的机会。在这项研究中,与通常从UHT牛奶中分离的HRS克隆(SAD和BR12)的B.孢子热调节菌菌株的五种全基因组序列与负责耐热性的基因簇的上述芽孢杆菌。在系统核发生物学分析中,B.孢子热呋喃,其最接近的系统发育邻居B. Oleronius,与B.热酰胺和B.热电子组聚集。热休克蛋白GRPE,GROES,GROEL和DNAK为所有B.孢子热摩托斯菌株呈现相同的序列,表明功能效率的差异不参与热阻变化。然而,比较评价的所有物种B.孢子热呋喃人在热休克蛋白GLPE的染色体区域中表现出不同的基因构型。此外,只有B.孢子热莫丹斯菌株呈现位于该区域的II阶段孢子蛋白P基因。 CLPB蛋白的多音节对准和系统发育分析显示了HRS和非HRS菌株的差异。该研究鉴定了CLPC,CLPE和CLPX作为患有B.孢子热摩托氏菌的蛋白质分解的三个ATPAse。 Bacillussporthermodurans与DNAK,DNAJ,GROEL和参与耐热性的GENES的GROES簇的其他芽孢杆菌具有高同源性。这里提出的数据铺平了选择和评估耐热性参与基因的表型效应。

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