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首页> 外文期刊>Molecular Microbiology >Morphology heterogeneity within a Campylobacter jejuni helical population: the use of calcofluor white to generate rod-shaped C-jejuni 81-176 clones and the genetic determinants responsible for differences in morphology within 11168 strains
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Morphology heterogeneity within a Campylobacter jejuni helical population: the use of calcofluor white to generate rod-shaped C-jejuni 81-176 clones and the genetic determinants responsible for differences in morphology within 11168 strains

机译:曲线杆菌螺旋杆菌内的形态异质性:使用Copofluor White产生棒状C-JEUJUNI 81-176克隆和遗传决定因素,负责11168株内的形态差异

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摘要

Campylobacter jejuni helical shape is important for colonization and host interactions with straight mutants having altered biological properties. Passage on calcofluor white (CFW) resulted in C. jejuni 81-176 isolates with morphology changes: either a straight morphology from frameshift mutations and single nucleotide polymorphisms in peptidoglycan hydrolase genes pgp1 or pgp2 or a reduction in curvature due a frameshift mutation in cjj81176_1105, a putative peptidoglycan endopeptidase. Shape defects were restored by complementation. Whole genome sequencing of CFW-passaged strains showed no specific changes correlating to CFW exposure. The cjj81176_1279 (recR; recombinational DNA repair) and cjj81176_1449 (unknown function) genes were highly variable in all 81-176 strains sequenced. A frameshift mutation in pgp1 of our laboratory isolate of the straight genome sequenced variant of 11168 (11168-GS) was also identified. The PG muropeptide profile of 11168-GS was identical to that of pgp1 in the original minimally passaged 11168 strain (11168-O). Introduction of wild type pgp1 into 11168-GS did not restore helical morphology. The recR gene was also highly variable in 11168 strains. Microbial cell-to-cell heterogeneity is proposed as a mechanism of ensuring bacterial survival in sub-optimal conditions. In certain environments, changes in C. jejuni morphology due to genetic heterogeneity may promote C. jejuni survival.
机译:Campylobacter Jejuni螺旋形状对于定植和具有改变的生物特性的直突变体的宿主相互作用是重要的。在Calcofluor白色(CFW)上的通道导致C. Jejuni 81-176与形态的分离物变化:来自捕获突变的突变突变和单核苷酸多态性的直形态,肽聚糖水解基因PGP1或PGP2的单一核苷酸多态性或在CJ81176_1105中的帧突变突变降低或曲率的减少,推定的肽聚糖内肽酶。通过互补来恢复形状缺陷。 CFW传代菌株的全基因组测序显示出与CFW暴露的相关性无菌。 CJJ81176_1279(重组DNA修复)和CJJ81176_1449(未知函数)基因在所有81-176株中测序的高度变化。还鉴定了我们实验室分离物的PGP1中的帧突变突变,​​其直基因组测序变体为11168(11168-GS)。 11168-GS的PG Muropeplide曲线与原始微量通用11168株(11168-O)中的PGP1相同。将野生型PGP1引入11168GS未恢复螺旋形态。在11168株菌株中,Recr基因也很高。提出了微生物细胞 - 细胞异质性作为确保次良条件下的细菌存活的机制。在某些环境中,由于遗传异质性导致的C.Jejuni形态的变化可能促进C. jejuni生存期。

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  • 来源
    《Molecular Microbiology》 |2017年第6期|共24页
  • 作者单位

    Univ British Columbia Dept Microbiol &

    Immunol Vancouver BC V6T 1Z3 Canada;

    Newcastle Univ Ctr Bacterial Cell Biol Inst Cell &

    Mol Biosci Newcastle Upon Tyne NE2 4AX Tyne;

    ARS USDA Produce Safety &

    Microbiol Res Unit Albany CA 94710 USA;

    ARS USDA Produce Safety &

    Microbiol Res Unit Albany CA 94710 USA;

    Newcastle Univ Ctr Bacterial Cell Biol Inst Cell &

    Mol Biosci Newcastle Upon Tyne NE2 4AX Tyne;

    Univ British Columbia Dept Microbiol &

    Immunol Vancouver BC V6T 1Z3 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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