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在枯草芽孢杆菌中,多个 rRNA 操纵子对于高效的细胞生长和孢子形成以及出芽是必需的。

Multiple rRNA operons are essential for efficient cell growth and sporulation as well as outgrowth in Bacillus subtilis.

机构信息

Department of Life Science and Research Center for Life Science, College of Science, Rikkyo University, Toshima-ku Nishi-ikebukuro 3-34-1, Tokyo 171-8501, Japan.

Genome Research Center, Nodai Research Institute, Tokyo University of Agriculture, Setagaya-ku, Sakuragaoka 1-1-1, Tokyo 156-8502, Japan.

出版信息

Microbiology (Reading). 2013 Nov;159(Pt 11):2225-2236. doi: 10.1099/mic.0.067025-0. Epub 2013 Aug 22.

Abstract

The number of copies of rRNA (rrn) operons in a bacterial genome differs greatly among bacterial species. Here we examined the phenotypic effects of variations in the number of copies of rRNA genes in the genome of Bacillus subtilis by analysis of eight mutant strains constructed to carry from two to nine copies of the rrn operon. We found that a decrease in the number of copies from ten to one increased the doubling time, and decreased the sporulation frequency and motility. The maximum levels for transformation activity were similar among the strains, although the competence development was significantly delayed in the strain with a single rrn operon. Normal sporulation only occurred if more than four copies of the rrn operon were present, although ten copies were needed for vegetative growth after germination of the spores. This behaviour was seen even though the intracellular level of ribosomes was similar among strains with four to ten copies of the rrn operon. Furthermore, ten copies of the rrn operon were needed for the highest swarming activity. We also constructed 21 strains that carried all possible combinations of two copies of the rrn operons, and found that these showed a range of growth rates and sporulation frequencies that all fell between those recorded for strains with one or three copies of the rrn operon. The results suggested that the copy number of the rrn operon has a major influence on cellular processes such as growth rate and sporulation frequency.

摘要

细菌基因组中 rRNA(rrn)操纵子的拷贝数在不同细菌物种中差异很大。在这里,我们通过分析构建的携带 rrn 操纵子 2 到 9 个拷贝的 8 个突变株,研究了 rRNA 基因拷贝数在枯草芽孢杆菌基因组中变化的表型效应。我们发现,从 10 个拷贝减少到 1 个拷贝会增加倍增时间,并降低孢子形成频率和运动性。尽管在只有一个 rrn 操纵子的菌株中,感受态发育显著延迟,但转化活性的最高水平在菌株间相似。只有当存在超过 4 个 rrn 操纵子时才会发生正常的孢子形成,尽管在孢子发芽后需要 10 个拷贝才能进行营养生长。即使在具有 4 到 10 个 rrn 操纵子拷贝的菌株中核糖体的细胞内水平相似,也会出现这种行为。此外,rrn 操纵子的 10 个拷贝对于最高的群集活性是必需的。我们还构建了携带所有可能的 2 个 rrn 操纵子拷贝组合的 21 个菌株,并发现这些菌株的生长速率和孢子形成频率范围都落在携带 1 个或 3 个 rrn 操纵子拷贝的菌株之间。结果表明,rrn 操纵子的拷贝数对生长速率和孢子形成频率等细胞过程有重大影响。

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