首页> 美国卫生研究院文献>Journal of Bacteriology >The region of a Bacteroides conjugal chromosomal tetracycline resistance element which is responsible for production of plasmidlike forms from unlinked chromosomal DNA might also be involved in transfer of the element.
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The region of a Bacteroides conjugal chromosomal tetracycline resistance element which is responsible for production of plasmidlike forms from unlinked chromosomal DNA might also be involved in transfer of the element.

机译:拟杆菌属共轭染色体四环素抗性元件的区域其负责由未连接的染色体DNA产生质粒样形式也可能参与该元件的转移。

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摘要

Large (greater than 50 kilobases) conjugal chromosomal tetracycline resistance (Tcr) elements have been found in many human colonic Bacteroides strains. Recently, N. B. Shoemaker and A. A. Salyers (J. Bacteriol, 170:1651-1657, 1988) reported that some of these Tcr elements appeared to mediate production of plasmidlike forms, NBU1 and NBU2, from an unlinked region of the chromosome of Bacteroides uniformis 0061. Production of the plasmidlike forms and the transfer frequency of the Tcr elements were both enhanced by preexposure to tetracycline. Thus it appeared that genes involved in production of plasmidlike forms (Plf activity) might be coregulated with transfer genes and that Plf activity might have a role in transfer of the Tcr elements. By screening subclones of a Tcr element, Tcr Emr DOT, we have shown that the genes necessary for Plf activity on the Tcr element are within a 10-kilobase region adjacent to the Tcr gene. Subclones of this region were then used to construct insertional gene disruptions in a Tcr element, Tcr ERL, which is closely related to the Tcr Emr DOT element. Two of the disruption mutants were Plf-. Both had reduced transfer frequencies, one (omega RDB2) 10(2)-fold lower than that of the wild-type element and the other (omega RDBT) 10(4)-fold lower. omega RDB2 was also deficient in the ability to mobilize coresident plasmids, whereas omega RDBT exhibited nearly wild-type mobilization activity. The phenotypes of the mutants indicate that there are at least two genes necessary for Plf activity and that both may be involved in transfer of the element. The third disruption mutant (omegaRDB1), which expressed Plf constitutively, also had a transfer frequency 10(2) -fold lower than that of the wild-type element and was deficient in mobilization of coresident plasmids. The relationship between Plf genes and transfer, therefore, appears to be a complex one.
机译:在许多人结肠菌类菌株中发现了大的(大于50千碱基)的结合染色体四环素抗性(Tcr)元件。最近,NB Shoemaker和AA Salyers(J. Bacteriol,170:1651-1657,1988)报道,其中一些Tcr元素似乎介导了均匀细菌拟南芥0061染色体未连接区域的质粒样形式NBU1和NBU2的产生。通过预先暴露于四环素可以提高质粒样形式的产生和Tcr元件的转移频率。因此看来,参与质粒样形式(Plf活性)产生的基因可能与转移基因共调,而Plf活性可能在Tcr元件的转移中起作用。通过筛选Tcr元件Tcr Emr DOT的亚克隆,我们显示了Tcr元件上Plf活性所必需的基因在与Tcr基因相邻的10碱基对区域内。然后将该区域的亚克隆用于构建与Tcr Emr DOT元件密切相关的Tcr元件Tcr ERL中的插入基因破坏。两个破坏突变体是Plf-。两者均具有降低的转移频率,一个(ωRDB2)比野生型元件低10(2)倍,另一个(ωRDBT)低10(4)倍。欧米茄RDB2也缺乏动员共存质粒的能力,而欧米茄RDBT则表现出近乎野生型的动员活性。突变体的表型表明Plf活性至少需要两个基因,并且两个基因都可能参与元素的转移。第三个破坏突变体(omegaRDB1),组成型表达Plf,也具有比野生型元件低10(2)倍的转移频率,并且缺乏共存质粒的动员。因此,Plf基因与转移之间的关系似乎很复杂。

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