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Concomitant Conjugal Transfer of Reduced-Bacteriophage-Sensitivity Mechanisms with Lactose- and Sucrose-Fermenting Ability in Lactic Streptococci

机译:乳酸链球菌的乳糖和蔗糖发酵能力的同时减少细菌噬菌体敏感性机制的共轭转移。

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摘要

Ten previously reported lactose-positive (Lac+) transconjugants from Streptococcus lactis, S. cremoris, and S. lactis subsp. diacetylactis and one sucrose-positive (Suc+) transconjugant from S. lactis were examined for their sensitivity to prolate- and small isometric-headed bacteriophages. Four of the Lac+ transconjugants showed a 10- to 100-fold reduction in the efficiency of plating (EOP) as well as a reduced plaque size for the prolate phage c2 and were insensitive to the small isometric phage 712. A fifth Lac+ transconjugant demonstrated a similar reduced sensitivity to phage c2; however, this transconjugant was able to plaque phage 712, but with a reduced plaque size and EOP. The other five Lac+ transconjugants were sensitive to both c2 and 712 phages. The Suc+ transconjugant plaqued phage 712 with a reduced plaque size and EOP, but no reduction in plaque size or EOP was observed for phage c2. The Lac+ and reduced bacteriophage sensitivity (Rbs+) phenotypes were correlated with specific plasmids in the Lac+ transconjugants. As four of the Lac+ transconjugants exhibited a phenotypically indistinguishable Rbs+, one (AB001) was selected for further study. The Rbs+ in AB001 for both small isometric- and prolate-headed phages was not related to adsorption, and the reduced EOP for phage c2 was not related to the presence of a restriction and modification system. The latent period for phage c2 was unchanged, but the burst size was reduced 80%. The presence of the plasmid coding for Rbs+ retarded the lysis of a mitomycin C-induced prophage-containing strain. The Rbs+ mechanism appears to be abortive phage infection. This study supports previous observations that Rbs+ and conjugal transfer ability are physically linked among some group N streptococci. The results presented have implications in the identification of plasmids coding for Rbs+ and may also aid in explaining the dissemination of Rbs+ genes among lactic streptococci.
机译:十个以前报道的来自乳酸链球菌,链球菌和乳酸链球菌亚种的乳糖阳性(Lac + )转导结合体。研究了双乙酰基actis和一种来自乳链球菌的蔗糖阳性(Suc + )转导结合体对扁长和等长的小噬菌体的敏感性。 Lac + 转导结合物中的四个显示出电镀效率(EOP)降低了10到100倍,扁平噬菌体c2的噬菌斑尺寸减小,并且对小等距噬菌体不敏感712.第五个Lac + 转导结合剂对噬菌体c2的敏感性降低了相似的程度。然而,该转导结合剂能够噬菌体712,但是噬斑尺寸和EOP减小。其他五个Lac + 转导结合体对c2和712噬菌体均敏感。具有减少的噬斑大小和EOP的Suc + 转导结合噬菌斑噬菌体712,但是对于噬菌体c2没有观察到噬斑大小或EOP的减小。 Lac + 和降低的噬菌体敏感性(Rbs + )表型与Lac + 转接合子中的特定质粒相关。由于四个Lac + 转导结合体表现出表型上无法区分的Rbs + ,因此选择了一个(AB001)进行进一步研究。对于等长和长头的小噬菌体,AB001中的Rbs + 与吸附无关,噬菌体c2的EOP降低与限制和修饰系统的存在无关。噬菌体c2的潜伏期未变,但爆发大小减少了80%。编码Rbs + 的质粒的存在阻碍了丝裂霉素C诱导的含有原噬菌体的菌株的裂解。 Rbs + 机制似乎是流产噬菌体感染。这项研究支持以前的观察结果,即某些N组链球菌之间Rbs + 与夫妻的转移能力之间存在物理联系。提出的结果对鉴定编码Rbs + 的质粒具有重要意义,也可能有助于解释Rbs + 基因在乳酸链球菌中的分布。

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