首页> 美国卫生研究院文献>Applied and Environmental Microbiology >A Starter Culture Rotation Strategy Incorporating Paired Restriction/ Modification and Abortive Infection Bacteriophage Defenses in a Single Lactococcus lactis Strain
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A Starter Culture Rotation Strategy Incorporating Paired Restriction/ Modification and Abortive Infection Bacteriophage Defenses in a Single Lactococcus lactis Strain

机译:在单个乳酸乳球菌菌株中结合配对限制/修饰和无性感染噬菌体防御的起始培养物旋转策略

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摘要

Three derivatives of Lactococcus lactis subsp. lactis NCK203, each with a different pair of restriction/ modification (R/M) and abortive infection (Abi) phage defense systems, were constructed and then rotated in repeated cycles of a milk starter culture activity test (SAT). The rotation proceeded successfully through nine successive SATs in the presence of phage and whey containing phage from previous cycles. Lactococcus cultures were challenged with 2 small isometric-headed phages, (phi)31 and ul36, in one rotation series and with a composite of 10 industrial phages in another series. Two native lactococcal R(sup+)/M(sup+) plasmids, pTRK68 and pTRK11, and one recombinant plasmid, pTRK308, harboring a third distinct R/M system were incorporated into three NCK203 derivatives constructed separately for the rotation. The R(sup+)/M(sup+) NCK203 derivatives were transformed with high-copy-number plasmids encoding four Abi genes, abiA, abiC, per31, and per50. Various Abi and R/M combinations constructed in NCK203 were evaluated for their effects on cell growth, level of phage resistance, and retardation of phage development during repeated cycles of the SAT. The three NCK203 derivatives chosen for use in the SAT exhibited additive effects of the R/M and Abi phenotypes against sensitive phages. In such combinations, phage escaping restriction are prevented from completing their infective cycle by an abortive response that kills the host cell. The rotation series successfully controlled modified, recombinant, and mutant phages which were resistant to any one of the individual defense systems by presenting a different set of R/M and Abi defenses in the next test of the rotation.
机译:乳酸乳球菌亚种的三种衍生物。分别构建了具有不同限制/修饰(R / M)和流产感染(Abi)噬菌体防御系统对的乳酸NCK203,然后以重复的循环进行牛奶发酵剂培养物活性试验(SAT)。在存在来自先前周期的噬菌体和含有乳清的噬菌体的情况下,轮换成功地通过了九个连续的SAT。乳球菌培养物在一个旋转系列中用2个等长的小噬菌体(phi)31和ul36攻击,在另一个系列中用10个工业噬菌体的复合物攻击。将两个带有第三个不同R / M系统的天然乳球菌R(sup +)/ M(sup +)质粒pTRK68和pTRK11和一个重组质粒pTRK308掺入分别构建用于旋转的三个NCK203衍生物中。用编码四个Abi基因abiA,abiC,per31和per50的高拷贝数质粒转化R(sup +)/ M(sup +)NCK203衍生物。评估了在NCK203中构建的各种Abi和R / M组合对SAT重复循环过程中对细胞生长,噬菌体抗性水平和噬菌体发育延迟的影响。选择用于SAT的三种NCK203衍生物表现出R / M和Abi表型对敏感噬菌体的累加效应。在这样的组合中,通过杀死宿主细胞的流产反应来阻止噬菌体逃逸限制完成其感染周期。轮换系列通过在下一个轮换测试中提供一组不同的R / M和Abi防御,成功地控制了对任何单个防御系统具有抗性的修饰,重组和突变噬菌体。

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