Steele J L, McKay L L
Appl Environ Microbiol. 1986 Jan;51(1):57-64. doi: 10.1128/aem.51.1.57-64.1986.
We attempted to identify the genetic loci for sucrose-fermenting ability (Suc+), nisin-producing ability (Nip+), and nisin resistance (Nisr) in certain strains of Streptococcus lactis. To obtain genetic evidence linking the Suc+ Nip+ Nisr phenotype to a distinct plasmid, both conjugal transfer and transformation were attempted. A conjugation procedure modified to protect the recipients against the inhibitory action of nisin allowed the conjugal transfer of the Suc+ Nip+ Nisr marker from three Suc+ Nip+ Nisr donors to various recipients. The frequency of transfer ranged from 1.7 x 10(-4) to 5.6 x 10(-8) per input donor, depending on the mating pair. However, no additional plasmid DNA was apparent in these transconjugants. Transformation of S. lactis LM0230 to the Suc+ Nip+ Nisr phenotype by using the plasmid pool of S. lactis ATCC 11454 was not achieved, even though other plasmids present in the pool were successfully transferred. However, two results imply the involvement of plasmid DNA in coding for the Suc+ Nip+ Nisr phenotype. The Suc+ Nip+ Nisr marker was capable of conjugal transfer to a recipient deficient in host-mediated homologous recombination (Rec-), and the Suc+ Nip+ Nisr marker exhibited bilateral plasmid incompatibility with a number of lactose plasmids found in S. lactis. Although our results indicate that the Suc+ Nip+ Nisr phenotype is plasmid encoded, no physical evidence linking this phenotype to a distinct plasmid was obtained.
我们试图在某些乳酸链球菌菌株中鉴定出与蔗糖发酵能力(Suc+)、产乳链菌肽能力(Nip+)和乳链菌肽抗性(Nisr)相关的基因位点。为了获得将Suc+ Nip+ Nisr表型与特定质粒联系起来的遗传学证据,我们尝试了接合转移和转化两种方法。一种经过改良以保护受体免受乳链菌肽抑制作用的接合程序,使得Suc+ Nip+ Nisr标记能够从三个Suc+ Nip+ Nisr供体接合转移到各种受体。转移频率根据交配组合的不同,在每个输入供体中从1.7×10⁻⁴到5.6×10⁻⁸不等。然而,在这些接合子中没有明显发现额外的质粒DNA。即使该质粒库中存在的其他质粒成功转移,利用乳酸链球菌ATCC 11454的质粒库也未能将乳酸链球菌LM0230转化为Suc+ Nip+ Nisr表型。然而,有两个结果暗示质粒DNA参与了Suc+ Nip+ Nisr表型的编码。Suc+ Nip+ Nisr标记能够接合转移到宿主介导的同源重组缺陷型(Rec-)受体中,并且Suc+ Nip+ Nisr标记与在乳酸链球菌中发现的许多乳糖质粒表现出双向质粒不相容性。虽然我们的结果表明Suc+ Nip+ Nisr表型是由质粒编码的,但没有获得将该表型与特定质粒联系起来的物理证据。