Harr Bettina, Schlötterer Christian
Institut für Genetik, Universität Köln, Zuelpicher Strasse 47, 50674 Köln, Germany.
BMC Microbiol. 2006 Sep 18;6:80. doi: 10.1186/1471-2180-6-80.
Plasmids are an important component of the bacterial genome, but the crosstalk between genes encoded on the chromosome and on the plasmid is still poorly understood.
We performed a large-scale survey for genes on the E. coli chromosome that are affected by the presence of the conjugative F-plasmid (crosstalk). The expression pattern of about 4% (107 genes) of the genes encoded by the chromosome was affected by the presence of the F-plasmid. Comparing two different Escherichia coli strains, MG1655 and DH5alpha, we found a strong host genotype-specific crosstalk of the host chromosome with the F-plasmid. About 88% of the genes affected by the presence of the F-plasmid showed a significant plasmid by host genotype interaction, i.e. the presence of the F-plasmid resulted in a different gene expression in the two host genotypes. Less than 12% of the genes showed an additive effect of gene expression, i.e. host genotype independent crosstalk between plasmid and host chromosome.
We propose that epistatic effects also contribute to the maintenance of F-plasmids in natural populations.
质粒是细菌基因组的重要组成部分,但染色体和质粒上编码基因之间的相互作用仍知之甚少。
我们对大肠杆菌染色体上受接合型F质粒存在影响(相互作用)的基因进行了大规模调查。染色体编码的约4%(107个基因)的基因表达模式受F质粒存在的影响。比较两种不同的大肠杆菌菌株MG1655和DH5α,我们发现宿主染色体与F质粒之间存在强烈的宿主基因型特异性相互作用。受F质粒存在影响的基因中约88%表现出质粒与宿主基因型的显著相互作用,即F质粒的存在导致两种宿主基因型中基因表达不同。不到12%的基因表现出基因表达的加性效应,即质粒与宿主染色体之间与宿主基因型无关的相互作用。
我们提出上位效应也有助于F质粒在自然种群中的维持。