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Circularity of the Caulobacter crescentus chromosome determined by pulsed-field gel electrophoresis.

机译:通过脉冲场凝胶电泳测定新月形杆菌染色体的圆度。

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摘要

Previous genetic analyses of the Caulobacter crescentus chromosome have resulted in the construction of a linear genetic map. To establish the circularity of the C. crescentus chromosome, restriction fragments generated by digestion with AseI and SpeI were analyzed by pulsed-field gel electrophoresis and Southern hybridization. The size of each fragment was calculated and used to demonstrate that C. crescentus has a genome size of approximately 4,000 kilobases. In addition, both enzymes gave rise to large DNA fragments which contained genes from both ends of the genetic map. Thus, there is physical linkage between the genes at the ends of the genetic map and the chromosome is circular. Since this region of the chromosome appears to contain the replication terminus, we propose that recombination occurs at a high frequency in the vicinity of the terminus. This high frequency of recombination would prevent genetic linkage from being observed between genes on opposite sides of the terminus. Additional experiments using insertions which introduced new AseI and DraI restriction sites into the genome allowed us to calculate the physical distance between genes located in the vicinity of the replication terminus.
机译:先前对新月形杆菌染色体的遗传分析已导致构建线性遗传图谱。为了建立新月形梭菌染色体的圆度,通过脉冲场凝胶电泳和Southern杂交分析了用AseI和SpeI消化产生的限制性片段。计算每个片段的大小,并用于证明新月形梭菌的基因组大小约为4,000千碱基。另外,两种酶都产生大的DNA片段,其包含来自遗传图谱两端的基因。因此,在遗传图谱末端的基因之间存在物理联系,而染色体是圆形的。由于染色体的该区域似乎包含复制末端,因此我们建议重组在末端附近以高频率发生。这种高频率的重组将阻止在末端相对侧的基因之间观察到遗传连锁。使用插入的新实验将基因组中新的AseI和DraI限制位点引入基因组,从而使我们能够计算位于复制末端附近的基因之间的物理距离。

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