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首页> 外文期刊>International Journal of Genetics and Genomics >The processes of DNA replication and the shortening of the telomere are influenced by the action of the magnetic field
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The processes of DNA replication and the shortening of the telomere are influenced by the action of the magnetic field

机译:DNA复制和端粒缩短的过程受磁场作用的影响

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This hypothesis research work shows that the induction and the remanent phenomena of the magnetic properties govern the mechanism of the processes of DNA replication and the shortening of the telomere. The solenoid-like formation of each parental DNA strand, which exists at the initial stage of the replication process, enables an electric charge transformation through the strand to produce a magnetic field. The magnetic field, in turn, induces the surrounding medium to form a new (replicated) strand by a remanent magnetization. Through the remanent [residual] magnetization process, the replicated strand possesses a similar information pattern to that of the parental strand. In the same process, the remanent amount of magnetization forms the medium in which it has less of both repetitive and pattern magnetization than that of the parental strand, therefore the replicated strand shows a shortening in the length of its telomeres.
机译:这项假设研究工作表明,磁性的感应和剩余现象控制着DNA复制过程和端粒缩短的机制。在复制过程的初始阶段存在的每个亲本DNA链的螺线管状形成,使电荷通过链发生转化,从而产生磁场。磁场又通过剩余磁化感应周围的介质以形成新的(复制的)链。通过剩余的[剩余]磁化过程,复制的链具有与亲代链相似的信息模式。在相同的过程中,剩余磁化强度形成的介质的重复和图案化磁化强度均比亲本链的磁化强度低,因此复制的链显示出其端粒长度缩短。

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