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MODIFYING THE CONTROL OF GENE EXPRESSION BEHAVIOR BY THE DELETION OF CONNECTRONS AND BY THE DESIGN AND ADDITION OF SYNTHETIC CONNECTRONS IN PROKARYOTIC, ARCHEA AND EUKARYOTIC GENOMES
MODIFYING THE CONTROL OF GENE EXPRESSION BEHAVIOR BY THE DELETION OF CONNECTRONS AND BY THE DESIGN AND ADDITION OF SYNTHETIC CONNECTRONS IN PROKARYOTIC, ARCHEA AND EUKARYOTIC GENOMES
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机译:通过连接子的缺失以及原核,古生和真核基因组中合成连接子的设计和添加来改进基因表达行为的控制
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摘要
The connectron structure of a genome determines sets of four DNA sequences of minimum length of 15-bases (Cl and C2 which are in the 3'UTR of a gene, T1 which is on the 5'-side and T2 which is on the 3'-side of a set of genes). The connectron state of a genome provides information that makes it possible to decide where and how connectrons can be deleted from the native genome or added to the native genome to modify genomic gene expression behavior.
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