Understanding how to program biological functions into artificial DNA sequences remains a key challenge in synthetic genomics. Here, we report the chemical synthesis and testing of Caulobacter ethensis-2.0 (C. eth-2.0), a rewritten bacterial genome composed of the most fundamental functions of a bacterial cell. We rebuilt the essential genome of Caulobacter crescentus through the process of chemical synthesis rewriting and studied the genetic information content at the level of its essential genes. Within the 785,701-bp genome, we used sequence rewriting to reduce the number of encoded genetic features from 6,290 to 799. Overall, we introduced 133,313 base substitutions, resulting in the rewriting of 123,562 codons. We tested the biological...
A wealth of information has been gained from completely sequenced genomes. So far, most of the seque...
Acinetobacter baylyi ADP1 has the potential to be a versatile bacterial host for synthetic biology b...
Synthetic genomes were designed based on an understanding of natural genomic information, offering a...
The design and synthesis of entire genomes is a powerful approach that allows the study of biologica...
Abstract- In (Venetz et al., 2019), authors rebuilt the essential genome of Caulobacter crescentus t...
Recent advances in synthetic biology have resulted in an increasing demand for the <i>de novo</i> sy...
Recent advances in synthetic biology have resulted in an increasing demand for the <i>de novo</i> sy...
Our recently acquired ability to synthesize DNA at large scale is opening the door to writing entire...
Abstract Background Organisms have evolved ways of regulating transcription to better adapt to varyi...
Synthetic genome recoding is a new means of generating designed organisms with altered phenotypes. S...
Nature uses 64 codons to encode the synthesis of proteins from the genome, and chooses 1 sense codon...
Despite the availability of a variety of ' -omics ' technologies to support the system-wide analysis...
Nature uses 64 codons to encode the synthesis of proteins from the genome, and chooses 1 sense codon...
Despite the availability of a variety of ' -omics ' technologies to support the system-wide analysis...
We present genome engineering technologies that are capable of fundamentally reengineering genomes f...
A wealth of information has been gained from completely sequenced genomes. So far, most of the seque...
Acinetobacter baylyi ADP1 has the potential to be a versatile bacterial host for synthetic biology b...
Synthetic genomes were designed based on an understanding of natural genomic information, offering a...
The design and synthesis of entire genomes is a powerful approach that allows the study of biologica...
Abstract- In (Venetz et al., 2019), authors rebuilt the essential genome of Caulobacter crescentus t...
Recent advances in synthetic biology have resulted in an increasing demand for the <i>de novo</i> sy...
Recent advances in synthetic biology have resulted in an increasing demand for the <i>de novo</i> sy...
Our recently acquired ability to synthesize DNA at large scale is opening the door to writing entire...
Abstract Background Organisms have evolved ways of regulating transcription to better adapt to varyi...
Synthetic genome recoding is a new means of generating designed organisms with altered phenotypes. S...
Nature uses 64 codons to encode the synthesis of proteins from the genome, and chooses 1 sense codon...
Despite the availability of a variety of ' -omics ' technologies to support the system-wide analysis...
Nature uses 64 codons to encode the synthesis of proteins from the genome, and chooses 1 sense codon...
Despite the availability of a variety of ' -omics ' technologies to support the system-wide analysis...
We present genome engineering technologies that are capable of fundamentally reengineering genomes f...
A wealth of information has been gained from completely sequenced genomes. So far, most of the seque...
Acinetobacter baylyi ADP1 has the potential to be a versatile bacterial host for synthetic biology b...
Synthetic genomes were designed based on an understanding of natural genomic information, offering a...