Construction of recombinant DNA from multiple fragments is widely required in molecular biology, especially for synthetic biology purposes. Here we describe a new method, successive hybridization assembling (SHA) which can rapidly do this in a single reaction in vitro. In SHA, DNA fragments are prepared to overlap one after another, so after simple denaturation-renaturation treatment they hybridize in a successive manner and thereby assemble into a recombinant molecule. In contrast to traditional methods, SHA eliminates the need for restriction enzymes, DNA ligases and recombinases, and is sequence-independent. We first demonstrated its feasibility by constructing plasmids from 4, 6 and 8 fragments with high efficiencies, and then applied i...
Background: In vivo recombination of overlapping DNA fragments for assembly of large DNA constructs ...
Background: In vivo recombination of overlapping DNA fragments for assembly of large DNA constructs ...
Ligation, the joining of DNA fragments, is a fundamental procedure inmolecular cloning and is indisp...
Construction of recombinant DNA from multiple fragments is widely required in molecular biology, esp...
<div><p>Construction of recombinant DNA from multiple fragments is widely required in molecular biol...
The development of synthetic biology requires rapid batch construction of large gene networks from c...
Digestion-ligation based and recombination based methods for constructing recombinant DNA are the ba...
DNA assembly techniques have developed rapidly, enabling efficient construction of complex construct...
DNA assembly techniques have developed rapidly, enabling efficient construction of complex construct...
<div><p>The development of synthetic biology requires rapid batch construction of large gene network...
© 2011 Dr. Zhenyu ShiThe development of synthetic biology requires the construction of much more sop...
A primary aim of Synthetic Biology is the design and implementation of biological systems that perfo...
<div><p>Numerous DNA assembly technologies exist for generating plasmids for biological studies. Man...
Numerous DNA assembly technologies exist for generating plasmids for biological studies. Many proced...
Synthetic biology requires effective methods to assemble DNA parts into devices and to modify these ...
Background: In vivo recombination of overlapping DNA fragments for assembly of large DNA constructs ...
Background: In vivo recombination of overlapping DNA fragments for assembly of large DNA constructs ...
Ligation, the joining of DNA fragments, is a fundamental procedure inmolecular cloning and is indisp...
Construction of recombinant DNA from multiple fragments is widely required in molecular biology, esp...
<div><p>Construction of recombinant DNA from multiple fragments is widely required in molecular biol...
The development of synthetic biology requires rapid batch construction of large gene networks from c...
Digestion-ligation based and recombination based methods for constructing recombinant DNA are the ba...
DNA assembly techniques have developed rapidly, enabling efficient construction of complex construct...
DNA assembly techniques have developed rapidly, enabling efficient construction of complex construct...
<div><p>The development of synthetic biology requires rapid batch construction of large gene network...
© 2011 Dr. Zhenyu ShiThe development of synthetic biology requires the construction of much more sop...
A primary aim of Synthetic Biology is the design and implementation of biological systems that perfo...
<div><p>Numerous DNA assembly technologies exist for generating plasmids for biological studies. Man...
Numerous DNA assembly technologies exist for generating plasmids for biological studies. Many proced...
Synthetic biology requires effective methods to assemble DNA parts into devices and to modify these ...
Background: In vivo recombination of overlapping DNA fragments for assembly of large DNA constructs ...
Background: In vivo recombination of overlapping DNA fragments for assembly of large DNA constructs ...
Ligation, the joining of DNA fragments, is a fundamental procedure inmolecular cloning and is indisp...