We present a method, called fingerprint profiling (FPP), that uses restriction digest fingerprints of bacterial artificial chromosome clones to detect and classify rearrangements in the human genome. The approach uses alignment of experimental fingerprint patterns to in silico digests of the sequence assembly and is capable of detecting micro-deletions (1-5 kb) and balanced rearrangements. Our method has compelling potential for use as a whole-genome method for the identification and characterization of human genome rearrangements
We have developed software that allows the predic-tion of the genomic location of a bacterial arti®c...
Recent advances in both clone fingerprinting and draft sequencing technology have made it increas-in...
Motivation: A considerable amount of human intervention is currently required to produce high qualit...
Using the human bacterial artificial chromosome (BAC) fingerprint-based physical map, genome sequenc...
Using the human bacterial artificial chromosome (BAC) fingerprint-based physical map, genome sequenc...
systematic sequencing of human chromsome 7. To organize and supply the effort, we have undertaken th...
<p><b>Copyright information:</b></p><p>Taken from "A BAC clone fingerprinting approach to the detect...
The genomes of a number of organisms, including E. coli and C. elegans have been physically mapped i...
Many researchers today in the field of genomic research have found the use of large genomic fragment...
We implement a solution for the automatic ordering of BAC clones from fingerprint data obtained thro...
<p><b>Copyright information:</b></p><p>Taken from "A BAC clone fingerprinting approach to the detect...
Here we describe software tools for the automated detection of DNA restriction fragments resolved on...
Abstract: Cloning of large chunks of human genomic DNA in recombinant systems such as yeast or bacte...
Cloning of large chunks of human genomic DNA in recombinant systems such as yeast or bacterial artif...
The construction of well characterised sequence-ready physical maps has been central to the generati...
We have developed software that allows the predic-tion of the genomic location of a bacterial arti®c...
Recent advances in both clone fingerprinting and draft sequencing technology have made it increas-in...
Motivation: A considerable amount of human intervention is currently required to produce high qualit...
Using the human bacterial artificial chromosome (BAC) fingerprint-based physical map, genome sequenc...
Using the human bacterial artificial chromosome (BAC) fingerprint-based physical map, genome sequenc...
systematic sequencing of human chromsome 7. To organize and supply the effort, we have undertaken th...
<p><b>Copyright information:</b></p><p>Taken from "A BAC clone fingerprinting approach to the detect...
The genomes of a number of organisms, including E. coli and C. elegans have been physically mapped i...
Many researchers today in the field of genomic research have found the use of large genomic fragment...
We implement a solution for the automatic ordering of BAC clones from fingerprint data obtained thro...
<p><b>Copyright information:</b></p><p>Taken from "A BAC clone fingerprinting approach to the detect...
Here we describe software tools for the automated detection of DNA restriction fragments resolved on...
Abstract: Cloning of large chunks of human genomic DNA in recombinant systems such as yeast or bacte...
Cloning of large chunks of human genomic DNA in recombinant systems such as yeast or bacterial artif...
The construction of well characterised sequence-ready physical maps has been central to the generati...
We have developed software that allows the predic-tion of the genomic location of a bacterial arti®c...
Recent advances in both clone fingerprinting and draft sequencing technology have made it increas-in...
Motivation: A considerable amount of human intervention is currently required to produce high qualit...