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Welcome to BuG@S | Bacterial Microarray Group at St George's

The Bacterial Microarray Group at St George's (BµG@S) facility was established, through the Wellcome Trust. S Functional Genomics Initiative, as a multi-collaborative bacterial microarray facility for the purposes of making available DNA microarray technology to the microbial pathogen research community in the UK. As the underlying technology of high throughput transcriptomics evolves we aim to integrate next generation sequencing methodology to provide cutting edge analysis for our collaborators.

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Welcome to BuG@S | Bacterial Microarray Group at St George's | bugs.sgul.ac.uk Reviews
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The Bacterial Microarray Group at St George's (BµG@S) facility was established, through the Wellcome Trust. S Functional Genomics Initiative, as a multi-collaborative bacterial microarray facility for the purposes of making available DNA microarray technology to the microbial pathogen research community in the UK. As the underlying technology of high throughput transcriptomics evolves we aim to integrate next generation sequencing methodology to provide cutting edge analysis for our collaborators.
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2 suckerfish menu
3 microarrays
4 campylobacter
5 clostridium
6 haemophilus
7 listeria
8 mycobacterium
9 neisseria
10 staphylococcus
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Welcome to BuG@S | Bacterial Microarray Group at St George's | bugs.sgul.ac.uk Reviews

https://bugs.sgul.ac.uk

The Bacterial Microarray Group at St George's (BµG@S) facility was established, through the Wellcome Trust. S Functional Genomics Initiative, as a multi-collaborative bacterial microarray facility for the purposes of making available DNA microarray technology to the microbial pathogen research community in the UK. As the underlying technology of high throughput transcriptomics evolves we aim to integrate next generation sequencing methodology to provide cutting edge analysis for our collaborators.

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1

Listeria version 2 | Bacterial Microarray Group at St George's

http://bugs.sgul.ac.uk/node/16

Eg TBv2.1.0. The second version of the Listeria. Species array is an Agilent inkjet in-situ synthesized (IJISS) array. The following subversions are available (Individual strain versions are available upon request):. 44 (0) 208 725 0698. 2002-2011 BµG@S group, Division of Clinical Sciences, St George's, University of London.

2

Campylobacter version 2 | Bacterial Microarray Group at St George's

http://bugs.sgul.ac.uk/node/18

Eg TBv2.1.0. The second version of the C.jejuni. Array was a PCR product array based on the NCTC 11168 strain annotation as described in Parkhill et al. 2000) Nature 403: 685-688. In addition to 1654 primer pairs designed to the NCTC 11168 strain, a further 73 primer pairs were designed to amplify selected genes from strains 81116, 81176, 11351, 11828, 2523/90, 43431, 43432, 43438, 43449, 43456, 460, 8F169, P19 and CjX. The following subversions are available:. 44 (0) 208 725 0698.

3

Campylobacter | Bacterial Microarray Group at St George's

http://bugs.sgul.ac.uk/node/8

Eg TBv2.1.0. Is responsible for the majority of cases of bacterial enteritis world-wide. The spiral microaerophilic gram-negative organism is widely distributed throughout nature, colonising both mammals and birds. Transmission to humans occurs through the consumption of contaminated food, especially poultry, milk and water. Infections have a one to seven day incubation period and the resulting disease is normally self-limiting lasting from days to several weeks. 44 (0) 208 725 0698.

4

BµG&#64Sbase

http://bugs.sgul.ac.uk/bugsbase

Loading. please wait. Sunday 21st 2016f August 2016. BµG&#64Sbase version 2 is in active development. More details and video demos can be found here. BµG@Sbase uses cookies. To preserve state between page views and enhance the user experience. No cookie data is stored beyond the user session. By using this website you are implying consent for these cookies to be placed on your computer. Or registered users can login here:.

5

Campylobacter version 1 | Bacterial Microarray Group at St George's

http://bugs.sgul.ac.uk/node/15

Eg TBv2.1.0. The first version of the C.jejuni. Array was an amplified clone array; universal primers were used to amplify plasmid clones representative of 1731 predicted CDS from strain NCTC 11168. The predicted CDS were based on preliminary data and so following completion of the genome sequence annotation the number of predicted genes has changed; predicted genes now number 1654 as described in Parkhill et al. 2000) Nature 403: 685-688. 2001) Genome Res 11(10): 1706-1715. 44 (0) 208 725 0698.

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Welcome to BuG@S | Bacterial Microarray Group at St George's

The Bacterial Microarray Group at St George's (BµG@S) facility was established, through the Wellcome Trust. S Functional Genomics Initiative, as a multi-collaborative bacterial microarray facility for the purposes of making available DNA microarray technology to the microbial pathogen research community in the UK. As the underlying technology of high throughput transcriptomics evolves we aim to integrate next generation sequencing methodology to provide cutting edge analysis for our collaborators.

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