Tamara Feldblyum
Overview
Explore the profile of Tamara Feldblyum including associated specialties, affiliations and a list of published articles.
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17
Citations
2737
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Recent Articles
1.
Russek-Cohen E, Feldblyum T, Whitaker K, Hojvat S
Clin Infect Dis
. 2011 Apr;
52 Suppl 4:S305-11.
PMID: 21460289
Two pathways are described for submission to FDA for clearance of a diagnostic device: a Premarket Application (PMA), which can lead to approval of a diagnostic device, and a Premarket...
2.
Tettelin H, Feldblyum T
Methods Mol Biol
. 2009 Jun;
551:231-47.
PMID: 19521879
For over 30 yr, the Sanger method has been the standard for DNA sequencing. Instruments have been developed and improved over time to increase throughput, but they always relied on...
3.
Ghedin E, Wang S, Spiro D, Caler E, Zhao Q, Crabtree J, et al.
Science
. 2007 Sep;
317(5845):1756-60.
PMID: 17885136
Parasitic nematodes that cause elephantiasis and river blindness threaten hundreds of millions of people in the developing world. We have sequenced the approximately 90 megabase (Mb) genome of the human...
4.
Sequence and annotation of the 369-kb NY-2A and the 345-kb AR158 viruses that infect Chlorella NC64A
Fitzgerald L, Graves M, Li X, Feldblyum T, Nierman W, Van Etten J
Virology
. 2006 Oct;
358(2):472-84.
PMID: 17027058
Viruses NY-2A and AR158, members of the family Phycodnaviridae, genus Chlorovirus, infect the fresh water, unicellular, eukaryotic, chlorella-like green alga, Chlorella NC64A. The 368,683-bp genome of NY-2A and the 344,690-bp...
5.
Fitzgerald L, Graves M, Li X, Feldblyum T, Hartigan J, Van Etten J
Virology
. 2006 Oct;
358(2):459-71.
PMID: 17023017
Viruses MT325 and FR483, members of the family Phycodnaviridae, genus Chlorovirus, infect the fresh water, unicellular, eukaryotic, chlorella-like green alga, Chlorella Pbi. The 314,335-bp genome of MT325 and the 321,240-bp...
6.
Romero C, DeShazer D, Feldblyum T, Ravel J, Woods D, Kim H, et al.
BMC Genomics
. 2006 Sep;
7:228.
PMID: 16953889
Background: More than 12,000 simple sequence repeats (SSRs) have been identified in the genome of Burkholderia mallei ATCC 23344. As a demonstrated mechanism of phase variation in other pathogenic bacteria,...
7.
Goldberg S, Johnson J, Busam D, Feldblyum T, Ferriera S, Friedman R, et al.
Proc Natl Acad Sci U S A
. 2006 Jul;
103(30):11240-5.
PMID: 16840556
Since its introduction a decade ago, whole-genome shotgun sequencing (WGS) has been the main approach for producing cost-effective and high-quality genome sequence data. Until now, the Sanger sequencing technology that...
8.
Ghedin E, Sengamalay N, Shumway M, Zaborsky J, Feldblyum T, Subbu V, et al.
Nature
. 2005 Oct;
437(7062):1162-6.
PMID: 16208317
Influenza viruses are remarkably adept at surviving in the human population over a long timescale. The human influenza A virus continues to thrive even among populations with widespread access to...
9.
Joardar V, Lindeberg M, Jackson R, Selengut J, Dodson R, Brinkac L, et al.
J Bacteriol
. 2005 Sep;
187(18):6488-98.
PMID: 16159782
Pseudomonas syringae pv. phaseolicola, a gram-negative bacterial plant pathogen, is the causal agent of halo blight of bean. In this study, we report on the genome sequence of P. syringae...
10.
Buell C, Yuan Q, Ouyang S, Liu J, Zhu W, Wang A, et al.
Genome Res
. 2005 Aug;
15(9):1284-91.
PMID: 16109971
Rice (Oryza sativa L.) chromosome 3 is evolutionarily conserved across the cultivated cereals and shares large blocks of synteny with maize and sorghum, which diverged from rice more than 50...