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Randy C Shoemaker

Explore the profile of Randy C Shoemaker including associated specialties, affiliations and a list of published articles. Areas
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Articles 51
Citations 4741
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Recent Articles
11.
Peto M, Grant D, Shoemaker R, Cannon S
Adv Bioinformatics . 2010 Sep; PMID: 20827309
Previous work has established a genomic signature based on relative counts of the 16 possible dinucleotides. Until now, it has been generally accepted that the dinucleotide signature is characteristic of...
12.
Severin A, Woody J, Bolon Y, Joseph B, Diers B, Farmer A, et al.
BMC Plant Biol . 2010 Aug; 10:160. PMID: 20687943
Background: Next generation sequencing is transforming our understanding of transcriptomes. It can determine the expression level of transcripts with a dynamic range of over six orders of magnitude from multiple...
13.
Severin A, Peiffer G, Xu W, Hyten D, Bucciarelli B, ORourke J, et al.
Plant Physiol . 2010 Jul; 154(1):3-12. PMID: 20656899
Near-isogenic lines (NILs) are valuable genetic resources for many crop species, including soybean (Glycine max). The development of new molecular platforms promises to accelerate the mapping of genetic introgressions in...
14.
Nelson R, Avraham S, Shoemaker R, May G, Ware D, Gessler D
BioData Min . 2010 Jun; 3(1):3. PMID: 20525377
Background: Scientific data integration and computational service discovery are challenges for the bioinformatic community. This process is made more difficult by the separate and independent construction of biological databases, which...
15.
Du J, Tian Z, Hans C, Laten H, Cannon S, Jackson S, et al.
Plant J . 2010 Jun; 63(4):584-98. PMID: 20525006
The availability of complete or nearly complete genome sequences from several plant species permits detailed discovery and cross-species comparison of transposable elements (TEs) at the whole genome level. We initially...
16.
Bolon Y, Joseph B, Cannon S, Graham M, Diers B, Farmer A, et al.
BMC Plant Biol . 2010 Mar; 10:41. PMID: 20199683
Background: The nutritional and economic value of many crops is effectively a function of seed protein and oil content. Insight into the genetic and molecular control mechanisms involved in the...
17.
Du J, Grant D, Tian Z, Nelson R, Zhu L, Shoemaker R, et al.
BMC Genomics . 2010 Feb; 11:113. PMID: 20163715
Background: Transposable elements are the most abundant components of all characterized genomes of higher eukaryotes. It has been documented that these elements not only contribute to the shaping and reshaping...
18.
Du J, Tian Z, Bowen N, Schmutz J, Shoemaker R, Ma J
Plant Cell . 2010 Jan; 22(1):48-61. PMID: 20081112
Long terminal repeat (LTR) retrotransposons, the most abundant genomic components in flowering plants, are classifiable into autonomous and nonautonomous elements based on their structural completeness and transposition capacity. It has...
19.
Hyten D, Cannon S, Song Q, Weeks N, Fickus E, Shoemaker R, et al.
BMC Genomics . 2010 Jan; 11:38. PMID: 20078886
Background: The Soybean Consensus Map 4.0 facilitated the anchoring of 95.6% of the soybean whole genome sequence developed by the Joint Genome Institute, Department of Energy, but its marker density...
20.
Schmutz J, Cannon S, Schlueter J, Ma J, Mitros T, Nelson W, et al.
Nature . 2010 Jan; 463(7278):178-83. PMID: 20075913
Soybean (Glycine max) is one of the most important crop plants for seed protein and oil content, and for its capacity to fix atmospheric nitrogen through symbioses with soil-borne microorganisms....