article Open AccessTop 1% cited
High-throughput gene and SNP discovery in Eucalyptus grandis, an uncharacterized genome
BMC Genomics · 2008 · Vol. 9(1) · pp. 312–312
Evandro Novaes✉(University of Florida)Derek Drost(University of Florida)William G. Farmerie(University of Florida)Γεώργιος Παππάς(Brazilian Agricultural Research Corporation)Dário Grattapaglia(Universidade Católica de Brasília)Ronald R. Sederoff(North Carolina State University)Matias Kirst(University of Florida)
Abstract
In providing an abundance of foundational transcript sequences where limited prior genomic information existed, this work created part of the foundation for the annotation of the E. grandis genome that is being sequenced by the US Department of Energy. In addition we demonstrated that SNPs sampled in large-scale with 454 pyrosequencing can be used to detect evolutionary signatures among genes, providing one of the first genome-wide assessments of nucleotide diversity and Ka/Ks for a non-model plant species.
Genomics and Phylogenetic StudiesPlant Diversity and EvolutionPlant biochemistry and biosynthesisBiologyContigGeneticsGenomePyrosequencingDNA sequencingGeneReference genomeGenomicsNucleotide diversity
MeSH terms
AllelesEucalyptusHaplotypesSoftwareTranscription, GeneticGenetic VariationReproducibility of ResultsGene LibraryGenes, PlantSequence Analysis, DNADNA, ComplementaryExpressed Sequence TagsPolymorphism, Single Nucleotide
Funding
- Consortium for Plant Biotechnology Research
Citations
505
FWCI
22.21
field-weighted impact
References
41
Percentile
100%
vs. same field & year
Citations per year
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References
Analysis of the genome sequence of the flowering plant Arabidopsis thaliana
Nature · 2000 · 9,320 citations
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