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Keywords
(14)
Dna Polymorphism
Gene Diversity
Gene Ontology
Genetic Linkage Map
Genetic Map
Genome Sequence
Loblolly Pine
pinus taeda l
Polymorphism
Population Genetics
Simple Sequence Repeat
Ssr Marker
Linkage Group
Tandem Repeat
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An annotated genetic map of loblolly pine based on microsatellite and cDNA markers
An annotated genetic map of loblolly pine based on microsatellite and cDNA markers,10.1186/1471-2156-12-17,BMC Genetics,Craig S Echt,Surya Saha,Konsta
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An annotated genetic map of loblolly pine based on microsatellite and cDNA markers
(
Citations: 1
)
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Craig S Echt
,
Surya Saha
,
Konstantin V Krutovsky
,
Kokulapalan Wimalanathan
,
John E Erpelding
,
Chun Liang
,
C Dana Nelson
BACKGROUND: Previous
loblolly pine
(Pinus taeda L.)
genetic linkage
maps have been based on a variety of DNA polymorphisms, such as AFLPs, RAPDs, RFLPs, and ESTPs, but only a few SSRs (simple sequence repeats), also known as simple tandem repeats or microsatellites, have been mapped in P. taeda. The objective of this study was to integrate a large set of SSR markers from a variety of sources and published cDNA markers into a composite P. taeda
genetic map
constructed from two reference mapping pedigrees. A dense
genetic map
that incorporates SSR loci will benefit complete pine genome sequencing, pine
population genetics
studies, and pine breeding programs. Careful marker annotation using a variety of references further enhances the utility of the integrated SSR map. RESULTS: The updated P. taeda genetic map, with an estimated genome coverage of 1,515 cM(Kosambi) across 12 linkage groups, incorporated 170 new SSR markers and 290 previously reported SSR, RFLP, and ESTP markers. The average marker interval was 3.1 cM. Of 233 mapped SSR loci, 84 were from cDNA-derived sequences (EST-SSRs) and 149 were from non-transcribed genomic sequences (genomic-SSRs). Of all 311 mapped cDNA-derived markers, 77% were associated with NCBI Pta UniGene clusters, 67% with RefSeq proteins, and 62% with functional
Gene Ontology
(GO) terms. Duplicate (i.e., redundant accessory) and paralogous markers were tentatively identified by evaluating marker sequences by their UniGene cluster IDs, clone IDs, and relative map positions. The average gene diversity, He, among polymorphic SSR loci, including those that were not mapped, was 0.43 for 94 EST-SSRs and 0.72 for 83 genomic-SSRs. The
genetic map
can be viewed and queried at http://www.conifergdb.org/pinemap. CONCLUSIONS: Many polymorphic and genetically mapped SSR markers are now available for use in P. taeda population genetics, studies of adaptive traits, and various germplasm management applications. Annotating mapped genes with UniGene clusters and GO terms allowed assessment of redundant and paralogous EST markers and further improved the quality and utility of the
genetic map
for P. taeda.
Journal:
BMC Genetics - BMC GENET
, vol. 12, no. 1, pp. 17-16, 2011
DOI:
10.1186/1471-2156-12-17
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References
(45)
Production of ethanol from carbohydrates from loblolly pine: A technical and economic assessment
(
Citations: 15
)
W FREDERICKJR
,
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Journal:
Bioresource Technology - BIORESOURCE TECHNOL
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A physical map of the highly heterozygous Populus genome: integration with the genome sequence and genetic map and analysis of haplotype variation
(
Citations: 25
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http://academic.research.microsoft.com/io.ashx?type=5&id=5173943&selfId1=0&selfId2=0&maxNumber=12&query=
Published in 2007.
Integrating physical and genetic maps: from genomes to interaction networks
(
Citations: 56
)
Andreas Beyer
,
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,
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Journal:
Nature Reviews Genetics - NAT REV GENET
, vol. 8, no. 9, pp. 699-710, 2007
Identification of Quantitative Trait Loci Influencing Wood Property Traits in Loblolly Pine (Pinus taeda L.). III. QTL Verification and Candidate Gene Mapping
(
Citations: 38
)
Garth R. Brown
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Anchored Reference Loci in Loblolly Pine (Pinus taeda L.) for Integrating Pine Genomics
(
Citations: 33
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Garth R. Brown
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,
Mitchell M. Sewell
,
Kimberly A. Marshall
,
David B. Neale
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Citations
(1)
Microsatellite DNA in genomic survey sequences and UniGenes of loblolly pine
Craig S. Echt
,
Surya Saha
,
Dennis L. Deemer
,
C. Dana Nelson
Journal:
Tree Genetics & Genomes - TREE GENET GENOMES
, vol. 7, no. 4, pp. 773-780, 2011