scholarly article | Q13442814 |
P2093 | author name string | D Sangsrakru | |
J Chanprasert | |||
N Jomchai | |||
P Uthaipaisanwong | |||
S Tangphatsornruang | |||
S Tragoonrung | |||
T Yoocha | |||
P2860 | cites work | The complete chloroplast genome sequence of Citrus sinensis (L.) Osbeck var 'Ridge Pineapple': organization and phylogenetic relationships to other angiosperms | Q21261975 |
Comparative chloroplast genomics and phylogenetics of Fagopyrum esculentum ssp. ancestrale -a wild ancestor of cultivated buckwheat | Q22065302 | ||
Rapid and accurate pyrosequencing of angiosperm plastid genomes | Q22065305 | ||
Rapid evolutionary change of common bean (Phaseolus vulgaris L) plastome, and the genomic diversification of legume chloroplasts | Q22065309 | ||
The complete chloroplast genome sequence of Gossypium hirsutum: organization and phylogenetic relationships to other angiosperms | Q22065313 | ||
Complete plastid genome sequence of Daucus carota: implications for biotechnology and phylogeny of angiosperms | Q22065315 | ||
Complete plastid genome sequences of Drimys, Liriodendron, and Piper: implications for the phylogenetic relationships of magnoliids | Q22065329 | ||
Phylogenetic analyses of Vitis (Vitaceae) based on complete chloroplast genome sequences: effects of taxon sampling and phylogenetic methods on resolving relationships among rosids | Q22065330 | ||
The Chloroplast Genome of Nymphaea alba: Whole-Genome Analyses and the Problem of Identifying the Most Basal Angiosperm | Q22066025 | ||
Analysis of the Amborella trichopoda chloroplast genome sequence suggests that amborella is not a basal angiosperm. | Q42443914 | ||
The role of RNA editing in conservation of start codons in chloroplast genomes | Q42600365 | ||
The gene for a halophilic glutamate dehydrogenase: sequence, transcription analysis and phylogenetic implications | Q43017072 | ||
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The Chlamydomonas reinhardtii plastid chromosome: islands of genes in a sea of repeats | Q44970146 | ||
In wheat ctDNA, segments of ribosomal protein genes are dispersed repeats, probably conserved by nonreciprocal recombination | Q46609300 | ||
Hypervariable microsatellites provide a general source of polymorphic DNA markers for the chloroplast genome | Q48070856 | ||
A mutation hotspot in the chloroplast genome of a conifer (Douglas-fir: Pseudotsuga) is caused by variability in the number of direct repeats derived from a partially duplicated tRNA gene | Q48074238 | ||
Methods for obtaining and analyzing whole chloroplast genome sequences. | Q48139999 | ||
Duplication of the psbA gene in the chloroplast genome of two Pinus species | Q48227602 | ||
Generation and characterization of soybean and marker-free tobacco plastid transformants over-expressing a bacterial 4-hydroxyphenylpyruvate dioxygenase which provides strong herbicide tolerance. | Q51088239 | ||
Chloroplast microsatellites: new tools for studies in plant ecology and evolution. | Q51203110 | ||
REPuter: fast computation of maximal repeats in complete genomes. | Q51646444 | ||
Evolutionary re-organisation of a large operon in adzuki bean chloroplast DNA caused by inverted repeat movement. | Q52548512 | ||
DNA supercoiling and temperature shift affect the promoter activity of the Escherichia coli rpoH gene encoding the heat-shock sigma subunit of RNA polymerase. | Q54116549 | ||
Many Parallel Losses of infA from Chloroplast DNA during Angiosperm Evolution with Multiple Independent Transfers to the Nucleus | Q57252801 | ||
The chloroplast genome | Q71569424 | ||
Post-transcriptional control of chloroplast gene expression. Accumulation of stable psaC mRNA is due to downstream RNA cleavages in the ndhD gene | Q74462339 | ||
Polymorphic chloroplast simple sequence repeat primers for systematic and population studies in the genus Hordeum | Q77309301 | ||
A systematic search for RNA editing sites in pea chloroplasts: an editing event causes diversification from the evolutionarily conserved amino acid sequence | Q81085207 | ||
Extensive reorganization of the plastid genome of Trifolium subterraneum (Fabaceae) is associated with numerous repeated sequences and novel DNA insertions | Q82658749 | ||
Complete chloroplast genome sequences of Solanum bulbocastanum, Solanum lycopersicum and comparative analyses with other Solanaceae genomes | Q83021985 | ||
Complete Structure of the Chloroplast Genome of a Legume, Lotus japonicus | Q22066063 | ||
Complete Nucleotide Sequence of the Chloroplast Genome from the Tasmanian Blue Gum, Eucalyptus globulus (Myrtaceae) | Q22066065 | ||
Loss of all ndh genes as determined by sequencing the entire chloroplast genome of the black pine Pinus thunbergii | Q22066213 | ||
Chloroplast gene organization deduced from complete sequence of liverwort Marchantia polymorpha chloroplast DNA | Q22122408 | ||
The plastid chromosome of spinach (Spinacia oleracea): complete nucleotide sequence and gene organization | Q22122456 | ||
Genome sequencing in microfabricated high-density picolitre reactors | Q24544260 | ||
Polymorphic simple sequence repeat regions in chloroplast genomes: applications to the population genetics of pines | Q24561536 | ||
MUSCLE: multiple sequence alignment with high accuracy and high throughput | Q24613456 | ||
The complete nucleotide sequence of the cassava (Manihot esculenta) chloroplast genome and the evolution of atpF in Malpighiales: RNA editing and multiple losses of a group II intron | Q24654008 | ||
Chloroplast DNA rearrangements in Campanulaceae: phylogenetic utility of highly rearranged genomes | Q24805019 | ||
ASAP: amplification, sequencing & annotation of plastomes | Q24814064 | ||
Basic local alignment search tool | Q25938991 | ||
RAxML-VI-HPC: maximum likelihood-based phylogenetic analyses with thousands of taxa and mixed models | Q27860746 | ||
TreeView: an application to display phylogenetic trees on personal computers | Q27861074 | ||
Multiplex sequencing of plant chloroplast genomes using Solexa sequencing-by-synthesis technology | Q28756667 | ||
Mauve: multiple alignment of conserved genomic sequence with rearrangements | Q29547292 | ||
Automatic annotation of organellar genomes with DOGMA | Q29547640 | ||
Evolutionary rates analysis of Leguminosae implicates a rapid diversification of lineages during the tertiary | Q29618553 | ||
Accuracy and quality of massively parallel DNA pyrosequencing | Q29622857 | ||
Complete sequence and organization of the cucumber (Cucumis sativus L. cv. Baekmibaekdadagi) chloroplast genome | Q33229819 | ||
A phylogeny of legumes (Leguminosae) based on analysis of the plastid matK gene resolves many well-supported subclades within the family. | Q34190642 | ||
Chloroplast DNA rearrangements are more frequent when a large inverted repeat sequence is lost | Q34253665 | ||
Complete Sequence of the Maize Chloroplast Genome: Gene Content, Hotspots of Divergence and Fine Tuning of Genetic Information by Transcript Editing | Q34304655 | ||
The distribution and phylogenetic significance of a 50-kb chloroplast DNA inversion in the flowering plant family Leguminosae | Q34390386 | ||
Complete chloroplast genome sequence of Gycine max and comparative analyses with other legume genomes | Q34462622 | ||
The complete sequence of the rice (Oryza sativa) chloroplast genome: intermolecular recombination between distinct tRNA genes accounts for a major plastid DNA inversion during the evolution of the cereals | Q34542009 | ||
The chloroplast genome | Q36185449 | ||
Rearrangements in the chloroplast genomes of mung bean and pea | Q36367576 | ||
Genome-wide analyses of Geraniaceae plastid DNA reveal unprecedented patterns of increased nucleotide substitutions | Q36985095 | ||
Ins and outs of plastid genome evolution | Q37068364 | ||
Chloroplast DNA variability in wild and cultivated rice (Oryza spp.) revealed by polymorphic chloroplast simple sequence repeats | Q38559080 | ||
EVOLUTIONARY SIGNIFICANCE OF THE LOSS OF THE CHLOROPLAST-DNA INVERTED REPEAT IN THE LEGUMINOSAE SUBFAMILY PAPILIONOIDEAE. | Q39162850 | ||
The soybean chloroplast genome: complete sequence of the rps19 gene, including flanking parts containing exon 2 of rpl2 (upstream), but rpl22 (downstream). | Q40537166 | ||
Transfer of rpl22 to the nucleus greatly preceded its loss from the chloroplast and involved the gain of an intron. | Q41082677 | ||
Complete plastid genome sequence of the chickpea (Cicer arietinum) and the phylogenetic distribution of rps12 and clpP intron losses among legumes (Leguminosae). | Q41808725 | ||
A database of PCR primers for the chloroplast genomes of higher plants | Q41853898 | ||
Generation and analysis of soybean plastid transformants expressing Bacillus thuringiensis Cry1Ab protoxin | Q42039796 | ||
P433 | issue | 1 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | phylogenetics | Q171184 |
Vigna radiata | Q484447 | ||
pyrosequencing | Q2342248 | ||
P304 | page(s) | 11-22 | |
P577 | publication date | 2009-12-10 | |
P1433 | published in | DNA Research | Q5205732 |
P1476 | title | The chloroplast genome sequence of mungbean (Vigna radiata) determined by high-throughput pyrosequencing: structural organization and phylogenetic relationships | |
P478 | volume | 17 |
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