High potential of a transposon mPing as a marker system in japonica x japonica cross in rice.
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Genome-wide comparative analysis of 20 miniature inverted-repeat transposable element families in Brassica rapa and B. oleraceaLTC: a novel algorithm to improve the efficiency of contig assembly for physical mapping in complex genomesSe14, encoding a JmjC domain-containing protein, plays key roles in long-day suppression of rice flowering through the demethylation of H3K4me3 of RFT1Early embryogenesis-specific expression of the rice transposon Ping enhances amplification of the MITE mPing.mPing: The bursting transposon.Detection of quantitative trait loci controlling pre-harvest sprouting resistance by using backcrossed populations of japonica rice cultivars.BrassicaTED - a public database for utilization of miniature transposable elements in Brassica speciesIdentification, cross-taxon transferability and application of full-length cDNA SSR markers in Phyllostachys pubescens.Characterization of active miniature inverted-repeat transposable elements in the peanut genome.Efficient DNA fingerprinting based on the targeted sequencing of active retrotransposon insertion sites using a bench-top high-throughput sequencing platform.Principal components analysis--K-means transposon element based foxtail millet core collection selection method.Variation in heading date conceals quantitative trait loci for other traits of importance in breeding selection of rice.detectMITE: A novel approach to detect miniature inverted repeat transposable elements in genomesMiniature inverted-repeat transposable elements: discovery, distribution, and activity.Genetic control of flowering time in rice: integration of Mendelian genetics and genomics.Identification and characterization of a new member of the SINE Au retroposon family (GmAu1) in the soybean, Glycine max (L.) Merr., genome and its potential application.Impairment of Lhca4, a subunit of LHCI, causes high accumulation of chlorophyll and the stay-green phenotype in rice.Development of CACTA transposon derived SCAR markers and their use in population structure analysis in Zea mays.Genetic structure of landraces in foxtail millet (Setaria italica (L.) P. Beauv.) revealed with transposon display and interpretation to crop evolution of foxtail millet.An introduction to the vast world of transposable elements – what about the diatoms?
P2860
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P2860
High potential of a transposon mPing as a marker system in japonica x japonica cross in rice.
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 06 March 2009
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
High potential of a transposon ...... nica x japonica cross in rice.
@en
High potential of a transposon ...... nica x japonica cross in rice.
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type
label
High potential of a transposon ...... nica x japonica cross in rice.
@en
High potential of a transposon ...... nica x japonica cross in rice.
@nl
prefLabel
High potential of a transposon ...... nica x japonica cross in rice.
@en
High potential of a transposon ...... nica x japonica cross in rice.
@nl
P2093
P2860
P356
P1433
P1476
High potential of a transposon ...... nica x japonica cross in rice.
@en
P2093
Hiroki Saito
Nobuhiko Oki
Osamu Ideta
Takatoshi Tanisaka
Takuji Tsukiyama
Tetsuya Nakazaki
Yuki Monden
Yutaka Okumoto
P2860
P304
P356
10.1093/DNARES/DSP004
P577
2009-03-06T00:00:00Z