Fine mapping and haplotype structure analysis of a major flowering time quantitative trait locus on maize chromosome 10.
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Genetic Control of Photoperiod Sensitivity in Maize Revealed by Joint Multiple Population AnalysisComparative proteomic analysis of the shoot apical meristem in maize between a ZmCCT-associated near-isogenic line and its recurrent parent.Genetic dissection of maize phenology using an intraspecific introgression library.Comparative sequence analysis of the Ghd7 orthologous regions revealed movement of Ghd7 in the grass genomes.Linkage disequilibrium with linkage analysis of multiline crosses reveals different multiallelic QTL for hybrid performance in the flint and dent heterotic groups of maizeAdaptation of maize to temperate climates: mid-density genome-wide association genetics and diversity patterns reveal key genomic regions, with a major contribution of the Vgt2 (ZCN8) locus.Development of a next-generation NIL library in Arabidopsis thaliana for dissecting complex traits.Flowering time in maize: linkage and epistasis at a major effect locus.ZmCCT and the genetic basis of day-length adaptation underlying the postdomestication spread of maizeGenome-wide association study (GWAS) reveals the genetic architecture of four husk traits in maizeComparative Proteomic Analysis of the Response of Maize (Zea mays L.) Leaves to Long Photoperiod Condition.CACTA-like transposable element in ZmCCT attenuated photoperiod sensitivity and accelerated the postdomestication spread of maize.The genetic architecture of leaf number and its genetic relationship to flowering time in maize.The genetic architecture of flowering time and photoperiod sensitivity in maize as revealed by QTL review and meta analysis.The role of seasonal flowering responses in adaptation of grasses to temperate climates.Reciprocal Genetics: Identifying QTL for General and Specific Combining Abilities in Hybrids Between Multiparental Populations from Two Maize (Zea mays L.) Heterotic Groups.Robust expression and association of ZmCCA1 with circadian rhythms in maize.Dent and Flint maize diversity panels reveal important genetic potential for increasing biomass production.ZmCCT9 enhances maize adaptation to higher latitudes.Genomic-based-breeding tools for tropical maize improvement.Association mapping for phenology and plant architecture in maize shows higher power for developmental traits compared with growth influenced traits.Genetic architecture of plant height in winter rye introgression libraries
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P2860
Fine mapping and haplotype structure analysis of a major flowering time quantitative trait locus on maize chromosome 10.
description
article científic
@ca
article scientifique
@fr
articolo scientifico
@it
artigo científico
@pt
bilimsel makale
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scientific article published on 12 October 2009
@en
vedecký článok
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vetenskaplig artikel
@sv
videnskabelig artikel
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vědecký článek
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name
Fine mapping and haplotype str ...... locus on maize chromosome 10.
@en
Fine mapping and haplotype str ...... locus on maize chromosome 10.
@nl
type
label
Fine mapping and haplotype str ...... locus on maize chromosome 10.
@en
Fine mapping and haplotype str ...... locus on maize chromosome 10.
@nl
prefLabel
Fine mapping and haplotype str ...... locus on maize chromosome 10.
@en
Fine mapping and haplotype str ...... locus on maize chromosome 10.
@nl
P2093
P2860
P1433
P1476
Fine mapping and haplotype str ...... t locus on maize chromosome 10
@en
P2093
Catherine Giauffret
Delphine Madur
Denis Coubriche
Fabrice Dumas
Laurence Moreau
Philippe Jamin
Sophie Jouanne
Sébastien Ducrocq
Valérie Combes
P2860
P304
P356
10.1534/GENETICS.109.106922
P407
P577
2009-10-12T00:00:00Z