CasasoliDeroryMorera-DutreyEtAl2006

Reference

Casasoli, M., Derory, J., Morera-Dutrey, C., Brendel, O., Porth, I., Guehl, J.-M., Villani, F. and Kremer, A. (2006) Comparison of quantitative trait loci for adaptive traits between oak and chestnut based on an expressed sequence tag consensus map. Genetics, 172(1):533-546. (Scopus )

Abstract

A comparative genetic and QTL mapping was performed between Quercus robur L. and Castanea sativa Mill., two major forest tree species belonging to the Fagaceae family. Oak EST-derived markers (STSs) were used to align the 12 linkage groups of the two species. Fifty-one and 45 STSs were mapped in oak and chestnut, respectively. These STSs, added to SSR markers previously mapped in both species, provided a total number of 55 orthologous molecular markers for comparative mapping within the Fagaceae family. Homeologous genomic regions identified between oak and chestnut allowed us to compare QTL positions for three important adaptive traits. Colocation of the QTL controlling the timing of bud burst was significant between the two species. However, conservation of QTL for height growth was not supported by statistical tests. No QTL for carbon isotope discrimination was conserved between the two species. Putative candidate genes for bud burst can be identified on the basis of colocations between EST-derived markers and QTL. Copyright © 2006 by the Genetics Society of America.

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@ARTICLE { CasasoliDeroryMorera-DutreyEtAl2006,
    AUTHOR = { Casasoli, M. and Derory, J. and Morera-Dutrey, C. and Brendel, O. and Porth, I. and Guehl, J.-M. and Villani, F. and Kremer, A. },
    TITLE = { Comparison of quantitative trait loci for adaptive traits between oak and chestnut based on an expressed sequence tag consensus map },
    JOURNAL = { Genetics },
    YEAR = { 2006 },
    VOLUME = { 172 },
    NUMBER = { 1 },
    PAGES = { 533--546 },
    ABSTRACT = { A comparative genetic and QTL mapping was performed between Quercus robur L. and Castanea sativa Mill., two major forest tree species belonging to the Fagaceae family. Oak EST-derived markers (STSs) were used to align the 12 linkage groups of the two species. Fifty-one and 45 STSs were mapped in oak and chestnut, respectively. These STSs, added to SSR markers previously mapped in both species, provided a total number of 55 orthologous molecular markers for comparative mapping within the Fagaceae family. Homeologous genomic regions identified between oak and chestnut allowed us to compare QTL positions for three important adaptive traits. Colocation of the QTL controlling the timing of bud burst was significant between the two species. However, conservation of QTL for height growth was not supported by statistical tests. No QTL for carbon isotope discrimination was conserved between the two species. Putative candidate genes for bud burst can be identified on the basis of colocations between EST-derived markers and QTL. Copyright © 2006 by the Genetics Society of America. },
    COMMENT = { Cited By :64 Export Date: 17 November 2016 },
    DATABASE = { Scopus },
    KEYWORDS = { carbon, molecular marker, article, chestnut, comparative gene mapping, comparative study, consensus, expressed sequence tag, Fagaceae, gene expression, gene mapping, genetic linkage, nucleotide sequence, oak, plant growth, priority journal, quantitative trait locus, statistical analysis, statistical significance, unindexed sequence, Adaptation, Physiological, Chromosome Mapping, Expressed Sequence Tags, Fagaceae, Flowers, Genetic Markers, Microsatellite Repeats, Minisatellite Repeats, Phenotype, Quantitative Trait Loci, Quercus, Species Specificity, Time Factors, Castanea sativa, Fagaceae, Quercus robur },
    OWNER = { Luc },
    TIMESTAMP = { 2016.11.17 },
    URL = { https://www.scopus.com/inward/record.uri?eid=2-s2.0-33644755549&partnerID=40&md5=42a9aa8d275cc670b480bff7c12a55e6 },
}

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