Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 2 de 2
Filter
Add more filters










Database
Language
Publication year range
1.
BMC Genomics ; 12: 301, 2011 Jun 08.
Article in English | MEDLINE | ID: mdl-21651758

ABSTRACT

BACKGROUND: Eucalyptus is an important genus in industrial plantations throughout the world and is grown for use as timber, pulp, paper and charcoal. Several breeding programmes have been launched worldwide to concomitantly improve growth performance and wood properties (WPs). In this study, an interspecific cross between Eucalyptus urophylla and E. grandis was used to identify major genomic regions (Quantitative Trait Loci, QTL) controlling the variability of WPs. RESULTS: Linkage maps were generated for both parent species. A total of 117 QTLs were detected for a series of wood and end-use related traits, including chemical, technological, physical, mechanical and anatomical properties. The QTLs were mainly clustered into five linkage groups. In terms of distribution of QTL effects, our result agrees with the typical L-shape reported in most QTL studies, i.e. most WP QTLs had limited effects and only a few (13) had major effects (phenotypic variance explained > 15%). The co-locations of QTLs for different WPs as well as QTLs and candidate genes are discussed in terms of phenotypic correlations between traits, and of the function of the candidate genes. The major wood property QTL harbours a gene encoding a Cinnamoyl CoA reductase (CCR), a structural enzyme of the monolignol-specific biosynthesis pathway. CONCLUSIONS: Given the number of traits analysed, this study provides a comprehensive understanding of the genetic architecture of wood properties in this Eucalyptus full-sib pedigree. At the dawn of Eucalyptus genome sequence, it will provide a framework to identify the nature of genes underlying these important quantitative traits.


Subject(s)
Chromosome Mapping/methods , Eucalyptus/genetics , Genes, Plant/genetics , Wood/genetics , Eucalyptus/anatomy & histology , Eucalyptus/chemistry , Eucalyptus/growth & development , Hybridization, Genetic , Quantitative Trait Loci/genetics , Wood/anatomy & histology , Wood/chemistry , Wood/growth & development
2.
Plant J ; 43(4): 553-67, 2005 Aug.
Article in English | MEDLINE | ID: mdl-16098109

ABSTRACT

Summary EgMYB2, a member of a new subgroup of the R2R3 MYB family of transcription factors, was cloned from a library consisting of RNA from differentiating Eucalyptus xylem. EgMYB2 maps to a unique locus on the Eucalyptus grandis linkage map and co-localizes with a quantitative trait locus (QTL) for lignin content. Recombinant EgMYB2 protein was able to bind specifically the cis-regulatory regions of the promoters of two lignin biosynthetic genes, cinnamoyl-coenzyme A reductase (CCR) and cinnamyl alcohol dehydrogenase (CAD), which contain MYB consensus binding sites. EgMYB2 was also able to regulate their transcription in both transient and stable expression assays. Transgenic tobacco plants over-expressing EgMYB2 displayed phenotypic changes relative to wild-type plants, among which were a dramatic increase in secondary cell wall thickness, and an alteration of the lignin profiles. Transcript abundance of genes encoding enzymes specific to lignin biosynthesis was increased to varying extents according to the position of individual genes in the pathway, whereas core phenylpropanoid genes were not significantly affected. Together these results suggest a role for EgMYB2 in the co-ordinated control of genes belonging to the monolignol-specific pathway, and therefore in the biosynthesis of lignin and the regulation of secondary cell wall formation.


Subject(s)
Cell Wall/metabolism , Eucalyptus/metabolism , Gene Expression Regulation, Plant , Lignin/biosynthesis , Plant Proteins/physiology , Trans-Activators/physiology , Amino Acid Sequence , Consensus Sequence , Escherichia coli/genetics , Escherichia coli/metabolism , Eucalyptus/genetics , Genetic Linkage , Molecular Sequence Data , Organisms, Genetically Modified , Phenotype , Phylogeny , Promoter Regions, Genetic , Protein Binding , Sequence Homology, Amino Acid , Nicotiana/cytology , Nicotiana/genetics , Nicotiana/metabolism
SELECTION OF CITATIONS
SEARCH DETAIL
...