The organization of eukaryotic chromosomes into euchromatin and heterochromatin represents an enigmatic aspect of genome evolution. Constitutive heterochromatin is a basic, yet still poorly understood component of eukaryotic genomes and its molecular characterization by means of standard genomic approaches is intrinsically difficult. Drosophila melanogaster polytene chromosomes do not seem to be particularly useful to map heterochromatin sequences because the typical features of heterochromatin, organized as it is into a chromocenter, limit cytogenetic analysis. In contrast, constitutive heterochromatin has been well-defined at the cytological level in mitotic chromosomes of neuroblasts and has been subdivided into several bands with differ...
The fluorescent in situ hybridization (FISH) technique permits fine mapping of both middle and highl...
The structural and functional analyses of heterochromatin are essential to understanding how heteroc...
The heterochromatin in mitotic cells of larval neural ganglia of Drosophila nasuta has been analysed...
The technique of in situ hybridization of DNA probes to Drosophila chromosomes has been initially ap...
Genome sequences for most metazoans and plants are incomplete because of the presence of repeated DN...
In Drosophila chromosomal rearrangements can be maintained and are associated with karyotypic variab...
In the past decade, genome-sequencing projects have yielded a great amount of information on DNA seq...
Heterochromatin represents a significant portion of eukaryotic genomes and has essential structural ...
BACKGROUND:Most eukaryotic genomes include a substantial repeat-rich fraction termed heterochromatin...
Biochemical investigations have shown that constitutive heterochromatin is composed primarily of hig...
Biochemical investigations have shown that constitutive heterochromatin is composed primarily of hig...
Although heterochromatin makes up 40% of the Drosophila melanogaster genome, its organization remain...
BACKGROUND:Most eukaryotic genomes include a substantial repeat-rich fraction termed heterochromatin...
Biochemical investigations have shown that constitutive heterochromatin is composed primarily of hig...
Biochemical investigations have shown that constitutive heterochromatin is composed primarily of hig...
The fluorescent in situ hybridization (FISH) technique permits fine mapping of both middle and highl...
The structural and functional analyses of heterochromatin are essential to understanding how heteroc...
The heterochromatin in mitotic cells of larval neural ganglia of Drosophila nasuta has been analysed...
The technique of in situ hybridization of DNA probes to Drosophila chromosomes has been initially ap...
Genome sequences for most metazoans and plants are incomplete because of the presence of repeated DN...
In Drosophila chromosomal rearrangements can be maintained and are associated with karyotypic variab...
In the past decade, genome-sequencing projects have yielded a great amount of information on DNA seq...
Heterochromatin represents a significant portion of eukaryotic genomes and has essential structural ...
BACKGROUND:Most eukaryotic genomes include a substantial repeat-rich fraction termed heterochromatin...
Biochemical investigations have shown that constitutive heterochromatin is composed primarily of hig...
Biochemical investigations have shown that constitutive heterochromatin is composed primarily of hig...
Although heterochromatin makes up 40% of the Drosophila melanogaster genome, its organization remain...
BACKGROUND:Most eukaryotic genomes include a substantial repeat-rich fraction termed heterochromatin...
Biochemical investigations have shown that constitutive heterochromatin is composed primarily of hig...
Biochemical investigations have shown that constitutive heterochromatin is composed primarily of hig...
The fluorescent in situ hybridization (FISH) technique permits fine mapping of both middle and highl...
The structural and functional analyses of heterochromatin are essential to understanding how heteroc...
The heterochromatin in mitotic cells of larval neural ganglia of Drosophila nasuta has been analysed...