Chromosome Painting is emerging as a powerful tool in the exact localization of different gene sequences of chromosomes at the microscopic level. It is principally based on molecular hybridization in situ with sequence specific probes on chromosomes. Different strategies have been adoptedfor the preparation of probes, hybridization and visualization. The impact of this method lies in identification of genes for desired characters in the chromosomes, including those of genetic disorders, in cancer research, in transgenesis and in studies on biodiversity and evolution
Objective: The authors describe a method, termed array painting, which allows the rapid, high resolu...
Whole-chromosome painting probes were developed for each of the 10 chromosomes of maize by producing...
The overall aim of this project was to develop the technique of chromosomal in situ suppression (CIS...
For many years whole chromosome painting probes have been the work-horses in a large variety of clin...
Chromosome painting enables the visualization of chromosomes and has been used extensively in cytoge...
The current 'state-of-art' as to chromosome painting in plants is reviewed. We define different situ...
The current 'state-of-art' as to chromosome painting in plants is reviewed. We define different situ...
Chromosome painting is a widely used technique, and the two principal means of generating probes for...
Cytogenetics is complementary to genetic and molecular analysis of genome structure and function. Fr...
Cytogenetics is complementary to genetic and molecular analysis of genome structure and function. Fr...
This short review presents a historical perspective of chromosome research during the last 50 years....
This short review presents a historical perspective of chromosome research during the last 50 years....
This short review presents a historical perspective of chromosome research during the last 50 years....
A strategy for rapid construction of whole chromosome painting probes (WCPs) by chromosome microdiss...
How to get a metre of DNA into a tiny space while preserving its functional characteristics? This qu...
Objective: The authors describe a method, termed array painting, which allows the rapid, high resolu...
Whole-chromosome painting probes were developed for each of the 10 chromosomes of maize by producing...
The overall aim of this project was to develop the technique of chromosomal in situ suppression (CIS...
For many years whole chromosome painting probes have been the work-horses in a large variety of clin...
Chromosome painting enables the visualization of chromosomes and has been used extensively in cytoge...
The current 'state-of-art' as to chromosome painting in plants is reviewed. We define different situ...
The current 'state-of-art' as to chromosome painting in plants is reviewed. We define different situ...
Chromosome painting is a widely used technique, and the two principal means of generating probes for...
Cytogenetics is complementary to genetic and molecular analysis of genome structure and function. Fr...
Cytogenetics is complementary to genetic and molecular analysis of genome structure and function. Fr...
This short review presents a historical perspective of chromosome research during the last 50 years....
This short review presents a historical perspective of chromosome research during the last 50 years....
This short review presents a historical perspective of chromosome research during the last 50 years....
A strategy for rapid construction of whole chromosome painting probes (WCPs) by chromosome microdiss...
How to get a metre of DNA into a tiny space while preserving its functional characteristics? This qu...
Objective: The authors describe a method, termed array painting, which allows the rapid, high resolu...
Whole-chromosome painting probes were developed for each of the 10 chromosomes of maize by producing...
The overall aim of this project was to develop the technique of chromosomal in situ suppression (CIS...