Nuclear genome organization has recently received increasing attention due to its manifold functions in basic nuclear processes, such as replication, transcription, and the maintenance of genome integrity. Using technologies based on chromosome conformation capture, such as Hi-C, we now have the possibility to study the three-dimensional organization of the genome at unprecedented resolution, shedding light onto a previously unexplored level of nuclear architecture. In plants, research in this field is still in its infancy but a number of publications provided first insights into basic principles of nuclear genome organization and the factors that influence it. Apart from general aspects, newly discovered three-dimensional conformations, su...
The three-dimensional packing of the genome plays an important role in regulating gene expression. W...
Chromosomes are intricately folded and packaged in the cell nucleus and interact with the nuclear en...
Over the past 10 years, the development of chromosome conformation capture (3C) technology and the s...
Nuclear genome organization has recently received increasing attention due to its manifold functions...
Nuclear organization and higher-order chromosome structure in interphase nuclei are thought to have ...
In recent years, the study of plant three-dimensional nuclear architecture received increasing atten...
In recent years, we have witnessed a significant increase in studies addressing the three-dimensiona...
Research on plant three-dimensional (3D) genome architecture made rapid progress over the past 5 yea...
The way that chromatin is organized in three-dimensional nuclear space is now acknowledged as a fact...
International audienceThe three-dimensional organization of the eukaryotic nucleus and its chromosom...
International audienceThe long linear chromosomes of eukaryotic organisms are tightly packed into th...
The spatial arrangement of interphase chromosomes in the nucleus is important for gene expression an...
The 3D genome is characterized by a complex organization made of genomic and epigenomic layers with ...
The relevance of three-dimensional (3D) genome organization for transcriptional regulation and there...
The relevance of three-dimensional (3D) genome organization for transcriptional regulation and there...
The three-dimensional packing of the genome plays an important role in regulating gene expression. W...
Chromosomes are intricately folded and packaged in the cell nucleus and interact with the nuclear en...
Over the past 10 years, the development of chromosome conformation capture (3C) technology and the s...
Nuclear genome organization has recently received increasing attention due to its manifold functions...
Nuclear organization and higher-order chromosome structure in interphase nuclei are thought to have ...
In recent years, the study of plant three-dimensional nuclear architecture received increasing atten...
In recent years, we have witnessed a significant increase in studies addressing the three-dimensiona...
Research on plant three-dimensional (3D) genome architecture made rapid progress over the past 5 yea...
The way that chromatin is organized in three-dimensional nuclear space is now acknowledged as a fact...
International audienceThe three-dimensional organization of the eukaryotic nucleus and its chromosom...
International audienceThe long linear chromosomes of eukaryotic organisms are tightly packed into th...
The spatial arrangement of interphase chromosomes in the nucleus is important for gene expression an...
The 3D genome is characterized by a complex organization made of genomic and epigenomic layers with ...
The relevance of three-dimensional (3D) genome organization for transcriptional regulation and there...
The relevance of three-dimensional (3D) genome organization for transcriptional regulation and there...
The three-dimensional packing of the genome plays an important role in regulating gene expression. W...
Chromosomes are intricately folded and packaged in the cell nucleus and interact with the nuclear en...
Over the past 10 years, the development of chromosome conformation capture (3C) technology and the s...