In recent years, the study of plant three-dimensional nuclear architecture received increasing attention. Enabled by technological advances, our knowledge on nuclear architecture has greatly increased and we can now access large data sets describing its manifold aspects. The principles of nuclear organization in plants do not significantly differ from those in animals. Plant nuclear organization comprises various scales, ranging from gene loops to topologically associating domains to nuclear compartmentalization. However, whether plant three-dimensional chromosomal features also exert similar functions as in animals is less clear. This review discusses recent advances in the fields of three-dimensional chromosome folding and nuclear compart...
The eukaryotic cell nucleus is a central organelle whose architecture determines genome function at ...
The non-random three-dimensional organization of genomes is critical for many cellular processes. Re...
The 3D genome is characterized by a complex organization made of genomic and epigenomic layers with ...
Nuclear genome organization has recently received increasing attention due to its manifold functions...
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...
International audienceThe long linear chromosomes of eukaryotic organisms are tightly packed into th...
The interphase cell nucleus is extraordinarily complex, ordered, and dynamic.[br/] In the last decad...
Understanding how the packaging of chromatin in the nucleus is regulated and organized to guide comp...
International audienceThe three-dimensional organization of the eukaryotic nucleus and its chromosom...
The spatial arrangement of interphase chromosomes in the nucleus is important for gene expression an...
Nuclear organization and higher-order chromosome structure in interphase nuclei are thought to have ...
Research on the three-dimensional (3D) structure of the genome and its distribution within the nucle...
The linker of nucleoskeleton and cytoskeleton (LINC) complex is an evolutionarily well-conserved pro...
The eukaryotic cell nucleus is a central organelle whose architecture determines genome function at ...
The non-random three-dimensional organization of genomes is critical for many cellular processes. Re...
The 3D genome is characterized by a complex organization made of genomic and epigenomic layers with ...
Nuclear genome organization has recently received increasing attention due to its manifold functions...
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...
International audienceThe long linear chromosomes of eukaryotic organisms are tightly packed into th...
The interphase cell nucleus is extraordinarily complex, ordered, and dynamic.[br/] In the last decad...
Understanding how the packaging of chromatin in the nucleus is regulated and organized to guide comp...
International audienceThe three-dimensional organization of the eukaryotic nucleus and its chromosom...
The spatial arrangement of interphase chromosomes in the nucleus is important for gene expression an...
Nuclear organization and higher-order chromosome structure in interphase nuclei are thought to have ...
Research on the three-dimensional (3D) structure of the genome and its distribution within the nucle...
The linker of nucleoskeleton and cytoskeleton (LINC) complex is an evolutionarily well-conserved pro...
The eukaryotic cell nucleus is a central organelle whose architecture determines genome function at ...
The non-random three-dimensional organization of genomes is critical for many cellular processes. Re...
The 3D genome is characterized by a complex organization made of genomic and epigenomic layers with ...