Scanning electron microscopy (SEM), as well as transmission electron microscopy (TEM), has been utilized to determine how the surface structure of mitotic chromosomes is related to the organization of the 30 nm chromosomal fibers. SEM revealed the surfaces of isolated, HeLa cell chromosomes to possess a knobby substructure with chromosomes prepared for EM in buffers containing 0.5-1.5 mM Mg2+. These projections had substantially greater widths (65-70 nm) than the underlying chromatin fibers. Reducing the Mg ion concentration to 0.05-0.15 mM resulted in the further expansion of the chromosomes, which flattened the chromosomes for SEM so the fibers became the dominant feature of the micrographs. The surface protuberances are interpreted as re...
none5siThe detailed understanding of the nuclear cell functions requires an accurate knowledge of th...
The surface structure of mitotic barley chromatin was studied by field-emission scanning electron mi...
Chromatin is a large, flexible, irregular molecule, which does not lend itself to high resolution st...
The higher-order assembly of the approximately 30 nm chromatin fibers into the characteristic morpho...
The fine structure of metaphase chromosomes and nuclei were studied by scanning electron microscopy....
During cell division, mitotic chromosomes assemble and are equally distributed into two new daughter...
Preparative methods for scanning electron microscopy of chromosomes are dependent on the original so...
Three-dimensional mitotic plant chromosome architecture can be investigated with the highest resolut...
Scanning electron microscopy (SEM) proves to be an appropriate technique for imaging chromatin organ...
Whole mount mitotic metaphase chromosomes of different plants and animals were investigated with hig...
The detailed understanding of the nuclear cell functions requires an accurate knowledge of the spati...
Previous studies of the structure of metaphase chromosomes have relied heavily on electron micrograp...
Since the first discoveries of Schneider and Flemming, several papers have been published on chromos...
Chromosome and chromatid alignment in mitotic configurations remains a topic of interest because the...
HeLa metaphase chromosomes were examined by means of "in lens" field emission scanning electron mic...
none5siThe detailed understanding of the nuclear cell functions requires an accurate knowledge of th...
The surface structure of mitotic barley chromatin was studied by field-emission scanning electron mi...
Chromatin is a large, flexible, irregular molecule, which does not lend itself to high resolution st...
The higher-order assembly of the approximately 30 nm chromatin fibers into the characteristic morpho...
The fine structure of metaphase chromosomes and nuclei were studied by scanning electron microscopy....
During cell division, mitotic chromosomes assemble and are equally distributed into two new daughter...
Preparative methods for scanning electron microscopy of chromosomes are dependent on the original so...
Three-dimensional mitotic plant chromosome architecture can be investigated with the highest resolut...
Scanning electron microscopy (SEM) proves to be an appropriate technique for imaging chromatin organ...
Whole mount mitotic metaphase chromosomes of different plants and animals were investigated with hig...
The detailed understanding of the nuclear cell functions requires an accurate knowledge of the spati...
Previous studies of the structure of metaphase chromosomes have relied heavily on electron micrograp...
Since the first discoveries of Schneider and Flemming, several papers have been published on chromos...
Chromosome and chromatid alignment in mitotic configurations remains a topic of interest because the...
HeLa metaphase chromosomes were examined by means of "in lens" field emission scanning electron mic...
none5siThe detailed understanding of the nuclear cell functions requires an accurate knowledge of th...
The surface structure of mitotic barley chromatin was studied by field-emission scanning electron mi...
Chromatin is a large, flexible, irregular molecule, which does not lend itself to high resolution st...