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Chromatid

47 Sentences | 10 Meanings

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Each chromatid contains an identical copy of the DNA molecule.
Each chromatid contains a double helix DNA molecule.
The process of chromatid separation is controlled by several proteins.
Microtubules from opposite spindle poles attach to the kinetochores of each chromatid during mitosis.
A mutation in the DNA sequence of a chromatid can result in a genetic disorder.
Each chromatid contains an exact copy of the genetic material.
The histones in a chromatid help to package and organize the DNA into a compact structure.
Each chromatid is connected to its sister chromatid at the centromere.
Each chromatid contains an identical copy of the chromosome's genetic material.
The chromosomal abnormality resulted in the formation of a triradial chromatid.
The centromere is the region of a chromatid where the two sister chromatids are held together.
Abnormal chromatid separation can result in genetic disorders.
The structure of a chromatid is essential for the proper distribution of genetic material to daughter cells during cell division.
Each chromatid contains a unique sequence of genetic information.
The genetic material in each chromatid is identical to its paired sister chromatid.
The formation of tetrads is an important step in meiosis, as it allows for the exchange of chromatid segments.
Errors in chromatid separation can lead to genetic disorders such as Down syndrome.
During cell division, each chromatid separates from its identical copy and moves to opposite poles of the cell.
Mutations in genes involved in chromatid cohesion can lead to chromosomal instability and cancer.
Each chromatid contains genetic information that is passed down during cell division.
Meiosis results in the formation of four haploid cells, each with one chromatid from each homologous chromosome pair.
The presence of an extra chromatid in a chromosome can cause genetic abnormalities.
The DNA in a chromatid is tightly packed and condensed into a compact structure.
The length of a chromatid varies depending on the location of genes along it.
The presence of a single chromatid in a cell indicates that the cell is in the G1 or G2 phase of the cell cycle.
The structure of the chromatid changes during different phases of the cell cycle.
A missing or extra chromatid can lead to chromosomal abnormalities such as Down syndrome.
Each chromatid contains a single DNA molecule that is replicated before cell division.
Each chromatid contains a single strand of DNA that has replicated into two identical copies.
The DNA replication in each chromatid produces identical genetic material in each daughter cell.
During cell division, the chromatid separates and becomes two identical chromosomes.
DNA replication occurs before chromatid formation during the interphase of the cell cycle.
The chromatid is composed of DNA and protein and is visible under a microscope.
Each chromatid contains a copy of the genetic material of the original chromosome.
The uncoiled form of a chromatid is called chromatin.
Errors in chromatid separation during cell division can lead to genetic abnormalities.
The formation of a bivalent occurs when two homologous chromosomes pair up, and each chromatid lines up next to its homologue.
The structure of the chromatid is essential for maintaining genetic stability.
The failure of chromatid separation can lead to chromosomal abnormalities.
The formation of a dicentric chromatid can cause chromosome breakage during cell division.
The process of chromatid condensation during cell division is controlled by various proteins.
The kinetochore is a protein structure that attaches to the centromere of each chromatid.
The spindle fibers attach to the kinetochore of each chromatid.
The process of chromatid separation during cell division is essential for the formation of daughter cells.
The kinetochore is a protein structure that attaches to the centromere of each chromatid during cell division.
The DNA in a chromatid is tightly packed and condensed to ensure proper cell division.
Each chromatid contains the same genetic material as its corresponding sister chromatid.
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