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The nucleolus is found in the center of the nucleus.
They have a central cell nucleus with a prominent nucleolus.
The nucleolus is the part of a cell where ribosomes are made.
Although the definition does not explicitly state it, the nucleolus is always unique.
No waste circles could be seen building up in the nucleolus of animal cells.
There is at least one nucleolus in each nucleus.
This is noteworthy because the cell does not need to divide the nucleolus right away.
The nucleolus which make ribosomes in the cell also dissolves.
Each cell has a round shape, a large nucleolus and a small amount of cytoplasm.
The shape of the collecting nucleolus ranged from nearly circular to irregular.
Viewed through a microscope, the nucleolus appears as a dark spot inside of the cell's nucleus.
Also inside the nucleus, the nucleolus in the nucleus disappears from view.
The protein contains several nuclear localization signals and is found in the nucleolus.
The mature r-proteins are then "imported" back into the nucleus and finally the nucleolus.
It is found within the nucleolus that binds p53.
Besides the nucleolus, the nucleus contains a number of other non-membrane-delineated bodies.
The most distinctive feature of the Sertoli cells is the dark nucleolus.
Because of this non-random organization, the nucleolus is defined as a "genetically determined element."
The nuclei are round to oval with delicate chromatin and a usually single nucleolus.
Nucleolus - a roughly spherical sub-organelle of the cell nucleus.
The nucleolus also gets replaced with a large homogenous cluster of electron dense material.
The nucleolus of is the lexicographically minimal imputation, based on this ordering.
In mammals, the nucleolus of the oocyte is derived solely from maternal cells.
Localization of Sir2p: the nucleolus as a compartment for silent information regulators.
Finally, the nucleolus is the compartment where the majority of the exosome complexes are found.