Simulation · Biology · Class 11
Where is the centromere?
From the lesson Nucleus and microbodies in Cell: The Unit of Life. Change the values and watch what happens.
Where is the centromere?Biology · Class 11
The idea behind it
NCERT §8.5.10–§8.5.11
- Robert Brown described the nucleus as a cell organelle in 1831; Flemming later named the material stained by basic dyes chromatin.
- A non-dividing (interphase) nucleus contains chromatin, an extended network of nucleoprotein fibres, along with the nuclear matrix and one or more spherical nucleoli.
- The nuclear envelope has two parallel membranes separated by a 10–50 nm perinuclear space. The outer membrane is usually continuous with the ER and carries ribosomes.
- Nuclear pores, formed where the two membranes fuse, allow RNA and protein to move in both directions between nucleus and cytoplasm.
- A cell usually has a single nucleus, though the number can vary. Some cells lack one altogether, such as sieve tube cells in vascular plants and mature erythrocytes in many mammals.
- Nucleoli are not membrane-bound, so their contents are continuous with the nucleoplasm. They are sites of active ribosomal RNA synthesis, and cells that make a lot of protein have larger and more numerous nucleoli.
- Along with DNA, chromatin has histones (basic proteins), RNA and some non-histone proteins. About two metres of DNA, distributed among 46 chromosomes, is packed into a single human cell.
- Every chromosome has a primary constriction, the centromere, with disc-shaped kinetochores on its sides. By centromere position chromosomes are metacentric (middle; two equal arms), sub-metacentric (slightly off-centre; one shorter and one longer arm), acrocentric (close to one end; one very short and one very long arm) and telocentric (at the tip).
- Some chromosomes have a secondary constriction at a fixed location that sets off a small fragment called the satellite.
- Microbodies are tiny membrane-bound vesicles packed with a variety of enzymes; both plant and animal cells have many of them.