No, there is garbage DNA at the ends of the chromosomes (Telomere).
The telomere does have a purpose but it does not get used for instructions to create fingers or modify skin complexion etc.
Several factors play into introducing new genes into a cell. Plasmids act as a vector to introduce new genes into a cell.
nucleus
No, every cell in a human contains the same set of genes. However, not all genes are expressed in each cell, which leads to cell differentiation and specialization. This controlled gene expression is what allows different cell types to perform specific functions.
all organisms are made of cell, and a cell contains a nucleus that controls life activities, cell reproduction and the genes.
Every cell in our bodies contains the same set of genes, which are encoded in the DNA. However, not all genes are expressed in every cell; gene expression is regulated and varies depending on the cell type, developmental stage, and environmental factors. For instance, muscle cells express genes that enable contraction, while skin cells express genes related to protection. This selective gene expression allows for the specialization of cells, enabling them to perform distinct functions within the body.
what is the first living cell to get all its genes identified?
Many genes, whatever genes are on the chromosomes used to create the cell. look it up.
Several factors play into introducing new genes into a cell. Plasmids act as a vector to introduce new genes into a cell.
Genes.
Genes are used to produce a certain protein or protein components for the cell and as a means to transport this information to the next generation.
nucleus
No, every cell in a human contains the same set of genes. However, not all genes are expressed in each cell, which leads to cell differentiation and specialization. This controlled gene expression is what allows different cell types to perform specific functions.
some DNA in chromosomes contains of genes.!!
No, a cell can have thousands of genes. Genes contain the instructions for making proteins that carry out various functions within a cell. The interactions of these genes determine the cell's characteristics and behaviors.
No
DNA technology will transfer bacteria genes from cell to cell.
If all genes in a cell were always active, it could lead to chaos and dysfunction in the cell. Gene expression needs to be tightly regulated to ensure that the right genes are active at the right time and in the right amount. Without proper regulation, the cell might not be able to function correctly, leading to potential problems such as uncontrolled growth or cell death.