They are not pluripotent.(APEX)
They are not pluripotent.
They are not pluripotent.(APEX)
they can only be used to create specific types of cells
The biggest disadvantage of using unipotent stem cells is their limited differentiation potential, as they can only produce one specific cell type. This restricts their versatility in regenerative medicine and tissue engineering compared to pluripotent stem cells, which can differentiate into any cell type. Additionally, sourcing unipotent stem cells may be more challenging, as they are often tied to specific tissues or conditions.
They are not pluripotent.
The major disadvantage of the Stem and Leaf plot is that it is dependant on the choice of intervals. The plot is not unique.
They are not pluripotent.(APEX)
They are not pluripotent.(APEX)
They are not pluripotent.
They are not pluripotent.(APEX)
they can only be used to create specific types of cells
they can only be used to create specific types of cells
RNA does, in contrast to DNA, form short double strand structures on itself, thereby forming so called stem and loop structures.
A single strand of RNA that loops back on itself is called a hairpin loop or a stem-loop. It forms when the RNA sequence folds back on itself due to complementary base pairing within the same strand, creating a double-stranded region. These structures play important roles in various biological processes, such as gene regulation and enzymatic activity.
The strand of DNA that is not transcribed is called the coding strand. This strand serves as the template for mRNA synthesis during transcription. The opposite strand, which is transcribed into mRNA, is known as the template strand.
The DNA strand that is copied to make mRNA is the template strand of the gene. This strand serves as a template for the RNA polymerase enzyme to synthesize a complementary mRNA strand during the process of transcription.