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No. A phenotype is what we see. The Human Genome Project has revealed that there are probably about 20,000-25,000 protein coding genes. There are most likely thousands more that have not been identified.
A single pair of alleles would produce only one phenotype.
Well, one major difference is, homeostasis (the regulation of stable conditions in the internal environment) is a property of a system (or organism), while epistasis and pleiotropy are properties of genes. However, certain kinds of homeostasis can be controlled by genes (think of the lacoperon). There is a kind of homeostasis, genetic homeostasis, but that is a property of populations, and probably not what you had in mind. Epistasis is the interaction of two or more genes; therefore it is a property of multiple genes. This distinguishes it from pleiotropy,which is a property of a single gene, since a gene is pleiotropic if it effects multiple phenotypes.
epistasis
It is not a single program, It is a combination of many smaller programs and interaction between them with a platform to interact.
If an allele is masked, it is most likely recessive, but not necessarily. This is due to epistasis, the interaction between two or more genes to control a single phenotype. For example, "K" codes for more keratin pigment in the skin, but "k" does not. One can still be albino, however, for if they get the dominant "A" allele, this allelle will override and mask the dominant "K" pigment in the skin, making the person albino.
phenotype
yes
phenotype
gene
Gene shuffling is when the natural trait of a single phenotype favours over the extreme traits over the intermediate.
single variable is a that variable which works witout the interaction of other.it does not concern with any other variable
A single-gene trait is a phenotypic trait controlled by two homologous alleles.
The capacitor is used to create a second phase from the single phase power source and it is the interaction between these two phases that causes the motor to turn.
No. A phenotype is what we see. The Human Genome Project has revealed that there are probably about 20,000-25,000 protein coding genes. There are most likely thousands more that have not been identified.
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