TLS Online TPP Program

#Question id: 5312


Why is it more difficult to identify eukaryotic genes than prokaryotic genes using genomic techniques?

#SCPH28 | Zoology
  1. The proteins are larger in eukaryotes than in prokaryotes.

  2. The coding portions of genes in eukaryotes are shorter than in prokaryotes.

  3. There are no start codons in eukaryotic genes.

  4. There are introns in eukaryotic genes.

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TLS Online TPP Program

#Question id: 4814

#SCPH28 | Zoology

The frequency of recombinant gametes is half the frequency of crossing over between genes present on same chromosome is due to

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#Question id: 4815

#SCPH06 I Botany

The cross over percentage between linked genes J and M is 20%, J and L is 35%, J and N is 70%, L and K is 15%, M and N 50%. The sequence of genes on the chromosome is

TLS Online TPP Program

#Question id: 4815

#SCPH12 I Genetics

The cross over percentage between linked genes J and M is 20%, J and L is 35%, J and N is 70%, L and K is 15%, M and N 50%. The sequence of genes on the chromosome is

TLS Online TPP Program

#Question id: 4815

#SCPH28 | Zoology

The cross over percentage between linked genes J and M is 20%, J and L is 35%, J and N is 70%, L and K is 15%, M and N 50%. The sequence of genes on the chromosome is

TLS Online TPP Program

#Question id: 4816

#SCPH06 I Botany

A wild-type fruit fly heterozygous for gray body color and normal wings was mated with a black fly with vestigial wings to produced 1000 offspring. Recombination frequency between these genes for body color and wing type is 20 %. What number of offspring that is gray body colour and normal wing?

TLS Online TPP Program

#Question id: 4816

#SCPH12 I Genetics

A wild-type fruit fly heterozygous for gray body color and normal wings was mated with a black fly with vestigial wings to produced 1000 offspring. Recombination frequency between these genes for body color and wing type is 20 %. What number of offspring that is gray body colour and normal wing?