Co-dominance
BIOXII05: PRINCIPLES OF INHERITANCE AND VARIATION

342145 As per ABO blood grouping system, the blood group of father is \(\mathrm{B}^{+}\), mother is \(\mathrm{A}^{+}\)and child is \(\mathrm{O}^{+}\). Their respective genotype can be
A.\({{\rm{I}}^{\rm{B}}}^{\rm{i}}{\rm{/}}{{\rm{I}}^{{{\rm{A}}^{\rm{i}}}}}{\rm{/ii}}\)
B. \({{\rm{I}}^{\rm{B}}}{{\rm{I}}^{\rm{B}}}{\rm{/}}{{\rm{I}}^{\rm{A}}}{{\rm{I}}^{\rm{A}}}{\rm{/ii}}\)
C. \({{\rm{I}}^{\rm{A}}}{{\rm{I}}^{\rm{B}}}{\rm{/i}}{{\rm{I}}^{\rm{A}}}{\rm{/}}{{\rm{I}}^{\rm{B}}}\)
D. \({{\rm{I}}^{\rm{A}}}{\rm{i}}\;{\rm{/}}\;{{\rm{I}}^{\rm{B}}}{\rm{i}}\;{\rm{/}}\;{{\rm{I}}^{\rm{A}}}{\rm{i}}\)
E. \({\rm{i}}{{\rm{I}}^{\rm{B}}}{\rm{/i}}{{\rm{I}}^{\rm{A}}}{\rm{/}}{{\rm{I}}^{\rm{A}}}{{\rm{I}}^{\rm{B}}}\)
Choose the most appropriate answer from the options given below :

1 A only
2 B only
3 C & B only
4 D & E only
BIOXII05: PRINCIPLES OF INHERITANCE AND VARIATION

342146 ABO blood groups in human beings are controlled by gene I. Gene I has three alleles in which

1 \({I^B}\) and i produce identical sugars
2 \({I^A},{I^B},\) and i produce a slightly different form of sugar
3 Only allele i produce sugar
4 \({I^A}\) and\({I^B}\) produce slightly different form of sugar
BIOXII05: PRINCIPLES OF INHERITANCE AND VARIATION

342147 If two persons with ‘AB’ blood group marry and have sufficiently large number of children could be classified as ‘A’ blood group : ‘AB’ blood group: ‘B’ blood group in 1:2:1 ratio. Modern technique of protein electrophoresis reveals presence of both ‘A’ and ‘B’ type proteins in ‘AB’ blood group individuals. This is an example of

1 Incomplete dominance
2 Co-dominance
3 Complete dominance
4 Partial dominance
BIOXII05: PRINCIPLES OF INHERITANCE AND VARIATION

342148 How many phenotypes and genotypes are possible in case of ABO blood group system ?

1 3, 1
2 6, 4
3 4, 6
4 10
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BIOXII05: PRINCIPLES OF INHERITANCE AND VARIATION

342145 As per ABO blood grouping system, the blood group of father is \(\mathrm{B}^{+}\), mother is \(\mathrm{A}^{+}\)and child is \(\mathrm{O}^{+}\). Their respective genotype can be
A.\({{\rm{I}}^{\rm{B}}}^{\rm{i}}{\rm{/}}{{\rm{I}}^{{{\rm{A}}^{\rm{i}}}}}{\rm{/ii}}\)
B. \({{\rm{I}}^{\rm{B}}}{{\rm{I}}^{\rm{B}}}{\rm{/}}{{\rm{I}}^{\rm{A}}}{{\rm{I}}^{\rm{A}}}{\rm{/ii}}\)
C. \({{\rm{I}}^{\rm{A}}}{{\rm{I}}^{\rm{B}}}{\rm{/i}}{{\rm{I}}^{\rm{A}}}{\rm{/}}{{\rm{I}}^{\rm{B}}}\)
D. \({{\rm{I}}^{\rm{A}}}{\rm{i}}\;{\rm{/}}\;{{\rm{I}}^{\rm{B}}}{\rm{i}}\;{\rm{/}}\;{{\rm{I}}^{\rm{A}}}{\rm{i}}\)
E. \({\rm{i}}{{\rm{I}}^{\rm{B}}}{\rm{/i}}{{\rm{I}}^{\rm{A}}}{\rm{/}}{{\rm{I}}^{\rm{A}}}{{\rm{I}}^{\rm{B}}}\)
Choose the most appropriate answer from the options given below :

1 A only
2 B only
3 C & B only
4 D & E only
BIOXII05: PRINCIPLES OF INHERITANCE AND VARIATION

342146 ABO blood groups in human beings are controlled by gene I. Gene I has three alleles in which

1 \({I^B}\) and i produce identical sugars
2 \({I^A},{I^B},\) and i produce a slightly different form of sugar
3 Only allele i produce sugar
4 \({I^A}\) and\({I^B}\) produce slightly different form of sugar
BIOXII05: PRINCIPLES OF INHERITANCE AND VARIATION

342147 If two persons with ‘AB’ blood group marry and have sufficiently large number of children could be classified as ‘A’ blood group : ‘AB’ blood group: ‘B’ blood group in 1:2:1 ratio. Modern technique of protein electrophoresis reveals presence of both ‘A’ and ‘B’ type proteins in ‘AB’ blood group individuals. This is an example of

1 Incomplete dominance
2 Co-dominance
3 Complete dominance
4 Partial dominance
BIOXII05: PRINCIPLES OF INHERITANCE AND VARIATION

342148 How many phenotypes and genotypes are possible in case of ABO blood group system ?

1 3, 1
2 6, 4
3 4, 6
4 10
BIOXII05: PRINCIPLES OF INHERITANCE AND VARIATION

342145 As per ABO blood grouping system, the blood group of father is \(\mathrm{B}^{+}\), mother is \(\mathrm{A}^{+}\)and child is \(\mathrm{O}^{+}\). Their respective genotype can be
A.\({{\rm{I}}^{\rm{B}}}^{\rm{i}}{\rm{/}}{{\rm{I}}^{{{\rm{A}}^{\rm{i}}}}}{\rm{/ii}}\)
B. \({{\rm{I}}^{\rm{B}}}{{\rm{I}}^{\rm{B}}}{\rm{/}}{{\rm{I}}^{\rm{A}}}{{\rm{I}}^{\rm{A}}}{\rm{/ii}}\)
C. \({{\rm{I}}^{\rm{A}}}{{\rm{I}}^{\rm{B}}}{\rm{/i}}{{\rm{I}}^{\rm{A}}}{\rm{/}}{{\rm{I}}^{\rm{B}}}\)
D. \({{\rm{I}}^{\rm{A}}}{\rm{i}}\;{\rm{/}}\;{{\rm{I}}^{\rm{B}}}{\rm{i}}\;{\rm{/}}\;{{\rm{I}}^{\rm{A}}}{\rm{i}}\)
E. \({\rm{i}}{{\rm{I}}^{\rm{B}}}{\rm{/i}}{{\rm{I}}^{\rm{A}}}{\rm{/}}{{\rm{I}}^{\rm{A}}}{{\rm{I}}^{\rm{B}}}\)
Choose the most appropriate answer from the options given below :

1 A only
2 B only
3 C & B only
4 D & E only
BIOXII05: PRINCIPLES OF INHERITANCE AND VARIATION

342146 ABO blood groups in human beings are controlled by gene I. Gene I has three alleles in which

1 \({I^B}\) and i produce identical sugars
2 \({I^A},{I^B},\) and i produce a slightly different form of sugar
3 Only allele i produce sugar
4 \({I^A}\) and\({I^B}\) produce slightly different form of sugar
BIOXII05: PRINCIPLES OF INHERITANCE AND VARIATION

342147 If two persons with ‘AB’ blood group marry and have sufficiently large number of children could be classified as ‘A’ blood group : ‘AB’ blood group: ‘B’ blood group in 1:2:1 ratio. Modern technique of protein electrophoresis reveals presence of both ‘A’ and ‘B’ type proteins in ‘AB’ blood group individuals. This is an example of

1 Incomplete dominance
2 Co-dominance
3 Complete dominance
4 Partial dominance
BIOXII05: PRINCIPLES OF INHERITANCE AND VARIATION

342148 How many phenotypes and genotypes are possible in case of ABO blood group system ?

1 3, 1
2 6, 4
3 4, 6
4 10
BIOXII05: PRINCIPLES OF INHERITANCE AND VARIATION

342145 As per ABO blood grouping system, the blood group of father is \(\mathrm{B}^{+}\), mother is \(\mathrm{A}^{+}\)and child is \(\mathrm{O}^{+}\). Their respective genotype can be
A.\({{\rm{I}}^{\rm{B}}}^{\rm{i}}{\rm{/}}{{\rm{I}}^{{{\rm{A}}^{\rm{i}}}}}{\rm{/ii}}\)
B. \({{\rm{I}}^{\rm{B}}}{{\rm{I}}^{\rm{B}}}{\rm{/}}{{\rm{I}}^{\rm{A}}}{{\rm{I}}^{\rm{A}}}{\rm{/ii}}\)
C. \({{\rm{I}}^{\rm{A}}}{{\rm{I}}^{\rm{B}}}{\rm{/i}}{{\rm{I}}^{\rm{A}}}{\rm{/}}{{\rm{I}}^{\rm{B}}}\)
D. \({{\rm{I}}^{\rm{A}}}{\rm{i}}\;{\rm{/}}\;{{\rm{I}}^{\rm{B}}}{\rm{i}}\;{\rm{/}}\;{{\rm{I}}^{\rm{A}}}{\rm{i}}\)
E. \({\rm{i}}{{\rm{I}}^{\rm{B}}}{\rm{/i}}{{\rm{I}}^{\rm{A}}}{\rm{/}}{{\rm{I}}^{\rm{A}}}{{\rm{I}}^{\rm{B}}}\)
Choose the most appropriate answer from the options given below :

1 A only
2 B only
3 C & B only
4 D & E only
BIOXII05: PRINCIPLES OF INHERITANCE AND VARIATION

342146 ABO blood groups in human beings are controlled by gene I. Gene I has three alleles in which

1 \({I^B}\) and i produce identical sugars
2 \({I^A},{I^B},\) and i produce a slightly different form of sugar
3 Only allele i produce sugar
4 \({I^A}\) and\({I^B}\) produce slightly different form of sugar
BIOXII05: PRINCIPLES OF INHERITANCE AND VARIATION

342147 If two persons with ‘AB’ blood group marry and have sufficiently large number of children could be classified as ‘A’ blood group : ‘AB’ blood group: ‘B’ blood group in 1:2:1 ratio. Modern technique of protein electrophoresis reveals presence of both ‘A’ and ‘B’ type proteins in ‘AB’ blood group individuals. This is an example of

1 Incomplete dominance
2 Co-dominance
3 Complete dominance
4 Partial dominance
BIOXII05: PRINCIPLES OF INHERITANCE AND VARIATION

342148 How many phenotypes and genotypes are possible in case of ABO blood group system ?

1 3, 1
2 6, 4
3 4, 6
4 10
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here