Genes which code for a pair of contrasting traits or slightly different forms of the same gene are known as

1. Alleles
2. Loci
3. Cistrons
4. Introns

Subtopic:  Monohybrid Cross: 1 |
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Indentify the incorrect statement:

(1) Tall plant produces gametes by meiosis and the dwarf plant by mitosis

(2) Only one allele is transmitted to a gamete.

(3) This segregation of alleles is a random process.

(4) Gametes will always be pure for the trait.

 

Subtopic:  Monohybrid Cross: 1 |
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The law of Segregation is based on the fact that

(1) The Alleles do not show any blending

(2) There is random fertilization

(3) Gametes are pure for the trait

(4) The zygotes are diploid

Subtopic:  Law of Segregation |
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The ultimate source of allelic variation is:

(1) Recombination

(2) Natural selection

(3) Mutation

(4) Drift

Subtopic:  Linkage |
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In the case of co-dominance, the F1 generation resembles:

(1) Dominant parent

(2) Recessive parent

(3) Both the parents

(4) None of the parents

Subtopic:  Dominance Deviation from Mendel: 1 |
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What can be the possible blood groups of progeny whose father and mother are of A and B group respectively?

(1) A and B only

(2) AB only

(3) All except O

(4) A, B, AB and O

Subtopic:  Dominance Deviation from Mendel: 2 |
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In case of starch synthesis in pea seeds [controlled by B gene], BB homozygotes produce large and round starch grains; bb homozygotes produce smaller and wrinkled starch grains and Heterozygotes produce round seeds of intermediate size. What can be inferred from this observation?

(1) The gene B mutates at a faster rate.

(2) The gene B is easily influenced by the environment

(3) Dominance is not an autonomous feature of a gene or the product that it has information for

(4) Some genes do not follow the law of segregation.

Subtopic:  Dominance Deviation from Mendel: 2 |
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"When two pairs of traits are combined in a hybrid, segregation of one pair of characters is independent of the other pair of characters". This is the statement of:

(1) Law of Dominance

(2) law of segregation

(3) Law of Independent Assortment

(4) Law of Linkage

Subtopic:  Dihybrid Cross: Details |
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A test cross is done to find out

(1) Fitness of an organism

(2) Genotype of a plant expressing dominant phenotype

(3) The suitable parents for a Mendelian Cross

(4) The hidden genotypic ratio of F2 phenotypes

Subtopic:  Monohybrid Cross: Further Understanding |
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In a monohybrid cross F1 progeny resemble neither of the parents. What would be true in this case?

1. The parental traits would not appear in any of the F2 -progenies

2. The F2 phenotypic ratio will be different from the F2 genotypic ratio

3. It could be a case of incomplete donminance

4. The F2 genotypic ratio will be similar to any Mendelian monohybrid cross

Subtopic:  Monohybrid Cross: 1 |
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