Biology
Genetics and Plant Breeding
1,240 Questions
Genetics and Plant Breeding explores the principles of heredity, chromosomal inheritance, and hybridization techniques. It includes key concepts like Mendelian genetics, gene linkage, and polygenic inheritance. This topic is essential for students tackling advanced biology or botany sections in competitive examinations.
Mendelian InheritanceChromosome TheoryGene LinkagePolygenic InheritancePlant HybridizationPopulation Genetics Equilibrium
Genetics and Plant Breeding Questions
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4 out of 4
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2 out of 4
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1 out of 4
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3 out of 4
C
Correct answer
Explanation
Mother A (genotype I^A I^A or I^A i) × Father B (genotype I^B I^B or I^B i) can produce children with genotypes I^A I^B (AB), I^A i (A), I^B i (B), or ii (O). The Punnett square shows a 1:1:1:1 ratio, giving 25% probability for each blood type including O. The phrasing '1 out of 4' represents this probability per child, not a guarantee across 4 children.
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IA and IB dominant, and IO recessive alleles
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IA dominant and IO and IB recessive alleles
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IA, IB and IO dominant alleles
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IA, IB and IO recessive alleles
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None of these
A
Correct answer
Explanation
This is the correct option. The ABO blood group system in humans is controlled by two dominant and one recessive alleles.
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allele
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factors
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species
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units
A
Correct answer
Explanation
Alleles are alternative forms of the same gene that occupy the same position on a chromosome and determine contrasting traits (like tall vs dwarf in pea plants). Factors was Mendel's term for genes before chromosomes were discovered. Species refers to a group of organisms, and units is too generic.
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Independent assortment
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Dominant characters
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Segregation of factors
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Factors are present in the chromosomes
D
Correct answer
Explanation
Mendel discovered independent assortment, dominant characters, and segregation of factors through his experiments, but he did not know that factors (genes) are present on chromosomes - chromosome theory came later. Mendel worked with 'factors' as abstract units of heredity without knowledge of their physical location on chromosomes.
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Both tall and dwarf plants were produced in F1 generation
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Only tall plants were produced in F1 generation
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Only dwarf plants were produced in F1 generation
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Plants of mixed characters were produced in F1 generation
B
Correct answer
Explanation
When Mendel crossed pure tall (TT) and dwarf (tt) pea plants, all F1 offspring were heterozygous (Tt) and displayed only the tall trait because tallness is dominant. The dwarf trait was recessive and masked in F1, reappearing only in F2 when the plants self-pollinated. This demonstrated Mendel's law of dominance.
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segregation
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independent assortment
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dominance
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purity of gamete
C
Correct answer
Explanation
In Mendel's monohybrid cross between pure tall and pure dwarf pea plants, the entire F1 generation showed only tall plants. This uniform expression of one parental trait (tall) completely masking the other (dwarf) demonstrates the law of dominance - the dominant trait appears in all F1 offspring.
B
Correct answer
Explanation
In Mendel's monohybrid cross, the F2 generation displays a 3:1 phenotypic ratio - approximately 3/4 of offspring show the dominant trait and 1/4 show the recessive trait. This classic ratio emerges from the underlying genotypic ratio of 1:2:1 (homozygous dominant:heterozygous:homozygous recessive).
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Drosophila
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Pisum
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Chlorella
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Evening Primrose
B
Correct answer
Explanation
Mendel conducted his groundbreaking hybridization experiments using Pisum sativum (garden pea plants). He chose peas because they had distinct contrasting traits, could be easily cross-pollinated, produced many offspring quickly, and had a short generation time - making them ideal for studying inheritance patterns.
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that differ in one character
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that differ in two characters
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of two different parents
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of same parents
A
Correct answer
Explanation
A monohybrid cross is defined as a genetic cross between two individuals that differ in only one character or trait. The prefix 'mono-' means single, indicating that only one trait is being studied. This contrasts with dihybrid crosses which involve two different traits simultaneously.
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euthenics
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eugenics
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psychology
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genetics
D
Correct answer
Explanation
Genetics is the branch of biology specifically concerned with heredity and the variation of inherited characteristics. Euthenics deals with improving human well-being through environmental improvement, eugenics focuses on improving genetic quality, and psychology studies mental processes and behavior.
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8 pairs
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7 pairs
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6 pairs
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5 pairs
B
Correct answer
Explanation
Gregor Mendel studied 7 pairs of contrasting characters in pea plants including plant height, seed shape, seed color, pod shape, pod color, flower position, and flower color. These 7 traits formed the foundation of his inheritance experiments.
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homozygous
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heterozygous
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dominant
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recessive
A
Correct answer
Explanation
Homozygous condition occurs when both genes on homologous chromosomes are identical for a particular character. This means both alleles are the same (either both dominant or both recessive). Heterozygous would be when they are different.
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homozygous
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heterozygous
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recessive
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dominant
B
Correct answer
Explanation
Heterozygous condition occurs when the paired genes on homologous chromosomes are different or dissimilar for a particular character. This means one allele is dominant and the other is recessive. Homozygous would be when they are the same.
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dominant gene
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codominant gene
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recessive gene
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allele
A
Correct answer
Explanation
A dominant gene expresses its phenotype in both heterozygous (one dominant + one recessive allele) and homozygous (two dominant alleles) conditions. This is why dominant traits appear in offspring even when only one parent carries the dominant allele. Recessive genes only express when homozygous, while codominant genes show both traits simultaneously in heterozygotes.
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chromosome
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gene
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allele
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centromere
B
Correct answer
Explanation
A gene is the fundamental unit of heredity that carries genetic information from parents to offspring. Genes are specific segments of DNA that code for particular traits and are passed down through generations. Chromosomes contain many genes, while alleles are different forms of the same gene, and centromeres are chromosome structures involved in cell division.