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This deck focuses on Mendelian Genetics, giving you a quick way to review the definitions, rules, and examples that matter most for AP Biology.
Study Mendelian Genetics in AP Biology with focused flashcards that help you recognize the idea, recall the key rule, and apply it in practice-style prompts.
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What does a 1:1:1:1 ratio in offspring suggest?
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Test cross with a heterozygous dihybrid. Equal proportions indicate independent assortment of traits.
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This deck focuses on Mendelian Genetics, giving you a quick way to review the definitions, rules, and examples that matter most for AP Biology.
Work through these flashcards in short sessions. Try to answer each prompt before flipping the card, then revisit any cards you miss until the explanation feels automatic.
Answer: Test cross with a heterozygous dihybrid. Equal proportions indicate independent assortment of traits.
Answer: An allele expressed in heterozygotes. Only one copy needed for phenotypic expression.
Answer: 3:1 for a single trait with complete dominance. Standard F2 phenotypic ratio from monohybrid cross.
Answer: 41. From F1 × F1 cross, recessive appears in 41 offspring.
Answer: Two different alleles for a trait. One allele is different from the other (Aa).
Answer: An individual heterozygous for a recessive trait. Has recessive allele but doesn't express the trait.
Answer: Dihybrid cross with independent assortment. Classic Mendelian ratio for two independent traits.
Answer: Predicting the outcome of a genetic cross. Grid showing all possible gamete combinations from a cross.
Answer: Genes for different traits assort independently. Inheritance of one trait doesn't affect another trait's inheritance.
Answer: Heterozygote shows an intermediate phenotype. Blended phenotype between two homozygous parents.
Answer: Predicting the outcome of a genetic cross. Grid showing all possible gamete combinations from a cross.
Answer: Offspring from interbreeding F1 individuals. Second generation from F1 × F1 cross.
Answer: Two different alleles for a trait. One allele is different from the other (Aa).
Answer: To determine an organism's genotype. Cross with homozygous recessive to reveal unknown genotype.
Answer: 41. From F1×F1 cross, recessive appears in 41 offspring.
Answer: 1:2:1 for a single trait with complete dominance. Standard F2 genotypic ratio from monohybrid cross.
Answer: The first filial generation from a cross. Immediate offspring from parental cross.
Answer: Genetic makeup of an organism. The actual alleles present in an organism.
Answer: Probability of mutually exclusive events is the sum of their probabilities. Add probabilities for either-or scenarios.
Answer: Both alleles are expressed equally. Neither allele is dominant over the other.
Answer: A cross examining one trait. Focuses on inheritance patterns of a single characteristic.
Answer: They have two dominant alleles for a trait. Expresses dominant phenotype for that trait.
Answer: A variant form of a gene. Different versions of the same gene at a locus.
Answer: 9:3:3:1 for two independent traits. Classic ratio from F1 × F1 dihybrid cross.
Answer: Both alleles are expressed equally. Neither allele is dominant over the other.
Answer: Genes for different traits assort independently. Inheritance of one trait doesn't affect another trait's inheritance.
Answer: Multiple allelism. More than two allelic variants exist for one gene.
Answer: Multiple allelism. More than two allelic variants exist for one gene.
Answer: Test cross with a heterozygous dihybrid. Equal proportions indicate independent assortment of traits.
Answer: Pea plants (Pisum sativum). Ideal model organism with clear, distinct traits.
Answer: By crossing with a homozygous recessive individual. If recessive offspring appear, original was heterozygous.
Answer: Offspring from interbreeding F1 individuals. Second generation from F1 × F1 cross.
Answer: A cross examining two traits. Studies inheritance of two different characteristics simultaneously.
Answer: They have two recessive alleles for a trait. Expresses recessive phenotype for that trait.
Answer: Two identical alleles for a trait. Both alleles are the same (AA or aa).
Answer: Alleles separate during gamete formation. Each parent contributes one allele per trait to offspring.
Answer: They have two dominant alleles for a trait. Expresses dominant phenotype for that trait.
Answer: 1:2:1 for homozygous dominant, heterozygous, homozygous recessive. Genotype distribution from F1 × F1 monohybrid cross.
Answer: Probability of two independent events occurring together is the product of their probabilities. Multiply individual probabilities for combined events.
Answer: One gene influences multiple traits. Single gene affects multiple, seemingly unrelated characteristics.
Answer: Probability of mutually exclusive events is the sum of their probabilities. Add probabilities for either-or scenarios.
Answer: They have two recessive alleles for a trait. Expresses recessive phenotype for that trait.
Answer: An allele expressed in heterozygotes. Only one copy needed for phenotypic expression.
Answer: 1:2:1 for a single trait with complete dominance. Standard F2 genotypic ratio from monohybrid cross.
Answer: Probability of two independent events occurring together is the product of their probabilities. Multiply individual probabilities for combined events.
Answer: 43. From F1 × F1 cross, dominant appears in 43 offspring.
Answer: Pea plants (Pisum sativum). Ideal model organism with clear, distinct traits.
Answer: Two identical alleles for a trait. Both alleles are the same (AA or aa).
Answer: One gene influences multiple traits. Single gene affects multiple, seemingly unrelated characteristics.
Answer: The first filial generation from a cross. Immediate offspring from parental cross.
Answer: Heterozygote shows an intermediate phenotype. Blended phenotype between two homozygous parents.
Answer: 43. From F1 × F1 cross, dominant appears in 43 offspring.
Answer: Alleles separate during gamete formation. Each parent contributes one allele per trait to offspring.
Answer: A cross examining one trait. Focuses on inheritance patterns of a single characteristic.
Answer: An individual heterozygous for a recessive trait. Has recessive allele but doesn't express the trait.
Answer: Dihybrid cross with independent assortment. Classic Mendelian ratio for two independent traits.
Answer: A variant form of a gene. Different versions of the same gene at a locus.
Answer: 3:1 for a single trait with complete dominance. Standard F2 phenotypic ratio from monohybrid cross.
Answer: A diagram showing familial relationships and traits. Traces inheritance patterns through family generations.
Answer: 1:2:1 for homozygous dominant, heterozygous, homozygous recessive. Genotype distribution from F1 × F1 monohybrid cross.
Answer: A diagram showing familial relationships and traits. Traces inheritance patterns through family generations.
Answer: A cross examining two traits. Studies inheritance of two different characteristics simultaneously.
Answer: Genetic makeup of an organism. The actual alleles present in an organism.