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This deck focuses on 7a Behavioral Genetics Gene Environment, giving you a quick way to review the definitions, rules, and examples that matter most for MCAT Psychological Social Foundations.
Study 7a Behavioral Genetics Gene Environment in MCAT Psychological Social Foundations with focused flashcards that help you recognize the idea, recall the key rule, and apply it in practice-style prompts.
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Genetically influenced traits evoke specific responses from others. Aggressive child elicits harsh discipline; shy child gets protection.
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This deck focuses on 7a Behavioral Genetics Gene Environment, giving you a quick way to review the definitions, rules, and examples that matter most for MCAT Psychological Social Foundations.
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: Genetically influenced traits evoke specific responses from others. Aggressive child elicits harsh discipline; shy child gets protection.
Answer: Variance due to environmental factors that make siblings similar. Family-wide factors like SES or parenting style affecting all children.
Answer: Heritable gene expression changes without DNA sequence change. Epigenetics involves modifications that alter gene activity and can be passed to offspring without changing the underlying DNA code.
Answer: Observed variance is entirely environmental in that population. A heritability of zero indicates that differences in the trait stem solely from environmental influences within that specific population.
Answer: It does not imply genetic determinism or immutability in an individual. Heritability is a population statistic, not an individual measure.
Answer: Genetic differences relate to differences in environmental exposure. Gene-environment correlation describes the non-random association between genetic makeup and environmental experiences.
Answer: h2=VPVG. Genetic variance divided by total phenotypic variance.
Answer: Observed variance is entirely genetic in that population. A heritability of one signifies that all variations in the trait are attributable to genetic factors in that population.
Answer: Approximately 100% of segregating genes shared. Identical twins develop from one zygote, sharing all genes.
Answer: The effect of genes on phenotype depends on the environment (and vice versa). Same genotype produces different phenotypes in different environments.
Answer: Approximately 50% of segregating genes shared. Fraternal twins develop from two zygotes, like regular siblings.
Answer: Parents provide both genes and environment correlated with those genes. Child inherits genes that match parent-created environment.
Answer: Observed variation is not explained by genetic variation. All trait differences come from environmental factors.
Answer: Genotypes are associated with particular environments. Genes influence exposure to certain environments.
Answer: Environmental influences that make family members more similar. Examples include family SES, parenting style, shared schools.
Answer: Genetic factors contribute to variance in the trait. Higher correlations in monozygotic twins compared to dizygotic twins indicate that genes play a role in trait differences.
Answer: Environmental influences that make family members different (plus error). Includes unique experiences, differential treatment, and measurement error.
Answer: Adoption study. Biological parents provide genes; adoptive parents provide environment.
Answer: Greater MZ than DZ similarity suggests genetic contribution. MZ twins share more genes, so higher similarity implies genetic influence.
Answer: Degree to which a genotype is expressed in phenotype severity. Expressivity describes the variation in intensity or manifestation of a trait among individuals with the same genotype.
Answer: One gene influences multiple phenotypic traits. Pleiotropy occurs when a single gene affects several distinct traits, contributing to multifaceted genetic influences on behavior.
Answer: All phenotypic variance is explained by genetic variance in that population. All trait variation is due to genetic factors.
Answer: Dizygotic twins. Dizygotic twins arise from two separate eggs, sharing approximately half their genetic variants like typical siblings.
Answer: Trait influenced by many genes, each with small effects. Polygenic traits result from the cumulative effects of numerous genes, explaining complex behavioral variations.
Answer: Study of genetic and environmental influences on behavior. Examines how genes and environment together shape behaviors.
Answer: Proportion of phenotypic variance due to genetic variance in a population. Measures genetic contribution to trait variation in a population.
Answer: MZ and DZ twins experience equally similar environments relevant to the trait. Assumes environmental similarity is same for MZ and DZ twins.
Answer: Individuals seek environments compatible with their genetic tendencies. People actively select environments matching their genetic predispositions.
Answer: MZ and DZ twins experience equally similar environments relevant to the trait. Critical assumption for valid heritability estimates from twin comparisons.
Answer: Genetic tendencies influence exposure to particular environments. Genes affect which environments individuals experience.
Answer: Fraternal twins from two zygotes; share ~50% of segregating DNA. Same genetic similarity as regular siblings but shared prenatal environment.
Answer: Multiple genes contribute additively to one trait. Many genes each contribute small effects to one trait.
Answer: Genetic differences explain more variance in that population and context. Genes account for most trait differences in that specific population.
Answer: Heritability is environment-specific and can change across environments. Same genes can have different effects in different settings.
Answer: Relative contributions of genes vs environment to trait variation. Twin studies compare similarities between twin types to disentangle genetic and environmental influences on trait variability.
Answer: h2+c2+e2=1. All trait variance partitions into genetic, shared, and nonshared components.
Answer: Separate genetic effects from rearing (shared) environmental effects. Compares adopted children to biological vs. adoptive parents.
Answer: h2=VPVG. Broad-sense heritability represents the ratio of genetic variance to total phenotypic variance in a population.
Answer: Polygenic inheritance. Complex traits result from cumulative effects of multiple genes.
Answer: Increased transcription (more open chromatin). Histone acetylation relaxes chromatin structure, facilitating access to DNA and enhancing gene transcription rates.
Answer: Reduced transcription (gene silencing). DNA methylation adds methyl groups to DNA, typically repressing gene expression by inhibiting transcription factors.
Answer: Many genes each contribute small additive effects to the phenotype. Complex traits result from cumulative effects of multiple genes.
Answer: Genetic differences influence exposure to particular environments. Genes affect which environments individuals experience.
Answer: Individuals seek environments that match genetically influenced traits. Extroverts choose social activities; introverts prefer solitary pursuits.
Answer: Genetically influenced traits elicit specific responses from others. Child's genetic traits trigger specific environmental responses.
Answer: Monozygotic twins. Monozygotic twins develop from a single fertilized egg, sharing 100% of their genetic material.
Answer: Observable trait resulting from genes and environment. Phenotype emerges from the interaction between an individual's genetic composition and environmental influences.
Answer: VP=VG+VE+VG×E. This equation partitions phenotypic variance into genetic, environmental, and gene-environment interaction components.
Answer: h2=2(rMZ−rDZ)=0.60. Falconer's formula: twice the difference in twin correlations.
Answer: Heritable changes in gene expression without DNA sequence change. Environmental factors alter gene activity without changing DNA code.
Answer: Probability that both twins show a trait given that one twin shows it. Measures trait similarity between twin pairs.
Answer: An individual's genetic makeup (alleles carried). Genotype refers to the specific combination of alleles an individual inherits, determining potential traits.
Answer: Environment-related changes in gene expression without DNA sequence change. Environmental factors alter gene activity patterns.
Answer: Individuals seek environments matching genetic predispositions. Active rGE involves individuals actively selecting or creating environments that align with their genetic tendencies.
Answer: An individual seeks environments consistent with genetic predispositions. People select environments matching their genetic tendencies.
Answer: An individual's heritable traits evoke specific responses from others. Genetically outgoing children receive more social interaction.
Answer: VP=VG+VE+VG×E. Total variance equals genetic + environmental + interaction variance.
Answer: Twin study. MZ twins share 100% genes; DZ twins share 50% on average.
Answer: Identical twins from one zygote; share ~100% of segregating DNA. Genetically identical twins crucial for parsing genetic vs environmental effects.
Answer: Heritability does not apply to individuals; it applies to populations. Describes variance in groups, not individual trait causation.
Answer: Equal environments assumption for MZ and DZ twins. The equal environments assumption posits that monozygotic and dizygotic twins experience comparable environmental similarities.
Answer: Many genes of small effect contribute additively to one trait. Complex traits result from cumulative effects of multiple genes.
Answer: Genetic variance does not explain phenotypic variance in that population. All trait variation is due to environmental factors.
Answer: One gene influences multiple phenotypic traits. Single gene affects multiple seemingly unrelated traits.
Answer: Genetic effects on a trait depend on the environment (and vice versa). Same genotype produces different phenotypes in different environments.
Answer: Environmental influences that make siblings different (plus measurement error). Unique experiences and random developmental variation.
Answer: Parents provide both genes and correlated home environment to child. Musical parents pass genes and instruments/lessons to children.
Answer: Parents provide both genes and correlated home environments. Children inherit genes and matching family environments.
Answer: Proportion of phenotypic variance due to genetic variance in a population. Measures how much genes contribute to trait differences in a group.
Answer: Pleiotropy. Single gene affects multiple seemingly unrelated characteristics.
Answer: Proportion of trait variance in a population due to genes. Heritability quantifies the extent to which genetic differences account for observed variations in a trait across individuals in a group.
Answer: Parents provide both genes and correlated home environment. Passive rGE arises when parental genetics influence both the child's inherited genes and the rearing environment provided.
Answer: Observed variation is fully explained by genetic variation. All trait differences come from genetic factors.
Answer: Study of genetic and environmental contributions to behavior. Behavioral genetics examines how both hereditary factors and surroundings shape psychological characteristics and actions.
Answer: h2=VPVG. Genetic variance divided by total phenotypic variance.
Answer: Study of genetic and environmental influences on behavior. Examines how genes and environment jointly shape behaviors.
Answer: Probability a genotype produces its associated phenotype. Penetrance measures the likelihood that a particular genetic variant will manifest as the expected behavioral or psychological trait.
Answer: Variance due to experiences that make siblings different (plus error). Unique experiences, peer groups, and measurement error create differences.
Answer: h2=VPVG. Genetic variance divided by total phenotypic variance.
Answer: Monozygotic (MZ) twins. MZ twins share 100% of DNA vs DZ twins' 50%.
Answer: Genotype is genetic makeup; phenotype is expressed trait. Genotype is DNA code; phenotype is observable characteristics.
Answer: Proportion of phenotypic variance due to genetic variance in a population. Measures genetic contribution to trait variation in a population.
Answer: An individual elicits environmental responses based on genetically influenced traits. Others respond differently based on person's genetic traits.
Answer: An individual selects environments consistent with genetic predispositions. People seek environments matching their genetic tendencies.
Answer: Study of genetic and environmental contributions to behavior. Examines how genes and environment shape behavioral traits.
Answer: Parents provide both genes and environment correlated with those genes. Musical parents give musical genes and musical home environment.
Answer: Genetically influenced traits evoke specific responses from others. Evocative rGE occurs as innate genetic traits elicit particular environmental reactions from others, shaping experiences.
Answer: Population level; it does not measure an individual's genetic determination. Describes variance in a population, not individual genetics.
Answer: Environmental influences that make siblings more similar. Family environment, parenting, and shared experiences.
Answer: They are environment- and population-specific; they do not generalize universally. Heritability changes with different environments and populations.
Answer: Genetic disorder preventable by diet; environment can block phenotype. Low-phenylalanine diet prevents intellectual disability despite genetic mutation.
Answer: Heritable changes in gene expression without changing DNA sequence. Environmental factors modify gene activity without altering DNA.
Answer: Effect of genes on phenotype depends on environment (and vice versa). Gene-environment interaction highlights how genetic effects on traits are modulated by environmental conditions, and conversely.