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This deck focuses on Phylogeny, giving you a quick way to review the definitions, rules, and examples that matter most for AP Biology.
Study Phylogeny 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 is the difference between rooted and unrooted trees?
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Rooted trees have a designated root; unrooted trees do not. Rooted trees show directionality of evolutionary time.
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This deck focuses on Phylogeny, 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: Rooted trees have a designated root; unrooted trees do not. Rooted trees show directionality of evolutionary time.
Answer: Taxonomy classifies organisms; phylogeny studies their evolutionary relationships. Taxonomy groups organisms; phylogeny traces their evolution.
Answer: A tree that summarizes the common features of a set of trees. Shows areas of agreement among different phylogenetic analyses.
Answer: A character that originated in an ancestor of the taxon. Plesiomorphies are inherited from earlier common ancestors.
Answer: To assess the reliability of inferred phylogenetic trees. Statistical resampling method to test tree robustness.
Answer: A specific DNA sequence used to study genetic relationships. Provides data points for comparing evolutionary divergence.
Answer: Molecular data, such as DNA, RNA, or protein sequences. DNA sequences provide objective measures of evolutionary change.
Answer: A clade is a group of organisms that includes an ancestor and all its descendants. Also called a monophyletic group in phylogenetics.
Answer: A branch point represents a common ancestor of the lineages that diverge from it. Also called a node; where lineages split in evolutionary time.
Answer: The branching pattern of a phylogenetic tree. The arrangement of branches showing evolutionary relationships.
Answer: It indicates a common ancestry among the organisms sharing it. Synapomorphies define clades and evolutionary relationships.
Answer: The root represents the most recent common ancestor of all taxa in the tree. The starting point showing the oldest common ancestor.
Answer: It estimates time of evolutionary events based on mutation rates. Assumes constant mutation rates to calculate divergence times.
Answer: It assists in analyzing genetic data to infer evolutionary relationships. Provides computational tools for large-scale phylogenetic studies.
Answer: A character that originated in an ancestor of the taxon. Plesiomorphies are inherited from earlier common ancestors.
Answer: A species or group of species closely related but not part of the group under study. Used to root trees and determine character polarity.
Answer: A clade is a group of organisms that includes an ancestor and all its descendants. Also called a monophyletic group in phylogenetics.
Answer: The pattern of trait resemblance among species due to shared ancestry. Strong signal indicates reliable phylogenetic inference.
Answer: A group of organisms that consists of an ancestor and all its descendants. Same as a clade; represents natural evolutionary groups.
Answer: A point on a tree where a lineage splits into two or more lineages. Branch points where evolutionary splitting occurs.
Answer: A group that includes an ancestor but not all of its descendants. Creates artificial groups that exclude some descendants.
Answer: A table showing the presence or absence of traits across taxa. Organizes trait data for phylogenetic analysis.
Answer: The branching pattern of a phylogenetic tree. The arrangement of branches showing evolutionary relationships.
Answer: Evolution involving the merging of different lineages through hybridization. Creates network-like patterns rather than simple trees.
Answer: It assists in analyzing genetic data to infer evolutionary relationships. Provides computational tools for large-scale phylogenetic studies.
Answer: A type of diagram that shows relationships among species based on shared characteristics. Focuses on branching patterns without time or rate information.
Answer: A tree where all paths from the root to the leaves are of equal length. Assumes molecular clock with constant evolutionary rates.
Answer: Shared derived characters used to construct phylogenetic trees. Define clades by showing evolutionary novelties.
Answer: A diagram that represents evolutionary relationships among organisms. Branch patterns show how species diverged from common ancestors.
Answer: It indicates a common ancestry among the organisms sharing it. Synapomorphies define clades and evolutionary relationships.
Answer: Genes in different species that evolved from a common ancestral gene. Share common ancestry and similar functions across species.
Answer: A species or group of species closely related but not part of the group under study. Used to root trees and determine character polarity.
Answer: A diagram that represents hypotheses about the history of species divergence. Shows branching patterns of species through time.
Answer: Genes in different species that evolved from a common ancestral gene. Share common ancestry and similar functions across species.
Answer: Molecular data, such as DNA, RNA, or protein sequences. DNA sequences provide objective measures of evolutionary change.
Answer: The movement of genes between unrelated species. Can complicate phylogenetic trees by mixing lineages.
Answer: Rooted trees have a designated root; unrooted trees do not. Rooted trees show directionality of evolutionary time.
Answer: Similarity in characteristics resulting from a shared ancestry. Indicates true evolutionary relationship from shared ancestry.
Answer: A tree where all paths from the root to the leaves are of equal length. Assumes molecular clock with constant evolutionary rates.
Answer: Similarity due to convergent evolution, not common ancestry. Can mislead phylogenetic analysis by suggesting false relationships.
Answer: A lineage that diverges early in the history of a group. Represents an early-branching evolutionary lineage.
Answer: It measures evolutionary divergence between species or sequences. Quantifies how much species have diverged evolutionarily.
Answer: The simplest explanation or path with the least evolutionary changes is preferred. Minimizes assumptions about evolutionary change events.
Answer: A specific DNA sequence used to study genetic relationships. Provides data points for comparing evolutionary divergence.
Answer: A group that includes an ancestor but not all of its descendants. Creates artificial groups that exclude some descendants.
Answer: Taxonomy classifies organisms; phylogeny studies their evolutionary relationships. Taxonomy groups organisms; phylogeny traces their evolution.
Answer: Similarity due to convergent evolution, not common ancestry. Can mislead phylogenetic analysis by suggesting false relationships.
Answer: Two descendants that split from the same node in a phylogenetic tree. Share the most recent common ancestor with each other.
Answer: It measures evolutionary divergence between species or sequences. Quantifies how much species have diverged evolutionarily.
Answer: A table showing the presence or absence of traits across taxa. Organizes trait data for phylogenetic analysis.
Answer: A diagram that represents hypotheses about the history of species divergence. Shows branching patterns of species through time.
Answer: A group that does not include the most recent common ancestor of its members. Forms unnatural groups based on convergent evolution.
Answer: It estimates time of evolutionary events based on mutation rates. Assumes constant mutation rates to calculate divergence times.
Answer: Maximum likelihood or Bayesian inference methods. Statistical methods that evaluate multiple possible trees.
Answer: Genes related by duplication within a genome. Result from gene duplication within the same organism.
Answer: Phylogeny is the evolutionary history and relationship of an organism or group of organisms. Shows how species evolved and are related through time.
Answer: A branch point represents a common ancestor of the lineages that diverge from it. Also called a node; where lineages split in evolutionary time.
Answer: A group that does not include the most recent common ancestor of its members. Forms unnatural groups based on convergent evolution.
Answer: Genes related by duplication within a genome. Result from gene duplication within the same organism.
Answer: It can lead to analogous traits that may mislead phylogenetic inference. Creates homoplasy that obscures true evolutionary relationships.
Answer: A diagram that represents evolutionary relationships among organisms. Branch patterns show how species diverged from common ancestors.
Answer: Phylogeny is the evolutionary history and relationship of an organism or group of organisms. Shows how species evolved and are related through time.
Answer: Two descendants that split from the same node in a phylogenetic tree. Share the most recent common ancestor with each other.
Answer: A tree that summarizes the common features of a set of trees. Shows areas of agreement among different phylogenetic analyses.
Answer: Shared derived characters used to construct phylogenetic trees. Define clades by showing evolutionary novelties.
Answer: To assess the reliability of inferred phylogenetic trees. Statistical resampling method to test tree robustness.
Answer: A lineage that diverges early in the history of a group. Represents an early-branching evolutionary lineage.
Answer: Evolution involving the merging of different lineages through hybridization. Creates network-like patterns rather than simple trees.
Answer: It can lead to analogous traits that may mislead phylogenetic inference. Creates homoplasy that obscures true evolutionary relationships.
Answer: Similarity in characteristics resulting from a shared ancestry. Indicates true evolutionary relationship from shared ancestry.
Answer: Maximum likelihood or Bayesian inference methods. Statistical methods that evaluate multiple possible trees.
Answer: A specific form or variation of a character (trait) in a species. Different expressions of the same trait across species.
Answer: A specific form or variation of a character (trait) in a species. Different expressions of the same trait across species.
Answer: The root represents the most recent common ancestor of all taxa in the tree. The starting point showing the oldest common ancestor.
Answer: A point on a tree where a lineage splits into two or more lineages. Branch points where evolutionary splitting occurs.
Answer: The pattern of trait resemblance among species due to shared ancestry. Strong signal indicates reliable phylogenetic inference.