Evidence for Evolution: Comparative Biochemistry and Biogeography

17 soru

Soru 1Soru

Organisms that share a recent common ancestor exhibit a higher degree of similarity in the amino acid sequences of shared proteins such as cytochrome c.

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Cevap: True

Cevap

The statement is true because species sharing a recent common ancestor have accumulated fewer genetic mutations, maintaining higher similarity in conserved amino acid sequences like cytochrome c.
Comparative biochemistry demonstrates that species with a recent common ancestor share high sequence homology in vital proteins like cytochrome c because minimal time has elapsed for neutral mutations to accumulate.

Adım Adım Çözüm

1
Examine the relationship between evolutionary divergence time and biochemical similarity.
Recent common ancestry corresponds to shorter evolutionary time since divergence.
Fewer generations have elapsed for gene mutations to alter protein structures.
2
Evaluate cytochrome c as an evolutionary marker.
Cytochrome c is a highly conserved protein across aerobic organisms, making its amino acid sequence similarity directly proportional to evolutionary closeness.
Proteins essential for basic cellular respiration change slowly and accurately reflect lineage relationships.

Anahtar Kavram

Comparative Biochemistry in Evolution
Soru 2Soru

The presence of endemic terrestrial species on oceanic volcanic islands is primarily attributed to vicariance resulting from continental drift, supported by comparative serological tests showing high precipitation cross-reactivity in structural proteins.

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Cevap: False

Cevap

False
The statement is False because endemic biota on oceanic volcanic islands originate via long-distance dispersal and subsequent adaptive radiation rather than tectonic vicariance. Additionally, comparative serology evaluates soluble serum proteins in blood plasma rather than structural proteins.

Adım Adım Çözüm

1
Analyze the biogeographical mechanism of island colonization.
Oceanic volcanic islands form independently from volcanic hotspot or subduction zone activity in the ocean. They lack prior continental connections, meaning vicariance via continental drift cannot account for their native biota.
Organisms reach oceanic islands via chance long-distance dispersal across oceanic barriers, after which adaptive radiation often occurs.
2
Examine the biochemical foundation of comparative serology.
Serological testing involves reacting serum antigens from one organism with antibodies produced against serum proteins of another organism. It measures precipitation levels in soluble blood plasma proteins, not structural proteins.
Structural proteins (e.g., collagen, keratin) are insoluble matrix proteins and are not used in standard serological antigen-antibody precipitation assays.
3
Deduce the truth value of the combined proposition.
Because both the biogeographical mechanism (vicariance on oceanic islands) and the biochemical classification (serological testing of structural proteins) are scientifically inaccurate, the overall statement is false.
A scientific proposition containing false premises regarding both biogeography and comparative biochemistry is false.

Anahtar Kavram

Biogeographical Distinction Between Dispersal and Vicariance & Serological Testing in Comparative Biochemistry
Soru 3Soru

Match each piece of biochemical or biogeographical evolutionary evidence on the left with its corresponding evolutionary implication or mechanism on the right.

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Öğeler

Cytochrome c amino acid sequence homologies across diverse taxa
Disjunct global distribution of flightless ratite birds
Quantitative serological precipitation testing of serum proteins
Adaptive radiation of Galápagos finch species

Eşleşmeler

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Cevap

Cytochrome c sequence homologies match with indicating conservation of essential metabolic proteins from a common ancestor. Disjunct ratite distribution matches with demonstrating vicariance resulting from continental drift. Serological precipitation testing matches with measuring antigenic cross-reactivity for phylogenetic proximity. Adaptive radiation of Galápagos finches matches with illustrating speciation driven by ecological niche diversification.
Each evidence type correctly pairs with its established evolutionary conclusion: Cytochrome c sequence conservation reveals universal metabolic heritage; ratite distribution reflects tectonic vicariance; serological precipitation quantifies serum protein homology; and island finch diversity demonstrates adaptive radiation.

Adım Adım Çözüm

1
Evaluate biochemical evidence from Cytochrome c
Cytochrome c is involved in electron transport; its highly conserved amino acid sequence across unicellular and multicellular organisms provides direct evidence of deep evolutionary homology.
Universal cellular enzymes reflect shared genetic ancestry.
2
Analyze biogeographical distribution of ratites (rheas, ostriches, emus, cassowaries)
Flightless birds could not have migrated across modern oceans; their presence on South America, Africa, and Australia is attributed to the Mesozoic breakup of Gondwana.
Vicariance through continental drift explains wide spatial separation of closely related terrestrial taxa.
3
Analyze immunological serological testing
Antisera produced against human serum proteins react most strongly (forming dense precipitate) with chimpanzee serum and progressively weaker with more distantly related mammals.
Precipitate quantity directly correlates with structural homology of serum albumins and globulins.
4
Examine adaptive radiation in island archipelagos
A single ancestral seed-eating finch colonizing the islands diversified into species specialized for seeds, insects, and nectar.
Geographical isolation combined with natural selection drives morphological divergence into vacant ecological niches.

Anahtar Kavram

Evidence for Evolution: Comparative Biochemistry and Biogeography
Soru 4Soru

Which biochemical evidence best supports the theory that all living organisms evolved from a shared ancestral origin?

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Cevap: The universal presence of ATP and an identical genetic code across diverse organisms

Cevap

The universal presence of ATP and an identical genetic code across diverse organisms
The universality of fundamental biochemical processes—such as using adenosine triphosphate (ATP) for cellular energy currency and utilizing the same codon system in DNA and RNA to synthesize proteins—provides direct molecular evidence that all living organisms descended from a common ancestor.

Adım Adım Çözüm

1
Identify the biological level being evaluated in the prompt.
The prompt specifically asks for biochemical evidence supporting evolution.
Comparative biochemistry focuses on molecular similarities (DNA, proteins, metabolic pathways) among organisms.
2
Evaluate the choices to determine which represents molecular/biochemical homology.
The reliance on ATP across all domains of life and the near-universal triplet genetic code indicate that these biochemical systems arose early in life's history and were inherited by all extant species.
Shared complex molecular mechanisms are extremely improbable to have evolved independently in every lineage.

Anahtar Kavram

Comparative Biochemistry as Evidence for Evolution
Soru 5Soru

The presence of closely related species of flightless birds, such as the ostrich in Africa, the rhea in South America, and the emu in Australia, across widely separated landmasses is best explained by which of the following?

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Cevap: Geographic isolation of an ancestral population caused by continental drift

Cevap

The distribution of ratite birds across separated continents is best explained by geographic isolation of an ancestral population caused by continental drift.
Biogeography provides strong evidence for evolution by showing how the movement of continental plates (continental drift) fragmented Gondwana. This separated ancestral flightless bird populations, allowing them to undergo divergent evolution and speciation into ostriches, rheas, and emus while retaining ancestral homologous traits.

Adım Adım Çözüm

1
Identify the geographical pattern
Closely related flightless bird species (ratites) inhabit isolated southern continents (Africa, South America, Australia).
Understanding spatial distribution across continents provides biogeographical evidence for evolutionary history.
2
Relate species distribution to geological history
The supercontinent Gondwana split apart via continental drift, separating ancestral ratite populations.
Vicariance events (plate tectonics) geographically isolate ancestral lineages into distinct evolutionary pathways.
3
Evaluate evolutionary implications
Common ancestry combined with tectonic movement accounts for homologous traits and current disjunct distributions.
Biogeography demonstrates how geological processes drive speciation from shared ancestral stock.

Anahtar Kavram

Biogeographical Evidence for Evolution and Continental Drift
Soru 6Soru

Immunological serological tests demonstrate high precipitin cross-reactivity when human antibodies are mixed with chimpanzee serum proteins, indicating close structural homology resulting from a recent common evolutionary ancestor. Is this statement True or False?

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Cevap: True

Cevap

True
The statement is true because comparative serology utilizes antigen-antibody reactions to quantify biochemical similarity. High precipitin formation between human anti-serum and chimpanzee serum proteins demonstrates that their plasma proteins share extremely similar amino acid sequences, providing strong molecular evidence for a recent common ancestor.

Adım Adım Çözüm

1
Analyze the principle of comparative serology in evolutionary biochemistry.
Serum proteins (such as albumin and globulins) evolve through gene mutations over long periods. Closely related species share highly similar protein structures.
Fewer structural protein differences accumulate when organisms share a recent common ancestor.
2
Evaluate the mechanism of the precipitin test in cross-reactivity.
Antibodies produced against human serum proteins bind specifically to homologous protein epitopes in chimpanzee serum, causing high precipitation.
Antigen-antibody binding affinity increases with protein structural similarity.
3
Determine the validity of the statement based on biochemical evidence.
High cross-reactivity confirms a high degree of biochemical homology and recent shared ancestry.
The statement accurately describes the biochemical evidence for primate evolution.

Anahtar Kavram

Comparative serology and immunological cross-reactivity as evidence for evolutionary relationships
Soru 7Soru

In comparative serology, a higher degree of precipitation resulting from a reaction between human antiserum and the blood serum of another mammal indicates a more distant evolutionary relationship to humans.

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Cevap: False

Cevap

False. A higher degree of precipitation in comparative serology indicates greater molecular similarity and therefore a closer evolutionary relationship.
The statement is false. In comparative serology, human antiserum produces the greatest amount of precipitate when mixed with serum from closely related primates (such as chimpanzees) because their serum proteins are nearly identical in structure to human serum proteins. The amount of precipitate decreases as the evolutionary distance between the species increases.

Adım Adım Çözüm

1
Recall the biochemical principles behind comparative serological testing.
Antibodies produced against human serum proteins bind to homologous serum proteins present in other species, forming an insoluble precipitate.
Organisms that share a recent common ancestor possess proteins with similar amino acid sequences and antigenic determinants.
2
Relate the amount of precipitate to evolutionary similarity.
A larger volume of precipitate indicates a higher percentage of shared protein structures and greater immunological cross-reactivity.
More matching epitopes allow more antibody-antigen complexes to form and precipitate out of solution.
3
Evaluate the claim made in the statement.
The statement incorrectly claims that higher precipitation corresponds to a more distant evolutionary relationship.
Higher precipitation directly correlates with closer evolutionary kinship, making the statement false.

Anahtar Kavram

Comparative Serology as Evidence for Evolution
Tahmini Süre:1m 0s
Soru 8Soru

In comparative biochemistry, the degree of evolutionary relationship between different organisms can be determined by comparing the amino acid sequences of conserved proteins such as Cytochrome c. If human Cytochrome c differs by 00 amino acids from chimpanzees, 11 amino acid from rhesus monkeys, 1212 amino acids from horses, and 4545 amino acids from baker's yeast, which of the following conclusions is most valid?

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Cevap: Humans share the most recent common ancestor with chimpanzees and the most distant common ancestor with baker's yeast.

Cevap

Humans share the most recent common ancestor with chimpanzees and the most distant common ancestor with baker's yeast.
The correct answer correctly interprets comparative biochemical evidence. The fewer the differences in the amino acid sequence of a universal, conserved protein such as Cytochrome c between two species, the more recently those species diverged from a common ancestor. Since human and chimpanzee Cytochrome c sequences are identical, they share the most recent common ancestor, while the large difference of 45 amino acids between humans and yeast indicates a very ancient divergence.

Adım Adım Çözüm

1
Analyze the quantitative biochemical data provided in the stem.
Sequence difference count from humans: Chimpanzee = 0, Rhesus monkey = 1, Horse = 12, Baker's yeast = 45.
Fewer amino acid differences indicate less time elapsed since divergence from a shared ancestor.
2
Relate sequence similarity to evolutionary distance.
Humans are most closely related to chimpanzees (0 differences) and most distantly related to baker's yeast (45 differences).
Homologous proteins mutate at a relatively constant rate over geological time; lower divergence reflects a more recent common ancestor.

Anahtar Kavram

Comparative Biochemistry as Evidence for Evolution
Tahmini Süre:1m 0s
Soru 9Soru

According to the combined evidence from biogeography and comparative biochemistry, taxa separated by ancient vicariant events—such as the early Mesozoic fragmentation of Pangaea—exhibit lower percentage amino acid sequence identity in conserved proteins like Cytochrome c than taxa isolated by recent land-bridge submergences, because neutral molecular divergence accumulates as a function of elapsed time since geographic isolation.

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Cevap: True

Cevap

The statement is True.
The statement is correct because evolutionary biology demonstrates a strong positive correlation between time of geographic separation and biochemical divergence. Older vicariant events yield longer periods of genetic isolation, producing greater amino acid sequence differences in proteins such as Cytochrome c.

Adım Adım Çözüm

1
Analyze the impact of geological vicariance timelines on isolated populations.
Ancient vicariant events (e.g., Pangaea breakup) establish reproductive isolation far earlier in geological time than recent barriers (e.g., post-glacial land-bridge submergence).
Geographic isolation prevents gene flow, allowing independent genetic drift and mutation accumulation.
2
Apply the principles of comparative biochemistry and molecular clocks to conserved proteins.
Proteins like Cytochrome c accumulate neutral amino acid substitutions at a predictable average rate over millions of years.
The degree of biochemical divergence serves as a measure of time elapsed since lineages shared a common ancestor.
3
Synthesize the temporal relationship between biogeography and biochemical divergence.
Longer elapsed time since separation leads to a higher number of sequence differences, resulting in lower percentage identity in anciently separated taxa.
Validates that the statement accurately connects vicariance timelines with comparative biochemical sequence identity.

Anahtar Kavram

Integration of Biogeographical Vicariance and Molecular Clock Divergence
Tahmini Süre:2m 0s
Soru 10Soru

Terrestrial endemic species inhabiting oceanic islands that have never been connected to a continental landmass typically exhibit comparative biochemical markers, such as Cytochrome c amino acid sequences, that show greater evolutionary similarity to species on distant continents than to those on the nearest adjacent mainland.

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Cevap: False

Cevap

The statement is False.
The statement is false because oceanic islands are populated by long-distance dispersal from the closest mainland continent. Consequently, comparative biochemical evidence—such as Cytochrome c sequence homology—reveals that island endemics share their most recent common ancestry and greatest biochemical similarity with species from the nearest adjacent mainland, not distant landmasses.

Adım Adım Çözüm

1
Analyze the biogeographical origin of oceanic island fauna and flora.
Oceanic islands form via volcanic activity and were never connected to continents; their biota arises through dispersal from the nearest mainland.
Geographical proximity determines the primary source pool of colonizing ancestral species.
2
Apply comparative biochemistry principles to colonizing lineages.
Divergence times between island endemics and their nearest mainland relatives are relatively recent compared to species on distant continents.
Fewer amino acid substitutions occur in shared proteins like Cytochrome c over shorter evolutionary timeframes.
3
Evaluate the statement's claim regarding distant continent similarity.
The claim contradicts empirical findings in biogeography and molecular phylogenetics.
Endemic island species share highest biochemical homology with nearest mainland taxa, making the statement false.

Anahtar Kavram

Biogeographical colonization of oceanic islands and biochemical homology with nearest mainland species
Soru 11Soru

Comparative serological tests demonstrate that the blood serum proteins of the South American llama (Lama glamaLama\ glama) exhibit a very high degree of immunological cross-reactivity with anti-serum raised against the Old World camel (Camelus dromedariusCamelus\ dromedarius). Which of the following statements best explains this biochemical and biogeographical observation?

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Cevap: Llamas and Old World camels shared a relatively recent common ancestor before ancestral populations were geographically isolated by vicariance.

Cevap

Llamas and Old World camels shared a relatively recent common ancestor before ancestral populations were geographically isolated by vicariance.
High serological cross-reactivity indicates close similarity in blood protein sequences, which directly reflects a shared genetic code derived from a recent common ancestor. Combined with biogeographical evidence, this confirms that ancestral camelids inhabited connected landmasses before geographic isolation led to speciation into modern llamas and camels.

Adım Adım Çözüm

1
Analyze the biochemical evidence
High immunological precipitation between serum proteins of llamas and camels indicates strong primary protein structure similarity.
Proteins reflect gene sequences; higher cross-reactivity signifies greater genetic similarity.
2
Integrate biogeographical context
Llamas (South America) and camels (Asia/Africa) are geographically separated today across continents.
Geographic separation of closely related taxa points to past continental drift or migration followed by isolation (vicariance).
3
Synthesize the evolutionary conclusion
The biochemical affinity confirms common ancestry, while their current distribution illustrates evolutionary divergence after geographic isolation.
Comparative biochemistry and biogeography combined provide robust evidence for common descent and divergence.

Anahtar Kavram

Biochemical Homology and Biogeographical Vicariance
Soru 12Soru

Species of lungfish are restricted to isolated freshwater habitats in South America, Africa, and Australia. Comparative biochemical analysis demonstrates that their hemoglobin amino acid sequences share high homology with one another, but show marked divergence from the hemoglobin of marine teleosts inhabiting surrounding oceans. Which evolutionary concept best accounts for both their continental distribution and biochemical similarity?

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Cevap: Vicariance following the breakup of Gondwana, preserving high molecular homology inherited from a common ancestral lineage

Cevap

Vicariance following the breakup of Gondwana, preserving high molecular homology inherited from a common ancestral lineage
The correct response recognizes that the presence of related freshwater species on South America, Africa, and Australia is a classic example of vicariance resulting from the fragmentation of Gondwana. High amino acid sequence identity in hemoglobin demonstrates homologous relationship derived from a shared ancestral gene pool prior to continental separation.

Adım Adım Çözüm

1
Analyze the biogeographical distribution pattern
Lungfish exist only in South America, Africa, and Australia, landmasses that were once joined as part of the southern supercontinent Gondwana.
Disjunct distributions of strictly freshwater organisms across oceans indicate ancient vicariance caused by plate tectonics rather than recent long-distance dispersal.
2
Evaluate the comparative biochemical evidence
High amino acid sequence homology in hemoglobin among lungfish species indicates a close genetic relationship and a relatively recent common ancestor prior to lineage splitting.
Proteins like hemoglobin serve as molecular clocks; greater sequence similarity reflects smaller evolutionary distances between taxa.
3
Synthesize biogeographical and biochemical data
The combined evidence confirms that ancestral lungfish inhabited Gondwana before continental breakup, leading to geographic isolation (vicariance) while retaining inherited molecular similarities.
Only vicariance combined with shared ancestry explains both the restricted continental distribution and the high biochemical similarity.

Anahtar Kavram

Biogeographical Vicariance and Comparative Molecular Homology
Tahmini Süre:1m 30s
Soru 13Soru

Match each piece of biochemical or biogeographical evidence for evolution on the left with its corresponding evolutionary inference on the right.

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Öğeler

Universal genetic code (DNA/RNA triplet codons)
Disjunct distribution of Glossopteris fossils
Serological precipitin cross-reactivity
Adaptive radiation of Galápagos finches

Eşleşmeler

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Cevap

The universal genetic code matches with a single common ancestral origin; disjunct Glossopteris distribution matches with continental drift and vicariance; serological precipitin cross-reactivity matches with measuring immunological distance for protein homology; adaptive radiation of Galápagos finches matches with diversification following oceanic island colonization.
Each evidence type correctly maps to its evolutionary cause: molecular universality indicates common ancestry; disjunct fossil flora indicates vicariance/continental drift; serology measures plasma protein similarity; island endemic finches illustrate speciation via adaptive radiation.

Adım Adım Çözüm

1
Identify the biochemical significance of the universal genetic code.
Recognize that shared molecular machinery across all living domains indicates common descent.
Biochemical universality reflects deep evolutionary homology.
2
Analyze biogeographical plant fossil distribution (Glossopteris).
Associate non-marine seed fern fossils on separated continents with ancient continental union and subsequent drift.
Heavy plant seeds could not cross wide oceans, requiring vicariance to explain their distribution.
3
Evaluate serological precipitin testing.
Link antibody-antigen cross-reactivity in blood serum to the degree of immunological and protein similarity.
Stronger precipitin reactions signify closely related protein structures.
4
Examine island biogeography and adaptive radiation.
Connect finch beak diversification on the Galápagos Islands to speciation following island colonization.
Geographical isolation on islands fosters rapid evolutionary adaptation to vacant ecological niches.

Anahtar Kavram

Evidence for Evolution: Comparative Biochemistry and Biogeography
Soru 14Soru

The occurrence of identical genetic code structures and highly conserved metabolic enzymes in geographically isolated species across different continents indicates that these organisms descended from a common ancestor rather than evolving independently.

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Cevap: True

Cevap

The statement is True. Comparative biochemistry shows that fundamental molecular features (such as the universal genetic code and conserved enzymes) are shared among geographically isolated organisms, directly supporting common descent.
The statement is correct because comparative biochemistry demonstrates that universal genetic and metabolic machinery across geographically separated species points to a single, shared evolutionary origin.

Adım Adım Çözüm

1
Evaluate the biochemical evidence mentioned in the statement.
Near-identical DNA/RNA coding systems and conserved enzymes exist across diverse species.
Biochemical homologies demonstrate that all living organisms share fundamental molecular pathways inherited from a common ancestor.
2
Relate comparative biochemistry to biogeography.
Geographic barriers isolate populations after shared molecular traits are already established.
Biogeographical distribution explains how species diverged spatially, while conserved biochemistry confirms their unified origin.

Anahtar Kavram

Universal biochemical homologies across geographically separated taxa as evidence for common ancestry.
Soru 15Soru

In a comparative biochemical experiment, anti-human serum antibodies are introduced into serum samples taken from chimpanzees, baboons, and dogs. The percentage of protein precipitation formed is found to be highest in chimpanzees, moderate in baboons, and lowest in dogs. Which of the following conclusions is best supported by this comparative biochemical evidence?

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Cevap: Humans share a more recent common ancestor with chimpanzees than with baboons or dogs.

Cevap

Humans share a more recent common ancestor with chimpanzees than with baboons or dogs.
Immunological cross-reactivity measures the structural similarity of serum proteins. Since protein sequence is determined by genetic code, a higher percentage of precipitation demonstrates greater genetic similarity and a more recent common ancestor between humans and chimpanzees.

Adım Adım Çözüm

1
Analyze the experimental method
Anti-human antibodies test the degree of structural similarity between human blood serum proteins and those of other animals through precipitation reactions.
Greater structural similarity between proteins leads to higher cross-reactivity and greater volume of precipitate.
2
Interpret the precipitation hierarchy
Chimpanzees exhibit the highest precipitation, followed by baboons, with dogs producing the least.
Protein structure is directly coded by DNA sequences; higher similarity in serum proteins demonstrates greater genetic similarity.
3
Formulate the evolutionary deduction
The highest biochemical similarity between humans and chimpanzees indicates they diverged from a common ancestor most recently.
Comparative biochemistry provides direct quantitative evidence of evolutionary relationships and divergence timelines.

Anahtar Kavram

Comparative Serology as Evidence for Evolution
Tahmini Süre:1m 15s
Soru 16Soru

Marsupials are naturally restricted to Australia and South America, yet comparative biochemical analysis reveals near-identical amino acid sequences in their cytochrome c proteins. Which of the following best explains this observation?

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Cevap: The organisms share a common ancestor that inhabited the unified landmass prior to continental separation

Cevap

The organisms share a common ancestor that inhabited the unified landmass prior to continental separation.
High sequence homology in essential proteins such as cytochrome c demonstrates close genetic relationship. When combined with biogeographical evidence showing Australia and South America were once joined as part of Gondwana, it indicates that marsupial ancestors lived on the shared landmass before continental drift isolated them.

Adım Adım Çözüm

1
Analyze the biogeographical evidence presented in the stem.
The presence of related marsupial lineages in South America and Australia reflects a disjunct distribution resulting from tectonic continental drift (breakup of Gondwana).
Geographical isolation on separate continents accounts for spatial distribution patterns of related organisms.
2
Analyze the comparative biochemical evidence.
High amino acid sequence similarity in cytochrome c indicates genetic homology and close evolutionary ancestry.
Conserved proteins accumulate mutations over geological time; minimal sequence divergence points to a shared evolutionary past.
3
Integrate biogeographical and biochemical findings to reach the accurate evolutionary conclusion.
The ancestors of these marsupials inherited the conserved protein structure on a continuous supercontinent before plate tectonics separated the populations.
Combining molecular homology with vicariance models provides robust evidence for macroevolution.

Anahtar Kavram

Biogeographical disjunct distribution combined with molecular protein homology provides evidence of common ancestry prior to continental drift.
Soru 17Soru

Comparative biochemical analysis shows that organisms with a more recent common evolutionary ancestor possess a higher degree of similarity in the amino acid sequences of conserved proteins like Cytochrome c, irrespective of their modern geographic locations.

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Cevap: True

Cevap

The statement is TRUE.
The statement accurately reflects the principles of comparative biochemistry: the degree of amino acid sequence similarity in universally conserved proteins directly indicates how recently two species shared a common ancestor, regardless of where those species are located today.

Adım Adım Çözüm

1
Identify the biological role of conserved proteins in comparative biochemistry.
Proteins such as Cytochrome c perform essential respiratory functions across diverse taxa, making them reliable indicators of phylogenetic ancestry.
Because these proteins exist across virtually all eukaryotic life, their sequences can be directly compared to gauge evolutionary relationships.
2
Relate sequence divergence to time since common ancestry.
Fewer amino acid differences correspond to a shorter time elapsed since divergence from a shared ancestor.
Genetic mutations alter protein sequences incrementally over time, acting as a molecular clock.
3
Assess the effect of geography on biochemical sequence similarity.
Molecular similarity reflects evolutionary lineage rather than geographic proximity or ecological habitat.
While geography influences speciation and external adaptation, primary biochemical sequences strictly track ancestral genetic inheritance.

Anahtar Kavram

Comparative Biochemistry and Molecular Homology
Tahmini Süre:1m 0s