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Scientists compare the structures of a chicken embryo and a human embryo at the same stage of development. They find that both vertebrates have shapes and structures, including the presence of gill slits and talls. How is this comparison of the embryos used as supporting evidence of evolution? The similarities suggest that chickens and humans are the direct descendants of modern-day fish with talls and gill slits. The similarities suggest that vertebrates pass through each of the adult stages of their evolutionary history as they develop The similarities suggest that vertebrates can undergo genetic changes during development that lead to the evolution of new species. The similarities suggest that chickens and humans descend from ancestors with genes that code for the development of talls and gill slits.

Question

Scientists compare the structures of a chicken embryo and a human embryo at the same stage of development. They find that both vertebrates have
shapes and structures, including the presence of gill slits and talls. How is this comparison of the embryos used as supporting evidence of
evolution?
The similarities suggest that chickens and humans are the direct descendants of modern-day fish with talls and gill slits.
The similarities suggest that vertebrates pass through each of the adult stages of their evolutionary history as they develop
The similarities suggest that vertebrates can undergo genetic changes during development that lead to the evolution of new species.
The similarities suggest that chickens and humans descend from ancestors with genes that code for the development of talls and gill slits.

Scientists compare the structures of a chicken embryo and a human embryo at the same stage of development. They find that both vertebrates have shapes and structures, including the presence of gill slits and talls. How is this comparison of the embryos used as supporting evidence of evolution? The similarities suggest that chickens and humans are the direct descendants of modern-day fish with talls and gill slits. The similarities suggest that vertebrates pass through each of the adult stages of their evolutionary history as they develop The similarities suggest that vertebrates can undergo genetic changes during development that lead to the evolution of new species. The similarities suggest that chickens and humans descend from ancestors with genes that code for the development of talls and gill slits.

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CeciliaVeteran · Tutor for 10 years

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The similarities suggest that chickens and humans descend from ancestors with genes that code for the development of tails and gill slits.

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Comparative embryology examines the similarities and differences in the development of embryos of different species. In this context, finding that chicken and human embryos possess similar structures such as gill slits and tails in certain developmental stages suggests a common ancestry. This observation aligns with the theory of evolution, which posits that different species can share common ancestors. Specifically, the presence of similar embryonic structures suggests that chickens and humans have descended from a common ancestor whose genetic blueprint included the development of tails and gill slits. This common ancestry implies that the genes responsible for these features were inherited from this common ancestor and modified over time in different species.
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