They both evolved from the same multicellular organisms, so they have structures in common. But they did that a long time ago, so they have evolved different structures.
All living things are made up of cells. The structures of different types of cells are related to their functions. Animal cells and plant cells have features in common, such as a nucleus, cytoplasm, cell membrane, mitochondria and ribosomes. Plant and algal cells also have a cell wall, and often have chloroplasts and a permanent vacuole. Bacterial and yeast cells have different structures to animal and plant cells. Dissolved substances pass into and out of cells by diffusion.
homologous structures- same structure/different functions in common ancestors analogous structures-same functions/differnt structures not in common ancestors vestigial-show evolutionary history/structures that arent used anymore (i.e. human appendix/human tailbone)
Homologous structures are body parts of different organisms that have a similar form, suggesting a common evolutionary origin. These structures may serve different functions in each organism but share a common ancestry.
share a common ancestor. These structures are similar in form and function but may have evolved to serve different purposes in different species due to natural selection. The presence of homologous structures supports the theory of evolution.
Plant and animal cells have different structures and functions which leads to differences in how they respond to the same solutions. However, they also share some common cellular processes such as osmosis and diffusion, which is why they may respond similarly to certain solutions in terms of maintaining cellular balance and function.
Cell membrane
All living things are made up of cells. The structures of different types of cells are related to their functions. Animal cells and plant cells have features in common, such as a nucleus, cytoplasm, cell membrane, mitochondria and ribosomes. Plant and algal cells also have a cell wall, and often have chloroplasts and a permanent vacuole. Bacterial and yeast cells have different structures to animal and plant cells. Dissolved substances pass into and out of cells by diffusion.
homologous structures- same structure/different functions in common ancestors analogous structures-same functions/differnt structures not in common ancestors vestigial-show evolutionary history/structures that arent used anymore (i.e. human appendix/human tailbone)
Yes, homologous structures have common bone and muscle structures suggesting that they came from an common ancestor while analogous structures do not share any similarity in features, suggesting that they derived from two separate origins.
No, homologous structures have similar structures and origins but may have different functions. They are inherited from a common ancestor and can be modified over time to perform different roles in different species.
They have a common ancestor they both might have evolved from.
Homologous structures are body parts of different organisms that have a similar form, suggesting a common evolutionary origin. These structures may serve different functions in each organism but share a common ancestry.
Well, isn't that just a happy little question! Structures that share a common evolutionary origin are called homologous structures. They may look different or have different functions now, but deep down, they come from the same place in nature. Just like how every tree in the forest has its own unique story, these structures remind us of the beautiful connections in the world around us.
Homologous structures in different species are evidence of a common evolutionary ancestry. These structures have a similar origin, but may have different functions in different species. Studying homologous structures helps researchers understand how species have diverged and evolved over time.
share a common ancestor. These structures are similar in form and function but may have evolved to serve different purposes in different species due to natural selection. The presence of homologous structures supports the theory of evolution.
Plant and animal cells have different structures and functions which leads to differences in how they respond to the same solutions. However, they also share some common cellular processes such as osmosis and diffusion, which is why they may respond similarly to certain solutions in terms of maintaining cellular balance and function.
There are different structures that cover immature flowers which will depend with the particular type of flower. The common structures are sepals, bracts and spikelets.