False. Prokaryotic and eukaryotic cells both contain DNA, but eukaryotic cells store their DNA in a nucleus, whereas prokaryotic cells have their DNA everywhere throughout the cell.
Prokaryotic cells contain no nucleus... where as eukaryotic are nucleus containing cells... I rememeber it by saying PRO- means before... its BEFORE they have a nucleus
Prokaryotic cells do not have a membrane-bound nucleus or other membrane-bound organelles, while eukaryotic cells have a true nucleus bound by a nuclear membrane and contain membrane-bound organelles. Prokaryotic cells are generally smaller and simpler in structure compared to eukaryotic cells. Examples of prokaryotic cells include bacteria and archaea, while examples of eukaryotic cells include plants, animals, fungi, and protists.
True. The ancestor of all eukaryotic cells is thought to have evolved approximately 2 billion years ago through a process of endosymbiosis, where prokaryotic cells engulfed other prokaryotic cells, leading to the formation of more complex eukaryotic cells.
Yes, it is possible for a Eukaryotic cell to have no nucleus. An example of a cell without a nucleus is the mammalian red blood cell. However, Eukaryotic cells without a nucleus, like red blood cells, are unable to replicate. This is why red blood cells need to be continuously produced in the bone marrow.
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if we classified aktinimycets in fungi philum it can be true that we have prokaryotic fngi
Prokaryotic cells contain no nucleus... where as eukaryotic are nucleus containing cells... I rememeber it by saying PRO- means before... its BEFORE they have a nucleus
Prokaryotic cells do not have a membrane-bound nucleus or other membrane-bound organelles, while eukaryotic cells have a true nucleus bound by a nuclear membrane and contain membrane-bound organelles. Prokaryotic cells are generally smaller and simpler in structure compared to eukaryotic cells. Examples of prokaryotic cells include bacteria and archaea, while examples of eukaryotic cells include plants, animals, fungi, and protists.
True. The ancestor of all eukaryotic cells is thought to have evolved approximately 2 billion years ago through a process of endosymbiosis, where prokaryotic cells engulfed other prokaryotic cells, leading to the formation of more complex eukaryotic cells.
false
A false statement about the endosymbiotic theory is that it suggests all eukaryotic cells originated from prokaryotic cells without any mutual benefit. In reality, the theory posits that certain prokaryotic cells, such as ancestral bacteria, entered into a symbiotic relationship with primitive eukaryotic cells, providing mutual benefits, such as energy production. This relationship eventually led to the evolution of complex eukaryotic cells with organelles like mitochondria and chloroplasts.
Yes, it is possible for a Eukaryotic cell to have no nucleus. An example of a cell without a nucleus is the mammalian red blood cell. However, Eukaryotic cells without a nucleus, like red blood cells, are unable to replicate. This is why red blood cells need to be continuously produced in the bone marrow.
No, microtubules are not found in prokaryotic cells. They are a component of the cytoskeleton in eukaryotic cells and play essential roles in cell division, intracellular transport, and structural support. Prokaryotic cells lack many membrane-bound organelles and complex cytoskeletal structures.
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No, not all animals are unicellular. Animals are typically multicellular organisms. Additionally, unicellular organisms are not classified as animals. Eukaryotic cells are found in animals, but there are also other types of organisms, such as bacteria, that have prokaryotic cells.
They are definitely eukaryotic cells! no cell walls. prokaryote is latin for false nucleus and eukaryote is true nucleus..or something like that ^^ hope this helps a little!
No, prokaryotic cells divide through a process called binary fission, which involves the replication and division of the genetic material and other cellular components into two identical daughter cells. Mitosis is a process specific to eukaryotic cells.