nfhgjcggbhy ghghgjg fhfhjgfhgfdws fyhf fhfhgf jgfjhy fgjhgf yg hyjgjhfyufdtfh yfygfyu gidk.
Salmonella are bacterial group.They do not have mitochondria.
Mitochondria and chloroplasts are two organelles believed to be remnants of unicellular bacteria. Mitochondria are thought to have evolved from aerobic bacteria, while chloroplasts are believed to have originated from photosynthetic bacteria.
Scientists believe that mitochondria originated from ancient bacteria that were engulfed by early eukaryotic cells through a process called endosymbiosis. Over time, the relationship between the host cell and the engulfed bacteria became mutually beneficial, leading to the evolution of mitochondria as specialized organelles responsible for energy production in eukaryotic cells.
Yes, mitochondria are believed to have evolved from engulfed aerobic bacteria that formed a symbiotic relationship with early eukaryotic cells. This theory is known as the endosymbiotic theory and is supported by similarities between mitochondria and modern-day bacteria, such as their own DNA and ability to replicate independently.
Mitochondria likely originated from a symbiotic relationship between early eukaryotic cells and aerobic bacteria. This symbiosis allowed for more efficient energy production through aerobic respiration, providing a survival advantage which led to the integration of the bacteria as mitochondria within eukaryotic cells.
Mitochondria are evolved from bacteria.They do not contain bacteria.
Salmonella are bacterial group.They do not have mitochondria.
Mitochondria and chloroplasts are two organelles believed to be remnants of unicellular bacteria. Mitochondria are thought to have evolved from aerobic bacteria, while chloroplasts are believed to have originated from photosynthetic bacteria.
Scientists believe that mitochondria originated from ancient bacteria that were engulfed by early eukaryotic cells through a process called endosymbiosis. Over time, the relationship between the host cell and the engulfed bacteria became mutually beneficial, leading to the evolution of mitochondria as specialized organelles responsible for energy production in eukaryotic cells.
The endosymbiotic theory suggests that mitochondria and chloroplasts evolved from symbiotic relationships between prokaryotic cells. More specifically, mitochondria are proposed to have originated from aerobic bacteria, while chloroplasts are thought to have originated from photosynthetic bacteria.
Yes, mitochondria are believed to have evolved from engulfed aerobic bacteria that formed a symbiotic relationship with early eukaryotic cells. This theory is known as the endosymbiotic theory and is supported by similarities between mitochondria and modern-day bacteria, such as their own DNA and ability to replicate independently.
Mitochondria likely originated from a symbiotic relationship between early eukaryotic cells and aerobic bacteria. This symbiosis allowed for more efficient energy production through aerobic respiration, providing a survival advantage which led to the integration of the bacteria as mitochondria within eukaryotic cells.
Endosymbiotic theory describes the evolution of mitochondria and chloroplast.According to it,photosynthetic bacteria and aerobic bacteria engulfed by a eukaryotic cell turned into chloroplast and mitochondria.
There are non in bacteria. They are only in Eukaryota.
They have evolved from bacteria. Aerobic bacteria have turned into them
Bacteria are prokaryotic organisms.Prokaryotes do not have mitochondria.
tfhgh