It breaks down and digests materials.
A Lysosome is not a cell. It is found in the organelle, which is part of the cell. Organelles are found in the eukaryotic cell, not the prokaryotic. So the lyosome is part of the eukaryotic cell.
They are digested in the organelle called lyosome.
They digest foods.
They are filled with Enzymes..
It is called lyosome.
Ribosomes are the organelles that serve as the site of protein synthesis in the cell. They are either found floating freely in the cytoplasm or attached to the endoplasmic reticulum.
Nucleus, ribosomes, Golgi complex, endoplasmic reticulum, mitochondria, lyosome, chloroplast and large central vacuole (last two are in plant cells not animal cells)
Some organelles found in the cytoplasm include the mitochondria, endoplasmic reticulum, Golgi apparatus, ribosomes, lysosomes, and peroxisomes. Each of these organelles carries out specific functions essential for the cell's survival and functioning.
The lysosome is an organelle in animal cells that contains enzymes responsible for breaking down and recycling cellular waste and foreign materials through a process called autophagy. It plays a crucial role in maintaining cell function by degrading unwanted molecules and helping regulate cellular processes.
Lysosomes can be compared to a city's recycling center. They break down and recycle waste materials, like garbage trucks in a city that collect trash for processing and disposal. Just as a recycling center removes harmful substances for reuse or disposal, lysosomes help the cell by digesting and removing unwanted materials.
The endoplasmic reticulum (ER), Golgi apparatus, and lysosomes are considered a complex group of interrelated units because they work together to process, modify, and transport proteins and lipids within the cell. The ER synthesizes these molecules, the Golgi apparatus further modifies and sorts them for delivery, and lysosomes are responsible for degradation and recycling. This interconnectedness ensures efficient cellular function and communication, facilitating the overall maintenance of homeostasis. Their collaborative roles highlight the dynamic nature of intracellular trafficking and processing.
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