The cell shown above is a
#20 is the
#21 is the
#19 is the
golgi apparatus
mitochondria
ribosomes
nucleus
plant cell
animal cell
The cell shown above is a
#25 is the
#23 is the
#22 is the .
#24 is the which converts light to glucose (energy) via photosynthesis. This organelle makes leaves look green because the green color is .
cell wall
animal cell
chloroplast
absorbed
plant cell
vacuole
cell membrane
reflected
mitochondria
What would likely happen if the lysosomes in a cell were damaged?
What is the role of the Golgi apparatus in a cell?
Role of the Central Vacuole in Plant Cells:
In plant cells, the central vacuole stores water, nutrients, and waste products. It maintains turgor pressure, which helps keep the plant cell firm and supports the plant's structure. It also helps with waste disposal and storage.
Role of Vacuoles in Animal Cells:
In animal cells, vacuoles are smaller and temporary. They store nutrients, help with transport, and manage waste, though lysosomes do most of the waste breakdown.
In summary, the central vacuole in plant cells is larger and more important for maintaining cell shape and structure, while animal cells have smaller vacuoles with less critical roles.
Scenario:
Imagine a plant cell where the central vacuole is damaged and unable to store water properly.
Question:
What would likely happen to the plant cell in this scenario?
What makes the rough endoplasmic reticulum (RER) unique from the smooth endoplasmic reticulum (SER)?
Explanation of the role of chloroplasts:
Chloroplasts are specialized organelles found in plant cells that are responsible for photosynthesis. They contain chlorophyll, a green pigment that captures sunlight. Using sunlight, chloroplasts convert carbon dioxide and water into glucose (a form of sugar) and oxygen. This process provides energy for the plant to grow and carry out other vital functions. Chloroplasts are critical for the plant's ability to make its own food, a process that is essential for its survival and growth.
Scenario:
Imagine a plant where the chloroplasts are no longer functioning, and the plant can no longer perform photosynthesis effectively.
Question:
What would likely happen to the plant if its chloroplasts stopped working?