FAQ

What activity takes place in chloroplasts?

What activity takes place in chloroplasts?

Chloroplasts are organelles found in plant cells and eukaryotic algae that conduct photosynthesis. Chloroplasts absorb sunlight and use it in conjunction with water and carbon dioxide gas to produce food for the plant.

What is the special functional activity of chloroplast?

Chloroplasts are plant cell organelles that convert light energy into relatively stable chemical energy via the photosynthetic process. By doing so, they sustain life on Earth. Chloroplasts also provide diverse metabolic activities for plant cells, including the synthesis of fatty acids, membrane lipids.

What is a real life example of chloroplast?

A real life example of a chloroplast would be solar panels. Solar panels are used in a variety of products these days, from phone charges, lawn…

How is chloroplast important in photosynthesis?

Chloroplasts play an important part in the process of photosynthesis in some organisms. The chloroplast absorbs the energy in sunlight and uses it to produce sugars. The chloroplast absorbs the energy in sunlight and uses it to produce sugars.

Which is the most important function of the chloroplast?

It is a green photosynthetic pigment that helps in the process of photosynthesis. Following are the important chloroplast functions: The most important function of the chloroplast is to synthesize food by the process of photosynthesis. Absorbs light energy and converts it into chemical energy.

What does light do to the chloroplast?

Light activates photosynthetic, anabolic pathways and, at the same time, deactivates catabolic processes, which are required for dark metabolism in the chloroplast. This dual control prevents the operation of futile cycles, which would occur if these opposing reaction pathways were allowed to function simultaneously.

How are etioplasts used as chloroplasts in plants?

When exposed to light, the etioplasts rapidly develop into chloroplasts by converting this precursor to chlorophyll and by synthesizing new membranepigments, photosynthetic enzymes, and components of the electron-transport chain. Figure 14-33 Plastid diversity. (A) A proplastid from a root tip cell of a bean plant.

What are the three compartments of the chloroplast?

Figure 14-35 The chloroplast. This photosynthetic organelle contains three distinct membranes (the outer membrane, the inner membrane, and the thylakoid membrane) that define three separate internal compartments (the intermembrane space, the stroma, and the thylakoid (more…)

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