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  2. Thylakoid - Wikipedia

    en.wikipedia.org/wiki/Thylakoid

    Chloroplasts can have from 10 to 100 grana. Grana are connected by stroma thylakoids, also called intergranal thylakoids or lamellae. Grana thylakoids and stroma thylakoids can be distinguished by their different protein composition. Grana contribute to chloroplasts' large surface area to volume ratio.

  3. Chloroplast membrane - Wikipedia

    en.wikipedia.org/wiki/Chloroplast_membrane

    Within the envelope membranes, in the region called the stroma, there is a system of interconnecting flattened membrane compartments, called the thylakoids.The thylakoid membrane is quite similar in lipid composition to the inner envelope membrane, containing 78% galactolipids, 15.5% phospholipids and 6.5% sulfolipids in spinach chloroplasts. [3]

  4. Chloroplast - Wikipedia

    en.wikipedia.org/wiki/Chloroplast

    Chloroplasts, containing thylakoids, visible in the cells of Rosulabryum capillare, a type of moss. A chloroplast (/ ˈ k l ɔːr ə ˌ p l æ s t,-p l ɑː s t /) [1] [2] is a type of organelle known as a plastid that conducts photosynthesis mostly in plant and algal cells.

  5. Lamella (cell biology) - Wikipedia

    en.wikipedia.org/wiki/Lamella_(cell_biology)

    Chloroplasts are characterized by a system of membranes embedded in a hydrophobic proteinaceous matrix, or stroma. The basic unit of the membrane system is a flattened single vesicle called the thylakoid; thylakoids stack into grana. All the thylakoids of a granum are connected with each other, and the grana are connected by intergranal ...

  6. Stroma (fluid) - Wikipedia

    en.wikipedia.org/wiki/Stroma_(fluid)

    Stroma, in botany, refers to the colorless fluid surrounding the grana within the chloroplast. [1] Within the stroma are grana (stacks of thylakoid), the sub-organelles where photosynthesis is started [2] before the chemical changes are completed in the stroma. [3] Photosynthesis occurs in two stages.

  7. Photosystem - Wikipedia

    en.wikipedia.org/wiki/Photosystem

    Two families of reaction centers in photosystems can be distinguished: type I reaction centers (such as photosystem I in chloroplasts and in green-sulfur bacteria) and type II reaction centers (such as photosystem II in chloroplasts and in non-sulfur purple bacteria). The two photosystems originated from a common ancestor, but have since ...

  8. Proteinoplast - Wikipedia

    en.wikipedia.org/wiki/Proteinoplast

    Chloroplasts are photosynthesizing structures that help to make light energy for the plant. [4] Leucoplasts are a colorless type of plastid which means that no photosynthesis occurs here. [ 3 ] The colorless pigmentation of the leucoplast is due to not containing the structural components of thylakoids unlike what is found in chloroplasts and ...

  9. Chlorophyll - Wikipedia

    en.wikipedia.org/wiki/Chlorophyll

    Chlorophyll molecules are arranged in and around photosystems that are embedded in the thylakoid membranes of chloroplasts. [17] In these complexes, chlorophyll serves three functions: The function of the vast majority of chlorophyll (up to several hundred molecules per photosystem) is to absorb light.