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  2. Chloroplast - Wikipedia

    en.wikipedia.org/wiki/Chloroplast

    Chloroplasts are a special type of a plant cell organelle called a plastid, though the two terms are sometimes used interchangeably. There are many other types of plastids, which carry out various functions. All chloroplasts in a plant are descended from undifferentiated proplastids found in the zygote, [176] or fertilized egg.

  3. Chloroplast DNA - Wikipedia

    en.wikipedia.org/wiki/Chloroplast_DNA

    The 154 kb chloroplast DNA map of a model flowering plant (Arabidopsis thaliana: Brassicaceae) showing genes and inverted repeats. Chloroplast DNAs are circular, and are typically 120,000–170,000 base pairs long. [7] [8] [9] They can have a contour length of around 30–60 micrometers, and have a mass of about 80–130 million daltons. [10]

  4. Thylakoid - Wikipedia

    en.wikipedia.org/wiki/Thylakoid

    Chloroplasts develop from proplastids when seedlings emerge from the ground. Thylakoid formation requires light. In the plant embryo and in the absence of light, proplastids develop into etioplasts that contain semicrystalline membrane structures called prolamellar bodies. When exposed to light, these prolamellar bodies develop into thylakoids.

  5. Chloroplast membrane - Wikipedia

    en.wikipedia.org/wiki/Chloroplast_membrane

    Like mitochondria, chloroplasts have a double-membrane envelope, called the chloroplast envelope, but unlike mitochondria, chloroplasts also have internal membrane structures called thylakoids. Furthermore, one or two additional membranes may enclose chloroplasts in organisms that underwent secondary endosymbiosis , such as the euglenids and ...

  6. Cytoplasmic streaming - Wikipedia

    en.wikipedia.org/wiki/Cytoplasmic_streaming

    Chloroplasts can be seen travelling around the central vacuole of a cell in Rhizomnium punctatum Cytoplasmic streaming in onion epidermal cell. Cytoplasmic streaming, also called protoplasmic streaming and cyclosis, is the flow of the cytoplasm inside the cell, driven by forces from the cytoskeleton. [1]

  7. Plastid - Wikipedia

    en.wikipedia.org/wiki/Plastid

    Plastids function to store different components including starches, fats, and proteins. [9] All plastids are derived from proplastids, which are present in the meristematic regions of the plant. Proplastids and young chloroplasts typically divide by binary fission, but more mature chloroplasts also have this capacity.

  8. 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.

  9. Light-harvesting complexes of green plants - Wikipedia

    en.wikipedia.org/wiki/Light-harvesting_complexes...

    Light-harvesting complex I is permanently bound to photosystem I via the plant-specific subunit PsaG. It is made up of four proteins: Lhca1, Lhca2, Lhca3, and Lhca4, all of which belong to the LHC or chlorophyll a/b-binding family. The LHC wraps around the PS1 reaction core. [4]