Примери за използване на Chloroplast на Английски и техните преводи на Български
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The stroma of the chloroplast.
Chloroplast has a double membrane.
This is actually all occurring in your chloroplast.
The chloroplast is made up of 3 types of membrane.
In plants PSY is localized in the chloroplast.
Plant cells have chloroplast, and animal cells do not.
You know we're in the stroma of our chloroplast.
The chloroplast is a three-billion-year-old solar energy collector.
The dark stage takes place in the stroma of the chloroplast.
The outer membrane of the chloroplast has a good amount of proteins called porins.
Outside the thylakoids, butwe're still inside of the chloroplast.
This activity occurs in the stroma of the chloroplast and does not require light.
And then each of these green things right here is an organelle called the chloroplast.
And then the fluid inside of the chloroplast, inside of its membrane, so this fluid right here.
Well, that's a special plant organelle inside the leaves of plants called a chloroplast.
Cell organelles like chloroplast and amyloplast are found only in eukaryotic plant cells.
And so now the malate can be pumped out of the vacuoles into the stroma of our chloroplast.
This chloroplast is using sunlight to break water molecules into atoms of hydrogen and oxygen.
Chlorella contains the green photosynthetic pigments chlorophyll-a and-b in its chloroplast.
Inside the chloroplast, the stroma can be recognized, a cavity where carbon dioxide is fixed.
It contains both of the green photosynthetic pigments chlorophyll-a and chlorophyll--b in its chloroplast.
And then within the chloroplast itself, you have these little stacks of these folded membranes, These little folded stacks.
Photosynthesis is carried out in two phases,each one developed in different sectors of the chloroplast.
The researchers analyzed ribosomal and chloroplast genes of more than 200 diatoms and Bolidomonas(a closely related genus).
Chloroplast- The photosynthesis conductor(using light as energy to split water and make oxygen as byproduct).
The cells in most of the species contain only one chloroplast, which is common for algae, but not for the higher plants.
In the chloroplast, it is also possible to recognize the plastoglóbs, protected by a membrane that is similar to that which covers the thylakoids, from which they detach.
Name it ourselves. The cyanobateria in Oliver's blood shares a similar molecular makeup to the chloroplast found in a flower of the nerium genus.
So far, of the 761 specimens,sequence and chloroplast data has enabled the identification of 257 plants at the species level and 504 at the family level.
This may be interpreted as suggesting that the ancestral heterokont was an alga, andall colorless groups arose through loss of the secondary endosymbiont and its chloroplast.