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Most green algae analyzed to date where hydrogenase genes are detected, have been shown to contain two distinct hydrogenases.
Most green algae occur in fresh water, usually attached to submerged rocks and wood or as scum on stagnant water; there are also terrestrial and marine species.
Most green algae also lack introns, but they have roughly the same number of amino acid residues as land plants.
In most green algae, cytokinesis involves furrowing from the cell cortex, but centrifugal division by means of a phragmoplast also exists (see [30] and [31] and references therein).
Most green algae belong to the Chlorophyta, while the Streptophyta include all land plants and a small group of freshwater algae known as Charophyceae.
Plants and green algae comprise two major phyla: Streptophyta (land plants and their green algal relatives) and Chlorophyta (most green algae).
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This is in contrast to the antheridium of most other green algae, in which is a single cell divides into sperm within its original cell wall.
However, the genera Trebouxia, Pseudotrebouxia, and Myrmecia are the most common green algae found associated with fungi to form lichens, which are known from fossils as early as the Devonian.
Chlorella as the freshwater microalgae is considered the most useful green algae (Liu et al. 2016).
Most flagellated green algae swim toward or away from the light source, i.e., display positive or negative phototaxis.
Most flagellate green algae have developed a light-sensitive system, the eyespot apparatus, composed of carotenoid-rich lipid globules inside the chloroplast [ 29].
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