Halosagania: Difference between revisions
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m (→top: clean up, replaced: Binary Fission → Mitosis) |
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{{Species |
{{Species |
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|name = Halosagania |
|name = Halosagania |
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|week = 17 |
|week = 17 |
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|generation = 112 |
|generation = 112 |
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|creator = Dass |
|creator = Dass |
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|image = Halosagania.jpg |
|image = Halosagania.jpg |
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|extant = 1 |
|extant = 1 |
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|exweek = 23 |
|exweek = 23 |
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|exgen = 149 |
|exgen = 149 |
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|excause = Integrated into [[Cryophytes]] |
|excause = Integrated into [[Cryophytes]] |
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|ancestor = Cryosagania |
|ancestor = Cryosagania |
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|size = Microscopic |
|size = Microscopic |
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|habitat = BioCat River |
|habitat = BioCat River |
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|habitat2 = |
|habitat2 = |
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|diet = Photosynthesis |
|diet = Photosynthesis |
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|reproduction= Mitosis |
|reproduction= Mitosis |
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|domain = Eukaryota |
|domain = Eukaryota |
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|kingdom = Kyanozoa |
|kingdom = Kyanozoa |
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|phylum = Kyanophyta |
|phylum = Kyanophyta |
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|class = Cryosaganopsida |
|class = Cryosaganopsida |
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|order = Cryosaganales |
|order = Cryosaganales |
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|family = Cryosaganaceae |
|family = Cryosaganaceae |
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|genus = Cryosagania |
|genus = Cryosagania |
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|species = halo |
|species = halo |
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}} |
}} |
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Revision as of 21:10, 12 December 2023
Halosagania | ||
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(Cryosagania halo) | ||
23/149, Integrated into Cryophytes | ||
Information | ||
Creator | Dass Other | |
Week/Generation | 17/112 | |
Habitat | BioCat River | |
Size | Microscopic | |
Primary Mobility | Unknown | |
Support | Unknown | |
Diet | Photosynthesis | |
Respiration | Unknown | |
Thermoregulation | Unknown | |
Reproduction | Mitosis | |
Taxonomy | ||
Domain Genus Species | Eukaryota Cryosagania Cryosagania halo |
Ancestor: | Descendants: |
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Halosagania split from its ancestor in the alpine and adapted to the cold alpine part of BioCat River. Not much has changed, the cell has evolved a vakuole to filter out all the salt in order to survive the high salinity level but is pretty much still the same. During the course of its life, it will get bigger and bigger, eventually dying off in the end. They sometimes break apart, forming new cone chains. Each single cell has two flagella, which together allow them to swim around in a random fashion towards the light.
Living Relatives (click to show/hide)
These are randomly selected, and organized from lowest to highest shared taxon. (This may correspond to similarity more than actual relation)