Pioneer Glasssprout: Difference between revisions
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|habitat = Barlowe-Dixon Temperate Rainforest, Barlowe Temperate Woodland, Dixon Temperate Woodland, Barlowe Boreal, Dixon Boreal, Penumbra Boreal, Putspooza Boreal, Barlowe Chaparral, Dixon Chaparral, Barlowe Rocky, Dixon Rocky, Negative Rocky |
|habitat = Barlowe-Dixon Temperate Rainforest, Barlowe Temperate Woodland, Dixon Temperate Woodland, Barlowe Boreal, Dixon Boreal, Penumbra Boreal, Putspooza Boreal, Barlowe Chaparral, Dixon Chaparral, Barlowe Rocky, Dixon Rocky, Negative Rocky |
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|diet = Photosynthesis |
|diet = Photosynthesis |
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|thermoregulation=Ectotherm |
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|reproduction= Asexual Budding |
|reproduction= Asexual Budding |
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|parent = Hyalopthalmaceae |
|parent = Hyalopthalmaceae |
Revision as of 21:49, 22 February 2024
Pioneer Glasssprout | ||
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(Polykatoptra pioneerus) | ||
23/147, Replaced by Descendant | ||
Information | ||
Creator | Hydromancerx Other | |
Week/Generation | 23/146 | |
Habitat | Barlowe-Dixon Temperate Rainforest, Barlowe Temperate Woodland, Dixon Temperate Woodland, Barlowe Boreal, Dixon Boreal, Penumbra Boreal, Putspooza Boreal, Barlowe Chaparral, Dixon Chaparral, Barlowe Rocky, Dixon Rocky, Negative Rocky | |
Size | 4 cm Tall | |
Primary Mobility | Unknown | |
Support | Unknown | |
Diet | Photosynthesis | |
Respiration | Unknown | |
Thermoregulation | Ectotherm | |
Reproduction | Asexual Budding | |
Taxonomy | ||
Domain Superkingdom Kingdom Phylum Class Order Family Genus Species | Eukaryota Viridisagania Kyanozoa Hyalophyta Vitricaulopsida Hyalopthalmales Hyalopthalmaceae Polykatoptra Polykatoptra pioneerus |
Ancestor: | Descendants: |
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The pioneer glasssprout replaced its ancestor the pioneer glasstuft in the areas which it lives. It now grows many more leaves on the top so it can photosynthesize even more. Like its ancestor its roots house the nixus. As a result everywhere it grows the nixus, nitritus, nitratus and denitritus will spread too. Thus completing the nitrogen cycle in barren biomes.
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)