Platebranch Twinkoral: Difference between revisions
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|ancestor = Pioneer Twinkoral
|size = 8 cm Tall
|habitat = Kenotai Salt Marsh, Kenotai Temperate River
|locomotion = Sessile
|diet = Photosynthesis
|thermoregulation=Ectotherm
|respiration = Passive Diffusion
|reproduction= Asexual, Budding
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|species = ramuscomplanatus
}}
The '''platebranch twinkoral''' split from its ancestor, the [[Pioneer Twinkoral|pioneer twinkoral]]. As the sole flora species in the Kenotai waterways (except the [[Linked Bubblgea|linked bubblgea]]) for several million years, the pioneer twinkoral rapidly varied into many different species to fill some of the available niches. The platebranch twinkoral evolved to maximize sunlight gathered, with large, flattened leaflike structures at the ends of its branches for the greatest surface area.
{{LivingRelatives}}
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Latest revision as of 21:01, 24 February 2024
Platebranch Twinkoral | ||
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(Kiirocorallium ramuscomplanatus) | ||
23/149, Integrated into Twinkorals | ||
Information | ||
Creator | Bardic Other | |
Week/Generation | 23/147 | |
Habitat | Kenotai Salt Marsh, Kenotai Temperate River | |
Size | 8 cm Tall | |
Primary Mobility | Sessile | |
Support | Unknown | |
Diet | Photosynthesis | |
Respiration | Passive Diffusion | |
Thermoregulation | Ectotherm | |
Reproduction | Asexual, Budding | |
Taxonomy | ||
Domain Superkingdom Kingdom Phylum Class Order Family Genus Species | Eukaryota Viridisagania Croceophyta Kiirophyta Kiirophytopsida Rhizokiirales Kiirocorallaceae Kiirocorallium Kiirocorallium ramuscomplanatus |
Ancestor: | Descendants: |
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The platebranch twinkoral split from its ancestor, the pioneer twinkoral. As the sole flora species in the Kenotai waterways (except the linked bubblgea) for several million years, the pioneer twinkoral rapidly varied into many different species to fill some of the available niches. The platebranch twinkoral evolved to maximize sunlight gathered, with large, flattened leaflike structures at the ends of its branches for the greatest surface area.
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)