Nested Brush Carnifern: Difference between revisions
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{{Species |
{{Species |
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|name = Nested Brush Carnifern |
|name = Nested Brush Carnifern |
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|week = 25 |
|week = 25 |
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|generation = 155 |
|generation = 155 |
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|creator = Solpimr |
|creator = Solpimr |
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|image = Nested_Brush_Carnifern.png |
|image = Nested_Brush_Carnifern.png |
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|extant = 1 |
|extant = 1 |
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|ancestor = Tropical Carnofern |
|ancestor = Tropical Carnofern |
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|size = 1.1 m Tall |
|size = 1.1 m Tall |
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|habitat = Barlowe Tropical Woodland |
|habitat = Barlowe Tropical Woodland |
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|habitat2 = Barlowe Tropical Scrub |
|habitat2 = Barlowe Tropical Scrub |
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|diet = Photosynthesis |
|diet = Photosynthesis |
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|reproduction= Sexual (Fruit, Pollen, Nectar), Asexual Budding |
|reproduction= Sexual (Fruit, Pollen, Nectar), Asexual Budding |
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|domain = Eukaryota |
|domain = Eukaryota |
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⚫ | |||
⚫ | |||
|phylum = |
|phylum = |
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|class = |
|class = |
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|order = |
|order = |
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|family = |
|family = |
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|genus = Pecteniflora |
|genus = Pecteniflora |
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|species = matryoshka |
|species = matryoshka |
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}} |
}} |
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Revision as of 03:15, 30 September 2021
Nested Brush Carnifern | ||
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(Pecteniflora matryoshka) | ||
26/?, unknown cause | ||
Information | ||
Creator | Solpimr Other | |
Week/Generation | 25/155 | |
Habitat | Barlowe Tropical Woodland | |
Size | 1.1 m Tall | |
Primary Mobility | Unknown | |
Support | Unknown | |
Diet | Photosynthesis | |
Respiration | Unknown | |
Thermoregulation | Unknown | |
Reproduction | Sexual (Fruit, Pollen, Nectar), Asexual Budding | |
Taxonomy | ||
Domain Genus Species | Eukaryota Pecteniflora Pecteniflora matryoshka |
Ancestor: | Descendants: |
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The nested brush carnifern has split from its ancestor and spread west.The name derives from the way the leaf filaments are arranged. Each branch grows from the base and new brushes, sub-branch and leaf assemblies, form here at regular intervals. Each brush consists of a sub-branch and two rows of leaf filaments, the filaments grow angled slightly outward allowing each new brush to form within the one before it. The leaf filaments are stiff, allowing them to remain in place against the force of gravity.