| Family |
Osmundaceae |
| Scientific name |
Osmunda claytoniana L. |
| Synonyms |
Osmundastrum claytonianum (L.) Tagawa |
| Common name |
(Japanese common name) oni zen-mai |
| (English common name) interrupted fern |
| Distribution |
(Japan) Honshu (southern Tohoku region, Kanto region, Central region) |
| (Other nations) Russia, Korea, China, Taiwan, USA |
| Chromosomal number |
n=22, 2n=44 (2x) |
| Description |
Vegatative leaves, 30-40cm length, 15-25cm width. Summer green. Perennial
plants. |
| Reference |
Osmunda claytoniana Linnaeus |
| Osmunda claytoniana Linnaeus |
| Method of cultivating epiphytically growing plants (US Patent 3988858/1976) |
| Method of growing plants in the roots of a live osmunda fern (US Patent 4138802/1979) |
| Three-dimensional planter (US Patent 4268994/1981) |
| Genetic control of plant hormone levels and plant growth (US Patent 5919998/1999) |
| Genetic control of plant hormone levels and plant growth (US Patent 6489541/2002) |
| Method of planting trees and growing plants (US Patent 6659029/2003) |
| Methods for altering organ mass, controlling fertility and enhancing asexual reproduction in plants (US Patent 6639128/2003) |
| Dehydroascorbate reductase (“DHAR”) genes from Triticum aestivum and their use to modulate ascorbic acid levels in plants (US Patent 6903246/2005) |
| Methods for altering organ mass in plants (US Patent 7071379/2006) |
| Methods and compositions for directing expression of a heterologous nucleic acid in plants (US Patent 7220895/2007) |
| Modulation of abscisic acid signal transduction in plants (US Patent 7199285/2007) |
| Sand seepage stream and wetland restoration system and method for ecological restoration (US Patent 20070160424) |