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Acoraceae
Acoraceae image
Scott Namestnik
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Sue A. Thompson in Flora of North America (vol. 22)
Herbs, perennial, wetland, usually with aromatic oil, especially in rhizomes. Rhizomes horizontal, creeping at or near surface, branched. Stems repent, branched rhizomes. Cataphylls absent. Leaves not differentiated into petiole and blade, equitant, sword-shaped, larger than 1.5 cm; venation parallel along length of leaf. Inflorescences: spadices, from 3-angled axis (peduncle fused with proximal portion of sympodial leaf, i.e., leaf encircling terminal inflorescence), distal sympodial leaf extending beyond spadix; true spathe absent; spadix nearly cylindric, tapering, apex obtuse. Flowers bisexual; tepals 6; stamens 6, distinct; ovariesy 1, (1--)3-locular, sessile; stigmas sessile (styles essentially absent), minute. Fruits berries; pericarp thin, leathery. Seeds 1--6(--14), from apex of locule. Acorus historically was recognized as an aberrant genus within Araceae, but much evidence supports its treatment as a separate family and the removal of this family from Arales (M. H. Grayum 1987). Other than the absence of a close association with Arales, the phylogenetic affinities of Acoraceae remain unclear. Evidence based on DNA sequences fails to show any close relationships between Acorus and other genera, and instead supports Acorus as the oldest extant lineage of monocotyledons (M. R. Duvall et al. 1993). The removal of Acorus from Araceae is supported by the absence of a spathe and the unique vasculature of the structure traditionally interpreted as a spathe (T. S. Ray 1987). The structure that has been called a spathe in Acorus is not morphologically equivalent to the spathe of Araceae; instead it is interpreted as the distal part of the sympodial leaf. The proximal part of the sympodial leaf is adnate to the peduncle, forming a 3-angled axis that bears the inflorescence.

Species within checklist: Central Park, New York City
Acorus americanus
Image of Acorus americanus
Acorus calamus
Image of Acorus calamus
The National Science Foundation
This project made possible by National Science Foundation Awards 1601697, 1600981, 1601393, 1600976, 1601429, 1601101, 1601503
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