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Schisandraceae
Schisandraceae image
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Michael A. Vincent in Flora of North America (vol. 3)
Shrubs , evergreen or deciduous, scandent or twining, glabrous. Leaves alternate, simple, without stipules, petiolate. Leaf blade often fragrant (especially when bruised or crushed), translucent-dotted, ovate to lanceolate, pinnately veined, thin to leathery, margins entire to remotely dentate. Flowers unisexual, staminate and pistillate on same [different] plants, axillary, solitary, pedunculate; peduncle bracteolate; perianth hypogynous; tepals 5-20, imbricate, distinct, in 2[-3] series, all similar but innermost more petaloid. Staminate flowers: stamens 4-80, hypogynous, distinct or connate partially or completely into fleshy, globose or discoid mass, in 1-several series; anthers basifixed, 4-locular, longitudinally dehiscent; pollen 3- or 6-aperturate; pistil absent. Pistillate flowers: pistils simple, 6-300, distinct, closely set in few to many series on globose to elongate axis, attached obliquely; placentation marginal to pendulous; ovules [1-]2-3[-10] per locule; stigmatic surface adaxial; stamens absent. Fruits aggregates of berries, produced on elongate axis. Seeds [1-]2-3[-10] per berry, flattened; endosperm copious, oily; embryo small. The Chinese drug wu-wei-zi and its substitutes are obtained from species of Schisandra . The drug is considered a potential source of expectorants, immune response boosters, and anti-ulcer compounds. Several lignan compounds from species of the genus are used as a treatment for hepatitis and as central nervous-system depressants (S. Foster 1989). Schisandraceae were considered closely allied to Illiciaceae by A. C. Smith (1947). Embryologic studies (R. N. Kapil and S. Jalan 1964) were interpreted as showing that the former are considerably removed from the latter. In his monograph, A. C. Smith also postulated a close relationship between Schisandraceae and Magnoliaceae. J. Hutchinson (1973) stated that Schisandraceae were probably derived from Magnoliaceae. Studies of fossil pollen led J. W. Walker and A. G. Walker (1984) to conclude that Schisandraceae and Illiceaceae are closely allied with Winteraceae. Based on analysis of nucleotide sequences from the plastid gene rbc L, however, M. W. Chase et al. (1993) and Qiu Y. L. et al. (1993) concluded that Schisandraceae and Illiciaceae are closely allied and closely related to Austrobaileyaceae but distant from Winteraceae.

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Illicium anisatum
Image of Illicium anisatum
Illicium burmanicum
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not available
Illicium cubense
Image of Illicium cubense
Illicium ekmanii
Image of Illicium ekmanii
Illicium fargesii
Image of Illicium fargesii
Illicium floridanum
Image of Illicium floridanum
Illicium guajaibonense
Image of Illicium guajaibonense
Illicium henryi
Image of Illicium henryi
Illicium lanceolatum
Image of Illicium lanceolatum
Illicium mexicanum
Image of Illicium mexicanum
Illicium parviflorum
Image of Illicium parviflorum
Illicium parvifolium
Image of Illicium parvifolium
Illicium ternstroemioides
Image of Illicium ternstroemioides
Illicium verum
Image of Illicium verum
Kadsura apoensis
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Kadsura heteroclita
Image of Kadsura heteroclita
Kadsura japonica
Image of Kadsura japonica
Kadsura longipedunculata
Image of Kadsura longipedunculata
Kadsura scandens
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Schisandra chinensis
Image of Schisandra chinensis
Schisandra coccinea
Image of Schisandra coccinea
Schisandra glabra
Image of Schisandra glabra
Schisandra henryi
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not available
Schisandra lancifolia
Image of Schisandra lancifolia
Schisandra propinqua
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not available
Schisandra sphaerandra
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not available
Schisandra sphenanthera
Image of Schisandra sphenanthera
The National Science Foundation
Developments of SEINet, Symbiota, and associated specimen databases have been supported by National Science Foundation Grants (DBI 9983132, BRC 0237418, DBI 0743827, DBI 0847966)