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Template:Short description Template:Automatic taxobox

File:Four Petals.tif
Unusual example with four petals and eight anthers

Tradescantia (Template:IPAc-en<ref>Template:Cite book</ref>) is a genus of 85 species<ref name="POWO">Template:Cite web</ref> of herbaceous perennial wildflowers in the family Commelinaceae, native to the Americas from southern Canada to northern Argentina, including the West Indies. Members of the genus are known by many common names, including inchplant, wandering jew, spiderwort,<ref>Template:PLANTS</ref> dayflower and trad.<ref>Template:Cite web</ref><ref>Template:Cite web</ref>

Tradescantia grow Template:Cvt, and are commonly found individually or in clumps in wooded areas and open fields. They were introduced into Europe as ornamental plants in the 17th century and are now grown in many parts of the world. Some species have become naturalized in regions of Europe, Asia, Africa, and Australia, and on some oceanic islands.<ref name="w">Template:Cite webTemplate:Dead link</ref>

The genus's many species are of interest to cytogenetics because of evolutionary changes in the structure and number of their chromosomes.<ref>Template:Cite journal</ref> They have also been used as bioindicators for the detection of environmental mutagens.<ref name="Ichikawa">Template:Cite journal</ref> Some species have become pests to cultivated crops and considered invasive.

Description

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Tradescantia are herbaceous perennials and include both climbing and trailing species, reaching Template:Convert in height. The stems are usually succulent or semi-succulent, and the leaves are sometimes semi-succulent.<ref name="Pell2017"/><ref>Template:Cite book</ref> The leaves are long, thin and blade-like to lanceolate, from Template:Cvt. The flowers can be white, pink, purple or blue, with three petals and six yellow anthers (or rarely, four petals and eight anthers). The sap is mucilaginous and clear.

A number of species have flowers that last for only a day, opening in the morning and closing by the evening.<ref>Template:Cite web</ref>

Etymology

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The scientific name of the genus chosen by Carl Linnaeus honours the English naturalists and explorers John Tradescant the Elder (c. 1570s – 1638) and John Tradescant the Younger (1608–1662),<ref>Template:Cite book</ref>Template:Sfn who introduced many new plants to English gardens. Tradescant the Younger visited the new colony of Virginia in 1637 (and possibly twice more in later years).<ref name="Cáceres">Template:Cite web</ref><ref name="Potter">Template:Cite book</ref> From there, the type species, Tradescantia virginiana, was brought to England in 1629.

Plants of the genus are called by many common names, varying by region and country. The name "inchplant" is thought to describe the plant's fast growth,<ref>Template:Cite web</ref> or the fact that leaves are an inch apart on the stem.<ref>Template:Cite web</ref> "Spiderwort" refers to the sap which dries into web-like threads when a stem is cut. <ref>Template:Cite web</ref> The name "dayflower", shared with other members of the Commelinaceae family, refers to the flowers which open and close within a single day.

The controversial name "wandering Jew" originates from the Christian myth of the Wandering Jew, condemned to wander the earth for taunting Jesus on the way to his crucifixion.<ref name="Anderson">Anderson, George K. The Legend of the Wandering Jew. Providence: Brown University Press, 1965. xi, 489 p.; Template:ISBN</ref> In recent years there have been efforts to stop using this and other potentially offensive common names,<ref name="racism">Template:Cite web</ref> in favour of alternatives such as "wandering dude" or "wandering willie".<ref name="bloombox">Template:Cite web</ref><ref name="brittany">Template:Cite web</ref>

In Spanish, Tradescantia plants are sometimes referred to as flor de Santa Lucía (Saint Lucy's flower), in reference to the Saint's reputation as the patron saint of sight, and the use of the juice of the plant as eye drops to relieve congestion.<ref name="Bugatti">Template:Cite web</ref>

Taxonomy

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Subdivisions and species

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File:Tradescantia fluminensis3 ies.jpg
Tradescantia fluminensis
(subg. Austrotradescantia)
File:Starr 080607-7174 Tradescantia spathacea.jpg
Tradescantia spathacea
(subg. Campelia)
File:IMG 5708-Tradescantia brevifolia.jpg
Tradescantia brevifolia
(subg. Setcreasea)

The number of species and infrageneric taxa has changed throughout history. The first major classification proposed by Hunt (1980) included 60 species divided into eight sections, with one section divided into a further four series.<ref name="Hunt1980">Template:Cite journal</ref> Hunt's 1986 revision united several small genera with Tradescantia as sections, resulting in a total of twelve sections comprising 68 species,<ref name="Hunt1986">Template:Cite journal</ref> and this infrageneric classification was accepted for several decades.

A recent study by Pellegrini (2017) proposed a new classification based on recent morphological research, dividing the genus into five subgenera.<ref name="Pell2017">Template:Cite journal</ref> As of December 2023, The Royal Botanic Gardens, Kew recognises 86 species.<ref name="POWO"/>

Subgenus Austrotradescantia (D.R.Hunt) M.Pell<ref>Template:Cite journal</ref>
Subgenus Campelia (Rich.) M.Pell. <ref>Template:Cite journal</ref><ref>Template:Cite journal</ref>
Sect. Campelia
Sect. Corinna D.R.Hunt
Sect. Cymbispatha (Pichon) D.R.Hunt
Sect. Rhoeo (Hance) D.R.Hunt
Sect. Zebrina (Schnizl.) D.R.Hunt
  • var. flocculosa (G.Brückn.) D.R.Hunt
  • var. mollipila D.R.Hunt
  • var. zebrina
Subgenus Mandonia (D.R.Hunt) M.Pell.
  • var. acaulis (M.Martens & Galeotti) C.B.Clarke
  • var. crassifolia
Subgenus Setcreasea (K.Schum. & Sydow) M.Pell
Subgenus Tradescantia
  • var. melanthera MacRoberts
  • var. scopulorum (Rose) E.S.Anderson & Woodson
  • var. occidentalis
  • var. montana (Shuttlew. ex Small & Vail) E.S.Anderson & Woodson
  • var. subaspera

Unclassified

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Formerly placed here

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Distribution and habitat

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The first species described, the Virginia spiderwort, T. virginiana, is native to the eastern United States from Maine to Alabama, and Canada in southern Ontario. Virginia spiderwort was introduced to Europe in 1629, where it is cultivated as a garden flower.

The natural range of the genus as a whole spans nearly the entire length and width of mainland North America, from Canada through Mexico and Central America, and thrives in a great diversity of temperate and tropical habitats. It is frequently found in thinly wooded deciduous forests, plains, prairies, and healthy fields, often alongside other native wildflowers.

Conservation

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The western spiderwort T. occidentalis is listed as an endangered species in Canada, where the northernmost populations of the species are found at a few sites in southern Saskatchewan, Manitoba and Alberta; it is more common further south in the United States to Texas and Arizona.

Cultivation

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File:Tradescantia greece.jpg
Tradescantia plants are widely used for ground cover in gardens

Spiderworts are popular in Europe and North America as ornamental plants. Temperate species are grown as hardy garden perennials, while tropical species such as T. zebrina and T. spathacea are used as house plants.Template:Sfn Their popularity and easy spreading nature has led to some species being considered serious weeds in certain places (see below).

Most cold-hardy garden plants belong to the Andersoniana Group (often referred to with the invalid name Tradescantia × andersoniana).Template:Sfn This is a group of interspecific hybrids developed from Tradescantia virginiana, T. ohiensis, and T. subaspera, which have overlapping ranges within continental North America.Template:Sfn These plants are clump-forming herbaceous perennials, with individual cultivars mainly differing in flower colour.Template:Sfn

A wide range of tender tropical species are cultivated as houseplants or outdoor annuals in temperate locations, including Tradescantia zebrina, T. fluminensis, T. spathacea, T. sillamontana, and T. pallida.<ref>Template:Cite web</ref><ref name="BHG">Template:Cite web</ref> They are typically grown for their foliage, and many have colourful variegated patterns of silver, purple, green, pink, and gold.<ref name="BHG"/>

Cultivars

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The following cultivars have gained the Royal Horticultural Society's Award of Garden Merit:<ref>Template:Cite web</ref>

  • T. (Andersoniana Group) 'Concord Grape'
  • T. cerinthoides 'Nanouk'
  • T. cerinthoides 'Variegata'
  • T. fluminensis 'Aurea'
  • T. fluminensis 'Quicksilver'
  • T. pallida 'Purpurea'
  • T. spathacea 'Rainbow'
  • T. zebrina 'Purpusii'
  • T. zebrina 'Quadricolor'

The International Society for Horticultural Science appointed Tradescantia Hub as an International Cultivar Registration Authority (ICRA) for Tradescantia in 2022. As an ICR authority, the Hub is responsible for recording and maintaining a checklist of the correct names for all cultivars in the genus.<ref>Template:Cite web</ref>

Weeds

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Due to its ready propagation from stem fragments and its domination of the ground layer in many forest environments, T. fluminensis has become a major environmental weed in Australia,<ref>Template:Cite web</ref> New Zealand and the southern United States.<ref>Template:Cite book</ref> Other species considered invasive weeds in certain places include T. pallida,<ref>Template:Cite book</ref> T. spathacea,<ref>Template:Cite book</ref> and T. zebrina.<ref>Template:Cite book</ref>

Toxicity

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Some members of the genus Tradescantia may cause allergic reactions in pets (especially cats and dogs) characterised by red, itchy skin.<ref>Template:Cite web</ref> Notable culprits include T. albiflora (scurvy weed), T. spathacea (Moses in the cradle), and T. pallida (purple heart).

Uses

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Native Americans used T. virginiana to treat a number of conditions, including stomachache. It was also used as a food source.Template:Sfn The cells of the stamen hairs of some Tradescantia are colored blue, but when exposed to sources of ionizing radiation such as gamma rays or pollutants like sulphur dioxide from industries, the cells mutate and change color to pink; they are one of the few tissues known to serve as an effective bioassay for ambient radiation levels.<ref name="Ichikawa" />Template:Sfn

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References

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Bibliography

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