Trillium grandiflorum

Trillium grandiflorum

Taxobox
name = Large-flowered trillium


image_width = 250px
status = G5
status_system = TNC
status_ref = Cite web
publisher =NatureServe
title = Trillium grandiflorum
work = NatureServe Explorer
url = http://www.natureserve.org/explorer/servlet/NatureServe?searchName=Trillium+grandiflorum
accessdate = 2008-04-22
]
regnum = Plantae
divisio = Magnoliophyta
classis = Liliopsida
ordo = Liliales
familia = Melanthiaceae
genus = "Trillium"
species = "T. grandiflorum"
binomial = "Trillium grandiflorum"
binomial_authority = (Michx.) Salisb.

"Trillium grandiflorum", commonly known as white trillium, great white trillium, white wake-robin, or in French as "trille blanc", is a perennial monocotyledonous plant in the lily family. It is native to eastern North America from southern Canada in the north, south in the United States through the Appalachian Mountains into northernmost Georgia and west to Minnesota. There are also several disjunctive populations, such as in Nova Scotia and Iowa. The plant is most common in rich deciduous and mixed upland forests. It is easily recognised by its attractive three-petaled white flowers, opening from the late spring to the early summer, that rise above a whorl of three, leaf-like bracts.

"Trillium grandiflorum" has been studied extensively by ecologists due to a number of unique features it possess. It is a representative example of a plant whose seeds are spread through myrmecochory, or ant-mediated dispersal, which is effective in increasing the plant's ability to outcross, but ineffective in bringing the plant very far. This has led ecologists to question how it and similar plants were able to survive glaciation events during the ice ages. The height of the species has also been shown to be an effective index of how intense foraging by deer is in a particular area.

Some forms of the species have pink instead of white petals, while others with extra petals, also called "double" forms, are naturally quite common in the species, and these are especially popular with "Trillium" gardeners. In fact, the species is the most popular of its genus in cultivation, which has led to conservation concerns due to the majority of commercially available plants being collected from the wild. A few regional governments in Canada and the United States have declared the plant vulnerable as a result. As the plant is attractive and well known, it serves as the provincial emblem of Ontario, the state wild flower of Ohio, and it is often used in heraldry in Canada.

Description

"T. grandiflorum" is a perennial that grows from a short rhizome and produces a single, showy white flower atop a whorl of three "leaves". These "leaves" are technically bracts as the "stem" is in fact a scape, a peduncle acting as a stem, and lacks leaves by definition. [Case & Case, "Trilliums", p. 21.] These leaf-like bracts are ovate (i.e egg-shaped) in outline with pointed tips. They lack petioles (or have extremely short ones) and measure 12-20 cm long by 8-15 cm wide (5-8 in long by 3-6 in width), with very prominently engraved venation. Both the bracts and the scape are a dark green color and they persist into the autumn. Both the leafy bracts and the petals have somewhat undulate margins, the bracts often much more strongly so. Individuals grow to between about 15 and 30 centimeters tall (6-12 inches).Citation | last =Case | first =Frederick W. | contribution =Trillium grandiflorum | year =2002 | title =Flora of North America online | volume =26 | pages =99 | contribution-url=http://www.efloras.org/florataxon.aspx?flora_id=1&taxon_id=242101995 | place=New York & Oxford | publisher =Oxford University Press] A single rootstock will often form clonal colonies, which can become very large and dense. [Case & Case, "Trilliums", p. 50.] The erect, odorless flowers are relatively large, especially compared to other species of "Trillium", with 4 to 7 cm (1.5 to 2.7 in) long petals, depending on age and vigor. The petals are shaped much like the leaves and curve outward. They have a visible venation, though this is nowhere near as marked as on the leaves. Their overlapping bases and curve give the flower a distinctive funnel shape. Between the veined petals, three acuminate (ending with a long point) sepals are visible; they are usually a paler shade of green than the leaves, and are sometimes streaked with maroon. Flowers are perched on a pedicel (i.e. flower stalk) raising them above the "leaf" whorl, and grow pinker as they age.Case & Case, "Trilliums", pp. 104-105.]

Flowers have six stamens in two whorls of three, which persist after fruiting. The styles are white and very short compared to the 9-27 mm (0.5-1 in) anthers, which are pale yellow but becomes a brighter shade when liberating pollen due to the latter's color. The ovary is six-sided with 3 greenish-white stigmas that are at first weakly attached, but fuse higher up. The fruit is a green, mealy and moist orb, and is vaguely six-sided like the ovary.

Taxonomy

"Trillium grandiflorum" was originally described as "T. rhomboideum" var. "grandiflorum" by André Michaux in his 1803 work "Flora Boreali-Americana". "T. rhomboideum" is now a synonym of the closely related species "T. erectum". "T. grandiflorum" was first treated as a species by Richard Anthony Salisbury only two years later. The species was traditionally placed in the subgenus "Trillium", but recent work has shown the phylogeny of this grouping to be paraphyletic. Since then no phylogeny of the genus has garnered much agreement (The other subgenus, "Phyllantherum", includes sessile-flowered species). "T. grandiflorum" is, alongside the western "T. ovatum", one of the closer parents of the subg. "Phyllantherum" members. [Case & Case, "Trilliums", pp. 68-71.] One form of the plant, "T. grandiflorum" f. "roseum", opens with light pink petals instead of the common white. It is generally found very rarely throughout the range, but in the Blue Ridge Mountains of Virginia is can be found somewhat frequently in mixed or sometimes pure colonies.

Many variants of "T. grandiflorum" have green markings on the petals, as well as anywhere from 4 to 30 extra petals or bracts along with other highly deformed characteristics. Although many of these forms have been given taxonomic names, it has been shown that mycoplasma-like bacteria are responsible for the altered morphology in these individuals and not genetic variation. "T. grandiflorum" does, however, occasionally produce double-flowered forms such as "T. g." f. "polymerum". These are almost invariably sterile, but are much sought after for their appearance by trillium growers. It is the species of trillium that produces double flowers most frequently. On the other hand, and unlike other species such as "T. erectum" which hybridize fairly easily, "T. grandiflorum" is not known to form hybrids. [Case & Case, "Trilliums", pp. 36, 108-110.]

Ecology

"T. grandiflorum" favors well-drained, neutral to slightly acid soils, usually in second- or young-growth forests. In the Northern parts of its range it shows an affinity for maple or beech forests, but has also been known to spread into nearby open areas. Depending on geographical factors, it flowers from late April to early June, just after "T. erectum" [Lamoureux, "Flore Printanière", p. 48.] [Case & Case, "Trilliums", pp. 44, 106-107.] Like many forest perennials, "T. grandiflorum" is a slow growing plant. Their seeds require double dormancy, meaning they take at least two years to fully germinate. Like most species of "Trillium", flowering age is determined largely by the surface of the leaf and volume of the rhizome the plant has reached instead of age alone. Because growth is very slow in nature, "T. grandiflorum" typically requires seven to ten years in optimal conditions to reach flowering size, which corresponds to a minimum of convert|36|cm2|sqin|abbr=on of leaf surface area and convert|2.5|cm3|cuin|abbr=on of rhizome volume. [Lamoureux, "Flore Printanière", pp. 429-430.] In cultivation, however, wide disparity of flowering ages are observed. [Case & Case, "Trilliums", pp. 30-31.]

Due to the popularity of "Trillium grandiflorum" as a garden specimen, conservation concerns have been raised as the vast majority of plants sold in commercial nurseries are believed to be collected from the wild. Indeed, there is little indication of any commercial nursery growth. Case & Case, two botanists specializing in trilliums, wrote in 1997, "to our knowledge, no true commercial quantity 'propagation' takes place at the present time." [Case & Case, "Trilliums", p. 61.] Such heavy collecting, combined with other pressures such as habitat destruction and grazing, may effectively endanger the plants in some areas. [Lamoureux, "Flore printanière", pp. 437-443.] [Case & Case, "Trilliums", pp. 49, 59-64.] "Trillium grandiflorum" is legally listed as vulnerable in Quebec, primarily due to habitat destruction as the plant is found in forests neighboring the province's most populous regions. [fr icon cite web |title=Trille blanc |url=http://www.mddep.gouv.qc.ca/biodiversite/especes/trille/index.htm |publisher=Ministère du Développement durable, de l'Environnement et des Parcs du Québec |date=2005 |work=Plantes menacées ou vulnérables au Québec |accessdate=2007-04-23] It is listed as exploitably vulnerable in the state of New York, meaning that it might become threatened should certain factors not be mitigated. [cite web |last=Young |First=Stephen M. |title=2007 New York Rare Plant Status Lists |url=http://www.dec.ny.gov/docs/wildlife_pdf/Rare_Plant_Status_Lists_2007.pdf |publisher=New York Natural Heritage Program |date=2007 |accessdate=2007-04-23] In Maine, it is listed as endangered, and might have been extirpated entirely. [cite web |title="Trillium grandiflorum" (Michx.) Salisb.: Large White Trillium |url=http://www.mainenaturalareas.org/docs/rare_plants/links/factsheets/trilliumgrandiflorum.pdf |publisher=Maine Department of Conservation |date=2004 |work=Rare Plant Fact Sheet |accessdate=2007-04-23]

Pollination and seed dispersal

"Trillium grandiflorum" has long been thought to self-pollinate based on the fact that pollinators had rarely been observed visiting the plants and because there is low variation in chromosomal banding patterns. This has been strongly challenged, as other studies have shown high pollination rates by bumblebees and very low success of self-pollination in controlled experiments, implying that they are in fact self-incompatible. Several ovules of a given individual often fail to produce seeds. One contributing factor is pollen limitation, and one study showed that open pollinated plants had 56% of their ovules produce seeds, while in hand pollinated individuals the figure was 66%. Plants with reduced exposure to pollinators were 33% to 50% less likely to produce fruits than those that were, while hand pollinated individuals showed a 100% fruit set (though these fruits did not contain a 100% seed set). Plant resources were shown to be a limiting factor in seed production: when pollen was in abundance, larger plants had a significantly greater seed to ovule ratio than smaller ones. The overall suboptimal seed to ovule ratios suggest that "Trillium grandiflorum" has evolved to maximise reproductive success in the face of highly stochastic pollination, where some plants may only be visited by a single pollinator in a season. [citation| last=Griffin| first=Steven R.; Barrett; Spencer C. H.| title=Factors Affecting Low Seed: Ovule Ratios in a Spring Woodland Herb, Trillium grandiflorum (Melanthiaceae)| journal=International Journal of Plant Sciences| volume=163| number=4| year=2002| pages=581–590| doi=10.1086/340814]

The average number of seeds within a fruit is about 16, which are released in the summer. These seeds are most typically dispersed by ants, which is called myrmecochory, but yellow jackets ("Vespula vulgaris") and harvestmen (order Opiliones) have both been observed dispersing the seeds at lower frequencies. Insect dispersal is aided by the presence of a conspicuous elaiosome, an oil rich body attached to the seed, which is high in both lipids and oleic acid. The oleic acid induces corpse-carrying behavior in ants, causing them to bring the seeds to their nesting sites as if they were food. As ants visit several colonies of the plant, they bring genetically variable seeds back to a single location, which after germination results in a new population with relatively high genetic diversity. This has the ultimate effect of increasing biological fitness.cite journal| title=Ant-Mediated Seed Dispersal Alters Pattern of Relatedness in a Population of Trillium grandiflorum| last=Kalisz| first=Susan|coauthors= Hanzawa, Frances M.; Tonsor, Stephen J.; Thiede, Denise A.; Voigt, Steven| journal=Ecology| volume=80| number=8| year=1999| pages=2620–2634 |url=http://findarticles.com/p/articles/mi_m2120/is_8_80/ai_58517875|doi=10.1890/0012-9658(1999)080 [2620:AMSDAP] 2.0.CO;2]

Although myrmecochory is by far the most common dispersal method, white-tailed deer have also been shown to disperse the seeds on rare occasions by ingestion and defecation. While ants only move seeds up to about 10 metres, deer have been observed to transport the seeds over 1 kilometer. This helps to explain post-agricultural colonisation of forest sites by "Trillium grandiflorum", as well as long distance gene flow which has been detected in other studies. Furthermore, it helps resolve what has been called "Reid's paradox", which states that migration during glaciation events must have been impossible for plants with dispersal rates under several hundred metres per year, such as "Trillium grandiflorum". Thus occasional long distance dispersal events, such as by deer, probably helped save this and other species with otherwise short distance dispersal ability from extinction during the glaciations of the ice ages. [citation| title=Dispersal of Trillium Seeds by Deer: Implications for Long-Distance Migration of Forest Herbs| last=Vellend| first=Mark; Myers, Jonathan A.; Gardescu, Sana; Marks, P.L.| journal=Ecology| volume=84| number=4| year=2003 |url=http://www3.botany.ubc.ca/vellend/Vellend_et_al_Tg_Deer_Ecol_2003.pdf| pages=1067–1072| doi=10.1890/0012-9658(2003)084 [1067:DOTSBD] 2.0.CO;2 doi|id= 10.1890/0012-9658(2003)084%5B1067:DOTSBD%5D2.0.CO;2 |label= 10.1890/0012-9658(2003)084 [1067:DOTSBD&#x5D2.0.CO;2] Furthermore, nested clade analysis of cpDNA haplotypes has shown that "Trillium grandiflorum" is likely to have persisted through the last glacial period in two sites of refuge in the southeastern United States and that long distance dispersal was responsible for the post-glacial recolonization of northern areas. [citation| last=Griffin| first=Steven R.; Barrett, Spencer C. H.| title=Post-glacial history of Trillium grandiflorum (Melanthiaceae) in eastern North America: inferences from phylogeography| journal=American Journal of Botany| year=2004| volume=91| url=http://www.amjbot.org/cgi/content/full/91/3/465| pages=465–473| doi=10.3732/ajb.91.3.465]

Interaction with deer

"Trillium grandiflorum" as well as other trilliums are a favored food of white-tailed deer. Indeed if trilliums are available deer will seek these plants, with a preference for "T.grandiflorum", to the exclusion of others. [Lamoureux, "Flore printanière", p. 441.] In the course of normal browsing, deer consume larger individuals, leaving shorter ones behind. This information can be used to assess deer density and its effect on understory growth in general.citation| last=Anderson| first=Roger C.| title=Height of White-Flowered Trillium (Trillium Grandiflorum) as an Index of Deer Browsing Intensity| journal=Ecological Applications| volume= 4| number=1 | year=1994 |url=http://www.jstor.org/pss/1942119| pages=104–109| doi=10.2307/1942119]

When foraging intensity increases, individuals become shorter each growing season due to the reduction in energy reserves from less photosynthetic production. One study determined that the ideal deer density in northeastern Illinois, based on "T. grandiflorum" as an indicator of overall understory health, is 4 to 6 animals per square kilometer. This is based on a 12 to 14 cm stem height as an acceptable healthy height. In practice, deer densities as high as 30 deer per square kilometers are known to occur in restricted or fractured habitat where natural control mechanisms (that is, predators like wolves) are lacking. Such densities, if maintained over more than a few years, can be very damaging to understory and lead to extinction of some local understory plant populations. [Case & Case, "Trilliums", p. 60] [Lamoureux, "Flore printanière", pp. 395, 441-443.]

Culture and uses

As a particularly conspicuous forest flower, "T. grandiflorum" was designated the provincial emblem of Ontario in 1937 (Flora Emblem Act), [cite web |title=Emblems and Symbols |url=http://www.gov.on.ca/ont/portal/!ut/p/.cmd/cs/.ce/7_0_A/.s/7_0_252/_s.7_0_A/7_0_252/_l/en?docid=EC001037 |publisher=Government of Ontario |accessdate=2007-04-23] and as the state wild flower of Ohio in 1987. [cite web |title=Ohio State Wildflower |url=http://www.netstate.com/states/symb/wildflowers/oh_large_white_trillium.htm |publisher=Netstate |accessdate=2007-04-23] As the symbol of Ontario, a stylized trillium flower features prominently on the official flag of the province's French-speaking community. [cite web |title=Franco-Ontarian Flag |url=http://www.ofa.gov.on.ca/english/commun-flag.html |publisher=Ontario Office of Francophone Affairs |accessdate=2007-04-23] It is also frequently used by the Canadian Heraldic Authority to represent Ontario in grants of arms. [For examples see [http://www.gg.ca/heraldry/pub-reg/project-pic.asp?ProjectID=20&ProjectElementID=51 here] or [http://www.gg.ca/heraldry/pub-reg/project-pic.asp?ProjectID=41&ProjectElementID=119 here] .] Although a network of laws make picking wildflowers in general illegal in the province more often than not, it is not, unlike widely believed, specifically illegal (or necessarily harmful) to pick the species in Ontario.cite news |last=Bhattacharya |first=Surya |title='The herb true love of Canada': What you need to know about our now-blooming flower emblem, including the answer to the big question |url=http://www.thestar.com/article/213271 |date= May 13, 2007 |publisher="Toronto Star" |accessdate=2007-04-23]

"T. grandiflorum" is one of the most popular trilliums in cultivation, primarily because of the size of its flowers and its relative ease of cultivation. Although not particularly demanding, its cultivation is a slow and rather uncertain process, due to usually slow growth, wide variations in growth speed and sometimes capricious germination rates. As a result, the vast majority of plants and rhizomes in commerce are collected in the wild, and such heavy collecting, combined with other pressures such as habitat destruction and grazing, may effectively endanger the plants in some areas. This also creates tensions between Trillium enthusiasts and conservation proponents. [Lamoureux, "Flore printanière", pp. 437-443.] [Case & Case, "Trilliums", pp. 49, 59-64.] Transplantation (as with almost all non-weedy wild plants) is a delicate process, and in many cases results in the death of the plant. In cultivation, "T. grandiflorum" may flower in as little as 4 to 5 years after germination (compared to the usual 7 to 10 in the wild), but these cases appear to be exceptions rather than the rule. One study revealed 20 or so individuals performing so well out of about 10,000 seeds planted, only 20% of which germinated after a year. However, barring plant destruction, "T. grandiflorum" can continue flowering every year after the first. [Case & Case, "Trilliums", pp. 29-31, 46-52.]

References

*cite book| last=Case| first=Frederick W.|coauthors= Case, Roberta B.| year=1997| title=Trilliums |location=Portland, Oregon |publisher=Timber Press| isbn= 0-88192-374-5
*fr icon cite book |last=Lamoureux |first=Gisèle |year=2002 |title="Flore Printanière" |location=Saint-Henri-de-Lévis, Quebec |publisher=Fleurbec |isbn=2-920174-15-0 |pages=p. 48; 429-449

External links

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