Difference between revisions of "Hypoxis wrightii"

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(Seed dispersal)
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===Seed dispersal===
 
===Seed dispersal===
The seeds are small, and hard to differentiate without a microscope from other ''Hypoxis'' species. They are dull dark brown, with wrinkled, detached cuticles. <ref name=zon> Zona, S., J. Prince, et al. (2009). "A Seed Atlas of Hypoxis from Eastern North America." Journal of the Torrey Botanical Society 136(1): 26-32. </ref> Tepals persist on the seed through maturity and there is no obvious mechanism for seed dispersal.<ref name=her/>
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The seeds are small, and hard to differentiate without a microscope from other ''Hypoxis'' species. They are dull dark brown, with wrinkled, detached cuticles. <ref name=zon> Zona, S., J. Prince, et al. (2009). "A Seed Atlas of Hypoxis from Eastern North America." Journal of the Torrey Botanical Society 136(1): 26-32. </ref> Tepals persist on the seed through maturity and there is no obvious mechanism for seed dispersal.<ref name=her/> According to Kay Kirkman, a plant ecologist, this species disperses by wind. <ref name="KK"> Kay Kirkman, unpublished data, 2015. </ref>
  
 
===Seed bank and germination===
 
===Seed bank and germination===

Revision as of 11:01, 14 April 2016

Hypoxis wrightii
Hypo wrig.jpg
Photo by Guy Anglin, Atlas of Florida Vascular Plants
Scientific classification
Kingdom: Plantae
Division: Magnoliophyta - Flowering plants
Class: Liliopsida - Monocotyledons
Order: Liliales
Family: Liliaceae
Genus: Hypoxis
Species: H. wrightii
Binomial name
Hypoxis wrightii
(Baker) Brackett
HYPO WRIG dist.jpg
Natural range of Hypoxis wrightii from USDA NRCS Plants Database.

Common name: Wright's star-grass, Bristleseed Yellow Stargrass

Taxonomic notes

Synonym: Hypoxis micrantha Pollard

Description

A description of Hypoxis wrightii is provided in The Flora of North America. H. wrightii is a perennial, geocarpic herb with a cryptic life cycle. The stem is buried 2 to 3 centimeters below the soil surface with grass-like leaves arranged in a rosette above. [1]

Distribution

Ecology

Habitat

Habitats include wet pine savannas, seasonally flooded prairies, moist roadsides, and in Florida it has been found in limestone glades. [2] [3] [1] It can mostly be found in frequently burned communities due to the strong flowering response after fires. [1] Grows in loamy calcareous sand and sandy loam. Associated species include Schoenus, Juniperus, and Sideroxylon. [3]

Phenology

H. wrightii is geocarpic with a cryptic life cycle. It produces both chasmogamous and cleistogamous flowers. Individuals bud and fruit throughout the entire year, however, reproductive activity is the highest during the rainy summer months and the lowest during the dry winter months.[1] Herbarium specimen have documented this species flowering in May. [3] Kevin Robertson has observed this species flower within three months of burning. KMR

Seed dispersal

The seeds are small, and hard to differentiate without a microscope from other Hypoxis species. They are dull dark brown, with wrinkled, detached cuticles. [4] Tepals persist on the seed through maturity and there is no obvious mechanism for seed dispersal.[1] According to Kay Kirkman, a plant ecologist, this species disperses by wind. [5]

Seed bank and germination

Quickly growing and reproducing after fire allows H. wrightii to disperse seeds into ideal habitat for germination and establishment (Herndon 1988).

Fire ecology

H. wrightii grows frequently in burned communities and has a strong reproductive response to burning. It is favorable to grow and reproduce quickly after a fire, allowing for ideal seedling establishment and germination. Fire stimulates H. wrightii to produce a two flowered inflorescence. Inflorescences that are produced immediately after fire tend to be longer than those produced three or more months post-fire. Three months post-fire has been observed to be the highest reproductive period. Tepal length has also been recorded to be longer in flowers produced soon after fire compared to flowers produced later. The early chasmogamous flowers produce fewer seeds following a fire compared to later cleistogamous flowers. The transition from chasmogamous to cleistogamous flowers occurred rapidly, with chasmogamous flowers being produced for a maximum of four weeks. It is speculated that reproduction rates are high following fire due to increased light levels by removing the litter layer, soil fertility, and the increase in the availability of soil water and nutrient reserves (Herndon 1988).

Use by animals

It has been observed, that in the first year post-fire there was a high rate of leaf destruction by grazing vertebrates, mainly, the cottontail rabbit and white tail deer (Herndon 1988).

Photo Gallery

References and notes

Florida State University Robert K. Godfrey Herbarium database. URL: http://herbarium.bio.fsu.edu. Last accessed: October 2015. Collectors: Loran C. Anderson, Wilson Baker, Ann Johnson, L.B. Trott. States and Counties: Florida: Gadsden, Jackson, Wakulla. Compiled by Tall Timbers Research Station and Land Conservancy.

Herndon, A. (1988). "Ecology and Systematics of Hypoxis sessilis and H. wrightii (Hypoxidaceae) in Southern Florida." American Journal of Botany 75(12): 1803-1812

Zona, S., J. Prince, et al. (2009). "A Seed Atlas of Hypoxis from Eastern North America." Journal of the Torrey Botanical Society 136(1): 26-32.

  1. 1.0 1.1 1.2 1.3 1.4 Herndon, A. (1988). "Ecology and Systematics of Hypoxis sessilis and H. wrightii (Hypoxidaceae) in Southern Florida." American Journal of Botany 75(12): 1803-1812.
  2. [[1]] Accessed: January 6, 2016
  3. 3.0 3.1 3.2 Florida State University Robert K. Godfrey Herbarium database. URL: http://herbarium.bio.fsu.edu. Last accessed: October 2015. Collectors: Loran C. Anderson, Wilson Baker, Ann Johnson, L.B. Trott. States and Counties: Florida: Gadsden, Jackson, Wakulla. Compiled by Tall Timbers Research Station and Land Conservancy.
  4. Zona, S., J. Prince, et al. (2009). "A Seed Atlas of Hypoxis from Eastern North America." Journal of the Torrey Botanical Society 136(1): 26-32.
  5. Kay Kirkman, unpublished data, 2015.