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Pontederia azurea

Pontederia azurea is a water hyacinth from the Americas, sometimes known as anchored water hyacinth. It is the type species of Pontederia subg. Eichhornia, which was previously recognized as part of the polyphyletic genus Eichhornia.[1] It is of some interest as an aquarium plant.

Anchored water hyacinth
E. azurea flowering
Scientific classification
Kingdom: Plantae
Clade: Tracheophytes
Clade: Angiosperms
Clade: Monocots
Clade: Commelinids
Order: Commelinales
Family: Pontederiaceae
Genus: Pontederia
Species:
P. azurea
Binomial name
Pontederia azurea
Sw.

Description edit

The anchored water hyacinth is a free-floating aquatic perennial plant.[2] It is known by various common names such as, water orchid, and floating water hyacinth. The water hyacinth could be identified by its distinct thick, waxy green leaves that has a rounded or elliptical shape. It is able to grow under water and above water due to its long stem that is able to produce up to 5 flowers on a single stem.[2] The hyacinth produces large blossoms with lavender blue petals and a yellow blotch at the center, the flower bearing great resembles with that of a lilac. The petals of the flower are normally 2 inches wide with six petals making up the flower. It can grow up to three feet above water surface and is rooted in the soil underwater.[3]

Distribution edit

The Anchored Water Hyacinth (Eichhornia azurea) is native to Central and South America, inhabiting warm bodies of water. In 1884, the species was introduced to New Orleans from South America.[3][4]

The species has expanded to Alabama, Arkansas, California, Florida, Georgia, Hawaii, Indiana, Kentucky, Missouri, Mississippi, North Carolina, South Carolina, Texas, Virginia, and Vermont.[4] E. azurea also has been introduced into Japan, China, Singapore, and New Zealand. The E. azurea species is considered to be a noxious species by the United States and is prohibited in the following states: Alabama, Arizona, California, Florida, Massachusetts, North Carolina, Oregon, South Carolina, Texas, and Vermont.[5]

In 1884, the anchored water hyacinth was introduced from South America to the United States as an ornamental. The species is able to grow rapidly once introduced and rapidly forms expansive mats of the water hyacinths. Hyacinths are known to double its population size in just two weeks and can reproduce through their seeds and horizontal stems. When they wither, their stems bend and they are able to release their seeds into the soil below. Fragmenting a piece of the plant allows for the plant to be transported and planted elsewhere.[citation needed]

Invasive Species edit

E. azurea poses a threat as a noxious weed.[5] Due to its enlarged bulb-like petioles, the plant is able to not only grow under the surface of the water, but also is able to float and extend above water. In competition with other species for similar requirements in water surface area or bank rooting positions, E. azurea is extremely successful.[6] As an invasive species, the E. azurea is able to accumulate on the surface of water that smothers native species while also lowering light penetration and dissolved oxygen levels.[4] This contributes to the decline of biodiversity as aquatic animals suffocate and die with the lack of dissolved oxygen and resources. Water quality also suffers as result of the lack of dissolved oxygen in the water. This also impacts the fauna that rely on the diverse native species that die against the E. azurea. It also poses a threat towards native aquatic animals as E. azurea is able to reduce their food and habitats.[6] Additionally, the E. azurea is a good habitat for disease vectors such as mosquitoes and parasitic flatworms which bring about diseases such as malaria and schistosomiasis.[4][7]

The anchored water hyacinths also contributes to water loss in introduced areas through transpiration and also negatively affects recreational activities as it clogs waterways. The clogging of water ways prevents swimming, boating and fishing.[6]

Control edit

Eichhornia azurea is similar to Eichhornia crassipes; the most obvious difference is that E. crassipes is a free floating plant. Both are considered invasive weeds, but E. crassipes is the more widely known and studied as an invasive species; control methods for E. crassipes are generally suitable for E. azurea as well.[8] Three types of controls are variously appropriate: biological, physical, and chemical. Biological and physical control require consistent management to have any consistent effect, and chemical control also demands competent management to yield significant benefit while avoiding environmental harm.[9]

Chemical Control edit

Chemical control consists of herbicides and the one applied to water hyacinths are 2,4-D, Diquat and Glysophate which requires skilled operators.[8][10] They have the disadvantage that leaving the dead plants on the water increases degree of anoxia and eutrophication.

Physical Control edit

Physical control is suited for large infestations only when large-scale mechanical aids are available for physically removing the weeds, but it is necessary in early stages of control of intense infestations that are already smothering large water surfaces, rendering the water anoxic. There are many ways of harvesting the weeds and composting them to die, but they all demand that the plant material be removed from the water to avoid eutrophication.

Biological Control edit

The last type of control, biological, is favored whenever practical. This control consists of the use of natural enemies, insects in particular.[9]

Further reading edit

  • Morphological variation in Eichhornia azurea and Eichhornia crassipes:[11]
  • Stop Aquatic Hitchhikers:[12]

References edit

  1. ^ Pellegrini, M. O. O.; Horn, C. N. & Alemida, R. F. (2018). "Total evidence phylogeny of Pontederiaceae (Commelinales) sheds light on the necessity of its recircumscription and synopsis of Pontederia L." PhytoKeys (108): 25–83. doi:10.3897/phytokeys.108.27652. PMC 6160854. PMID 30275733.
  2. ^ a b Cunha, Nicolay Leme da; Fischer, Erich (2009-04-07). "Breeding system of tristylous Eichhornia azurea (Pontederiaceae) in the southern Pantanal, Brazil". Plant Systematics and Evolution. 280 (1–2): 53–58. doi:10.1007/s00606-009-0170-z. ISSN 0378-2697. S2CID 46001993.
  3. ^ a b "Anchored water hyacinth; Water hyacinth, floating | Wisconsin DNR". dnr.wisconsin.gov. Retrieved 2020-12-18.
  4. ^ a b c d "details". www.tsusinvasives.org. Retrieved 2020-12-19.
  5. ^ a b "Plants Profile for Eichhornia azurea (anchored water hyacinth)". plants.usda.gov. Retrieved 2020-12-19.
  6. ^ a b c "NSW WeedWise". weeds.dpi.nsw.gov.au. Retrieved 2020-12-19.
  7. ^ Coles, G. C.; Kabatereine, N. B. (2008-06-01). "Water hyacinth and the transmission of schistosomiasis". Transactions of the Royal Society of Tropical Medicine and Hygiene. 102 (6): 619–620. doi:10.1016/j.trstmh.2008.01.009. ISSN 0035-9203. PMID 18374376.
  8. ^ a b "details". www.tsusinvasives.org. Retrieved 2020-12-19.
  9. ^ a b doi.org/10.1016/0167-8809(91)90149-R
  10. ^ "WATER HYACINTH CONTROL AND POSSIBLE USES" (PDF).
  11. ^ Milne, Judith M.; Murphy, Kevin J.; Thomaz, Sidinei M. (2006-10-01). "Morphological variation in Eichhornia azurea (Kunth) and Eichhornia crassipes (Mart.) Solms in relation to aquatic vegetation type and the environment in the floodplain of the Rio Paraná, Brazil". Hydrobiologia. 570 (1): 19–25. doi:10.1007/s10750-006-0157-5. ISSN 1573-5117. S2CID 420522.
  12. ^ "Water Hyacinth". Stop Aquatic Hitchhikers. Retrieved 2020-12-19.

External links edit

  Media related to Eichhornia azurea at Wikimedia Commons

pontederia, azurea, water, hyacinth, from, americas, sometimes, known, anchored, water, hyacinth, type, species, pontederia, subg, eichhornia, which, previously, recognized, part, polyphyletic, genus, eichhornia, some, interest, aquarium, plant, anchored, wate. Pontederia azurea is a water hyacinth from the Americas sometimes known as anchored water hyacinth It is the type species of Pontederia subg Eichhornia which was previously recognized as part of the polyphyletic genus Eichhornia 1 It is of some interest as an aquarium plant Anchored water hyacinthE azurea floweringScientific classificationKingdom PlantaeClade TracheophytesClade AngiospermsClade MonocotsClade CommelinidsOrder CommelinalesFamily PontederiaceaeGenus PontederiaSpecies P azureaBinomial namePontederia azureaSw Contents 1 Description 2 Distribution 3 Invasive Species 4 Control 4 1 Chemical Control 4 2 Physical Control 4 3 Biological Control 5 Further reading 6 References 7 External linksDescription editThe anchored water hyacinth is a free floating aquatic perennial plant 2 It is known by various common names such as water orchid and floating water hyacinth The water hyacinth could be identified by its distinct thick waxy green leaves that has a rounded or elliptical shape It is able to grow under water and above water due to its long stem that is able to produce up to 5 flowers on a single stem 2 The hyacinth produces large blossoms with lavender blue petals and a yellow blotch at the center the flower bearing great resembles with that of a lilac The petals of the flower are normally 2 inches wide with six petals making up the flower It can grow up to three feet above water surface and is rooted in the soil underwater 3 Distribution editThe Anchored Water Hyacinth Eichhornia azurea is native to Central and South America inhabiting warm bodies of water In 1884 the species was introduced to New Orleans from South America 3 4 The species has expanded to Alabama Arkansas California Florida Georgia Hawaii Indiana Kentucky Missouri Mississippi North Carolina South Carolina Texas Virginia and Vermont 4 E azurea also has been introduced into Japan China Singapore and New Zealand The E azurea species is considered to be a noxious species by the United States and is prohibited in the following states Alabama Arizona California Florida Massachusetts North Carolina Oregon South Carolina Texas and Vermont 5 In 1884 the anchored water hyacinth was introduced from South America to the United States as an ornamental The species is able to grow rapidly once introduced and rapidly forms expansive mats of the water hyacinths Hyacinths are known to double its population size in just two weeks and can reproduce through their seeds and horizontal stems When they wither their stems bend and they are able to release their seeds into the soil below Fragmenting a piece of the plant allows for the plant to be transported and planted elsewhere citation needed Invasive Species editE azurea poses a threat as a noxious weed 5 Due to its enlarged bulb like petioles the plant is able to not only grow under the surface of the water but also is able to float and extend above water In competition with other species for similar requirements in water surface area or bank rooting positions E azurea is extremely successful 6 As an invasive species the E azurea is able to accumulate on the surface of water that smothers native species while also lowering light penetration and dissolved oxygen levels 4 This contributes to the decline of biodiversity as aquatic animals suffocate and die with the lack of dissolved oxygen and resources Water quality also suffers as result of the lack of dissolved oxygen in the water This also impacts the fauna that rely on the diverse native species that die against the E azurea It also poses a threat towards native aquatic animals as E azurea is able to reduce their food and habitats 6 Additionally the E azurea is a good habitat for disease vectors such as mosquitoes and parasitic flatworms which bring about diseases such as malaria and schistosomiasis 4 7 The anchored water hyacinths also contributes to water loss in introduced areas through transpiration and also negatively affects recreational activities as it clogs waterways The clogging of water ways prevents swimming boating and fishing 6 Control editEichhornia azurea is similar to Eichhornia crassipes the most obvious difference is that E crassipes is a free floating plant Both are considered invasive weeds but E crassipes is the more widely known and studied as an invasive species control methods for E crassipes are generally suitable for E azurea as well 8 Three types of controls are variously appropriate biological physical and chemical Biological and physical control require consistent management to have any consistent effect and chemical control also demands competent management to yield significant benefit while avoiding environmental harm 9 Chemical Control edit Chemical control consists of herbicides and the one applied to water hyacinths are 2 4 D Diquat and Glysophate which requires skilled operators 8 10 They have the disadvantage that leaving the dead plants on the water increases degree of anoxia and eutrophication Physical Control edit Physical control is suited for large infestations only when large scale mechanical aids are available for physically removing the weeds but it is necessary in early stages of control of intense infestations that are already smothering large water surfaces rendering the water anoxic There are many ways of harvesting the weeds and composting them to die but they all demand that the plant material be removed from the water to avoid eutrophication Biological Control edit The last type of control biological is favored whenever practical This control consists of the use of natural enemies insects in particular 9 Further reading editMorphological variation in Eichhornia azurea and Eichhornia crassipes 11 Stop Aquatic Hitchhikers 12 References edit Pellegrini M O O Horn C N amp Alemida R F 2018 Total evidence phylogeny of Pontederiaceae Commelinales sheds light on the necessity of its recircumscription and synopsis of Pontederia L PhytoKeys 108 25 83 doi 10 3897 phytokeys 108 27652 PMC 6160854 PMID 30275733 a b Cunha Nicolay Leme da Fischer Erich 2009 04 07 Breeding system of tristylous Eichhornia azurea Pontederiaceae in the southern Pantanal Brazil Plant Systematics and Evolution 280 1 2 53 58 doi 10 1007 s00606 009 0170 z ISSN 0378 2697 S2CID 46001993 a b Anchored water hyacinth Water hyacinth floating Wisconsin DNR dnr wisconsin gov Retrieved 2020 12 18 a b c d details www tsusinvasives org Retrieved 2020 12 19 a b Plants Profile for Eichhornia azurea anchored water hyacinth plants usda gov Retrieved 2020 12 19 a b c NSW WeedWise weeds dpi nsw gov au Retrieved 2020 12 19 Coles G C Kabatereine N B 2008 06 01 Water hyacinth and the transmission of schistosomiasis Transactions of the Royal Society of Tropical Medicine and Hygiene 102 6 619 620 doi 10 1016 j trstmh 2008 01 009 ISSN 0035 9203 PMID 18374376 a b details www tsusinvasives org Retrieved 2020 12 19 a b doi org 10 1016 0167 8809 91 90149 R WATER HYACINTH CONTROL AND POSSIBLE USES PDF Milne Judith M Murphy Kevin J Thomaz Sidinei M 2006 10 01 Morphological variation in Eichhornia azurea Kunth and Eichhornia crassipes Mart Solms in relation to aquatic vegetation type and the environment in the floodplain of the Rio Parana Brazil Hydrobiologia 570 1 19 25 doi 10 1007 s10750 006 0157 5 ISSN 1573 5117 S2CID 420522 Water Hyacinth Stop Aquatic Hitchhikers Retrieved 2020 12 19 External links edit nbsp Media related to Eichhornia azurea at Wikimedia Commons Retrieved from https en wikipedia org w index php title Pontederia azurea amp oldid 1177437684, wikipedia, wiki, book, books, library,

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