Biology:Atriplex angulata

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Short description: Species of plant in the family Amaranthaceae

Atriplex angulata
Iconography of Australian salsolaceous plants (1889) (20123487364).jpg
Atriplex angulata - Fan Saltbush NWP 5.jpg
Scientific classification edit
Kingdom: Plantae
Clade: Tracheophytes
Clade: Angiosperms
Clade: Eudicots
Order: Caryophyllales
Family: Amaranthaceae
Genus: Atriplex
Species:
A. angulata
Binomial name
Atriplex angulata
Benth.
A. angulata distribution map.png
Recorded occurrences of A. angulata from the Atlas of Living Australia
Synonyms[1]
  • Atriplex angulata var. campanulatiformis Aellen
  • Obione angulata (Benth.) G.L.Chu

Atriplex angulata, commonly known as fan saltbush or angular saltbush, is a species of flowering plant in the family Amaranthaceae.[1][2] It is an annual to short-lived perennial subshrub, native to Australia, distributed throughout drier parts of the mainland.[3][4]

Description

Atriplex angulata generally appears as a spreading, rounded subshrub, mealy-grey in colour with woody stems and growing to approximately 30 to 40cm high.[5][4][3] The leaves of this species, like many others of its genus, have been noted to vary in shape and texture.[4][3] Leaf shapes from broad ovate to rhombic have been described, ranging from smooth, entire margins to dentate - or slightly toothed - margins, with a broad apex tip.[5][4][3] Leaf length is generally 1.5 to 4cm long.[4][3] Leaf texture also varies, generally occurring with a hairy, or scurfy, texture on both surfaces however, sometimes appearing shiny, and are usually thin and leathery to touch.[5][4][3]

The bracteole, or leaf-like structure found between the bract and flower of the plant, is a distinguishing feature.[6][5][4][3] While the shape and texture has also been noted to vary, the bracteole is generally 8 to 12mm wide at the apex and 10mm long, with a fused, cylindrical base and an upper, flattened fan-shape displaying shallowly-toothed margins and net veins.[5][4][3]

Atriplex angulata is monoecious.[4][3] Male flowers are found in compact clusters to form short, interrupted spikes on the upper tips of the stems, while female flowers are found scattered in axillary clusters, where the leaves meet the stem of the shrub.[5][4][3] Typically, the female flowers display the distinguishing fan-shaped bracteoles, encasing the firm, spongy-bodied seed.[6][5][4][3]

Ecology

Atriplex angulata is distributed widely across the inner part of mainland Australia, with occurrences recorded in Queensland, New South Wales, Victoria, South Australia and the Northern Territory.[7][8][5][4] It is not reported to be an abundant species, but can be locally common in patches.[4] This native species is not strongly monitored for conservation status,[8][9] however, is listed as critically endangered in the state of Victoria.[10][7]

Flowering occurs mainly in Spring, beginning in July through to October, however has been noted to occur throughout the year.[8][7][5][4][3] Wind is the major mode of seed and pollen dispersal.[7]

Atriplex angulata is more commonly found in low shrubland landscapes with drier soil types, however can occur across a wide range of soil and vegetation types and as such, is difficult to classify to one habitat.[8][7][5][4][3] Not a large part of native, or grazing animal diets, in times when grasses become sparse, dry or unpalatable, animals have been noted to graze on it more readily.[11][4] Whilst not a major contributor to forage alternatives, as a low, spreading shrub, Atriplex angulata provides important ground cover in arid to semi-arid regions, providing shelter for small animals and insects and protecting against soil erosion, which in turn aids the healthy functioning of local nutrient and water cycling.[12]

Taxonomy

Atriplex angulata belongs to the Atriplex genus, one of the most diverse genera of the family Amaranthaceae.[13] The genus was first recorded by Carl Linneus in 1753,[13] with the first record of Atriplex angulata attributed to George Bentham in 1870.[7][14] Molecular studies appear to support the development of the Atriplex genus in Eurasia, reaching Australia in the late Miocene epoch and diversifying from there.[6] Flowering body morphology is generally considered the key classification factor, with genetic methods being increasingly used, however classification has been historically difficult as many species display convergent and discrete morphological and genetic characteristics.[13][6]

A potential contributing factor to this variability is the tendency for Atriplex subspecies to intergrade, or breed, thus sharing genetic material with resulting lineages displaying a mixture of characteristics.[4][5][6] Atriplex angulata has been recorded as intergrading with Atriplex pseudocampanulata, Atriplex intermedia, Atriplex turbinate and Atriplex crassipes.[4][5]

References

  1. 1.0 1.1 "Atriplex angulata Benth." (in en). Royal Botanic Gardens, Kew. http://www.plantsoftheworldonline.org/taxon/163637-1. 
  2. George, Alexander S. (1984). Flora of Australia: Volume 4; Phytolaccaceae to Chenopodiaceae. Canberra: Australian Government Publishing Service. p. 105. https://www.dcceew.gov.au/sites/default/files/env/pages/c369ba41-801b-4ea9-87af-8451fbce87cc/files/flora-australia-04-phytolaccaceae-chenopodiaceae.pdf. 
  3. 3.00 3.01 3.02 3.03 3.04 3.05 3.06 3.07 3.08 3.09 3.10 3.11 3.12 Cunningham, G. M.; Mulham, W. E.; Milthorpe, P. L.; Leigh, J. H. (2012). Plants of Western New South Wales (1 ed.). Collingwood, Victoria: CSIRO Publishing. pp. 238–242. ISBN 9780643104273. 
  4. 4.00 4.01 4.02 4.03 4.04 4.05 4.06 4.07 4.08 4.09 4.10 4.11 4.12 4.13 4.14 4.15 4.16 4.17 Royal Botanic Gardens and Domain Trust, Sydney. "Atriplex angulata". https://plantnet.rbgsyd.nsw.gov.au/cgi-bin/NSWfl.pl?page=nswfl&lvl=sp&name=Atriplex~angulata. 
  5. 5.00 5.01 5.02 5.03 5.04 5.05 5.06 5.07 5.08 5.09 5.10 5.11 "Fact sheet for Atriplex angulata". http://www.flora.sa.gov.au/cgi-bin/speciesfacts_display.cgi?genus=Atriplex&species=angulata. 
  6. 6.0 6.1 6.2 6.3 6.4 Kadereit, Gudrun; Mavrodiev, Evgeny V.; Zacharias, Elizabeth H.; Sukhorukov, Alexander P. (2010). "Molecular phylogeny of Atripliceae (Chenopodioideae, Chenopodiaceae): Implications for systematics, biogeography, flower and fruit evolution, and the origin of C 4 photosynthesis" (in en). American Journal of Botany 97 (10): 1664–1687. doi:10.3732/ajb.1000169. PMID 21616801. http://doi.wiley.com/10.3732/ajb.1000169. 
  7. 7.0 7.1 7.2 7.3 7.4 7.5 Australia, Atlas of Living. "Species: Atriplex angulata (Angular Saltbush)" (in en-AU). https://bie.ala.org.au/species/https://id.biodiversity.org.au/node/apni/2887187. 
  8. 8.0 8.1 8.2 8.3 Communications, c=AU; o=The State of Queensland; ou=Department of Environment and Science; ou=Corporate (2014-10-20). "Species profile | Environment, land and water" (in en-AU). https://apps.des.qld.gov.au/species-search/details/?id=13715. 
  9. "Saving our Species strategies | NSW Environment, Energy and Science". https://www.environment.nsw.gov.au/savingourspeciesapp/default.aspx. 
  10. "Factsheet - Atriplex angulata". https://keys.lucidcentral.org/keys/v3/scotia/key/Plants%20and%20Fungi%20of%20south%20western%20NSW/Media/Html/Atriplex_angulata.htm. 
  11. Ellis, B. A.; Russell, E. M.; Dawson, T. J.; Harrop, C. J. F. (1977). "Seasonal changes in diet preferences in free-ranging Red Kangaroos, Euros and Sheep in Western New South Wales". Wildlife Research 4 (2): 127–144. doi:10.1071/WR9770127. 
  12. Haby, N. A. (2017). "Long-term revegetation success of severely degraded chenopod shrublands". The Rangeland Journal 39 (4): 341–354. doi:10.1071/RJ17027. 
  13. 13.0 13.1 13.2 Brignone, N. F.; Denham, S. S.; Pozner, R. (2016). "Synopsis of the genus Atriplex (Amaranthaceae, Chenopodioideae) for South America". Australian Systematic Botany 29 (5): 324–357. doi:10.1071/SB16026. 
  14. "Vascular Plants". https://biodiversity.org.au/nsl/services. 

Wikidata ☰ Q15584132 entry