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Report for Jaumea carnosa (Less.) A.Gray

updated: May 26th 2022, 8:16 pm see all updates
Changed fields since previous approved record are highlighted


Family Asteraceae
Genus Jaumea
Species carnosa
Author (Less.) A.Gray
Infraspecific
Infraspecfic Author
Pictures
Plant type
  • hydrohalophyte
Life form
  • Herbaceous perennial
Ecotypes unknown
Max. salinity
5000 mg/LBarbour, M. G. and C. B. Davis (1970) Salt tolerance of five Californian salt marsh plantsNoto, AE; Shurin, JB (2017) Early Stages of Sea-Level Rise Lead To Decreased Salt Marsh Plant Diversity through Stronger Competition in Mediterranean-Climate MarshesSt. Omer, L. and W. H. Schlesinger (1980) Regulation of NaCl in Jaumea carnosa (Asteraceae), a salt marsh species and it's effect in leaf structureSt. Omer, L. and W. H. Schlesinger (1980) Field and greenhouse investigations of the effects of increasing salt stress on the anatomy of Jaumea carnosa a salt marsh species
Germination unknown
Salt glands and bladders NoSt Omer, L. and M. F. Moseley (1981) The vegative anatomy of Jaumea carnosa
Photosynthesis Pathway unknown
Molecular data
Microbial interactions and mycorrhizal status YesBrown, A. M. and C. Bledsoe (1996) Spatial and temporal dynamics of mycorrhizas in Jaumea carnosa, a tidal saltmarsh halophyteYang, WH; Traut, BH; Silver, WL (2015) Microbially mediated nitrogen retention and loss in a salt marsh soil
Bioremediation unknown
antioxidants
Secondary Metabolites
Compatible Solutes
Habitat
  • A2.5 Coastal saltmarshes and saline reedbedsNoto, AE; Shurin, JB (2017) Early Stages of Sea-Level Rise Lead To Decreased Salt Marsh Plant Diversity through Stronger Competition in Mediterranean-Climate MarshesYang, WH; Traut, BH; Silver, WL (2015) Microbially mediated nitrogen retention and loss in a salt marsh soil
Economic use
Distribution
Distribution map provided by GBIF | Global Biodiversity Information Facility
Distribution (text)
  • Tijuana Estuary is located at 32’ 34’ N, I 17’ 7’ W California, USAZedler, J. B. (1977) Salt-Marsh Community Structure in Tijuana Estuary, California
  • SanDiegoCounty,CA.Noto, AE; Shurin, JB (2017) Early Stages of Sea-Level Rise Lead To Decreased Salt Marsh Plant Diversity through Stronger Competition in Mediterranean-Climate Marshes
  • Tule Slough in the Pe talu -ma marsh, Sonoma County, California, USA(38.1901° N, 122.5489° W) and Millport Slough in theSiletz Estuary, Lincoln County, Oregon, USA(44.8877° N, 123.9971° W)Janousek, CN; Buffington, KJ; Thorne, KM; Guntenspergen, GR; Takekawa, JY; Dugger, BD (2016) Potential effects of sea-level rise on plant productivity: species-specific responses in northeast Pacific tidal marshes
  • Tomales Bay (38.088 N, 122.838 W), which is part of the Point Reyes National Seashore in northern California.Yang, WH; Traut, BH; Silver, WL (2015) Microbially mediated nitrogen retention and loss in a salt marsh soil
Miscellaneous notes
References

Last Records approved
Submitted by T J Flowers
Jun 25th 2022, 8:27 am

Approved by T J Flowers
Jun 25th 2022, 8:27 am
Submitted by T J Flowers
Jun 24th 2022, 10:09 am

Approved by T J Flowers
Jun 24th 2022, 10:09 am
Submitted by T J Flowers
Jun 24th 2022, 9:37 am

Approved by T J Flowers
Jun 24th 2022, 9:37 am
Submitted by T J Flowers
Jun 24th 2022, 6:30 am

Approved by T J Flowers
Jun 24th 2022, 6:30 am
Submitted by T J Flowers
Jun 24th 2022, 6:14 am

Approved by T J Flowers
Jun 24th 2022, 6:14 am
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Contact email: halophytes@sussex.ac.uk
Credits – Tim Flowers, Joaquim Santos, Moritz Jahns, Brian Warburton, Peter Reed