Parthenium integrifolium - Unknown
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Details Top

Internal ID UUID643fd26fb5a1c663050730
Scientific name Parthenium integrifolium
Authority L.
First published in Sp. Pl. : 988 (1753)

Description Top

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Parthenium integrifolium, also known as wild quinine, American feverfew, and eastern feverfew, is a perennial herb native to the eastern and midwestern United States. It can grow up to 1 meter tall and has glandular leaves with serrated or lobed edges. The plant produces clusters of whitish flowers with a pleasant smell, and it is commonly used in gardens due to its ability to thrive in various conditions. Native Americans used the plant for medicinal purposes, such as treating burns and dysentery. It is also used in dried flower arrangements.

Synonyms Top

Scientific name Authority First published in
Parthenium hispidum Raf. New Fl. 2: 35 (1837)
Parthenium radfordii Mears Phytologia 31: 481 (1975)
Parthenium integrifolium var. auriculatum (Britton) Cornelius ex Cronquist Rhodora 47: 399 (1945)
Parthenium integrifolium var. mabryanum Mears Phytologia 31: 475 (1975)
Parthenium repens Eggert Cat. Phaeen. Vasc. Crypt. Pl. St. Louis : 16 (1891)
Parthenium amplectens Raf. New Fl. ii. 26
Parthenium integrifolium var. henryanum Mears Phytologia 31: 471 (1975)
Parthenium integrifolium var. hispidum (Raf.) Mears Phytologia 31: 477 (1975)
Parthenium hispidum var. auriculatum (Britton ex Britton & Brown) Rollins Contr. Gray Herb. 172: 61 (1950)
Parthenium auriculatum Britton Ill. Fl. N. U.S. 3: 521 (1898)
Parthenium integrifolium f. repens (Eggert) Mears Rhodora 31: 480 (1945)

Common names Top

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Language Common/alternative name
English wild quinine
English american feverfew
English eastern feverfew

Subspecies (abbr. subsp./ssp.) Top

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No subspecies added yet.

Varieties (abbr. var.) Top

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No variety added yet.

Subvarieties (abbr. subvar.) Top

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No subvariety added yet.

Forms (abbr. f.) Top

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No forms added yet.

Germination/Propagation Top

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Alternate between 4°C and 20°C for 3 months each, over several cycles, with an extended germination period.

Distribution (via POWO/KEW) Top

Legend for the distribution data:
- Doubtful data
- Extinct
- Introduced
- Native
  • Northern America
    • North-central U.S.A.
      • Illinois
      • Iowa
      • Kansas
      • Minnesota
      • Missouri
      • Oklahoma
      • Wisconsin
    • Northeastern U.S.A.
      • Connecticut
      • Indiana
      • Massachusetts
      • Michigan
      • New York
      • Ohio
      • Pennsylvania
      • West Virginia
    • South-central U.S.A.
      • Texas
    • Southeastern U.S.A.
      • Alabama
      • Arkansas
      • Georgia
      • Kentucky
      • Louisiana
      • Maryland
      • Mississippi
      • North Carolina
      • South Carolina
      • Tennessee
      • Virginia

Links to other databases Top

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Database ID/link to page
World Flora Online wfo-0000123645
UNII TR1KU18ZAH
Flora of Alabama 886
USDA Plants PAIN3
Tropicos 2710805
KEW urn:lsid:ipni.org:names:236512-1
The Plant List gcc-84783
Missouri Botanical Garden 277453
Open Tree Of Life 3899798
NCBI Taxonomy 1680479
Nature Serve 2.639079
IPNI 236512-1
iNaturalist 83893
GBIF 3086802
Freebase /m/0j_7j79
WisFlora 4436
EOL 818216
USDA GRIN 402660
Wikipedia Parthenium_integrifolium

Genomes (via NCBI) Top

No reference genome is available on NCBI yet. We are constantly monitoring for new data.

Scientific Literature Top

Below are displayed the latest 15 articles published in PMC (PubMed Central®) and other sources (DOI number only)!
If you wish to see all the related articles click here.
Title Authors Publication Released IDs
Botanical Ingredient Forensics: Detection of Attempts to Deceive Commonly Used Analytical Methods for Authenticating Herbal Dietary and Food Ingredients and Supplements Gafner S, Blumenthal M, Foster S, Cardellina JH II, Khan IA, Upton R J Nat Prod 30-Jan-2023
PMCID:PMC9972475
doi:10.1021/acs.jnatprod.2c00929
PMID:36716213
Using Organic Contaminants to Constrain the Terrestrial Journey of the Martian Meteorite Lafayette O'Brien ÁC, Hallis LJ, Regnault C, Morrison D, Blackburn G, Steele A, Daly L, Tait A, Tremblay MM, Telenko DE, Gunn J, McKay E, Mari N, Salik MA, Ascough P, Toney J, Griffin S, Whitfield P, Lee M Astrobiology 31-Oct-2022
PMCID:PMC9618387
doi:10.1089/ast.2021.0180
PMID:36264546
Investigation of market herbal products regulated under different categories: How can HPTLC help to detect quality problems? Frommenwiler DA, Reich E, Sharaf MH, Cañigueral S, Etheridge CJ Front Pharmacol 08-Aug-2022
PMCID:PMC9393483
doi:10.3389/fphar.2022.925298
PMID:36003516
Foliar fungal endophyte community structure is independent of phylogenetic relatedness in an Asteraceae common garden Whitaker BK, Christian N, Chai Q, Clay K Ecol Evol 26-Nov-2020
PMCID:PMC7771118
doi:10.1002/ece3.6983
PMID:33391689
Evaluating Native Bee Communities and Nutrition in Managed Grasslands Stein DS, Debinski DM, Pleasants JM, Toth AL Environ Entomol 26-Mar-2020
PMCID:PMC7293027
doi:10.1093/ee/nvaa009
PMID:32215621
A strategy for test article selection and phytochemical characterization of Echinacea purpurea extract for safety testing Waidyanatha S, Pierfelice J, Cristy T, Mutlu E, Burback B, Rider CV, Ryan K Food Chem Toxicol 10-Jan-2020
PMCID:PMC7079738
doi:10.1016/j.fct.2020.111125
PMID:31931071
Ecology of Floristic Quality Assessment: testing for correlations between coefficients of conservatism, species traits and mycorrhizal responsiveness Bauer JT, Koziol L, Bever JD AoB Plants 21-Dec-2017
PMCID:PMC5778608
doi:10.1093/aobpla/plx073
PMID:29383232
Acid-Induced Rearrangement of Epoxygermacranolides: Synthesis of Furanoheliangolides and Cadinanes from Nobilin De Mieri M, Smieško M, Ismajili I, Kaiser M, Hamburger M Molecules 18-Dec-2017
PMCID:PMC6149915
doi:10.3390/molecules22122252
PMID:29258233
An analysis of Echinacea chloroplast genomes: Implications for future botanical identification Zhang N, Erickson DL, Ramachandran P, Ottesen AR, Timme RE, Funk VA, Luo Y, Handy SM Sci Rep 16-Mar-2017
PMCID:PMC5428300
doi:10.1038/s41598-017-00321-6
PMID:28303008
To mulch or not to mulch? Effects of gravel mulch toppings on plant establishment and development in ornamental prairie plantings Schmithals A, Kühn N PLoS One 06-Feb-2017
PMCID:PMC5293235
doi:10.1371/journal.pone.0171533
PMID:28166269
The Importance of Method Selection in Determining Product Integrity for Nutrition Research Mudge EM, Betz JM, Brown PN Adv Nutr 09-Mar-2016
PMCID:PMC4785475
doi:10.3945/an.115.010611
PMID:26980823
The Challenge of Reproducibility and Accuracy in Nutrition Research: Resources and Pitfalls Sorkin BC, Kuszak AJ, Williamson JS, Hopp DC, Betz JM Adv Nutr 09-Mar-2016
PMCID:PMC4785474
doi:10.3945/an.115.010595
PMID:26980822
To Burn or Not to Burn? Effect of Management Strategy on North American Prairie Vegetation for Public Urban Areas in Germany Schmithals A, Kühn N PLoS One 06-Oct-2014
PMCID:PMC4186812
doi:10.1371/journal.pone.0108588
PMID:25286061
Echinacea tennesseensis ethanol tinctures harbor cytokine- and proliferation-enhancing capacities Senchina DS, McCann DA, Flinn GN, Wu L, Zhai Z, Cunnick JE, Wurtele ES, Kohut ML Cytokine 14-Mar-2009
PMCID:PMC2684499
doi:10.1016/j.cyto.2009.02.007
PMID:19286391
Anti-HCV bioactivity of pseudoguaianolides from Parthenium hispitum. Hu JF, Patel R, Li B, Garo E, Hough GW, Goering MG, Yoo HD, O'neil-Johnson M, Eldridge GR J Nat Prod 01-Apr-2007
doi:10.1021/NP060567E
PMID:17291045

Phytochemical Profile Top

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Below are displayed the proven (via scientific papers) natural compounds!
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Name PubChem ID Canonical SMILES MW Found in Proof
> Lipids and lipid-like molecules / Fatty Acyls / Fatty acid esters
[(3aS,6S,6aS,9aS,9bR)-6a-hydroxy-9a-methyl-3-methylidene-2,9-dioxo-4,5,6,7,8,9b-hexahydro-3aH-azuleno[4,5-b]furan-6-yl] 2-methylbutanoate 102080587 Click to see CCC(C)C(=O)OC1CCC2C(C3(C1(CCC3=O)O)C)OC(=O)C2=C 350.40 unknown https://doi.org/10.1021/NP060567E
[(3aS,6S,6aS,9aS,9bR)-6a-hydroxy-9a-methyl-3-methylidene-2,9-dioxo-4,5,6,7,8,9b-hexahydro-3aH-azuleno[4,5-b]furan-6-yl] 3-methylbutanoate 102080588 Click to see CC(C)CC(=O)OC1CCC2C(C3(C1(CCC3=O)O)C)OC(=O)C2=C 350.40 unknown https://doi.org/10.1021/NP060567E
> Lipids and lipid-like molecules / Prenol lipids / Terpene lactones / Sesquiterpene lactones / Ambrosanolides and secoambrosanolides
[(3aS,6R,6aR,9aS,9bR)-6a-hydroxy-9a-methyl-3-methylene-2,9-dioxo-4,5,6,7,8,9b-hexahydro-3aH-azuleno[4,5-b]furan-6-yl]methyl (Z)-2-methylbut-2-enoate 16215287 Click to see CC=C(C)C(=O)OCC1CCC2C(C3(C1(CCC3=O)O)C)OC(=O)C2=C 362.40 unknown https://doi.org/10.1021/NP060567E
[(3aS,6R,6aR,9aS,9bR)-6a-hydroxy-9a-methyl-3-methylidene-2,9-dioxo-4,5,6,7,8,9b-hexahydro-3aH-azuleno[4,5-b]furan-6-yl]methyl (2R)-2-methylbutanoate 162873338 Click to see CCC(C)C(=O)OCC1CCC2C(C3(C1(CCC3=O)O)C)OC(=O)C2=C 364.40 unknown https://doi.org/10.1021/NP060567E
[(3aS,6R,6aR,9aS,9bR)-6a-hydroxy-9a-methyl-3-methylidene-2,9-dioxo-4,5,6,7,8,9b-hexahydro-3aH-azuleno[4,5-b]furan-6-yl]methyl 2-methylpropanoate 162892265 Click to see CC(C)C(=O)OCC1CCC2C(C3(C1(CCC3=O)O)C)OC(=O)C2=C 350.40 unknown https://doi.org/10.1021/NP060567E
Hispitolide B 16215284 Click to see CCCC(=O)OCC1CCC2C(C3(C1(CCC3=O)O)C)OC(=O)C2=C 350.40 unknown https://doi.org/10.1021/NP060567E
Hispitolide C 16215285 Click to see CC=C(C)C(=O)OCC1CCC2C(C3(C1(CCC3=O)O)C)OC(=O)C2=C 362.40 unknown https://doi.org/10.1021/NP060567E
Hispitolide D 16215286 Click to see CC(=CC(=O)OCC1CCC2C(C3(C1(CCC3=O)O)C)OC(=O)C2=C)C 362.40 unknown https://doi.org/10.1021/NP060567E
Propanoic acid,2-methyl-,[(3aS,6R,6aR,9aS,9bR)-dodecahydro-6a-hydroxy-9a-methyl-3-methylene-2,9-dioxoazuleno[4,5-b]furan-6-yl]-methyl ester 615944 Click to see CC(C)C(=O)OCC1CCC2C(C3(C1(CCC3=O)O)C)OC(=O)C2=C 350.40 unknown https://doi.org/10.1021/NP060567E
Tetraneurin A 174868 Click to see CC(=O)OCC1CCC2C(C3(C1(CCC3=O)O)C)OC(=O)C2=C 322.40 unknown https://doi.org/10.1021/NP060567E
> Organoheterocyclic compounds / Pyrans / Pyranones and derivatives
3-Hydroxy-4H-pyran-4-one 68129 Click to see C1=COC=C(C1=O)O 112.08 unknown https://doi.org/10.1016/0031-9422(71)85054-9

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