Trochodendron aralioides - Unknown
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Details Top

Internal ID UUID643fff0b3e45f773929396
Scientific name Trochodendron aralioides
Authority Siebold & Zucc.
First published in Fl. Jap. 1: 84 (1839)

Description Top

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Synonyms Top

Scientific name Authority First published in
Trochodendron longifolium Maxim. Index Seminum (LE) 1865: 35 1865
Trochodendron aralioides var. longifolium Maxim. Bull. Acad. Imp. Sci. Saint-Pétersbourg 17(nos. 8-18): 145. 1872 [Feb 1872]

Common names Top

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Language Common/alternative name
English wheel tree
German radbaum
Finnish rataspuu
Japanese ヤマグルマ
Polish trochodendron araliowaty
Russian Троходендрон аралиевидный
Chinese 昆栏树
Chinese 昆欄樹
Chinese 臺灣雲葉

Subspecies (abbr. subsp./ssp.) Top

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Varieties (abbr. var.) Top

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Subvarieties (abbr. subvar.) Top

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Forms (abbr. f.) Top

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Germination/Propagation Top

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Distribution (via POWO/KEW) Top

Legend for the distribution data:
- Doubtful data
- Extinct
- Introduced
- Native

Links to other databases Top

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Database ID/link to page
World Flora Online wfo-0000458292
Tropicos 32900008
KEW urn:lsid:ipni.org:names:927850-1
The Plant List kew-2519541
Missouri Botanical Garden 287381
Open Tree Of Life 62529
NCBI Taxonomy 4407
IPNI 927850-1
iNaturalist 429716
GBIF 4191567
Freebase /m/0bh9ld1
EPPO TCDAR
USDA GRIN 40668
Wikipedia Trochodendron_aralioides

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
Flower colour and size-signals vary with altitude and resulting climate on the tropical-subtropical islands of Taiwan Shrestha M, Tai KC, Dyer AG, Garcia JE, Yang EC, Jentsch A, Wang CN Front Plant Sci 01-Feb-2024
PMCID:PMC10867191
doi:10.3389/fpls.2024.1304849
PMID:38362451
Application of single-cell multi-omics approaches in horticulture research Zhang J, Ahmad M, Gao H Mol Hortic 26-Sep-2023
PMCID:PMC10521458
doi:10.1186/s43897-023-00067-y
PMID:37789394
Chromosome-level genome assemblies from two sandalwood species provide insights into the evolution of the Santalales Hong Z, Peng D, Tembrock LR, Liao X, Xu D, Liu X, Wu Z Commun Biol 01-Jun-2023
PMCID:PMC10235099
doi:10.1038/s42003-023-04980-2
PMID:37264116
Subgenome-aware analyses suggest a reticulate allopolyploidization origin in three Papaver genomes Zhang RG, Lu C, Li GY, Lv J, Wang L, Wang ZX, Chen Z, Liu D, Zhao Y, Shi TL, Zhang W, Tang ZH, Mao JF, Ma YP, Jia KH, Zhao W Nat Commun 19-Apr-2023
PMCID:PMC10115784
doi:10.1038/s41467-023-37939-2
PMID:37076529
Effect of geographic isolation on genetic variation and population structure of Euphrasia nankotaizanensis, a threatened endemic alpine herb in Taiwan Chen SY, Huang CC, Cheng YT, Wang CC, Li CY, Lai IL, Hung KH Heliyon 04-Mar-2023
PMCID:PMC10018478
doi:10.1016/j.heliyon.2023.e14228
PMID:36938387
Hypochnicium sensu lato (Polyporales, Basidiomycota) from Japan, with descriptions of a new genus and three new species Maekawa N, Sugawara R, Kogi H, Norikura S, Sotome K, Endo N, Nakagiri A, Ushijima S Mycoscience 31-Jan-2023
PMCID:PMC10042306
doi:10.47371/mycosci.2022.10.001
PMID:37089899
Single-cell transcriptomics unveils xylem cell development and evolution Tung CC, Kuo SC, Yang CL, Yu JH, Huang CE, Liou PC, Sun YH, Shuai P, Su JC, Ku C, Lin YC Genome Biol 09-Jan-2023
PMCID:PMC9830878
doi:10.1186/s13059-022-02845-1
PMID:36624504
A high-quality Buxus austro-yunnanensis (Buxales) genome provides new insights into karyotype evolution in early eudicots Wang Z, Li Y, Sun P, Zhu M, Wang D, Lu Z, Hu H, Xu R, Zhang J, Ma J, Liu J, Yang Y BMC Biol 04-Oct-2022
PMCID:PMC9533543
doi:10.1186/s12915-022-01420-1
PMID:36195948
New Insights Into the Backbone Phylogeny and Character Evolution of Corydalis (Papaveraceae) Based on Plastome Data Xu X, Li X, Wang D Front Plant Sci 05-Aug-2022
PMCID:PMC9389321
doi:10.3389/fpls.2022.926574
PMID:35991421
SSR individual identification system construction and population genetics analysis for Chamaecyparis formosensis Huang CJ, Chu FH, Huang YS, Tu YC, Hung YM, Tseng YH, Pu CE, Hsu CT, Chao CH, Chou YS, Liu SC, You YT, Hsu SY, Hsieh HC, Wang CT, Chen CT Sci Rep 08-Mar-2022
PMCID:PMC8904461
doi:10.1038/s41598-022-07870-5
PMID:35260700
A Chromosome-Level Genome Assembly of the European Beech (Fagus sylvatica) Reveals Anomalies for Organelle DNA Integration, Repeat Content and Distribution of SNPs Mishra B, Ulaszewski B, Meger J, Aury JM, Bodénès C, Lesur-Kupin I, Pfenninger M, Da Silva C, Gupta DK, Guichoux E, Heer K, Lalanne C, Labadie K, Opgenoorth L, Ploch S, Le Provost G, Salse J, Scotti I, Wötzel S, Plomion C, Burczyk J, Thines M Front Genet 08-Feb-2022
PMCID:PMC8862710
doi:10.3389/fgene.2021.691058
PMID:35211148
Buxus and Tetracentron genomes help resolve eudicot genome history Chanderbali AS, Jin L, Xu Q, Zhang Y, Zhang J, Jian S, Carroll E, Sankoff D, Albert VA, Howarth DG, Soltis DE, Soltis PS Nat Commun 02-Feb-2022
PMCID:PMC8810787
doi:10.1038/s41467-022-28312-w
PMID:35110570
The genome of the endangered Macadamia jansenii displays little diversity but represents an important genetic resource for plant breeding Sharma P, Murigneux V, Haimovitz J, Nock CJ, Tian W, Kharabian Masouleh A, Topp B, Alam M, Furtado A, Henry RJ Plant Direct 14-Dec-2021
PMCID:PMC8671617
doi:10.1002/pld3.364
PMID:34938939
The Widened Pipe Model of plant hydraulic evolution Koçillari L, Olson ME, Suweis S, Rocha RP, Lovison A, Cardin F, Dawson TE, Echeverría A, Fajardo A, Lechthaler S, Martínez-Pérez C, Marcati CR, Chung KF, Rosell JA, Segovia-Rivas A, Williams CB, Petrone-Mendoza E, Rinaldo A, Anfodillo T, Banavar JR, Maritan A Proc Natl Acad Sci U S A 26-May-2021
PMCID:PMC8179198
doi:10.1073/pnas.2100314118
PMID:34039710
The Tetracentron genome provides insight into the early evolution of eudicots and the formation of vessel elements Liu PL, Zhang X, Mao JF, Hong YM, Zhang RG, E Y, Nie S, Jia K, Jiang CK, He J, Shen W, He Q, Zheng W, Abbas S, Jewaria PK, Tian X, Liu CJ, Jiang X, Yin Y, Liu B, Wang L, Jin B, Ma Y, Qiu Z, Baluška F, Šamaj J, He X, Niu S, Xie J, Xie L, Xu H, Kong H, Ge S, Dixon RA, Jiao Y, Lin J Genome Biol 02-Dec-2020
PMCID:PMC7709256
doi:10.1186/s13059-020-02198-7
PMID:33267872

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 alcohols
1-Hexacosanol 68171 Click to see CCCCCCCCCCCCCCCCCCCCCCCCCCO 382.70 unknown https://doi.org/10.1248/YAKUSHI1947.91.4_492
> Lipids and lipid-like molecules / Prenol lipids / Triterpenoids
(8a-Formyl-4,4,6a,6b,11,11,14b-heptamethyl-1,2,3,4a,5,6,7,8,9,10,12,12a,14,14a-tetradecahydropicen-3-yl) acetate 14829105 Click to see CC(=O)OC1CCC2(C(C1(C)C)CCC3(C2CC=C4C3(CCC5(C4CC(CC5)(C)C)C=O)C)C)C 482.70 unknown https://doi.org/10.1016/S0031-9422(00)84358-7
[(3S,4aR,6aS,6bR,8aS,12aR,14aR,14bS)-8a-formyl-4,4,6a,6b,11,11,14b-heptamethyl-1,2,3,4a,5,6,7,8,9,10,12,12a,14,14a-tetradecahydropicen-3-yl] acetate 162976799 Click to see CC(=O)OC1CCC2(C(C1(C)C)CCC3(C2CC=C4C3(CCC5(C4CC(CC5)(C)C)C=O)C)C)C 482.70 unknown https://doi.org/10.1016/S0031-9422(00)84358-7
Beta-Amyrin 73145 Click to see CC1(CCC2(CCC3(C(=CCC4C3(CCC5C4(CCC(C5(C)C)O)C)C)C2C1)C)C)C 426.70 unknown https://doi.org/10.1271/BBB1924.21.77
Betulin 72326 Click to see CC(=C)C1CCC2(C1C3CCC4C5(CCC(C(C5CCC4(C3(CC2)C)C)(C)C)O)C)CO 442.70 unknown https://doi.org/10.1271/BBB1924.21.77
Lup-20(29)-ene-3beta,28-diol 221023 Click to see CC(=C)C1CCC2(C1C3CCC4C5(CCC(C(C5CCC4(C3(CC2)C)C)(C)C)O)C)CO 442.70 unknown https://doi.org/10.1271/BBB1924.21.77
Olean-12-en-3beta-ol 225689 Click to see CC1(CCC2(CCC3(C(=CCC4C3(CCC5C4(CCC(C5(C)C)O)C)C)C2C1)C)C)C 426.70 unknown https://doi.org/10.1271/BBB1924.21.77

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