Details Top

Internal ID UUID64402237eb51b729072448
Scientific name Vitis davidi
Authority (Rom.Caill.) Foëx
First published in Cours Compl. Vitic. : 44 (1886)

Ethnobotanical Use Top

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General Uses Top

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Synonyms Top

Scientific name Authority First published in
Spinovitis davidii Rom.Caill. Rev. Hort. [Paris]. 55: 53. 1883
Vitis armata Diels & Gilg ex Diels Bot. Jahrb. Syst. 29: 462 (1900)
Vitis prunisapida H.Lév. & Vaniot Repert. Spec. Nov. Regni Veg. 3: 350 (1907)
Vitis davidi var. hispida X.D.Wang & S.C.Chen Acta Phytotax. Sin. 37: 603 (1999)
Vitis davidi var. ningqiangensis L.X.Niu Acta Univ. Agric. Bor.-Occid. 23(5): 123 (1995)
Spinovitis davidi Rom.Caill. Rev. Hort. (Paris) 55: 53 (1883)
Vitis vinifera var. davidi (Rom.Caill.) Kuntze Revis. Gen. Pl. 1: 132 (1891)

Common names Top

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Language Common/alternative name
English chinese bramble grape
English davids rebe grape
German davids weinrebe
Japanese トゲブドウ
Chinese 刺葡萄
Chinese 刺葡萄根

Subspecies (abbr. subsp./ssp.) Top

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Varieties (abbr. var.) Top

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Name Authority First published in
Vitis davidi var. cyanocarpa (Gagnep.) Sargent Pl. Wilson. 1: 104 (1911)
Vitis davidi var. davidi Unknown
Vitis davidi var. ferruginea Merr. & Chun Sunyatsenia 1: 69 (1930)
Vitis davidii var. cyanocarpa (Gagnep.) Sarg. Pl. Wilson. 1(1): 104 1911

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

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Links to other databases Top

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Database ID/link to page
World Flora Online wfo-0000736806
Tropicos 34002733
The Plant List kew-2872423
Open Tree Of Life 805091
NCBI Taxonomy 103354
GBIF 7293709
Freebase /m/065yvlq
EPPO VITDA
EOL 2889312
USDA GRIN 41865
Wikipedia Vitis_davidii
KEW urn:lsid:ipni.org:names:51026330-1

Genomes (via NCBI) Top

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Accession Assembly
Name Level Submitter Released Coverage Size
GCA_044588485.1 V112.hap2_v1.0 Chromosome Peking University Institute of Advanced Agricultural Sciences 2024-11-08 79 517.86 Mb

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
Molecular Mechanism of Resistance to Alternaria alternata Apple Pathotype in Apple by Alternative Splicing of Transcription Factor MdMYB6-like Zeng X, Wu C, Zhang L, Lan L, Fu W, Wang S Int J Mol Sci 15-Apr-2024
PMCID:PMC11050356
doi:10.3390/ijms25084353
PMID:38673937
The MYB Transcription Factor GmMYB78 Negatively Regulates Phytophthora sojae Resistance in Soybean Gao H, Ma J, Zhao Y, Zhang C, Zhao M, He S, Sun Y, Fang X, Chen X, Ma K, Pang Y, Gu Y, Dongye Y, Wu J, Xu P, Zhang S Int J Mol Sci 11-Apr-2024
PMCID:PMC11050205
doi:10.3390/ijms25084247
PMID:38673832
Complete chloroplast genome of sageretia thea (rhamnaceae), an ornamental fruit and medicinal tree Zhan M, Wang X, Chen W, Huang X Mitochondrial DNA B Resour 26-Mar-2024
PMCID:PMC10967667
doi:10.1080/23802359.2024.2329667
PMID:38545567
Genome-wide identification of bHLH transcription factors and expression analysis under drought stress in Pseudoroegneria libanotica at germination Zhai X, Wang X, Yang X, Huang Q, Wu D, Wang Y, Kang H, Sha L, Fan X, Zhou Y, Zhang H Physiol Mol Biol Plants 09-Mar-2024
PMCID:PMC11018577
doi:10.1007/s12298-024-01433-w
PMID:38633269
Wine aroma modification by Hanseniaspora uvarum: A multiple-step strategy for screening potential mixed starters Zhang Z, Wang H, Xia H, Sun L, Zhang Q, Yang H, Zhang J Food Chem X 05-Oct-2023
PMCID:PMC10739847
doi:10.1016/j.fochx.2023.100930
PMID:38144769
Rust Fungi on Medicinal Plants in Guizhou Province with Descriptions of Three New Species Wu Q, He M, Liu T, Hu H, Liu L, Zhao P, Li Q J Fungi (Basel) 21-Sep-2023
PMCID:PMC10532644
doi:10.3390/jof9090953
PMID:37755061
Multilayered regulation of secondary metabolism in medicinal plants Zhao Y, Liu G, Yang F, Liang Y, Gao Q, Xiang C, Li X, Yang R, Zhang G, Jiang H, Yu L, Yang S Mol Hortic 06-Jun-2023
PMCID:PMC10514987
doi:10.1186/s43897-023-00059-y
PMID:37789448
Identification of Vitis vinifera MYB transcription factors and their response against grapevine berry inner necrosis virus Wang X, Zhao S, Zhou R, Liu Y, Guo L, Hu H BMC Plant Biol 26-May-2023
PMCID:PMC10214588
doi:10.1186/s12870-023-04296-7
PMID:37231351
Dietary Phenolic Compounds: Their Health Benefits and Association with the Gut Microbiota Matsumura Y, Kitabatake M, Kayano SI, Ito T Antioxidants (Basel) 04-Apr-2023
PMCID:PMC10135282
doi:10.3390/antiox12040880
PMID:37107256
QTL detection and candidate gene analysis of grape white rot resistance by interspecific grape (Vitis vinifera L. × Vitis davidii Foex.) crossing Li P, Tan X, Liu R, Rahman FU, Jiang J, Sun L, Fan X, Liu J, Liu C, Zhang Y Hortic Res 02-Apr-2023
PMCID:PMC10208900
doi:10.1093/hr/uhad063
PMID:37249950
Comprehensive Analysis of bHLH Transcription Factors in Ipomoea aquatica and Its Response to Anthocyanin Biosynthesis Liu Z, Fu X, Xu H, Zhang Y, Shi Z, Zhou G, Bao W Int J Mol Sci 15-Mar-2023
PMCID:PMC10057536
doi:10.3390/ijms24065652
PMID:36982726
Genome-wide identification of bHLH transcription factors and their response to salt stress in Cyclocarya paliurus Zhang Z, Fang J, Zhang L, Jin H, Fang S Front Plant Sci 09-Mar-2023
PMCID:PMC10035414
doi:10.3389/fpls.2023.1117246
PMID:36968403
Genome-Wide Characterization and Analysis of bHLH Transcription Factors Related to Anthocyanin Biosynthesis in Cinnamomum camphora (‘Gantong 1’) Gong X, Shen T, Li X, Lin H, Chen C, Li H, Wu Z, Liu Q, Xu M, Zhang B, Zhong Y Int J Mol Sci 09-Feb-2023
PMCID:PMC9959432
doi:10.3390/ijms24043498
PMID:36834907
Phenolic Acids and Amaryllidaceae Alkaloids Profiles in Leucojum aestivum L. In Vitro Plants Grown under Different Light Conditions Morańska E, Simlat M, Warchoł M, Skrzypek E, Waligórski P, Laurain-Mattar D, Spina R, Ptak A Molecules 04-Feb-2023
PMCID:PMC9958804
doi:10.3390/molecules28041525
PMID:36838512
Chromosome-scale genomics, metabolomics, and transcriptomics provide insight into the synthesis and regulation of phenols in Vitis adenoclada grapes Cheng G, Wu D, Guo R, Li H, Wei R, Zhang J, Wei Z, Meng X, Yu H, Xie L, Lin L, Yao N, Zhou S Front Plant Sci 25-Jan-2023
PMCID:PMC9907855
doi:10.3389/fpls.2023.1124046
PMID:36760645

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
> Phenylpropanoids and polyketides / 2-arylbenzofuran flavonoids
(1S,3R,9S,17S)-3-(3,5-dihydroxyphenyl)-2,9,17-tris(4-hydroxyphenyl)-8-oxapentacyclo[8.7.2.04,18.07,19.011,16]nonadeca-4(18),5,7(19),11(16),12,14-hexaene-5,13,15-triol 5318185 Click to see 680.70 unknown https://doi.org/10.1016/S0031-9422(97)00905-9
5-[(1S,2S)-6-[(E)-2-[(2R,3R)-3-[(2S,3S)-3-(3,5-dihydroxyphenyl)-6-hydroxy-2-(4-hydroxyphenyl)-2,3-dihydro-1-benzofuran-4-yl]-2-(4-hydroxyphenyl)-2,3-dihydro-1-benzofuran-5-yl]ethenyl]-5-hydroxy-2-(4-hydroxyphenyl)-2,3-dihydro-1H-inden-1-yl]benzene-1,3-diol 101992975 Click to see 904.90 unknown https://doi.org/10.1016/S0031-9422(97)00905-9
5-[(2S,3S,5R,6S)-3-(3,5-dihydroxyphenyl)-2,6-bis(4-hydroxyphenyl)-4-[(E)-2-(4-hydroxyphenyl)ethenyl]-2,3,5,6-tetrahydrofuro[3,2-f][1]benzofuran-5-yl]benzene-1,3-diol 101017690 Click to see 680.70 unknown https://doi.org/10.1016/S0031-9422(97)00905-9
5-[(6S)-3-(3,5-dihydroxyphenyl)-2,6-bis(4-hydroxyphenyl)-4-[(E)-2-(4-hydroxyphenyl)ethenyl]-2,3,5,6-tetrahydrofuro[3,2-f][1]benzofuran-5-yl]benzene-1,3-diol 5318163 Click to see C1=CC(=CC=C1C=CC2=C3C(C(OC3=CC4=C2C(C(O4)C5=CC=C(C=C5)O)C6=CC(=CC(=C6)O)O)C7=CC=C(C=C7)O)C8=CC(=CC(=C8)O)O)O 680.70 unknown https://doi.org/10.1016/S0031-9422(97)00905-9
Ampelopsin E 10439550 Click to see C1=CC(=CC=C1C=CC2=C3C(C(OC3=CC4=C2C(C(O4)C5=CC=C(C=C5)O)C6=CC(=CC(=C6)O)O)C7=CC=C(C=C7)O)C8=CC(=CC(=C8)O)O)O 680.70 unknown https://doi.org/10.1016/S0031-9422(97)00905-9
Vitisin A 16131430 Click to see 906.90 unknown https://doi.org/10.1016/S0031-9422(97)00905-9
> Phenylpropanoids and polyketides / Stilbenes
5-(2-(4-Hydroxyphenyl)Ethenyl)Benzene-1,3-Diol 5056 Click to see 228.24 unknown https://doi.org/10.1016/S0031-9422(97)00905-9
Resveratrol 445154 Click to see 228.24 unknown https://doi.org/10.1016/S0031-9422(97)00905-9

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