Vitis vinifera (12X) ▼
Location
About this gene

This gene has 1 transcript (splice variant), 133 orthologues and 11 paralogues.

NameTranscript IDbpProteinTranslation IDBiotypeUniProtRefSeqFlags
MADS4VIT_01s0010g03900.t011068221aaVIT_01s0010g03900.t01
 
Protein coding
F6HGC4 Q84MJ0 Q8LLR0
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Showing the top 34 hits from Europe PubMed Central

PubMed IDTitleAuthorsJournal
41672203VvTPS14 is a linalool synthase activated by VvbZIP3 and repressed by VvMADS4.Nie Z, Wang X, Liu X, Wang Y, Zhang T, Liang Z, Fan P.Plant Sci 365 2026
IND609023449Mining candidate genes for grape seed traits based on a genome-wide association studyZhang C, Yang Y, Zhang S, Yadav V, Zhong H, Zhang F, Zhou X, Wu X, Cao X, Cui L.Horticultural Plant Journal 2025
41214521Integrative analysis of the transcriptome and metabolome reveals the peel coloration mechanism of Zanthoxylum armatum.Ren Y, Liu J, He L, Jiang J, Gong T, Zhou Q, Li Q, Liu J, Tang N, Chen Z.BMC Plant Biol 25 (1) 2025
39894805Comparative gametogenesis and genomic signatures associated with pollen sterility in the seedless mutant of grapevine.Chavan S, Phalake S, Tetali S, Barvkar VT, Patil R.BMC Plant Biol 25 (1) 2025
39337335Identification of VvAGL Genes Reveals Their Network's Involvement in the Modulation of Seed Abortion via Responding Multi-Hormone Signals in Grapevines.Liu F, Aziz RB, Wang Y, Xuan X, Yu M, Qi Z, Chen X, Wu Q, Qu Z, Dong T, Li S, Fang J, Wang C.Int J Mol Sci 25 (18) 2024
38003021Ectopic Expression of MADS-Box Transcription Factor <i>VvAGL12</i> from Grape Promotes Early Flowering, Plant Growth, and Production by Regulating Cell-Wall Architecture in <i>Arabidopsis</i>.Mao T, Wang X, Gao H, Gong Z, Liu R, Jiang N, Zhang Y, Zhang H, Guo X, Yu C.Genes (Basel) 14 (11) 2023
39105136Genome-Wide Analyses of MADS-Box Genes Reveal Their Involvement in Seed Development and Oil Accumulation of Tea-Oil Tree (Camellia oleifera).Zhang X, He W, Wang X, Duan Y, Li Y, Wang Y, Jiang Q, Liao B, Zhou S, Li Y.Int J Genomics 2024 2024
39147719Cadherin-18 loss in prospermatogonia and spermatogonial stem cells enhances cell adhesion through a compensatory mechanism.Li XX, Zhang DC, Wang Y, Wen J, Wang XJ, Cao YL, Jiang R, Li JR, Li YN, Liu HH, Xie WH, Xu ZF, Hu P, Zou K.Zool Res 45 (5) 2024
37591311Molecular regulation of apple and grape ripening: exploring common and distinct transcriptional aspects of representative climacteric and non-climacteric fruits.Zenoni S, Savoi S, Busatto N, Tornielli GB, Costa F.J Exp Bot 74 (20) 2023
37293531Control of ovule development in Vitis vinifera by VvMADS28 and interacting genes.Zhang S, Wang L, Yao J, Wu N, Ahmad B, van Nocker S, Wu J, Abudureheman R, Li Z, Wang X.Hortic Res 10 (6) 2023
37365527Comparative transcriptomic analysis of male and females in the dioecious weeds Amaranthus palmeri and Amaranthus tuberculatus.Bobadilla LK, Baek Y, Tranel PJ.BMC Plant Biol 23 (1) 2023
36061618VviAGL11 self-regulates and targets hormone- and secondary metabolism-related genes during seed development.Amato A, Cardone MF, Ocarez N, Alagna F, Ruperti B, Fattorini C, Velasco R, Mejía N, Zenoni S, Bergamini C.Hortic Res 9 2022
38166716Seasonal variation of two floral patterns in Clematis 'Vyvyan Pennell' and its underlying mechanism.Wang Y, Pan Y, Peng L, Wang J.BMC Plant Biol 24 (1) 2024
33926100MADS-Box Protein Complex VvAG2, VvSEP3 and VvAGL11 Regulates the Formation of Ovules in Vitis vinifera L. cv. 'Xiangfei'.Wang Y, Liu Z, Wu J, Hong L, Liang J, Ren Y, Guan P, Hu J.Genes (Basel) 12 (5) 2021
33835678VvHDZ28 positively regulate salicylic acid biosynthesis during seed abortion in Thompson Seedless.Li Z, Jiao Y, Zhang C, Dou M, Weng K, Wang Y, Xu Y.Plant Biotechnol J 19 (9) 2021
36684773Large-scale analyses of angiosperm Flowering Locus T genes reveal duplication and functional divergence in monocots.Liu H, Liu X, Chang X, Chen F, Lin Z, Zhang L.Front Plant Sci 13 2022
33572582Combined Metabolite and Transcriptome Profiling Reveals the Norisoprenoid Responses in Grape Berries to Abscisic Acid and Synthetic Auxin.He L, Meng N, Castellarin SD, Wang Y, Sun Q, Li XY, Dong ZG, Tang XP, Duan CQ, Pan QH.Int J Mol Sci 22 (3) 2021
30949190Genomics of Flower Identity in Grapevine (Vitis vinifera L.).Palumbo F, Vannozzi A, Magon G, Lucchin M, Barcaccia G.Front Plant Sci 10 2019
30061913Vitis Flower Sex Specification Acts Downstream and Independently of the ABCDE Model Genes.Coito JL, Silva H, Ramos MJN, Montez M, Cunha J, Amâncio S, Costa MMR, Rocheta M.Front Plant Sci 9 2018
32457771Characterization of Transcriptional Expression and Regulation of Carotenoid Cleavage Dioxygenase 4b in Grapes.Meng N, Wei Y, Gao Y, Yu K, Cheng J, Li XY, Duan CQ, Pan QH.Front Plant Sci 11 2020
31996141Dissecting the control of shoot development in grapevine: genetics and genomics identify potential regulators.Guillaumie S, Decroocq S, Ollat N, Delrot S, Gomès E, Cookson SJ.BMC Plant Biol 20 (1) 2020
33101342Potentials and Challenges of Genomics for Breeding Cannabis Cultivars.Barcaccia G, Palumbo F, Scariolo F, Vannozzi A, Borin M, Bona S.Front Plant Sci 11 2020
31269026Characterization of genes and alleles involved in the control of flowering time in grapevine.Kamal N, Ochßner I, Schwandner A, Viehöver P, Hausmann L, Töpfer R, Weisshaar B, Holtgräwe D.PLoS One 14 (7) 2019
31464595Comparative transcriptome and coexpression network analysis of carpel quantitative variation in Paeonia rockii.Liu N, Cheng F, Zhong Y, Guo X.BMC Genomics 20 (1) 2019
27829355Transcriptome analyses of seed development in grape hybrids reveals a possible mechanism influencing seed size.Wang L, Hu X, Jiao C, Li Z, Fei Z, Yan X, Liu C, Wang Y, Wang X.BMC Genomics 17 (1) 2016
26818751Structural and functional annotation of the MADS-box transcription factor family in grapevine.Grimplet J, Martínez-Zapater JM, Carmona MJ.BMC Genomics 17 2016
25495781Flower development and sex specification in wild grapevine.Ramos MJ, Coito JL, Silva HG, Cunha J, Costa MM, Rocheta M.BMC Genomics 15 2014
27488048Exposure to various abscission-promoting treatments suggests substantial ERF subfamily transcription factors involvement in the regulation of cassava leaf abscission.Liao W, Li Y, Yang Y, Wang G, Peng M.BMC Genomics 17 2016
24751940A non-climacteric fruit gene CaMADS-RIN regulates fruit ripening and ethylene biosynthesis in climacteric fruit.Dong T, Chen G, Tian S, Xie Q, Yin W, Zhang Y, Hu Z.PLoS One 9 (4) 2014
23691041Isolation and functional analyses of a putative floral homeotic C-function gene in a basal eudicot London plane tree (Platanus acerifolia).Zhang J, Li Z, Guo C, Liu G, Bao M.PLoS One 8 (5) 2013
20633275Expression divergence of the AGL6 MADS domain transcription factor lineage after a core eudicot duplication suggests functional diversification.Viaene T, Vekemans D, Becker A, Melzer S, Geuten K.BMC Plant Biol 10 2010
IND43636235Expression analysis of flowering genes from seedling-stage to vineyard life of grapevine cv. Riesling.Joly D, Perrin M, Gertz C, Kronenberger J, Demangeat G, Masson JE.Plant Sci 166 (6) 2004
18419811Berry and phenology-related traits in grapevine (Vitis vinifera L.): from quantitative trait loci to underlying genes.Costantini L, Battilana J, Lamaj F, Fanizza G, Grando MS.BMC Plant Biol 8 2008
18034875Genome-wide transcriptional analysis of grapevine berry ripening reveals a set of genes similarly modulated during three seasons and the occurrence of an oxidative burst at vèraison.Pilati S, Perazzolli M, Malossini A, Cestaro A, Demattè L, Fontana P, Dal Ri A, Viola R, Velasco R, Moser C.BMC Genomics 8 2007