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| 1 | The Basic Helix-Loop-Helix Transcription Factor MYC1 Is Involved in the Regulation of the Flavonoid Biosynthesis Pathway in Grapevine显示文摘以前的结果显示在葡萄藤(Vitis vinifera ) ,由 MYB 抄写因素的 flavonoid 小径基因的规定与基本 helix-loop-helix 蛋白质(bHLHs ) 取决于他们的相互作用。现在的学习描述从葡萄藤的因素说出 VvMYC1 的 bHLH 的第一功能的描述。这个抄写因素种系发生地与 Arabidopsis bHLH 蛋白质,它参予 flavonoid 生合成和表皮的房间命运的控制有关。二混血儿的试金表明了的短暂倡导者和酵母 VvMYC1 身体上与劝诱 flavonoid 小径基因的倡导者的 MYB5a, MYB5b, MYBA1/A2,和 MYBPA1 交往,这在 anthocyanin 或 proanthocyanidin (PA ) 包含了合成。另外,短暂倡导者试金表明 VvMYC1 涉及它的自己的表示的反馈规定。抄本在果浆的皮肤和种子与 anthocyanins 和舞步的合成在果浆发展相互关联期间 VvMYC1 铺平,建议 VvMYC1 涉及在这些机关的 anthocyanins 和 PA 合成的规定。同样, VvMYC1 和 VvMYBA1 的短暂表示在葡萄藤暂停房间导致 anthocyanin 合成。这些结果建议 VvMYC1 是在葡萄藤控制 anthocyanin 和 PA 生合成的 transcriptional 串联的部分。 | Imene Hichri Simon C. Heppel Jeremy Pillet Celine Leon Stefan Czemmel Serge Delrot Virginie Lauvergeat Jochen Bogs | 2010 | Molecular Plant2010,3,3: | 46 |
| 2 | Water limitation and rootstock genotype interact to alter grape berry metabolism through transcriptome reprogramming显示文摘Grapevine is a perennial crop often cultivated by grafting a scion cultivar on a suitable rootstock.Rootstocks influence scions,particularly with regard to water uptake and vigor.Therefore,one of the possibilities to adapt viticulture to the extended drought stress periods is to select rootstocks conferring increased tolerance to drought.However,the molecular mechanisms associated with the ability of rootstock/scion combination to influence grape berry metabolism under drought stress are still poorly understood.The transcriptomic changes induced by drought stress in grape berries(cv.Pinot noir)from vines grafted on either 110R(drought-tolerant)or 125AA(drought-sensitive)rootstock were compared.The experiments were conducted in the vineyard for two years and two grape berry developmental stages(50%and 100%veraison).The genome-wide microarray approach showed that water stress strongly impacts gene expression in the berries,through ontology categories that cover cell wall metabolism,primary and secondary metabolism,signaling,stress,and hormones,and that some of these effects strongly depend on the rootstock genotype.Indeed,under drought stress,berries from vines grafted on 110R displayed a different transcriptional response compared to 125AA-concerning genes related to jasmonate(JA),phenylpropanoid metabolism,and pathogenesis-related proteins.The data also suggest a link between JA and secondary metabolism in water-stressed berries.Overall,genes related to secondary metabolism and JA are more induced and/or less repressed by drought stress in the berries grafted on the drought-sensitive rootstock 125AA.These rootstock-dependent gene expression changes are relevant for berry composition and sensory properties. | Mariam Berdeja Philippe Nicolas Christian Kappel Zhan Wu Dai Ghislaine Hilbert Anthony Peccoux Magali Lafontaine Nathalie Ollat Eric Gomès Serge Delrot | 2015 | Horticulture Research2015,2,1: | 5 |
| 3 | Proteomic and metabolomic profiling underlines the stage- and time-dependent effects of high temperature on grape berry metabolism显示文摘Climate change scenarios predict an increase in mean air temperatures and in the frequency,intensity,and length of extreme temperature events in many wine-growing regions worldwide.Because elevated temperature has detrimental effects on berry growth and composition,it threatens the economic and environmental sustainability of wine production.Using Cabernet Sauvignon fruit-bearing cuttings,we investigated the effects of high temperature(HT)on grapevine berries through a label-free shotgun proteomic analysis coupled to a complementary metabolomic study.Among the 2,279 proteins identified,592 differentially abundant proteins were found in berries exposed to HT.The gene ontology categories“stress,”“protein,”“secondary metabolism,”and“cell wall”were predominantly altered under HT.High temperatures strongly impaired carbohydrate and energy metabolism,and the effects depended on the stage of development and duration of treatment.Transcript amounts correlated poorly with protein expression levels in HT berries,highlighting the value of proteomic studies in the context of heat stress.Furthermore,this work reveals that HT alters key proteins driving berry development and ripening.Finally,we provide a list of differentially abundant proteins that can be considered as potential markers for developing or selecting grape varieties that are better adapted to warmer climates or extreme heat waves. | David Lecourieux Christian Kappel Stéphane Claverol Philippe Pieri Regina Feil John E.Lunn Marc Bonneu Lijun Wang Eric Gomès Serge Delrot Fatma Lecourieux | 2020 | Journal of Integrative Plant Biology2020,62,8: | 2 |
| 4 | Parachlorocuricbenzenesulfonic acid: A potential tool for differential labeling of the sucrose transporter显示文摘 | M'batchi B Delrot S | | 0,,: | 1 |
| 5 | Exploring underwater target detection by imaging polarimetry and correlation techniques 显示文摘 | Dubreuil M Delrot P Leonard I | 2013 | Optical Society of America2013,52,5: | 1 |
| 6 | Cloning and expression a hexose transporter gene expressed during the ripening of grape berry 显示文摘 | FILLION L AGEORGES A PICAUD S COUTOS-THEVENOT P LEMOINE R ROMIEU C DELROT S | 1999 | Plant Physiology1999,120,: | 1 |
| 7 | Functional characterization and expression analysis of a glutathione transporter, BjGT1, from Brassica juncea:Evidence for regulation by heavy metal exposure显示文摘 | Bogs J Bourbouloux A Cagnac O Wachiter A Rausch T and Delrot S | | 0,,10: | 1 |
| 8 | AtOPT6 transports glutathione derivatives and is induced by primisulfuron显示文摘 | Cagnac O Bourbouloux A Chakrabarty D Zhang M.Y and Delrot S | | 0,,03: | 1 |
| 9 | Aquaporins are multifunctional water and solute transporters highly divergent in living organisms显示文摘 | D. Gomes A. Agasse P. Thiébaud S. Delrot H. Gerós F. Chaumont | 2009 | BBA - Biomembranes2009,,6: | 1 |
| 10 | Physiological, biochemical and molecular changes occurring during olive development and ripening 显示文摘 | CONDE C DELROT S GEROS H | 2008 | Journal of Plant Physiology2008,165,15: | 1 |
| 11 | A sugar inducible protein kinase,VvSK1, regulates hexose transport and sugar accumulation in grapevine cells显示文摘 | LECOUTIEUX F LECOURIEUX D VIGBAULT C DELROT S | 2010 | Plant Physiol2010,152,2: | 1 |
| 12 | Overexpression of a grapevine R2R3-MYB factor intomato affects vegetative development, flower morphology and flavonoidand terpenoid metabolism 显示文摘 | Mahjoub A Hemould M Joubes J Decendit A Mars M Barrieu F Hamdi S Delrot S | 2009 | Plant Physiol Biochem2009,47,7: | 1 |
| 13 | Genetic analysis of the biosynthesis of 2-methoxy-3-isobutylpyrazine,a major grape-derived aroma compound impacting wine quality显示文摘 | GUILLAUMIE S IIG A RéTY S BRETTE M TROSSAT-MAGNIN C DECROOCQ S LéON C KEIME C YE T BALTEN-WECK-GUYOT R CLAUDEL P BORDENAVE L VANBRA-BANT S DUCHêNE E DELROT S DARRIET P HUGUENEYP GOMèS E | 2013 | Plant Physiology2013,162,2: | 1 |
| 14 | Effects of abiotic stress on plants:a systems biology perspective显示文摘 | Cramer GR Urano K Delrot S | 2011 | BMC Plant Biol2011,11,: | 1 |
| 15 | Identification and fuctional expression inyeast of a grape berry sucrose carrier显示文摘 | Ageorges A Issaly N Picau S Delrot S Romieu C | 2000 | Plant Physiology and Biochuemistry2000,38,: | 1 |
| 16 | Cloning and expression of a hexose trans porter gene expressed during the ripening of frappe berry显示文摘 | Filion I Agorges A Delrot S | 1999 | Plant Physiol1999,120,: | 1 |
| 17 | Effects of abiotic stress on plants: a systems biology perspective显示文摘 | Cramer GR Urano K Delrot S | 2011 | BMC Plant Biology2011,11,: | 1 |
| 18 | Isogene specific oligo arrays reveal multifaceted changes in gene expression during grape berry (Vitis vinifera L.) development显示文摘 | Nancy Terrier David Glissant Jér?me Grimplet Fran?ois Barrieu Philippe Abbal Carole Couture Agnès Ageorges Rossitza Atanassova Céline Léon Jean-Pierre Renaudin Fabienne Dédaldéchamp Charles Romieu Serge Delrot Sa?d Hamdi | 2005 | Planta2005,,5: | 1 |
| 19 | The functions of inter-and intracellular glutathione transport systems in plants 显示文摘 | Foyer C H Theodoulou F L Delrot S | 2001 | Trends Plant Sci2001,6,: | 1 |
| 20 | A novel family of transporters mediating the transport of glutathione derivatives in plants显示文摘 | Zhang M.Y Bourbouloux A Cagnac O Srikanth C.V Rentsch D Bachhawat A.K and Delrot S | | 0,,01: | 1 |