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Adapting Wine Grape Ripening to Global Change Requires a Multi-Trait Approach 期刊论文
Authors:  Suter, Bruno;  Irvine, Agnes Destrac;  Gowdy, Mark;  Dai, Zhanwu;  van Leeuwen, Cornelis
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grapevine cultivars  berry sugar accumulation traits  phenotypic plasticity  climate change  genotype-environment interaction  modeling  
Genome-wide identification of B-box proteins and VvBBX44 involved in light-induced anthocyanin biosynthesis in grape (Vitis vinifera L.) 期刊论文
PLANTA, 2021, 卷号: 253, 期号: 5
Authors:  Liu, Wenwen;  Tang, Renkun;  Zhang, Yuyu;  Liu, Xianju;  Gao, Yingying;  Dai, Zhanwu;  Li, Shaohua;  Wu, Benhong;  Wang, Lijun
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BBX proteins  Berry  Light  Color  VvHY5  
Modelling predicts tomatoes can be bigger and sweeter if biophysical factors and transmembrane transports are fine-tuned during fruit development 期刊论文
NEW PHYTOLOGIST, 2021, 卷号: 230, 期号: 4, 页码: 1489-1502
Authors:  Chen, Jinliang;  Beauvoit, Bertrand;  Genard, Michel;  Colombie, Sophie;  Moing, Annick;  Vercambre, Gilles;  Gomes, Eric;  Gibon, Yves;  Dai, Zhanwu
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fruit growth  fruit quality  global sensitivity analysis  metabolic modeling  model integration  primary metabolism  virtual experiment  water and carbon flux  
Data Comparison and Software Design for Easy Selection and Application of CRISPR-based Genome Editing Systems in Plants 期刊论文
GENOMICS PROTEOMICS & BIOINFORMATICS, 2021, 卷号: 19, 期号: 6, 页码: 937-948
Authors:  Wang, Yi;  Lecourieux, Fatma;  Zhang, Rui;  Dai, Zhanwu;  Lecourieux, David;  Li, Shaohua;  Liang, Zhenchang
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CRISPR/Cas  PAM-rich region  G-Q  Software  Database  
Characterization of Chromatin Accessibility and Gene Expression upon Cold Stress Reveals that the RAV1 Transcription Factor Functions in Cold Response in Vitis Amurensis 期刊论文
PLANT AND CELL PHYSIOLOGY, 2021, 卷号: 62, 期号: 10, 页码: 1615-1629
Authors:  Ren, Chong;  Li, Huayang;  Wang, Zemin;  Dai, Zhanwu;  Lecourieux, Fatma;  Kuang, Yangfu;  Xin, Haiping;  Li, Shaohua;  Liang, Zhenchang
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ATAC-seq  Cold response  RAV1  RNA-seq  Transcription factor  Vitis amurensis  
Metabolite analysis reveals distinct spatio-temporal accumulation of anthocyanins in two teinturier variants of cv. 'Gamay' grapevines (Vitis vinifera L.) 期刊论文
PLANTA, 2021, 卷号: 253, 期号: 4
Authors:  Kong, Junhua;  Wu, Jing;  Guan, Le;  Hilbert, Ghislaine;  Delrot, Serge;  Fan, Peige;  Liang, Zhenchang;  Wu, Benhong;  Matus, Jose Tomas;  Gomes, Eric;  Dai, Zhanwu
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Anthocyanins  Grape  Somatic variants  Sugars  Teinturier  
Model-assisted comparison of sugar accumulation patterns in ten fleshy fruits highlights differences between herbaceous and woody species 期刊论文
ANNALS OF BOTANY, 2020, 卷号: 126, 期号: 3, 页码: 455-470
Authors:  Cakpo, Coffi Belmys;  Vercambre, Gilles;  Baldazzi, Valentina;  Roch, Lea;  Dai, Zhanwu;  Valsesia, Pierre;  Memah, Mohamed-Mahmoud;  Colombie, Sophie;  Moing, Annick;  Gibon, Yves;  Genard, Michel
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Sugar metabolism  starch metabolism  sugar uptake  water dilution  inter-species  model  fleshy fruit  cross-species  
The sequence and thresholds of leaf hydraulic traits underlying grapevine varietal differences in drought tolerance 期刊论文
JOURNAL OF EXPERIMENTAL BOTANY, 2020, 卷号: 71, 期号: 14, 页码: 4333-4344
Authors:  Dayer, Silvina;  Herrera, Jose Carlos;  Dai, Zhanwu;  Burlett, Regis;  Lamarque, Laurent J.;  Delzon, Sylvain;  Bortolami, Giovanni;  Cochard, Herve;  Gambetta, Gregory A.
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Drought  embolism  grapevine  stomata  transpiration  turgor loss point  
Knockout of VvCCD8 gene in grapevine affects shoot branching 期刊论文
BMC PLANT BIOLOGY, 2020, 卷号: 20, 期号: 1
Authors:  Ren, Chong;  Guo, Yuchen;  Kong, Junhua;  Lecourieux, Fatma;  Dai, Zhanwu;  Li, Shaohua;  Liang, Zhenchang
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CRISPR  Cas9  CCD8  Mutant  Shoot branching  Strigolactone  
VvWRKY8 represses stilbene synthase genes through direct interaction with VvMYB14 to control resveratrol biosynthesis in grapevine 期刊论文
JOURNAL OF EXPERIMENTAL BOTANY, 2019, 卷号: 70, 期号: 2, 页码: 715-729
Authors:  Jiang, Jinzhu;  Xi, Huifen;  Dai, Zhanwu;  Lecourieux, Fatma;  Yuan, Ling;  Liu, Xianju;  Patra, Barunava;  Wei, Yongzan;  Li, Shaohua;  Wang, Lijun
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Fine-tuning  grapevine  protein interaction  resveratrol  VvMYB14  VvWRKY8