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IVES 9 IVES Conference Series 9 Terclim 9 Terclim 2026 9 Terclim 2026 – Session 1: New technologies for terroir zoning and climate change projections 9 Model-assisted analysis of climate change and terroir effects on grape quality in China

Model-assisted analysis of climate change and terroir effects on grape quality in China

Abstract

Climate is known as an essential factor for grapevine phenology, yield and quality, and climate change may challenge or open new opportunities of the sustainability of wine grape production. The wine industry in China spreads across a wide range of regions with huge diversity of climate patterns, while their climate change trends as well as the influences on grapevine growth and berry quality remain largely unknown. To fill these gaps, we have developed a series of modeling work, with historical long-term climate records, as well as field observation of phenology and berry quality data, to illustrate the regional climate change trends over the last 60 years in most of the wine regions in China. In addition, a phenology model able to precisely predicts the sugar-based maturity dates was developed suitable for the continental climate conditions in China, and then this maturity model was used to evaluate the risk of freezing injury before harvest with diverse cultivars of different precocities in different growing regions. Moreover, berry quality models, such as berry sugars and anthocyanins were also developed to evaluate the responses of different cultivars in the past and future climate scenarios. Finally, vineyard zoning was proposed based on an integrative model framework by considering both the current climate conditions as well as climate projections in the futures, so that providing a solid foundation for sustainable development of viticulture.

References

Bai H, Gambetta GA, Wang Y, Kong J, Long Q, Fan P, Duan W, Liang Z, Dai Z. 2022a. Historical long-term cultivar×climate suitability data to inform viticultural adaptation to climate change. Scientific Data 9, 271. https://doi.org/10.1038/s41597-022-01367-6

Bai H, He J, van Leeuwen C, Hamdi R, Blancquaert E, Jones GV, Dai Z. 2025. Warming temperature reduces the risk of pre-harvest freezing injury and modifies variety suitability in the main winegrape-growing regions of China. Horticulture Research 12, uhaf176. https://doi.org/10.1093/hr/uhaf176

Bai H, Sun Z, Yao X, Kong J, Wang Y, Zhang X, Chen W, Fan P, Li S, Liang Z, Dai Z. 2022b. Viticultural suitability analysis based on multi-source data highlights climate-change-induced decrease in potential suitable areas: a case analysis in Ningxia, China. Remote Sensing 14, 3717. https://doi.org/10.3390/rs14153717

Yang W, Zhu J, van Leeuwen C, Dai Z, Gambetta GA. 2023. GrapevineXL reliably predicts multi-annual dynamics of vine water status, berry growth, and sugar accumulation in vineyards. Horticulture Research 10, uhad071. https://doi.org/10.1093/hr/uhad071

Yao X, Wang H, Liu M, Chen W, Xu Z, Niu R, Wang Y, Kong J, Bai H, Kuang Y, Liu H, Fan P, Li S, Liang Z, Dai Z. 2025. Dissecting the hierarchical contributions of terroir factors on the volatile composition of grapevine ‘Cabernet Sauvignon’ and ‘Merlot’ (Vitis viniferaL.). Scientia Horticulturae 342, 114026.   https://doi.org/10.1016/j.scienta.2025.114026

Wang H, Yao X, Liu M, Xu X, Wang Y, Kong J, Chen W, Xu Z, Kuang Y, Fan P, Liang Z, Liu H, Dai Z. 2025. Climate, soil, and viticultural factors differentially affect the sub-regional variations in biochemical compositions of grape berries. Scientia Horticulturae 339, 113858. https://doi.org/10.1016/j.scienta.2024.113858

Wang Y, Shang B, Génard M, Hilbert-Masson G, Delrot S, Gomès E, Poni S, Keller M, Renaud C, Kong J, Chen J, Liang Z, Dai Z. 2023. Model-assisted analysis for tuning anthocyanin composition in grape berries. Annals of Botany 132, 1033-1050. https://doi.org/10.1093/aob/mcad165

Zhang Y, Wang Y, Henke M, Carbonell-Bejerano P, Wang Z, Bert P-F, Wang Y, Li H, Kong J, Fan P, Dai Z, Liang Z. 2025. Integrating dense genotyping with high-throughput phenotyping empowers the genetic dissection of berry quality and resilience traits in grapevine. Advanced Science 12, 2412587. https://doi.org/10.1002/advs.202412587

Acknowledgments

This research was partially funded by the Agricultural Breeding Project of Ningxia Hui Autonomous Region (NXNYYZ202101), the National Key R&D Program of China (2021YFE0109500), National Natural Science Foundation of China (U20A2041 and 42405198), CAS Youth Interdisciplinary Team (JCTD-2022-06), CAS Project for Young Scientists in Basic Research (YSBR-093), Central Public-interest Scientific Institution Basal Research Fund (No. 20453) and Yunnan Provincial Key Research and Development Program (202403AP140029). It is also conducted as part of the LIA INNOGRAPE II International Associated Laboratory.

Publication date: June 29, 2026

Issue: Terclim 2026

Type: Oral

Authors

Zhanwu Dai1,*, Huiqing Bai2, Yang Li1, Yongjian Wang1

1 State Key Laboratory of Plant Diversity and Specialty Crops, Beijing Key Laboratory of Grape Sciences and Enology,Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China

2 Institute of Environment and Sustainable Development in Agriculture, Chinese Academy of Agricultural Sciences, Beijing 100081, China

Contact the author*

Keywords

grape, fruit quality, climate change, modelling, terroir

Tags

IVES Conference Series | terclim | Terclim 2026

Citation

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