Prospecting the resilience of several Spanish ancient varieties of red grape under climate change scenarios

Background: Climate change results in warmer air temperatures and an uncertain amount and distribution of annual precipitations, which will directly impact rainfed crops, such as the grapevine. Traditionally, ancient autochthones grapevine varieties have been substituted by modern ones with higher p...

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Detalles Bibliográficos
Autores: Antolín-Bellver, M.C. (M. Carmen)|||/items/f196e0e4-6d7f-4e8e-b73c-9deee2516a87, Salinas, E. (Eduardo)|||/items/e0354fae-d99c-47fd-93df-14717f53c6d5, Fernández-Lesaga, A. (Ana)|||/items/d7b8c7f1-20b8-496a-a41a-2998ce5f9255, Gogorcena, Y. (Yolanda)|||/items/5275f9f6-cbca-4f1a-90f2-e0bbcf3ca4f9, Pascual-Elizalde, I. (Inmaculada)|||/items/157d711d-67a5-463d-8743-0ad7ee50b3dc, Irigoyen-Iparrea, J.J. (Juan Jose)|||/items/8ef56456-59a7-4eba-b376-37328752e352, Goicoechea-Preboste, N. (Nieves)|||/items/15d3ee01-2310-4307-af7e-b6b0f876b646
Tipo de recurso: artículo
Fecha de publicación:2022
País:España
Institución:Universidad de Navarra
Repositorio:Dadun. Depósito Académico Digital de la Universidad de Navarra
Idioma:inglés
OAI Identifier:oai:dadun.unav.edu:10171/64602
Acceso en línea:https://hdl.handle.net/10171/64602
Access Level:acceso abierto
Palabra clave:Phenolic maturity
High temperature
Old grapevine varieties
Soluble solids
Technological maturity
Water deficit
Descripción
Sumario:Background: Climate change results in warmer air temperatures and an uncertain amount and distribution of annual precipitations, which will directly impact rainfed crops, such as the grapevine. Traditionally, ancient autochthones grapevine varieties have been substituted by modern ones with higher productivity. However, this homogenization of genotypes reduces the genetic diversity of vineyards which could make their ability to adapt to challenges imposed by future climate conditions difficult. Therefore, this work aimed to assess the response of four ancient grapevine varieties to high temperatures under different water availabilities, focusing on plant water relations, grape technological and phenolic maturity, and the antioxidant capacity of the must. Methods: The study was conducted on fruit-bearing cuttings grown in pots in temperature-gradient greenhouses. A two-factorial design was established where two temperature regimes, ambient and elevated (ambient + 4 °C), were combined with two water regimes, full irrigation and post-veraison deficit irrigation, during fruit ripening. Results: There were significant differences among the ancient varieties regarding plant water relations and fruit quality. Conclusion: This research underlines the importance of evaluating the behavior of ancient grapevine varieties that could offer good options for the adaptation of viticulture to future climate conditions