Gambetta Gregory A, Herrera Jose Carlos, Dayer Silvina, Feng Quishuo, Hochberg Uri, Castellarin Simone D
EGFV, Bordeaux-Sciences Agro, INRA, Université de Bordeaux, ISVV, chemin de Leysotte, Villenave d'Ornon, France.
Institute of Viticulture and Pomology, Department of Crop Sciences, University of Natural Resources and Life Sciences Vienna (BOKU), Tulln, Austria.
J Exp Bot. 2020 Aug 6;71(16):4658-4676. doi: 10.1093/jxb/eraa245.
Water availability is arguably the most important environmental factor limiting crop growth and productivity. Erratic precipitation patterns and increased temperatures resulting from climate change will likely make drought events more frequent in many regions, increasing the demand on freshwater resources and creating major challenges for agriculture. Addressing these challenges through increased irrigation is not always a sustainable solution so there is a growing need to identify and/or breed drought-tolerant crop varieties in order to maintain sustainability in the context of climate change. Grapevine (Vitis vinifera), a major fruit crop of economic importance, has emerged as a model perennial fruit crop for the study of drought tolerance. This review synthesizes the most recent results on grapevine drought responses, the impact of water deficit on fruit yield and composition, and the identification of drought-tolerant varieties. Given the existing gaps in our knowledge of the mechanisms underlying grapevine drought responses, we aim to answer the following question: how can we move towards a more integrative definition of grapevine drought tolerance?
水资源可利用性可以说是限制作物生长和生产力的最重要环境因素。气候变化导致的降水模式不稳定和气温升高,可能会使许多地区的干旱事件更加频繁,增加对淡水资源的需求,并给农业带来重大挑战。通过增加灌溉来应对这些挑战并不总是可持续的解决方案,因此越来越需要识别和/或培育耐旱作物品种,以便在气候变化的背景下维持可持续性。葡萄(Vitis vinifera)是一种具有重要经济价值的主要水果作物,已成为研究耐旱性的多年生水果作物模型。本综述综合了关于葡萄干旱响应、水分亏缺对果实产量和成分的影响以及耐旱品种鉴定的最新研究结果。鉴于我们对葡萄干旱响应潜在机制的认识存在差距,我们旨在回答以下问题:我们如何朝着对葡萄耐旱性更综合的定义迈进?