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Deficit Irrigation in Mediterranean Vineyards - a Tool to Increase Water Use Efficiency and to Control Grapevine and Berry Growth

机译:地中海葡萄园的赤字灌溉 - 一种提高水利用效率和控制葡萄和浆果增长的工具

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Water is increasingly scarce in Mediterranean Europe and irrigated agriculture is one of the largest and most inefficient users of this natural resource. Ecological topics such as the "water foot print" have become more relevant for the academy, consumers, governments and food industry. The wine sector needs solutions to improve its economical and environmental sustainability. Agronomical solutions, such as deficit irrigation (water supply below full crop évapotranspiration) have emerged as a tool for more efficient water use in irrigated viticulture and with likely positive effects on berry quality. Improving our understanding on the physiological and molecular basis of grapevine responses to water stress is an important task for research on irrigated viticulture. Better knowledge of the different genotypic responses (e.g., leaf gas exchange) to water stress can help to optimize crop/soil management and improve yield as well as berry quality traits under unfavourable climate conditions. Mild water deficits have direct and/or indirect (via the light environment in the cluster zone) effects on berry growth and composition. Another important challenge is to determine how soil water deficit regulate genes and proteins of the various metabolic pathways influencing berry composition and consequently wine quality.
机译:地中海欧洲的水越来越稀缺,灌溉农业是这种自然资源的最大和最低效的用户之一。 “水脚印”等生态主题对学院,消费者,政府和食品行业变得更加重要。葡萄酒部门需要解决方案,以提高其经济和环境可持续性。农艺解决方案,如缺陷灌溉(低于全部作物évapotranspiration)作为一种在灌溉葡萄栽培中更有效的用水和对浆果质量的积极影响的工具。改善我们对葡萄对水分应激的生理和分子基础的理解是灌溉葡萄栽培研究的重要任务。更好地了解不同基因型反应(例如,叶片气体交换),水分胁迫可以帮助优化作物/土壤管理,并在不利的气候条件下提高产量以及浆果质量性状。温和的水缺陷具有直接和/或间接的(通过集群区域的光环境)对浆果生长和组成的影响。另一个重要的挑战是确定土壤水赤字如何调节各种代谢途径的基因和蛋白质,影响浆果组合物,从而产生葡萄酒质量。

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