Aguilera Paula, Ortiz Nancy, Becerra Ninozhka, Turrini Alessandra, Gaínza-Cortés Felipe, Silva-Flores Patricia, Aguilar-Paredes Ana, Romero Juan Karlo, Jorquera-Fontena Emilio, Mora María de La Luz, Borie Fernando
Scientific and Technological Bioresource Nucleus, Universidad de La Frontera, Temuco, Chile.
Department of Agriculture, Food and Environment, University of Pisa, Pisa, Italy.
Front Microbiol. 2022 Mar 3;13:826571. doi: 10.3389/fmicb.2022.826571. eCollection 2022.
The crop (L.) is of great economic importance as Chile is one of the main wine-producing countries, reaching a vineyard area of 145,000 ha. This vine crop is usually very sensitive to local condition changes and agronomic practices; therefore, strategies to counteract the expected future decrease in water level for agricultural irrigation, temperature increase, extreme water stress (abiotic stress), as well as increase in pathogenic diseases (biotic stress) related to climate change will be of vital importance for this crop. Studies carried out in recent years have suggested that arbuscular mycorrhizal fungi (AMF) can provide key ecosystem services to host plants, such as water uptake implementation and enhanced absorption of nutrients such as P and N, which are key factors for improving the nutritional status of the vine. AMF use in viticulture will contribute also to sustainable agronomic management and bioprotection against pathogens. Here we will present (1) the current status of grapevines in Chile, (2) the main problems in grapevines related to water stress and associated with climate change, (3) the importance of AMF to face water stress and pathogens, and (4) the application of AMF as a biotechnological and sustainable tool in vineyards.
由于智利是主要的葡萄酒生产国之一,葡萄园面积达14.5万公顷,葡萄作物(L.)具有重要的经济意义。这种葡萄作物通常对当地条件变化和农艺措施非常敏感;因此,应对未来农业灌溉水位预期下降、气温升高、极端水分胁迫(非生物胁迫)以及与气候变化相关的致病病害增加(生物胁迫)的策略对这种作物至关重要。近年来进行的研究表明,丛枝菌根真菌(AMF)可以为寄主植物提供关键的生态系统服务,如水分吸收和增强对磷和氮等养分的吸收,这些是改善葡萄营养状况的关键因素。在葡萄栽培中使用AMF也将有助于可持续的农艺管理和对病原体的生物保护。在这里,我们将介绍(1)智利葡萄的现状,(2)与水分胁迫以及与气候变化相关的葡萄主要问题,(3)AMF应对水分胁迫和病原体的重要性,以及(4)AMF作为葡萄园生物技术和可持续工具的应用。