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无土生产系统的水培解决方案:智能农业视角下的问题与机遇

Hydroponic Solutions for Soilless Production Systems: Issues and Opportunities in a Smart Agriculture Perspective.

作者信息

Sambo Paolo, Nicoletto Carlo, Giro Andrea, Pii Youry, Valentinuzzi Fabio, Mimmo Tanja, Lugli Paolo, Orzes Guido, Mazzetto Fabrizio, Astolfi Stefania, Terzano Roberto, Cesco Stefano

机构信息

Department of Agronomy, Food, Natural Resources, Animals and Environment (DAFNAE), University of Padova, Legnaro, Italy.

Faculty of Science and Technology, Free University of Bozen-Bolzano, Bolzano, Italy.

出版信息

Front Plant Sci. 2019 Jul 24;10:923. doi: 10.3389/fpls.2019.00923. eCollection 2019.

Abstract

Soilless cultivation represent a valid opportunity for the agricultural production sector, especially in areas characterized by severe soil degradation and limited water availability. Furthermore, this agronomic practice embodies a favorable response toward an environment-friendly agriculture and a promising tool in the vision of a general challenge in terms of food security. This review aims therefore at unraveling limitations and opportunities of hydroponic solutions used in soilless cropping systems focusing on the plant mineral nutrition process. In particular, this review provides information (1) on the processes and mechanisms occurring in the hydroponic solutions that ensure an adequate nutrient concentration and thus an optimal nutrient acquisition without leading to nutritional disorders influencing ultimately also crop quality (e.g., solubilization/precipitation of nutrients/elements in the hydroponic solution, substrate specificity in the nutrient uptake process, nutrient competition/antagonism and interactions among nutrients); (2) on new emerging technologies that might improve the management of soilless cropping systems such as the use of nanoparticles and beneficial microorganism like plant growth-promoting rhizobacteria (PGPRs); (3) on tools (multi-element sensors and interpretation algorithms based on machine learning logics to analyze such data) that might be exploited in a smart agriculture approach to monitor the availability of nutrients/elements in the hydroponic solution and to modify its composition in . These aspects are discussed considering what has been recently demonstrated at the scientific level and applied in the industrial context.

摘要

无土栽培为农业生产部门提供了一个有效的契机,特别是在那些土壤退化严重且水资源有限的地区。此外,这种农艺实践体现了对环境友好型农业的积极响应,并且在应对粮食安全这一总体挑战的愿景中是一种很有前景的工具。因此,本综述旨在阐明无土种植系统中使用的水培解决方案在植物矿物质营养过程方面的局限性和机遇。具体而言,本综述提供了以下信息:(1)关于水培溶液中发生的过程和机制,这些过程和机制可确保养分浓度充足,从而实现最佳养分吸收,同时不会导致影响作物品质的营养失调(例如,水培溶液中养分/元素的溶解/沉淀、养分吸收过程中的基质特异性、养分竞争/拮抗以及养分之间的相互作用);(2)关于可能改善无土种植系统管理的新兴技术,如纳米颗粒的使用以及有益微生物(如植物促生根际细菌);(3)关于在智能农业方法中可能会用到的工具(基于机器学习逻辑的多元素传感器和解释算法来分析此类数据),以监测水培溶液中养分/元素的有效性并调整其成分。将结合科学层面最近的研究成果以及工业领域的应用情况来讨论这些方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e6f/6668597/997be23f1bb9/fpls-10-00923-g001.jpg

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