Kumar Vinay, Zadokar Ashwini, Kumar Pankaj, Sharma Rohit, Sharma Rajnish, Siddiqui Mohammed Wasim, Irfan Mohammad, Chandora Rahul
Department of Biotechnology, Dr. YS Parmar University of Horticulture and Forestry, Solan, Himachal Pradesh, India.
Department of Forest Product, Dr. YS Parmar University of Horticulture and Forestry, Solan, Himachal Pradesh, India.
PeerJ. 2025 Apr 4;13:e19058. doi: 10.7717/peerj.19058. eCollection 2025.
To strengthen the agriculture sector, it is crucial to combine the efforts of industrialization (field mechanization and fertilizer production), technology (genome editing and manipulation), and the information sector (for the application of current technologies in precision agriculture). The challenge of modern sustainable agriculture is increasing agricultural output while using the least amount of resources and capital expenditure possible and considering the variables contributing to environmental damage. Different environmental factors adversely affect medicinal plant populations, leading to the extinction of these valuable medicinal species. These difficulties drew the attention of the international scientific community to farm sustainability and energy efficiency studies that put forth the idea of precision agriculture (site-specific crop management) in medicinal plants. It is a systems-based method that monitors and responds to changes in intra- and inter-field conditions for environmentally friendly and optimum crop output. Farming systems have significantly benefited from the visualization and morphological analysis of agricultural areas (both open fields and greenhouse experiments) using remote sensing technology, geographic information systems (GIS), crop scouting, variable rate technology (VRT), and Global Positioning System (GPS). These technologies form the backbone of the fourth agricultural technological revolution, Agriculture 4.0. This review concisely summarizes these innovative technologies' current use and potential future advancements in medicinal plants. The review is intended for researchers, professionals in medicinal plant cultivation, herbal medicine research, crop science, and related fields.
为加强农业部门,将工业化努力(田间机械化和肥料生产)、技术(基因组编辑与操作)以及信息部门(用于当前技术在精准农业中的应用)结合起来至关重要。现代可持续农业面临的挑战是,在尽可能少使用资源和资本支出并考虑到导致环境破坏的各种变量的情况下提高农业产量。不同的环境因素对药用植物种群产生不利影响,导致这些珍贵药用物种灭绝。这些困难引起了国际科学界对农场可持续性和能源效率研究的关注,这些研究提出了药用植物精准农业(特定地点作物管理)的理念。这是一种基于系统的方法,可监测并响应田间内和田间间条件的变化,以实现环境友好型和最佳作物产量。利用遥感技术、地理信息系统(GIS)、作物巡查、变量施肥技术(VRT)和全球定位系统(GPS)对农业区域(包括露天田地和温室试验)进行可视化和形态分析,使耕作系统受益匪浅。这些技术构成了第四次农业技术革命——农业4.0的支柱。本综述简要总结了这些创新技术在药用植物中的当前应用情况以及未来可能的进展。本综述面向药用植物种植研究人员、专业人士、草药研究人员、作物科学及相关领域人员。