Lew Tedrick Thomas Salim, Sarojam Rajani, Jang In-Cheol, Park Bong Soo, Naqvi Naweed I, Wong Min Hao, Singh Gajendra P, Ram Rajeev J, Shoseyov Oded, Saito Kazuki, Chua Nam-Hai, Strano Michael S
Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, MA, USA.
Temasek Life Sciences Laboratory, 1 Research Link, National University of Singapore, Singapore, Singapore.
Nat Plants. 2020 Dec;6(12):1408-1417. doi: 10.1038/s41477-020-00808-7. Epub 2020 Nov 30.
Innovative approaches are urgently required to alleviate the growing pressure on agriculture to meet the rising demand for food. A key challenge for plant biology is to bridge the notable knowledge gap between our detailed understanding of model plants grown under laboratory conditions and the agriculturally important crops cultivated in fields or production facilities. This Perspective highlights the recent development of new analytical tools that are rapid and non-destructive and provide tissue-, cell- or organelle-specific information on living plants in real time, with the potential to extend across multiple species in field applications. We evaluate the utility of engineered plant nanosensors and portable Raman spectroscopy to detect biotic and abiotic stresses, monitor plant hormonal signalling as well as characterize the soil, phytobiome and crop health in a non- or minimally invasive manner. We propose leveraging these tools to bridge the aforementioned fundamental gap with new synthesis and integration of expertise from plant biology, engineering and data science. Lastly, we assess the economic potential and discuss implementation strategies that will ensure the acceptance and successful integration of these modern tools in future farming practices in traditional as well as urban agriculture.
迫切需要创新方法来缓解农业面临的日益增长的压力,以满足对粮食不断上升的需求。植物生物学面临的一个关键挑战是弥合我们对实验室条件下生长的模式植物的详细了解与田间或生产设施中种植的具有农业重要性的作物之间显著的知识差距。本观点文章重点介绍了新型分析工具的最新进展,这些工具快速且无损,并能实时提供关于活体植物的组织、细胞或细胞器特异性信息,具有在田间应用中扩展到多个物种的潜力。我们评估了工程化植物纳米传感器和便携式拉曼光谱在以非侵入或微创方式检测生物和非生物胁迫、监测植物激素信号以及表征土壤、植物微生物群落和作物健康方面的效用。我们建议利用这些工具,通过植物生物学、工程学和数据科学的新综合与整合专业知识,弥合上述基本差距。最后,我们评估了经济潜力,并讨论了实施策略,这些策略将确保这些现代工具在传统农业以及都市农业的未来耕作实践中得到接受并成功整合。