Boonyaves Kulaporn, Ang Mervin Chun-Yi, Park Minkyung, Cui Jianqiao, Khong Duc Thinh, Singh Gajendra Pratap, Koman Volodymyr B, Gong Xun, Porter Thomas Koizumi, Choi Seo Woo, Chung Kwanghun, Chua Nam-Hai, Urano Daisuke, Strano Michael S
Disruptive & Sustainable Technologies for Agricultural Precision IRG, Singapore-MIT Alliance for Research and Technology, 1 CREATE Way, #03-06/07/08 Research Wing, Singapore 138602, Singapore.
Temasek Life Sciences Laboratory, 1 Research Link, Singapore 117604, Singapore.
Nano Lett. 2023 Feb 8;23(3):916-924. doi: 10.1021/acs.nanolett.2c04128. Epub 2023 Jan 18.
Gibberellins (GAs) are a class of phytohormones, important for plant growth, and very difficult to distinguish because of their similarity in chemical structures. Herein, we develop the first nanosensors for GAs by designing and engineering polymer-wrapped single-walled carbon nanotubes (SWNTs) with unique corona phases that selectively bind to bioactive GAs, GA and GA, triggering near-infrared (NIR) fluorescence intensity changes. Using a new coupled Raman/NIR fluorimeter that enables self-referencing of nanosensor NIR fluorescence with its Raman G-band, we demonstrated detection of cellular GA in , lettuce, and basil roots. The nanosensors reported increased endogenous GA levels in transgenic mutants that overexpress GA and in emerging lateral roots. Our approach allows rapid spatiotemporal detection of GA across species. The reversible sensor captured the decreasing GA levels in salt-treated lettuce roots, which correlated remarkably with fresh weight changes. This work demonstrates the potential for nanosensors to solve longstanding problems in plant biotechnology.
赤霉素(GAs)是一类植物激素,对植物生长至关重要,由于其化学结构相似,很难区分。在此,我们通过设计和构建具有独特冠层相的聚合物包裹单壁碳纳米管(SWNTs)开发了首个用于检测赤霉素的纳米传感器,该冠层相能选择性结合生物活性赤霉素GA和GA,引发近红外(NIR)荧光强度变化。使用一种新型耦合拉曼/近红外荧光计,该荧光计能够实现纳米传感器近红外荧光与其拉曼G带的自参考,我们证明了可在生菜和罗勒根中检测细胞内的赤霉素。纳米传感器显示,在过表达赤霉素的转基因突变体和新生侧根中,内源赤霉素水平升高。我们的方法能够跨物种快速进行赤霉素的时空检测。可逆传感器检测到盐处理生菜根中赤霉素水平降低,这与鲜重变化显著相关。这项工作证明了纳米传感器在解决植物生物技术中长期存在的问题方面的潜力。