Tuccio Lorenza, Cacini Sonia, Arati Giulia, Distefano Carmelo, Traversari Silvia, Fontanelli Giacomo, De Nicola Gina Rosalinda, Matteini Paolo
"Nello Carrara" Institute of Applied Physics (IFAC), National Research Council (CNR), Sesto Fiorentino, Italy.
CREA Research Centre for Vegetable and Ornamental Crops, Council of Agricultural Research and Economics, Pescia, Italy.
Front Plant Sci. 2025 Jul 18;16:1613503. doi: 10.3389/fpls.2025.1613503. eCollection 2025.
Raman spectroscopy enables non-destructive detection of nitrates and other nitrogen-related biochemical markers, including chlorophyll and polyphenols, with unparalleled specificity and sensitivity. Integrating Raman spectroscopy with proximal optical sensors, such as Dualex (Dx) and Multiplex (Mx), offers a transformative approach to precision nitrogen management in broccoli seedlings, complementing their ability to rapidly estimate nitrogen balance indices and key vegetation compounds. The integration demonstrated strong correlations between Raman spectral bands, optical indices, and biochemical parameters across varying nitrogen levels, enhancing the precision of nitrogen status assessment, resulting in a robust, scalable, and information-rich system. By combining molecular-level detail with practical field applications, this hybrid strategy represents a significant advancement in sustainable agriculture. Future research will explore the applicability of this integrated methodology to other plant species.
拉曼光谱能够以无与伦比的特异性和灵敏度对硝酸盐及其他与氮相关的生化标志物进行无损检测,这些标志物包括叶绿素和多酚。将拉曼光谱与近端光学传感器(如Dualex(Dx)和Multiplex(Mx))相结合,为西兰花幼苗的精准氮素管理提供了一种变革性方法,补充了它们快速估算氮平衡指数和关键植被化合物的能力。这种整合表明,在不同氮水平下,拉曼光谱带、光学指数和生化参数之间存在很强的相关性,提高了氮素状况评估的精度,从而形成了一个强大、可扩展且信息丰富的系统。通过将分子层面的细节与实际田间应用相结合,这种混合策略代表了可持续农业的重大进步。未来的研究将探索这种综合方法对其他植物物种的适用性。