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A Proximal Sensor-Based Approach for Clean, Fast, and Accurate Assessment of the spp. Nutritional Status and Differentiation of Clones. | LitMetric

AI Article Synopsis

  • This study explores the use of portable X-ray fluorescence (pXRF) spectrometry for analyzing plant nutritional status in Brazil, focusing on the cultivation of certain plant species over millions of hectares.
  • It aims to differentiate plant clones and predict the content of eleven essential nutrients in leaves (such as nitrogen, potassium, and magnesium) to speed up the identification of nutrient deficiencies.
  • The study found that pXRF can effectively predict nine of the eleven nutrients and offers a more efficient and eco-friendly alternative to traditional testing methods, suggesting it could be beneficial for other crops as well.

Article Abstract

Several materials have been characterized using proximal sensors, but still incipient efforts have been driven to plant tissues. spp. cultivation in Brazil covers approximately 7.47 million hectares, requiring faster methods to assess plant nutritional status. This study applies portable X-ray fluorescence (pXRF) spectrometry to (i) distinguish clones using pre-processed pXRF data; and (ii) predict the contents of eleven nutrients in the leaves of (B, Ca, Cu, Fe, K, Mg, Mn, N, P, S, and Zn) aiming to accelerate the diagnosis of nutrient deficiency. Nine hundred and twenty samples of leaves were collected, oven-dried, ground, and analyzed using acid-digestion (conventional method) and using pXRF. Six machine learning algorithms were trained with 70% of pXRF data to model conventional results and the remaining 30% were used to validate the models using root mean square error (RMSE) and coefficient of determination (R). The principal component analysis clearly distinguished developmental stages based on pXRF data. Nine nutrients were accurately predicted, including N (not detected using pXRF spectrometry). Results for B and Mg were less satisfactory. This method can substantially accelerate decision-making and reduce costs for foliar analysis, constituting an ecofriendly approach which should be tested for other crops.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9919597PMC
http://dx.doi.org/10.3390/plants12030561DOI Listing

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