AI Article Synopsis

  • Silicon enhances nodule formation in legume roots, which is important for nitrogen fixation, but manual counting and measurement of nodules is labor-intensive and under-researched.
  • The study used machine learning techniques to automatically assess root nodule number, size, and various root phenotypes in relation to silicon treatment.
  • This innovative approach revealed strong correlations between root characteristics and nodule traits, potentially speeding up future research on the best silicon concentrations for improving nodule formation.

Article Abstract

Silicon promotes nodule formation in legume roots which is crucial for nitrogen fixation. However, it is very time-consuming and laborious to count the number of nodules and to measure nodule size manually, which led nodule characterization not to be study as much as other agronomical characters. Thus, the current study incorporated various techniques including machine learning to determine the number and size of root nodules and identify various root phenotypes from root images that may be associated with nodule formation with and without silicon treatment. Among those techniques, the machine learning for characterizing nodule is the first attempt, which enabled us to find high correlations among root phenotypes including root length, number of forks, and average link angles, and nodule characters such as number of nodules and nodule size with silicon treatments. The methods here could greatly accelerate further investigation such as delineating the optimal concentration of silicon for nodule formation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7655541PMC
http://dx.doi.org/10.3389/fpls.2020.520161DOI Listing

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