Difference between revisions of "Team:NCTU Formosa/Model"

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           &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;Soil microbiota directly controls nutrient levels and soil health, and thus plant productivity. Addition of biostimulators such as fertilizers alters microbial distribution. To determine the perfect amount of application of biostimulator as well as ideal frequency of application, we construct various models allowing for precise regulation of soil microbiota and health.
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           &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;Soil microbiota directly controls nutrient levels and soil health, and thus plant productivity. Addition of biostimulators such as fertilizers alters microbial distribution. To determine the perfect amount of biostimulator as well as ideal frequency of application, we construct various models allowing for precise regulation of soil microbiota and health.
 
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Revision as of 16:36, 17 October 2018

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Overview

     Soil microbiota directly controls nutrient levels and soil health, and thus plant productivity. Addition of biostimulators such as fertilizers alters microbial distribution. To determine the perfect amount of biostimulator as well as ideal frequency of application, we construct various models allowing for precise regulation of soil microbiota and health.

Microbiota Prediction


Predict how biostimulators effect bacterial distribution using Weka machine learning.

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Peptide Prediction


Scoring Card Method predicts new antimicrobial peptides as new bio-stimulators.

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Growth Model


Relate soil factors and bacteriocins affect B. subtilis growth through Simulink.

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Productivity Model


Model the relationship between cumulative fertilizer use and final productivity.

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NGS Data Analysis


Analyze the microbiota and ensure soil health with next generation sequencing.

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