Application of LIBS to study the difference in elemental composition between organic and genetically modified plants
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North-West University (South Africa)
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Abstract
Genetic modification includes the change in the genetic make-up of a plant in order to meet the
requirements for food security, which is in contrast to organic plants that are grown naturally by
the use of organic fertilizers and natural manure. The purpose of this research was to study the
difference in elemental composition between organic and genetically modified plants. It is believed
that change in genetic make-up results in change in elemental composition of a plant. Hence,
analyzing and comparing the elemental composition between organic and genetically modified
plants can be the key solution to solve the plants related diseases or the environment unfriendliness
imposed by genetically modified plants, which can be due to the excess, deficiency or change in
elemental expression. Many different techniques can be used for elemental analysis but in this
case, laser induced breakdown spectroscopy (LIBS) was used because it is a non-invasive
technique that permits concurrent multi-elemental examination in a single measurement, with little
or no sample preparation needed. For accuracy, inductively coupled mass spectroscopy (ICP-MS)
was used in order to verify and validate LIBS results. Using LIBS technique, one is able to
differentiate the two categories according to the signature of their essential and trace elements and
determine the effects of GMO to the environment and people. In this study, a solid maize sample
was run under LIBS in a dark room to avoid light interference, which resulted in good results as
compared to liquid and powder samples. A portion of the same sample was then digested using a
Perkin-Elmer microwave digester and then ran under ICP-MS. The obtained results indicated that
genetic modification does not add or reduce the expected nutrient elements but it changes the
elemental concentration and intensities. LIBS detected six elements, which are Mn I, Fe I, Fe II,
Cu II, K I and O I in all organic samples whilst Mn I, Fe I, Fe II, Cu II, K I, O I plus Ca II, C I, N
II and CaI were detected in all genetically modified samples. ICP-MS detected all expected
seventeen elements in both sample categories. This research thus proved that both techniques
(LIBS and ICP-MS) are good when they are both used for the same analysis in order to avoid
systematic errors. For future use, it is recommended to run LIBS experiments in the presence of
Argon gas to avoid matrix effect and self-absorption.
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MSc (Applied Radiation Science and Technology, North-West University, Mahikeng Campus
