The nature of corona discharge plasma involves with high electric field localized at the edge of associated electrodes. Corona induced plasmas are usually classified according to its gas temperature, non-thermal (cold) plasma, and thermal plasma. There are extensive studies on the applications of utilizing high electric fields in bio, solid and liquid organic materials [1-4]. In environmental applications, for example, the high-voltage electrical discharge has been employed in water cleaning and wastewater treatment [2]. In agriculture applications, many researches have been focused on modifying and improving seed germination characteristics. For enhancing the germination process, extra water and oxygen may be provided to seeds by using the chemical based water mist, or coated with peroxide compounds to improve the germination rate [3]. However, such traditional processes leave the chemical residual causing pollution to the environment. In contrast, the cold plasma is an environmentally friendly, and does not leave any contaminated aqueous waste. In addition, non-thermal or non-equilibrium plasma can operate in atmospheric pressure that is suitable for some organic materials that are not able to sustain in high vacuum ambient [5]. In this paper, we propose a cold plasma generated by employing the benefit of fringe field inducing corona discharge on tips’ edges in conjunction with the dielectric barrier discharge (DBD) for seed surface modification.