Enhancement of Electromagnetic Reduce Rate Germinate Red Rice Cenana Jatiluwih

Authors

  • Gede Viqtor Arya Nugraha Program Studi Teknik Pertanian, Fakultas Teknologi Pertanian, Unud
  • I Made Anom S Wijaya Program Studi Teknik Pertanian, Fakultas Teknologi Pertanian, Unud
  • I Wayan Widia Program Studi Teknik Pertanian, Fakultas Teknologi Pertanian, Unud

DOI:

https://doi.org/10.24843/JBETA.2018.v06.i02.p07

Keywords:

Electromagnetic fields, rice germination, local rice, soaking, breeding

Abstract

This study aims to find out the modeling of electromagnetic fields against local rice varieties and to determine the electromagnetic field and the proper immersion time to produce the best rice germination. The experimental experiment used is a factorial circuit consisting of two factors. The first factor is the strength of the electromagnetic field of 0 mT, 2 mT, 3 mT and 4 mT, while the second factor is the duration of immersion consisting of 48, 64, and 96 hours. The data obtained were analyzed by verbal examination, then continued with duncan test if treatment had real effect. The results showed that the stronger electromagnetic exposure with certain voltage resulted in a decrease in the percentage of seed germination of local varieties of rice while for the immersion treatment, the longer the seed immersion resulted in increased percentage of germination of local varieties of rice. The best germination was produced at exposure of 2 mT vol tage electromagnetic field with 96 hours of immersion time for red rice varieties.

References

Adnyana, I. W. (2009). Studi paparan medan magnet saluran udara tegangan ekstra tinggi (SUTET) pada pertumbuhan sayuran caisim (Brassica juncea L). Jurnal Ecotrophic, 4(2), 118–124.

Agustina, R. (2008). Fisiologi dan anatomi cocor bebek (Kalanchoe pinnata Pers) yang ditumbuhkan di bawah pengaruh medan magnet. Seminar Nasional Sains dan Teknologi-II, Universitas Lampung, Bandar Lampung.

Aladjadjiyan, A. (2002). Study of the influence of magnetic field on some biological characteristics of Zea mays. Journal of Central European Agriculture, 3(2). http://www.agr.hr/jcea

De Souza, A., Garcia, D., Sueiro, L., Gilart, F., Porras, E., & Licea, L. (2005). Pre-sowing magnetic treatments of tomato seeds increase the growth and yield of plants. Bioelectro-magnetics, 27, 247–257.

Eka, P., Wijaya, I. M. A. S., & Gunadnya, I. B. P. (2016). Peranan kuat medan elektromagnetik dalam memacu pertumbuhan vegetatif tanaman krisan (Chrysanthemum). Jurnal BETA (Biosistem dan Teknik Pertanian), Universitas Udayana, Jimbaran.

Kemala, D. (2011). Efek medan elektromagnetik pada perkecambahan benih dan pertumbuhan tanaman tomat cherry [Skripsi]. Universitas Udayana, Denpasar.

Khizenkov, P. K., Dobritsa, N. V., Netsvetov, M. V., & Driban, V. M. (2001). Influence of low- and superlow-frequency alternating magnetic fields on ionic permeability of cell membranes. Dopv Nats Akad Nauk Ukr, 4, 161–164.

Magnetoreception in plant. (n.d.). Available at: https://www.researchgate.net/publication/7485507_Magnetoreception_in_plant

[Accessed 8 Feb 2018].

Wirawan, S., Suputra, I. M., Wijaya, I. M. A. S., & Tika, I. W. (2015). Kajian frekuensi dan lama pemaparan medan elektromagnetik pada fase generatif terhadap produksi dan kualitas bunga krisan (Chrysanthemum). Jurnal BETA (Biosistem dan Teknik Pertanian), Universitas Udayana, Jimbaran.

Published

2018-10-26

How to Cite

Nugraha, G. V. A., Wijaya, I. M. A. S., & Widia, I. W. (2018). Enhancement of Electromagnetic Reduce Rate Germinate Red Rice Cenana Jatiluwih. Jurnal BETA (Biosistem Dan Teknik Pertanian), 6(2), 106–111. https://doi.org/10.24843/JBETA.2018.v06.i02.p07

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