Ethyl Methane Sulfonate (EMS) Effect on Mutagenesis in Balinese Red Rice (Oryza sativa cv. Barak Cenana)

Authors

Ida Bagus Made Arta Dana , Popy Hartatie Hardjo , Maria Goretti Marianti Purwanto , Aloysia Sri Pujiyanti , Indriyani Indriyani

DOI:

10.29303/jbt.v21i3.2815

Published:

2021-09-15

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Abstract

ââ¬ÅBarak Cenanaââ¬Â is one of the local red rice (Oryza sativa) with high economic value due to its nutrient content. Some of the agronomic characters such as tall shoot, low number of tiller, and late harvesting are drawbacks to improving production. Ethyl Methyl Sulphonate (EMS) is a chemical mutagen widely used to improve rice characters by mutation breeding. The present research aims to investigate the EMS concentration suitable to induce mutation in Barak Cenana and observe the mutagenesis effect of EMS on some agronomic characters of Barak Cenana. For those purposes, mature seeds of Barak Cenana were treated with various concentrations of EMS (0.25, 0.5, 0.75, 1.0, and 1.1 %) for 24 hours. Seed germination, plant growth, some agronomic character related to productivity were compared to untreated rice. EMS reduced and delayed seed germination and inhibit shoot and root growth in early vegetative stage. The ability of EMS to reduce and delay seed germination and inhibit shoot and root growth were doses dependent. EMS concentration of more than 1.0% was lethal for Barak cenana and EMS concentration at 0.75% was able to reduce rice productivity by increasing seed sterility. EMS concentrations between 0.25 and 0.5% with 24 h of soaking are suitable for inducing mutagenesis in Barak Cenana. Additionally, some mutants with distinct morphology such as sterile plant, semi-dwarf, high tillering capacity, and high chlorophyll contents were produced in this research.

Keywords:

EMS Mutagenesis Agronomic Germination Productivity

References

Ali, A., C. Nualsri and W. Soonsuwon (2019). Induced mutagenesis for creating variability in Thailandââ¬â¢s upland rice (cv. Dawk Pa-yawm and Dawk Kha 50) using ethyl methane sulphonate (EMS). Sarhad Journal of Agriculture, 35(1): 293-301. DOI: http://dx.doi.org/10.17582/journal.sja/2019/35.1.293.301

Artadana, I.B.M., Cha-um, S., & Supaibulwatana, K. (2014). Phenotypic responses of Thai Jasmine rice (Oryza sativa L. KDML 105) and its mutants to sodium chloride stress. Proceeding of 2ndAGRC:66-71.

Boonrueng, N., Anuntalabhochai, S., & Jampeetong, A. (2013). Morphological and Anatomical Assessment of KDML 105 (Oryza sativa L. spp. Indica) Rice and Its mutants Induced by Low-Energy Ion Beam. Rice Sciece 20(3):-. DOI: https://doi.org/10.1016/S1672-6308

Chaudhary, J., Deshmukh, R., and Sonah, H. (2019). Mutagenesis Approaches and Their Role in Crop Improvement. Plants 8 (467): 1-4. DOI: 10.3390/plants8110467

Darmiati, N. N., Sukmawati, N. M. S., & Siti, N. W. (2019). Pengolahan beras merah lokal penebel (oryza sativa var. barak cendana) menjadi produk teh beras merah untuk meningkatkan pendapatan masyarakat desa Babahan. Buletin Udayana Mengabdi 18 (1): 22-27. https://ojs.unud.ac.id/index.php/jum/article/view/46299

Devi A.S., & Mullainathan (2011). Genotoxicity of Ethyl Methane sulfonate on Root Tip of Chilli (Capsicum annuum L.). World Journal of Agricultural Science 7 (4): 368-374

http://www.idosi.org/wjas/wjas7 (4)/1.pdf

FAO (2011). Plant Mutation Breeding and Biotechnology. FAO, Rome. ISBN 9789251050000.

Hairmansis A., Kustianto B., Supartopo & Suwarno (2010). Correlation of Agronomic Characters and Grain Yield of Rice for Tidal Swamp Areas. Indonesia Journal of Agricultural Science 11 (1): 11-15. http://ejurnal.litbang.pertanian.go.id/index.php/ijas/article/view/592/373

Indrasari S. D. (2011). Peneliti Gizi dan Makanan 30:182ââ¬â188. http://ejurnal.litbang.pertanian.go.id/index.php/jpptp/article/view/3024

Khush, G. S. (2001). Green revolution: the way forward. Nature review genetic 2: 815-822

Mackill, D. J., Coffman, W. R., and Garrity, D. P. (1996). Rainfeed lowland rice improvement. IRRI, Manila. ISBN 971-22-0071-X. p53.

Mohapatra, T., Robin, S., Sarla, N., Sheshashayee. M., Singh, A. K., Singh, K., Singh, N. K., Mithra, S. V. A., ââ¬Â¦ & Sharma, R. P. (2014). EMS Induced Mutants of Upland Rice Variety Nagina22: Generation and Characterization. Proc Indian Natn Sci Acad, 80 (1); 163-172. DOI:10.16943/ptinsa/2014/v80i1/55094

Oladosu, Y., Rafi, M. Y., Abdullah, N., Hussin, G., Ramli, A, Rahim, H. A., Miah, G., ââ¬Â¦ & Usman, M. (2016). Principle and application of plant mutagenesis in crop improvement: a review. Biotechnology and biotechnological equipment, 30 (1): 1-16. DOI: https://doi.org/10.1080/13102818.2015.1087333

Patil, B.C. and Bhat, G. I. (1992). A comparative Study of MH and EMS in the Induction of Chromosomal Aberrations on Lateral oot Meristem in Clitoria ternatea L. Cytologia, 57: 259-264

https://www.jstage.jst.go.jp/article/cytologia1929/57/2/57_2_259/_pdf

Pandey, P. and Anurag, P. J. (2010). Estimation of genetic parameters in indigenous rice. AAB Bioflux, 2 (1): 79-84 http://www.aab.bioflux.com.ro/docs/2010.2.79-84.pdf

Phanchaisri, B., Chandet, Yu, L. D., Jamjod, S., & Anuntalabhochai, S. (2007). Low-energy ion beam-induced mutation in Thai jasmin rice (Oryza sativa L. cv. KDML 105). Surface & Coating technology, 201: 8024-8028. DOI: https://doi.org/10.1016/j.surfcoat.2006.02.057

Ramchander, S., Pillai, M. A., & Ushakumari, R. (2014). Determine of Lethal Dose and Effect of Ethyl Methane Sulphonate in Rice Varieties. Trend in Bioscience, 7(11): 1151-1156

Rani, N. and Kumar, K. (2015). EMS induced mitotic abnormality in Chatharantus roseous (L.) G. Don. Journal of Global Bioscience. 4: 1816-1823. https://www.mutagens.co.in/jgb/vol.04/1S/03.pdf

Singh, R. K., Singh, U. S., & Khush, G. S. (2000). Aromatic rice. New Delhi, Oxford & IBH Publishing. ISBN: 81-204-1420-9

Singh, S. and Singh, J. (2003) Mutation in basmati rice induced by gamma rays, ethyl methane sulphonate and sodium azide. Oryza, 40 (1-2):5-10

Subagyo, R. (2012). Jatiluwih, Menjaga Warisan Beras Merah.

https://bali.antaranews.com/berita/32328/jatiluwih-menjaga-warisan-beras-merah (Accessed on February 4, 2015)

Talebi, A. B., Talebi, A. B., & Shahrokhifar, B. (2012). Ethyl Methane Sulphonate (EMS) induced mutagenesis in Malaysian rice (cv. MR219) for lethal dose determination. American Journal of Plant Sciences 3:1661-1665. DOI: http://dx.doi.org/10.4236/ajps.2012.312202

Theerawitaya, C., Triwitayakorn, K., Kirdmanee, C., Smith, D. R., & Supaibulwatana, K. (2011). Genetic variation associated with salt tolerance detected in mutants of KDML 105 (Oryza sativa L. spp. Indica) rice. Australian Journal of Crop Science, 5(11): 1475-1480

Veni, B. K. and Niveditha, M. S. (2014). Effect of Mutagens on Quantitative and Qualitative Characters in M3 Generation of Rice Variety ââ¬ËAkshayaââ¬â¢ (BPT 2231). Jounal of Rice Research, 7(1): 16-24. DOI: http://sarr.co.in/Journals/2014/jrr-volume-7-3.pdf

Verma, A. K., Singh, R. R., & Singh, S. (2012). Cytogenetic effect of EMS on root meristem cell of Chataranthus roseus (L.) G. Don var. Nirmal. International Journal of Pharmacy and Biological Science, 2 (1): 20-24. https://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.420.7913&rep=rep1&type=pdf

Viana, V. E., Pegoraro, C., Busanello, C., and de Oliveira, A. C. (2019). Mutagenesis in rice: The basis for breeding a new super rice. Frontier in Plant Science, 10: 1-28. DOI: 10.3389/fpls.2019.01326

Virmani, S.S. (1994). Heterosis and Hybrid Rice Breeding. Springer Berlin Heidelberg

Waheed, A., Ahmad, H., Abbasi, F., Hamid, F. S., Shah, A. H., Safi, F. A., & Ali, H. (2013). Pollen Sterility in wide crosses derivatives of rice (Oryza sativa L.). J. Mater. Environ. Sci. 4 (3): 404-409. https://www.researchgate.net/publication/273766424_Pollen_Sterility_in_wide_crosses_derivatives_of_rice_Oryza_sativa_L

Widarta, I. W. R., Novianitri, K. A., & Sari, L. P. I. P. (2013). Ekstraksi komponen bioaktif bekatul beras local dengan beberapa jenis pelarut. Jurnal Aplikasi Teknologi Pangan, 2(2): 75-79. http://www.jatp.ift.or.id/index.php/jatp/article/view/116

Wiryatama, N.A., (2007). Barak Cenana. Date of registration 83/PVL/2007

Wattoo, J. I. K. A, Shah, S. M., Shabir, G., Sabar, M., Naveed, S. A., Waheed, R., Samiullah, Muqaddasi, Q. H., ââ¬Â¦ & Arif, M. (2013). Ethyl methane sulphonate (EMS) induced mutagenic attempts to create genetic variability in Basmatirice. African Journal of Water Conservation and Sustainability, 1(3):45-48. https://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.685.2086&rep=rep1&type=pdf

Xing, Y. and Zhang, Q. (2010) Genetic and Molecular bases of Rice Yield. The Annual Review of Plant Biology, 61: 11.1-11.22

DOI: 10.1146/annurev-arplant-042809-112209

Xuebao, L. (1991). Effect of EMS on the germinating seed of rice. Journal of Wuhan Botanical Research, 9(3): 263-267 http://www.whzwxyj.cn/EN/abstract/abstract474.shtml#

Yan, W., Hu, B., Zhang, Q., Jia, L., Jackson, A., Pan, X., Huang, B., Yan, Z., ââ¬Â¦ & Deren, C. (2012). Short and erect rice (ser) mutant from ââ¬ËKhao Dawk Mali 105ââ¬â¢ improve plant architecture. Plant Breeding, 131: 282-285. https://doi.org/10.1111/j.1439-0523.2011.01943.x

Zang, G., Zou, H., & Wenwen, Y. (2012). Photosyntetic and physilogical analysis of the rice high-chlorophyll mutant (Gc). Plant Physiology and Biochemistry, 60: 81-87. DOI: 10.1016/j.plaphy.2012.07.019

Author Biographies

Ida Bagus Made Arta Dana, Universitas Surabaya

Author Origin : Indonesia
Fakultas Teknobiologi, Universitas Surabaya

Popy Hartatie Hardjo, Universitas Surabaya

Author Origin : Indonesia

Maria Goretti Marianti Purwanto, Universitas Surabaya

Author Origin : Indonesia

Aloysia Sri Pujiyanti, Universitas Surabaya

Author Origin : Indonesia

Indriyani Indriyani, Universitas Surabaya

Author Origin : Indonesia

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How to Cite

Arta Dana, I. B. M., Hardjo, P. H., Marianti Purwanto, M. G., Pujiyanti, A. S., & Indriyani, I. (2021). Ethyl Methane Sulfonate (EMS) Effect on Mutagenesis in Balinese Red Rice (Oryza sativa cv. Barak Cenana). Jurnal Biologi Tropis, 21(3), 698–705. https://doi.org/10.29303/jbt.v21i3.2815

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