Research article

Increasing growth of monobulb garlic through the application of corona glow discharge plasma radiation and organic fertilizers

  • Received: 01 November 2023 Revised: 15 January 2024 Accepted: 26 January 2024 Published: 05 February 2024
  • Monobulb garlic, distinguished by its elevated allic.in content, has garnered heightened consumer interest due to its perceived health benefits. However, the challenge lies in scaling up production to meet this demand. This study investigates the potential enhancement of monobulb garlic growth by employing a novel approach that combines corona glow discharge plasma radiation technology and organic fertilizers. By employing a factorial complete randomized design with nine treatments and three repetitions, the research evaluates the impact of varying durations of plasma radiation (0, 15, and 30 minutes) and levels of organic fertilizers (0, 31.25, and 62.5 grams). Key growth parameters, including plant height, leaf count, root length, and root quantity, were measured. Results indicate that the optimal combination for growth enhancement involves 30 minutes of radiation coupled with 31.25 grams of organic fertilization. In conclusion, the integration of corona glow discharge plasma radiation technology and organic fertilization proves effective in promoting the growth of monobulb garlic plants.

    Citation: Erma Prihastanti, Sumariyah Sumariyah, Febiasasti Trias Nugraheni. Increasing growth of monobulb garlic through the application of corona glow discharge plasma radiation and organic fertilizers[J]. AIMS Biophysics, 2024, 11(1): 85-96. doi: 10.3934/biophy.2024006

    Related Papers:

  • Monobulb garlic, distinguished by its elevated allic.in content, has garnered heightened consumer interest due to its perceived health benefits. However, the challenge lies in scaling up production to meet this demand. This study investigates the potential enhancement of monobulb garlic growth by employing a novel approach that combines corona glow discharge plasma radiation technology and organic fertilizers. By employing a factorial complete randomized design with nine treatments and three repetitions, the research evaluates the impact of varying durations of plasma radiation (0, 15, and 30 minutes) and levels of organic fertilizers (0, 31.25, and 62.5 grams). Key growth parameters, including plant height, leaf count, root length, and root quantity, were measured. Results indicate that the optimal combination for growth enhancement involves 30 minutes of radiation coupled with 31.25 grams of organic fertilization. In conclusion, the integration of corona glow discharge plasma radiation technology and organic fertilization proves effective in promoting the growth of monobulb garlic plants.



    加载中

    Acknowledgments



    Research Fund for Highly Reputed International Publications (RPIBT) Diponegoro University no 225-45/UN7.D2/PP/IV/2023.

    Compliance with ethical standards



    This article does not contain any studies with human participants performed by any of the authors.

    Conflict of interest



    The authors declare no conflict of interest.

    Data availability statement



    The authors confirm that the data supporting the findings of this study are available within the article.

    Author contributions



    Erma Prihastanti: Conceptualization, Methodology, Investigation, Writing- Original draft preparation. Sumariyah: Data curation, Writing- Original draft preparation. Febiasasti Trias Nugraheni: Validation, Investigation, Writing-Reviewing and Editing.

    [1] Batiha GES, Beshbishy AM, Wasef LG, et al. (2020) Chemical constituents and pharmacological activities of garlic (Allium sativum L.): a review. Nutriens 12: 872. https://doi.org/10.3390/nu12030872
    [2] Tran GB, Dam SM, Tram Le NT (2018) Amelioration of single clove black garlic aqueous extract on dyslipidemia and hepatitis in chronic carbon tetrachloride intoxicated Swiss albino mice. Int J Hepatol 2018: 9383950. https://doi.org/10.1155/2018/9383950
    [3] Shang A, Cao SY, Xu XY, et al. (2019) Bioactive cmpounds and biological functions of garlic (allium sativum L.). Foods 8: 246. https://doi.org/10.3390/foods8070246
    [4] Fesseha H, Goa E (2019) Therapeutic value of garlic (allium sativum): a review. Adv Food Technol Sci Open J 5: 107-117. https://doi.org/10.17140/aftnsoj-5-162
    [5] Gruhlke MCH, Nicco C, Batteux F, et al. (2016) The effects of allicin, a reactive sulfur species from garlic, on a selection of mammalian cell lines. Antioxidants 6: 1-16. https://doi.org/10.3390/antiox6010001
    [6] Borlinghaus J, Albrecht F, Gruhlke MChH, et al. (2014) Allicin: chemistry and biological properties. Molecules 19: 12591-12618. https://doi.org/10.3390/molecules190812591
    [7] Gruhlke M, Schlembach I, Leontiev R, et al. (2017) Yap1p, the central regulator of the S. cerevisiae oxidative sterss response, is activated by allicin, a natural oxidant, and defence substance of garlic. Free Radical Biol Med 108: 793-802. https://doi.org/10.1016/j.freeradbiomed.2017.05.004
    [8] Central Bureau of Statistic, Produksi tanaman sayuran, Jakarta, 2019. Available from: https://www.bps.go.id/indicator/55/61/1/produksi-tanaman-sayuran.html
    [9] Puspitasari I (2018) Respon pertumbuhan dan produksi tanaman bawan merah (Allium cepa l.) lokal akibat perbedaan lama radiasi plasma [Response of growth and production of local red onion (Allium cepa l.) due to differences in plasma radiation duration]. Undergraduate thesis, Diponegoro University .
    [10] Yarami N, Sepaskhah AR (2015) Saffron response to irrigation water salinity, cow manure and planting method. Agr Water Manage 150: 57-66. https://doi.org/10.1016/j.agwat.2014.12.004
    [11] Bashir S, Gulshan AB, Iqbal J, et al. (2021) Comparative role of animal manure and vegetable waste induced compost for polluted soil restoration and maize growth. Saudi J Biol Sci 28: 2534-2539. https://doi.org/10.1016/j.sjbs.2021.01.057
    [12] Sarido AD (2013) Uji empat jenis pupuk kandang terhadap pertumbuhan dan hasil tanaman cabai keriting (Capsicum annum L.) [Test of four types of manure on growth and yield of curly chili (Capsicum annum L.)]. J Agrifor 12: 22-30. https://dx.doi.org/10.31293/af.v12i1.167
    [13] Putra FJN, Muhlisin Z, Putro S (2015) Treatments of plasma corona radiation on seaweed Gracilaria verrucosa (Hudson) papenfuss: efforts to increase growth and biomass. Int J Sci Eng 8: 75-79. https://doi.org/10.12777/IJSE.8.1.75-79
    [14] Kakar K, Nitta Y, Asagi N, et al. (2019) Morphological analysis on comparison of organic and chemical fertilizers on grain quality of rice at different planting densities. Plant Prod Sci 22: 510-518. https://doi.org/10.1080/1343943X.2019.1657777
    [15] Nugraheni FT, Prihastanti E, Hastuti ED (2021) The Effect of corona incandescent plasma radiation and storage temperature on the viability of garlic seeds (Allium sativum L. Lumbu Kuning Variety). Int J Eng Sci Technol 5: 11-17. https://doi.org/10.29121/IJOEST.v5.i1.2021.149
    [16] Yani S, Opik T, Belinda N (2019) Role of biological agents Trichoderma sp. at growth three garlic varieties (Allium sativum). J Phys Conf Ser 1402: 033043. https://doi.org/10.1088/1742-6596/1402/3/033043
    [17] Hore JK, Ghanti S, Chanchan M (2014) Influence of nitrogen and sulphur nutrition on growth and yield of garlic (Allium sativum L.). J Crop Weed 10: 14-18.
    [18] Leveau J, Lindow S (2005) Utilization of the plant hormone indole-3-acetic acid for growth by Pseudomonas putida strain 1290. Appl Environ Microbiol 71: 2365-2371. https://doi.org/10.1128/AEM.71.5.2365-2371.2005
    [19] Nucifera N, Kanie MAJ, Pratiwi SH, et al. (2016) Corona discharge plasma technology to accelerate the growth of black soybean plants. J Nat Sci Res 6: 35-40.
    [20] Mahabub ST, Khan MSH, et al. (2016) Effect of cow manure on growth, yield and nutrient content of mungbean. Asian Res J Agr 2: 1-6. http://dx.doi.org/10.9734/ARJA/2016/29297
    [21] Pujiningsih DS, Yuniarti A, Sandrawati A (2019) Pengaruh pemberian kombinasi jenis dan dosis pupuk kandang terhadap pH, N-Total, serapan-N, serta hasil tanaman pak choi (Brassica chinensis L.) pada Fluventic eutrudepts [Effect of combination of type and dose of manure on pH, N-Total, N-uptake, and yield of pak choi (Brassica chinensis L.) in Fluventic eutrudepts.]. J Agrikultura 30: 33-39. https://doi.org/10.24198/agrikultura.v30i1.22701
    [22] Royana KQ, Prihastanti E (2015) Uji penggunaan limbah sagu sebagai media tanam anggrek (Dendrobium sp.) [Test the use of sago waste as a growing medium for orchids (Dendrobium sp.)]. Buletin Anatomi dan Fisiologi dh Sellula 23: 108-117. https://doi.org/10.14710/baf.v23i1.8741
    [23] Yudiati E, Ridho A, Nugroho AA, et al. (2020) Analisis Kandungan Agar, Pigmen dan Proksimat Rumput Laut Gracilaria sp. pada Reservoir dan Biofilter Tambak Udang Litopenaeus vannamei. Bul Oseanografi Mar 9: 133-140. http://dx.doi.org/10.14710/buloma.v9i2.29453
    [24] Sitompul SM, Zulfati AP (2019) Betacyanin and growth of beetroot (Beta vulgaris L.) in response to nitrogen fertilization in a tropical condition. Agrivita J Agr Sci 41: 40-47. https://doi.org/10.17503/agrivita.v41i1.2050
    [25] Munarso YP (2011) Keragaan padi hibrida pada sistem pengairan intermittent dan tergenang. Jurnal Penelitian Pertanian Tanaman Pangan 30: 189-195. https://dx.doi.org/10.21082/jpptp.v30n3.2011.p%p
    [26] Frona WS, Zein A, Vauzia V (2016) Pengaruh penambahan bokashi kubis (Brassica oleracea var. capitata) terhadap pertumbuhan bawang putih (Allium sativum L.) pada tanah podzolik merah kuning [Effect of the addition of bokashi cabbage (Brassica oleracea var. capitata) on the growth of garlic (Allium sativum L.) on red-yellow podzolic soil.]. Sainstek Jurnal Sains dan Teknologi 8: 10-19. http://dx.doi.org/10.31958/js.v8i1.435
    [27] Sathiyavani E, Prabaharan NK, Surendar KK (2017) Role of mineral nutrition on root growth of crop plants—a review. Int J Curr Microbiol App Sci 6: 2810-2837. https://doi.org/10.20546/ijcmas.2017.604.324
    [28] Muratore C, Espen L, Prinsi B (2021) Nitrogen uptake in plants: the plasma membrane root transport systems from a physiological and proteomic perspective. Plants 10: 681. https://doi.org/10.3390/plants10040681
    [29] Song XH, Wan FF, Chang XC, et al. (2019) Effects of nutrient deficiency on root morphology and nutrient allocation in pistacia chinensis bunge seedlings. Forests 10: 1035. https://doi.org/10.3390/f10111035
    [30] Goelzer A, da Silva OB, Santos FHM, et al. (2021) Photosynthetic performance, nutrition and growth of campomanesia xanthocarpa o. berg. in chicken manure substrate and liming. Floresta Ambiente 28: e20200005. https://doi.org/10.1590/2179-8087-FLORAM-2020-0005
    [31] Naimnule MA (2016) Pengaruh takaran arang sekam dan pupuk kandang sapi terhadap pertumbuhan dan hasil kacang hijau (Vigna radiata L.). Savana Cendana 1: 118-120. https://dx.doi.org/10.32938/sc.v1i04.72
  • Reader Comments
  • © 2024 the Author(s), licensee AIMS Press. This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0)
通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索

Metrics

Article views(271) PDF downloads(33) Cited by(0)

Article outline

Figures and Tables

Figures(3)  /  Tables(4)

/

DownLoad:  Full-Size Img  PowerPoint
Return
Return

Catalog