Viability and Vigor of Thorny Spinach Weed (Amaranthus spinosus L.) Seeds Affected by Red Fruit Seed Liquid Smoke Doses

Authors

  • Anti Uni Mahanani Study Program of Agrotechnology, Faculty of Agriculture, Petra Baliem College of Agricultural Sciences (STIPER Petra Baliem), Wamena 99511
  • Miana Wenda Study Program of Agrotechnology, Faculty of Agriculture, Petra Baliem College of Agricultural Sciences (STIPER Petra Baliem), Wamena 99511

DOI:

https://doi.org/10.18343/jipi.30.4.747

Abstract

Controlling plant pests and diseases (PPD), such as the thorny amaranth weed (Amaranthus spinosus L.), is crucial to ensuring optimal plant growth and development. One option for weed control is to use organic pesticides manufactured from liquid smoke extracted from red fruit (Pandanus conoideus) seed waste. The goal of this research was to identify phenolic metabolite compounds present in liquid smoke from red fruit seed waste, analyze their effects on the germination of thorny amaranth seeds, and determine the most effective dose for minimizing weed germination. Phenolic chemicals were evaluated using GC-MS (gas chromatograph-mass spectrometer), and seed viability and vigor were assessed with liquid smoke doses of 0 mL/seed (B0), 0.1 mL/seed (B1), 0.2 mL/seed (B2), 0.3 mL/seed (B3), and 0.4 mL/seed (B4), with three replications each. The criteria assessed were phenolic chemical types, germination rate, growth potential, germination rate index, vigor index, uniformity of growth, and growth rate. The study discovered eight different types of phenolic compounds in the liquid smoke from red fruit seed waste. Liquid smoke had a significant effect on the germination and growth rates of thorny amaranth seeds, with the 0.4 mL/seed dose being the most effective at inhibiting germination, which was reduced to 0.71%.

Keywords: liquid smoke, red fruit seeds, thorny spinach, viability, vigor

Downloads

Download data is not yet available.

References

Anwar R, Suzanna E, Yarmadi. 2013. Uji vigor gulma Echinochloa cruss-gally terhadap berbagai alelopati. Jurnal Agroqua. 11(1): 1–4.

Anwar R. 2002. Pengaruh residu herbisida paraquat dan diuron terhadap

pertumbuhan dan hasil baby corn. Jurnal Akta Agrosia. 5(1): 35–40.

Cheynier V. 2012. Phenolic compounds: From plants to foods. Journal of Phytochem Rev 11: 153–177. https://doi.org/10.1007/s11101-012-9242-8

Copeland LO, McDonald MB. 2001. Principles of Seed Science and Technology. New York (US): Burgess Publ. https://doi.org/10.1016/j.plantsci.2019.110294.

Darabi HR, Mohandessi S, Balavar Y, Aghapoor K. 2007. A structure–activity relationship study on a natural germination inhibitor, 2-methoxy-4-vinylphenol (MVP), in wheat seeds to evaluate its mode of action. Z. Naturforsch. 62c: 694–700. https://doi.org/10.1515/znc-2007-9-1012

Dewi FC, Tuhuteru S, Aladin A, Yani S. 2021a. Characteristics of liquid smoke of red fruit (Pandanus conoideus. l.) waste with pyrolysis method and potentially as biopesticide. Journal of Environmental and Agriculture Studies. 2(2): 81–86. https://doi.org/10.32996/jeas.2021.2.2.7

Dewi FC, Tuhuteru S, Andi A, Setiyawati Y. 2021b. Kajian pemanfaatan biopestisida asap cair limbah biji buah merah terhadap mortalitas ulat grayak (Spodoptera litura F.). In: Prosiding Membangun Sinergi Antarperguruan Tinggi dan Industri Pertanian dalam Rangka Implementasi Merdeka Belajar Kampus Merdeka. Vol 5 (1). Surakarta (ID), 11th Mar 2021.

Einhellig, FA. 1995. Interaction involving allelopathy in cropping systems. Journal of Agron. 88(6): 886–893. https://doi.org/10.2134/agronj1996.00021962003600060007x

Fatikhasari Z, Lailaty IQ, Sartika D, Ubaidi MA. 2021. Viabilitas dan vigor benih kacang tanah (Arachis hypogea L.), kacang hijau (Vigna radiate L.), dan jagung (Zea mays L.) pada temperatur dan tekanan osmotik berbeda. Jurnal Ilmu Pertanian Indonesia (JIPI). 27(1): 7–17. https://doi.org/10.18343/jipi.27.1.7

Hidayat SH, Purnama H. 2018. Dasar Perlindungan Tanaman. Jakarta (ID): Universitas Terbuka.

Ishikura Y, Kojima Y, Terrazawa M. 2001. Effects of phenolic compounds on seed germination of shirakamba birch, Betula platyphylla var. japonica. Eurasian Journal Forestry Research. 2: 17–25.

Januwati M, Yusron M. 2005. Budidaya Tanaman Pegagan. Jakarta (ID): Badan

Penelitian dan Pengembangan Pertanian, Balai Penelitian Tanaman Obat dan Aromatika.

Kusuma AVC, Chozin MA, Guntoro D. 2017. Senyawa fenol dari tajuk dan umbi teki (Cyperus rotundus L.) pada berbagai umur pertumbuhan serta pengaruhnya terhadap perkecambahan gulma berdaun lebar. Jurnal Agron. Indonesia. 45:100–107. https://doi.org/10.24831/jai.v45i1.11842

Lesilolo MK, Riry J, Matatula EA. 2013. Pengujian viabilitas dan vigor biji beberapa jenis tanaman yang beredar di pasaran Kota Ambon. Jurnal Budidaya Tanaman. 1: 1–9.

Li ZH, Wang Q, Ruan X, Pan CD, Jiang DA. 2010. Phenolics and plant allelopathy. Molecules. 15: 8933–8952. https://doi.org/10.3390/molecules15128933

Marisa H. 1990. Pengaruh ekstrak daun pinus (Pinus merkusii) terhadap perkecambahan dan pertumbuhan vegetatif tanaman kedelai (Glycine max (L.) Merr.). [Master’s thesis]. Bandung (ID): Institut Teknologi Bandung.

Oktaviana Z, Ashari S, Purmaningsih SL. 2016. Pengaruh perbedaan umur masak benih terhadap hasil panen tiga varietas lokal mentimun (Cucumis sativus L.). Jurnal Produksi Tanaman. 4(3): 218–223.

Oramahi HA, Diba F. 2011. Efikasi asap cair dari tandan kosong kelapa sawit (TKKS) dalam penekanan perkembangan jamur aspergillus niger. Jurnal Hama dan Penyakit Tumbuhan Tropika. 10(2): 146–153. https://doi.org/10.23960/j.hptt.210146-153

Patriyawaty NR, Pratiwi H. 2002. Invigorasi benih terhadap viabilitas dan vigor biji kacang tanah (Arachys hypogea). In: Proceedings Series on Physical & Formal Sciences, Vol. 4. Pembangunan Pertanian dan Perikanan Terpadu, Purwokerto, 20th Aug 2002. https://doi.org/10.30595/pspfs.v4i.491

Qiang C, Bao HG. 2008. Allelopathic effect of 3-methyl-phenol on maize under different nitrogen doses. Chine Journal of Eco–Agriculture. 16(4): 883–886. https://doi.org/10.3724/SP.J.1011.2008.00883

Rice EL. 2014. The allelopathic potential of Conocarpus lancifolius (Engl.) leaves on dicot (Vigna sinensis L.), monocot (Zea mays L.) and soil–borne pathogenic fungi. American Journal of Plant Science. 5(9): 2889–2903.

Ristikavani DV, Purwani KI. 2013. Studi potensi bioherbisida ektrak daun ketapang (Terminalia catappa) terhadap gulma teki (Cyperus rotundus). Jurnal Sains dan Seni Pomits. 2(2): 59–63.

Sadjad S. 1993. Dari Benih kepada Benih. Jakarta (ID): PT Grasindo.

Salisbury FB, Ross CW. 1992. Plant Physiology, Hormones and Plant Regulators: Auxins and Gibberellins 4th ed. Belmont (US): Wadsworth Publ.

Sudewi S, Ala A, Baharuddin, Farid M. 2020. Keragaman organisme pengganggu tanaman (OPT) pada tanaman padi varietas unggul baru (VUB) dan varietas lokal pada percobaan semi lapangan. Jurnal Agrikultura. 31(1): 15–24. https://doi.org/10.24198/agrikultura.v31i1.25046

Sundaru M, Syam M, Bakar JG. 1976. Beberapa jenis gulma pada padi sawah. Bogor (ID): Bulletin Teknik no 1. Lembaga Pusat Penelitian Pertanian Bogor.

Susilawati E. 2012. Perkecambahan dan pertumbuhan gulma bayam duri (Amaranthus spinosus L.) pada pemberian ekstrak kirinyuh (Chromolaena odorata (L.) R. M. King & H.E. Rob.). [Undergraduate thesis]. Surakarta (ID): Universitas Sebelas Maret.

Sutopo L. 2002. Teknologi Benih. Jakarta (ID): Raja Grafindo Persada.

Tefa A. 2017. Uji viabilitas dan vigor biji padi (Oryza sativa L.) selama penyimpanan pada tingkat kadar air yang berbeda. Jurnal Savana Cendana. 2(3): 48–50. https://doi.org/10.32938/sc.v2i03.210

Tiah P. 2022. Apa itu simbiosis alelopati ? begini efek, peran dan contohnya. (Internet). (Accessed 14 Apr 2024). https://www.detik.com/edu/detikpedia/d–6407225/apa-itu-simbiosis-alelopati-begini-efek-peran-dan-contohnya.

Xia LZ, Qiang C. 2008. Effect Of 3–methyl phenol at different rates of irrigation and intercropping on water consumption, and yield of wheat and faba–bean. Chine Journal of Eco–Agriculture.16(4): 1478–1482. https://doi.org/10.3724/SP.J.1011.2008.01478

Yuliani W, Ayuningtiyas G, Martini R, Resmeiliana I. 2020. Effect of extraction method and solvent polarity on total phenolic content of cherry leaves (Muntingia calabura L). Jurnal Sains Terapan. 10(2): 41–49. https://doi.org/10.29244/jstsv.10.2.41-49

Zeng RS, Malik AU, Luo SM. 2008. Allelopathy in sustainable agriculture and forestry. Nederland (ND): Springer. https://doi.org/10.1007/978-0-387-77337-7

Zhao HL, Qiang W, Xiao R, Cun DP, De AJ. 2010. Phenolics and plant allelopathy. Molecules. 15: 8933– 8952. https://doi.org/10.3390/molecules15128933

Zulkarami B, Ashrafuzzaman M, Husni MO, Ismail RM. 2011. Effect of pyroligneous acid on growth, yield, and quality improvement of rockmellon in soilless culture. Australian Journal of Crop Science. 5(2): 1508–1514.

Downloads

Published

2025-08-08

How to Cite

Mahanani, A.U. and Wenda, M. (2025) “Viability and Vigor of Thorny Spinach Weed (Amaranthus spinosus L.) Seeds Affected by Red Fruit Seed Liquid Smoke Doses”, Jurnal Ilmu Pertanian Indonesia, 30(4), pp. 747–753. doi:10.18343/jipi.30.4.747.