Efektivitas Pupuk Organik Granul Diperkaya Mikoriza dan Lamtoro terhadap Pertumbuhan dan Produksi Sorghum bicolor Varietas Samurai 1

Effectiveness of Granular Organic Fertilizer Enriched with Mycorrhiza and Lamtoro on Growth and Production of Sorghum bicolor Variety Samurai 1

Authors

  • A P Dewi Departemen Ilmu Nutrisi dan Teknologi Pakan, Fakultas Peternakan, IPB University, Jl. Agatis Kampus IPB Dramaga, Bogor, Jawa Barat, Indonesia
  • P D M H Karti Departemen Ilmu Nutrisi dan Teknologi Pakan, Fakultas Peternakan, IPB University, Jl. Agatis Kampus IPB Dramaga, Bogor, Jawa Barat, Indonesia
  • I Prihantoro Departemen Ilmu Nutrisi dan Teknologi Pakan, Fakultas Peternakan, IPB University, Jl. Agatis Kampus IPB Dramaga, Bogor, Jawa Barat, Indonesia

DOI:

https://doi.org/10.29244/jintp.23.2.%25p

Keywords:

Pupuk organik, sorgum, lamtoro, mikoriza, produktivitas

Abstract

This study aimed to evaluate the effectiveness of granular organic fertilizer enriched with mycorrhiza and Lamtoro on the growth and production of Samurai 1 sorghum. The experiment employed a randomized block design (RBD) with four treatments: without fertilizer application (B0), bokashi (B1), bokashi + mycorrhiza (B2), bokashi + mycorrhiza + Lamtoro (B3), at a dose of 4 tons ha⁻¹ with four replications. Analysis of variance (ANOVA) results showed that organic fertilizer treatments had a significant effect (p<0.05) on growth and yield, but no significant effect on sugar content. Further tests indicated that B3 differed significantly from B0, B1, and B2 in terms of growth and yield parameters. It can be concluded that the combination of bokashi, mycorrhiza, and Lamtoro (B3) is the most effective treatment in enhancing the growth and yield of Samurai 1 sorghum

Keywords: lamtoro, granulated organic fertilizer, mycorrhiza, plant growth and production, sorghum

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Author Biography

  • A P Dewi, Departemen Ilmu Nutrisi dan Teknologi Pakan, Fakultas Peternakan, IPB University, Jl. Agatis Kampus IPB Dramaga, Bogor, Jawa Barat, Indonesia

    Department of Nutrition Science and Feed Technology, Faculty of Animal Science.

References

Ardiansah T, Suryanti S & Kristalisasi E N. 2023. Pemanfaatan komposisi pupuk bokashi dan tanah regosol terhadap pertumbuhan bibit kelapa sawit (Elaeis Guineensis Jacq) pada masa pre nursery. Agroforetech. 1(03):1350–1353.

Aulia AE, Maimunaha Y & Suprastyania H. 2021. Penggunaan ekstrak daun lamtoro (Leucaena leucocephala) Sebagai pupuk dengan salinitas yang berbeda terhadap laju. Journal of Fishheries and Marine Research. 5(1):47–55

Azis AH & Arman. 2013. Respons jarak tanam dan dosis pupuk organik granul yang berbeda terhadap pertumbuhan dan produksi tanaman jagung manis. Jurnal Agrisistem. 9(1):16–23.

Badan Standarisasi Nasional. 2024. Pupuk Organik Padat. SNI 7763:2024. Jakarta. BSN.Balai Pengujian Standar Instrumen Tanah dan Pupuk. 2023. Analisa Tanah, Tanaman Air dan Pupuk. Edisi 3. Bogor (ID): Kementerian Pertanian Republik Indonesia

Fanindi A, Sajimin & Sutedi E. 2020. Karakter morfologi dan produktivitas kultivar rumput benggala (Panicum maximum) pada tanah kering masam. Jurnal of Agronomi Indonesia. (48(2):196–202. doi:10.24831/jai. v48i2. 30879.

Hapsani A & Basri H. 2018. Kajian peranan mikoriza dalam bidang pertanian. Agrica Ekstensia. 12(2):74–78

Harahap AE, Abdullah L, Karti PDM & Despal. 2023. Production, proportion biomass and sugar content of samurai sorghum harvested with the system ratoon pattern as feed raw material. Livest. Res. Rural Dev. 35(1):1–8.

Hartatik W, Husnain H & Widowati LR. 2015. Peranan pupuk organik dalam peningkatan produktivitas tanah dan tanaman. Jurnal Sumberdaya Lahan.:107–120.

Irawan D & Bisono RM. 2019. PKM pelatihan teknologi tepat guna pembuatan pupuk organik granul di desa Gogodeso dan Munggalan Kecamatan Kanigoro kabupaten Blitar provinsi Jawa Timur J urnal Pengabdian Nusantara. 2(2): 215–226

Karti PDMH, Prihantoro I & Setiana MA. 2018. Evaluation of arbuscular mycorrhizal fungi inoculum on production and nutrient content of Pennisetum purpureum. Tropical Animal Science Journal. 41(2):114–120 .doi:10.5398/tasj.2018.41.2.114.

Karti PDMH & Setiadi Y. 2011. Respon pertumbuhan, produksi dan kualitas rumput terhadap penambahan fungi mikoriza arbuskula dan asam humat pada tanah masam dengan aluminium tinggi. Jurnal Ilmu Ternak dan Veteriner 16(2):105–112.

Kasno, A. 2020. Perbaikan tanah untuk meningkatkan efektivitas dan efisiensi pemupukan berimbang dan produktivitas lahan kering masam. Jurnal Sumberdaya Lahan, 13(1): 27 - 40 https://doi.org/10.21082/jsdl.v13n1.2019.27-40

Kugedera AT, Nyamadzawo G & Mandumbu R. 2022. Augmenting Leucaena leucocephala biomass with mineral fertiliser on rainwater use efficiency, agronomic efficiency and yields on sorghum (Sorghum bicolor [(L.) Moench]) under rainwater harvesting techniques in semi-arid region of Zimbabwe. Heliyon. 8(7):e09826.doi: 10.1016/j.heliyon.2022.e09826.

Lestari DIA, Anugrahwati DR & Zubaidi A. 2025. Pertumbuhan dan kadar brix beberapa varietas sorgum (Sorghum bicolor ( L.) Moench) pada fase berbunga G. Jurnal Ilmiah Mahasiswa Agrokomplek 4(1):42–48.

Malalantang SS, Telleng MM, Waani MR, Kaunang WB, Kumajas NJ. 2023. Carrying capacity and productivity of sorghum samurai 1 , samurai 2 , patir 37 and pahats in the Tampusu livestock area North Sulawesi Province. Journal of Xi’an Shiyou University, 19(10):1–5.

Mulyani, A & M. Sarwani. 2013. Karakteristik dan potensi lahan sub optimal untuk pengembangan pertanian di Indonesia. Jurnal Sumberdaya Lahan 7:47-55.

Prihantoro I, Karti PD, Aditia EL & Nisabillah S. 2023. Kualitas fungi Mikoriza arbuskula (FMA) yang diproduksi dengan teknik fortifikasi dan fertigasi berbeda pada pertumbuhan Indigofera zollingeriana. Jurnal Ilmu Pertanian . Indonesia. 28(3):377–385.doi:10.18343/jipi.28.3.377.

Puteri RE, Karti PDMH, Abdullah L & Supriyanto. 2015. Productivity and nutrient quality of some sorghum mutant lines at different cutting ages. Media Peternakan. 38(2):132–137.doi:10.5398/medpet.2015.38.2.132

Siregar AP & Wijayanto N 2023. The Response of giving Gamal, Calliandra, andLamtoro leaves compost fertilizer to Stevia plant (Stevia rebaudiana Bertoni) growt. IOP Conference Series: Earth and Environmental Science 1315(1):012008 DOI:10.1088/1755-1315/1315/1/012008

Supit JMJ, Karamoy LTh & Kamagi YEB. 2020. Pemanfaatan kompos dan EM-4 pada lahan kritis terhadap serapan hara, pertumbuhan dan produksi bawang merah (Allium ascalonicum L) di kabupaten Minahasa. Prosiding Seminar Nasional Dies Natalis ke 60 Fakultas Pertanian. Manado (ID) : Fakultas Pertanian Universitas Manado

Tuerah GK, Gunadi IGA & Astawa ING. 2023. Pengaruh pemberian pupuk organik cair daun lamtoro dan NASA terhadap pertumbuhan dan hasil tanaman pakcoy (Brassica rapa L.). Nandur. 3(4):2746–6957

Widyaningrum ED, Kristalisasi EN & Syah RF. 2023. Pengaruh dosis mikoriza dan volume penyiraman terhadap pertumbuhan dan hasil tanaman tomat ceri (Solanum Lycopersicum Var. Cerasiforme). Agroforetech 1(1):8–12.

Zaman I, Ali M, Shahzad K, Tahir MS, Matloob A, Ahmad W, Alamri S, Khurshid MR, Qureshi MM, Wasaya A & et al. 2021. Effect of plant spacings on growth, physiology, yield and fiber quality attributes of cotton genotypes under nitrogen fertilization. Agronomy. 11(12).doi:10.3390/agronomy11122589

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Published

2025-08-30

How to Cite

Efektivitas Pupuk Organik Granul Diperkaya Mikoriza dan Lamtoro terhadap Pertumbuhan dan Produksi Sorghum bicolor Varietas Samurai 1: Effectiveness of Granular Organic Fertilizer Enriched with Mycorrhiza and Lamtoro on Growth and Production of Sorghum bicolor Variety Samurai 1. (2025). Jurnal Ilmu Nutrisi Dan Teknologi Pakan, 23(2), 90-96. https://doi.org/10.29244/jintp.23.2.%p

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