Pengaruh Peningkatan Dosis Pupuk Hayati VP3 dan Lama Induksi Listrik Terhadap Agregasi Tanah, Pertumbuhan dan Hasil Tanaman Kedelai (Glicine max (L) Merr.)

Authors

  • Dhurrotul Roaidha
  • Indiyah Murwani
  • Novi Arfarita

DOI:

https://doi.org/10.33474/folium.v5i2.12879

Keywords:

VP3 biofertilizer, Electrical induction, Soybean, Soil aggregation

Abstract

This research was conducted to determine the effect of increasing dose of VP3 biofertilizer and duration of electrical induction on soil aggregation and yield of soybean (Glycine max (L) Merr.). This research was conducted at Griya Santa Brawijaya University Malang and Central Laboratory, Islamic University of Malang from October 2020 to January 2021. This study used a Randomized Block Design (RAK) with 13 treatments and was repeated 3 times. Observational data were analyzed using the 5% level F test (ANOVA). If there is a significant effect, then further testing is carried out with DMRT (Duncan Multiple Range Test) at 5% level. The results showed that the NL2 (100% NPK + 60 minutes electric induction) treatment was the treatment with the highest average value for the plant height parameter, and the V1L3 treatment (100% VP3 biofertilizer + 90 minutes electrical induction) was the treatment with the highest value. the highest average of leaf area parameters, while on soybean yields the V1L2 treatment (100% VP3 biofertilizer and 60 minutes electrical induction) and V2L1 (200% VP3 biofertilizer and 30 minutes electrical induction) treatments showed the best results on soil aggregation and soybean yields. Soybean yields were shown in the parameters of the percentage of flower pods, dry weight of seed harvest, oven dry weight of seeds, and weight of 100 seeds.

References

Aggani, S. L. (2013). Development of bio-fertilizers and its future perspective. Scholars Academic Journal of Pharmacy, 2(4), 327–332.

Apriyan, E. (2016). EKSPLORASI BAKTERI PEMANTAP AGREGAT TANAH ASAL RIZOSFER KELAPA SAWIT. 21.

Arfarita, N., Hidayati, N., Rosyidah, A., Machfudz, M., & Higuchi, T. (2016). Exploration of indigenous soil bacteria producing-exopolysaccharides for stabilizing of aggregates land potential as biofertilizer. Journal of Degraded and Mining Lands Management, 4(1), 697.

Arfarita, N., Lestari, M. W., Murwani, I., & Higuchi, T. (n.d.). Isolation of indigenous phosphate solubilizing bacteria from green bean rhizospheres. Journal of Degraded and Mining Lands Management, 8.

Chaix, G., Gerber, S., Razafimaharo, V., Vigneron, P., & Verhaegen, D. (2013). Gene flow estimates with microsatellites in a Malagasy seed orchard of Eucalyptus grandis. 4(107), 705–712.

Chenu, C., & Stotzky, G. (2002). Interaction between microorganism and soil particle: Dekker.

Fadli, M., & Mardiyani, S. A. (2018). Aplikasi Teknik Sistem Intensifikasi Potensi Lokal (Siplo) dan CaCl2Terhadap Kualitas dan Hasil Produksi Tanaman Selada. 1(2), 13.

Hayes, M. H. B., & Cheshire, M. V. (1990). Composition Origins, Structures, And Reactivities Of Soil Polysaccharides. Plenum Press.

Lakitan, B. (2002). DASAR-DASAR: Fisiologi Tumbuhan.

Mulatsih, R. T. (2003). Pertumbuhan Kembali Rumput Gajah dengan Interval Devoliasi dan Dosis Pupuk Urea yang Berbeda. Fakultas Peternakan, Universitas Diponegoro.

Nurhidayati. (2017). KESUBURAN DAN KESEHATAN TANAH Suatu Pengantar Penilaian Kualitas Tanah Menuju Pertanian Berkelanjutan. Intimedia.

Santi, L. P., Dariah, A., & Goenadi, D. H. (2008). Peningkatan kemantapan agregat tanah mineral oleh bakteri penghasil eksopolisakarida. Menara Perkebunan, 76(2), 93–103.

Serlina, U., & Adiwirman, A. (2018). PENGARUH BEBERAPA JENIS MEDIUM TANAM DAN DOSIS PUPUK NPK TERHADAP PERTUMBUHAN SETEK TANAMAN MAWAR (Rose sp). Jurnal Online Mahasiswa (JOM) Bidang Pertanian, 5(1), 1–11.

Subhan, A. H., & Nikardi, G. (1998). Penggunaan pupuk nitrogen dan pupuk kandang ayam pada tanaman cabai di lahan kering. J. Hort, 9(2), 1178–1181.

Sugiarto, R. S. (2013). Sudiarso, danSoemarno. 2013. Local Potential Intensification System (SIPLO) the Sustainable Management of Soil Organic Potatoes. International Journal Of Engineering And Science, 2(9), 51–57.

Sugiarto, Sulistiono, R., Sudiarso, & Soemarno. (2013). Management, Local Potential. International Journal of Ecosystem, 8.

Supriyo, A., Minarsih, S., & Prayudi, B. (2014). Efektifitas pemberian pupuk hayati terhadap pertumbuhan dan hasil padi gogo pada tanah kering. Muhammadiyah University Purwokerto.

Sutedjo, M. M., & Kertasapoetra, A. G. (1998). Pupuk dan Cara Pemupukan. PT Bina Aksara.

Tombe, M. (2016). Pemanfaatan pestisida nabati dan agensia hayati untuk pengendalian penyakit busuk jamur akar putih pada jambu mete. Buletin Penelitian Tanaman Rempah Dan Obat, 19(1), 68–77.

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Published

2021-08-31

How to Cite

Roaidha, D., Murwani, I. and Arfarita, N. (2021) “Pengaruh Peningkatan Dosis Pupuk Hayati VP3 dan Lama Induksi Listrik Terhadap Agregasi Tanah, Pertumbuhan dan Hasil Tanaman Kedelai (Glicine max (L) Merr.)”, Folium : Jurnal Ilmu Pertanian, 5(2), pp. 80–95. doi: 10.33474/folium.v5i2.12879.