Pertumbuhan dan hasil tanaman kacang hijau (Vigna radiata L.) pada berbagai agents dan dosis pupuk hayati
DOI:
https://doi.org/10.31949/agrivet.v12i2.11731Abstract
This study aimed to analyze the interaction between Mycogrow and Bionsecta formulas and green beans' growth and yield (Vigna radiata L.). The research method uses a field experiment method with a group randomized design factorial arrangement consisting of two factors repeated four times. The first factor, Mycogrow (m) formulas, consists of 3 levels: m1 = 5 g/plant, m2 = 10 g/plant, and m3 = 15 g/plant. Meanwhile, the second factor, Bionsecta (b) formulas, consists of 3 levels: b1 = 5 g/plant, b2 = 10 g/plant, and b3 = 15 g/plant. The data obtained is analyzed statistically with the f-test (Multivariate Analysis of Varians), and the average value of each treatment is determined using the Duncan Multiple Range Test (DMRT). The results showed an interaction between the m and b formulas. The best interaction was shown in the m2b2 combination: moycogrow 10 g and bionsects 10 g. The dose treatment of the Mycogrow formula (10 g/plant) is the best treatment on the number of leaves, age four wap, root length, number of pods per plant, and seed weight per plant. On the independent effect of giving bionsecta, a dose of 10 grams showed the best results on the number of pods per plant and seed weight per plant.
Keywords:
Biological fertilizer, Green beans, Microbial consortiumDownloads
References
Aditya, M., Ir. Idwar Msi, dan Ir. Nurbaiti M. (2015). Aplikasi Bakteri Pelarut Fosfat Isolat No. 68 dengan Berbagai Takaran Batuan Fosfat Pada Medium Gambut dalam Meningkatkan Pertumbuhan dan Produksi Kacang Hijau (Vigna radiata L.) Varietas 129 . JOM Faperta Vol. 2 No. 2 Oktober 2015 .
Alamtani. (2014). Pengertian dan fungsi pupuk hayati. https://alamtani.com/pupuk-hayati/. Diakses 26 Juli 2020.
Asri, A. C., dan Zulaika, E. (2016:57-59). Sinergisme Antar Isolat Azotobacter Yang Dikonsorsiumkan . Jurnal Sains dan Seni ITS Vol. 5, No.2, (2016) 2337-3520 (2301-928X Print).
Evelin, H., R. Kapoor, and B. Giri. 2009. Arbuscular mycorrhial fungi in alleviation of salt stress : a review. Annals of Botany.104:1263-1280.
Gresik, P. (2018). Lahan Marginal Menyimpan Potensi Menunjang Ketahanan Pangan. Diambil kembali dari https://petrokimia-gresik.com/news/lahan-marginal-menyimpan-potensi-menunjang-ketahanan-pangan. Diakses 25 Februari 2020
Hastuti, D. P., Supriyono., dan Hartati, S. (2018:89-95). Pertumbuhan dan Hasil Kacang Hijau (Vigna radiata L.) Pada Beberapa Dosis Pupuk Organik dan Kerapatan Tanam. Caraka Tani: Jurnal of Sustainable Agricukture. 2018. 33 (2), 89-95.
Hijri M, Bâ A. 2018. Editorial: Mycorrhiza in tropical and neotropical ecosystems. Frontiers in Plant Science. 9:308. https://doi.org/10.3389/fpls.2018.00308
Irwan, A. W., dan Nurmala T. (2018). Pengaruh Pupuk Hayati Majemuk dan Pupuk Fosfor Terhadap Pertumbuhan dan Hasil Kedelai di Incepticols Jatinangor. Jurnal Kultivasi Vol. 17 (3) Desember 2018.
Junaidi, Muyassir, & Syafruddin. 2013. Penggunaan Bakteri Pseudomonas fluorescens dan Pupuk Kandang dalam Bioremediasi Inceptisol Tercemar Hidrokarbon. Jurnal Konservasi Sumber Daya Lahan, 1(1): 1-9.
K. A, G., dan A. A, G. (1995). Prosedur Statistik untuk Penelitian Pertanian. Edisi Kedua. Jakarta: UI-press.
Kementan. (2019). Keuntungan Budidaya Kacang Hijau menggiurkan. https://republika.co.id/berita/pxwzxc423/kementan-keuntungan-budi-daya-kacang-hijau-menggiurkan.
Kusyanto. (2020). Pengaruh Dosis Mikoriza dan Konsentrasi dan Macam Varietas Terhadap Pertumbuhan dan Produksi Kacang Tanah (Arachis hypogea L.) Dibawah Tegakan Tanaman Karet. Fakultas Pertanian Universitas Pekalongan . Jurnal Ilmiah Pertanian ISSN Print: 0216—5430; ISSN Online: 2301-6442 Vol.16, No. 1, April 2020.
Rahman, R., Anshar, M., dan Bahrudin . (2015:316-328). Aplikasi Bakteri Pelarut Fosfat, Bakteri Penambat Nitrogen dan Mikoriza Terhadap Pertumbuhan Tanaman Cabai (Capsicum annum L.). e-J. Agrotekbis 3 (3) : 316 - 328 , Juni 2015 , 316-328.
Ranesa, S.S., Tejowulan, S., Padusung., (2024). Efek Kandungan Bahan Organik terhadap Pertumbuhan dan Hasil Tanaman Cabai pada Kondisi Stres Air. Journal of Soil Quality and Management (JSQM), 1(1),79-86.
Santoso, K., Rahmawati, dan Rafdinal. (2019:52-58). Eksplorasi Bakteri Penambat Nitrogen dari Tanah Hutan Mangrove Sungai Peniti, Kabupaten Mempawah. Protobiont (2019) Vol. 8 (1).
Simbolon, J., Lubis, A., dan Jamilah. (2019:318-321). Pertumbuhan dan Produksi Kacang Hijau di Ultisol dengan Aplikasi Kompos Cair Ganggang Coklat Pada Berbagai Kombinasi N dan K. Jurnal Agrokteknologi FP USU Vol. 7.No.2, Maret 2019 (31): 246-253.
Smith SE, dan Read DJ. 2008. Mycorrhizal symbiosis, 3rd edn.Academic, London.
Staddon P. L., Jakobsen I., Blum H. (2004). Nitrogen input mediates the effect of free-air CO2 enrichment on mycorrhizal fungal abundance. Global Change Biol. 10, 1678–1688. 10.1111/j.1365-2486.2004.00853
Published
How to Cite
Issue
Section
License
Copyright (c) 2024 Aaz Azamudin Tifani, Miftah Dieni Sukmasari

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
An author who publishes in the Jurnal Agrivet agrees to the following terms:
- Author retains the copyright and grants the journal the right of first publication of the work simultaneously licensed under the Creative Commons Attribution-ShareAlike 4.0 License that allows others to share the work with an acknowledgment of the work's authorship and initial publication in this journal
- The author is able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book) with the acknowledgment of its initial publication in this journal.
- The author is permitted and encouraged to post his/her work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of the published work