Nutrient uptake and yield of paddy cultivated under intensification with fish amino acid as liquid organic fertilizer

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Research Paper 01/04/2022
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Nutrient uptake and yield of paddy cultivated under intensification with fish amino acid as liquid organic fertilizer

Riza Adrianoor Saputra, Nukhak Nufita Sari, Ririn Norsaleha
Int. J. Biosci.20( 4), 85-96, April 2022.
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Abstract

Rice production in South Kalimantan, Indonesia, is still not optimal and needs to be increased. Increasing rice production can be done with the SRI (System of Rice Intensification) method. One of the needs for rice plant nutrients using the SRI method is by using Fish Amino Acid (FAA). The use of FAA as liquid organic fertilizer in organic rice cultivation has not been widely studied and needs to be developed. Therefore, this study was designed to determine the effect of FAA applications on P, K uptake, and rice productivity. The study was conducted in a greenhouse using a one-factor completely randomized design (CRD) consisting of five treatments, namely 0 (f0), 1 (f1), 3 (f2), 5 (f3), and 7 (f4) mL FAA L-1. FAA applications have a significant effect on phosphorus uptake, plant wet weight, dry grain weight, and rice productivity of the SRI method, while the FAA application did not significantly affect potassium uptake, plant dry weight, and weight of 100 grains of rice using the SRI method. The best dose of FAA application on P, K uptake and rice productivity in the SRI method are found in the f1 treatment (1 mL FAA L-1) which can increase up to 30% dry weight and rice productivity compared to f0 treatment (control) and able to increase up to 20% phosphorus absorption of rice plants compared to f0 treatment (control).

VIEWS 345

Apriliani LN, Heddy, S, Suminarti NE. 2016. Pengaruh kalium pada pertumbuhan dan hasil dua varietas tanaman ubi jalar (Ipomea batatas (L.) Lamb). Jurnal Produksi Tanaman 4(4), 264-270. https://doi.org/10.21176/protan.v4i4.290.

Bustami, Sufardi, Bakhtiar. 2012. Serapan hara dan efisiensi pemupukan phosfat serta pertumbuhan padi varietas lokal. Jurnal Manajemen Sumberdaya Lahan 1(2), 159-170.

Delin L, Zhu Z. 1996. Effect of available phosphorus in paddy soils on phosphorus uptake of rice. Journal of Radioanalytical and Nuclear Chemistry 205(2), 235-243.

Duncan DB. 1955. Multiple range and multiple F tests. Biometrics 11(1). https://doi.org/10.2307/3001478.

Dunggulo CV, Lapajang IM, Made U. 2017. Pertumbuhan  dan  hasil tanaman padi (Oryza sativa L.) pada berbagai pola jajar legowo dan jarak tanam. Jurnal Agroland 24(1), 27- 35.

Erisa D, Khalil M, Zuraida. 2018. Kajian fraksional fosfor (P) pada beberapa pola penggunaan lahan kering ultisol di Desa Jalin Jantho Aceh Besar. Jurnal Ilmiah Mahasiswa Pertanian 3(2), 391-399. https://doi.org/10.17969/jimfp.v3i2.7499.

Hairuddin R, Edial AA. 2019. Pengaruh  pemberian  pupuk  organik  cair kotoran kambing terhadap pertumbuhan dan hasil tanaman seledri (Apium graveolens L.) Jurnal Perbal Fakultas Pertanian Universitas Cokroaminoto 7(1), 97-106. http://dx.doi.org/10.30605/perbal.v7i1.1229.

Hapsari N, Welasih T. 2011. Pemanfaatan limbah ikan menjadi pupuk organik. Envirotek: Jurnal Teknik Lingkungan 3(1), 1-6.

Hidayah R, Sofjan J, Wardati. 2016. Pengaruh umur bibit dan pupuk N, P, K terhadap padi varietas IR 42 di lahan pasang surut dengan metode SRI di Desa Kuala Mulya Kecamatan Kuala Cenaku. Jurnal Online Mahasiswa Fakultas Pertanian Universitas Riau 3(2), 1-15.

Hidayati N, Triadiati, Anas I. 2018. Rooting system of rice cultivated under System of rice intensification (SRI) method which improving rice yield. Hayati Journal of Biosciences 25(2), 63-69. https://doi.org/10.4308/hjb.25.2.63.

Jumar, Saputra RA, Jannah SR. 2021. Effect of fish amino acid application on growth and n-uptake in plants rice using the system of rice intensification method. Tropical Wetland Journal 7(1), 25-30. https://doi.org/10.20527/twj.v7i1.91.

Juo ASR. 1978. Selected methods for soil and plant analysis: manual series No. 1. IITA. https://cgspace.cgiar.org/handle/10568/97963.

Kuncoro H. 2008. Efisiensi serapan P dan K serta hasil tanaman padi (Oryza sativa L.) pada berbagai imbangan pupuk kandang puyuh dan pupuk anorganik di lahan sawah palur Sukoharjo. Skripsi, Fakultas Pertanian, Universitas Sebelas Maret, Surakarta.

Kurniadiningsih Y, Legowo S. 2012. Evaluasi untung rugi penerapan metode SRI (system of rice intensification) di Cihea Kabupaten Cianjur Jawa Barat. Jurnal Wartazoa 18(7), 97.

Kusumaningrum I, Hastuti RB, Haryanti S. 2007. Pengaruh perasan Sargassum crassifolium dengan konsentrasi yang berbeda terhadap pertumbuhan tanaman  kedelai (Glycine max L. Merill). Buletin Anatomi dan Fisiologi 15(2), 17-23. https://doi.org/10.14710/baf.v15i2.2567.

Lepongbulan W, Tiwow VMA, Diah AWM. 2017. Analisis unsur hara pupuk organik ciar dari limbah ikan mujair (Oreochronis mosabicus) danau lindu dengan variasi volume mikroorganisme lokal (mol) bonggol pisang. Jurnal Akademika Kimia 6(2), 92-97. https://doi.org/10.22487/j24775185.2017.v6.i2.9239.

Lhendup KUW, Wangchuk J, Bhandari TR, Chophel S. 2009. Performance of Rice under System of rice intensification (SRI) at CNR, Lobesa. Journal of RNR-Bhutan 5(1).

Lukman L. 2010. Efek pemberian fosfor terhadap pertumbuhan dan status hara pada bibit manggis. Jurnal Hortikultura 20(1), 18-26. http://dx.doi.org/10.21082/jhort.v20n1.2010.p%25p.

Nuryani S, Haji M, Widya N. 2010. Serapan hara N, P, K pada tanaman padi dengan berbagai lama penggunaan pupuk organik pada vertisol Sragen. Jurnal Ilmu Tanah dan Lingkungan 10(1), 1-13.

Omwenga KG, Mati BM, Home PG. 2014. Determination of the effect of the System of rice intensification (SRI) on rice yields and water saving in Mwea Irrigation Scheme, Kenya. Journal of Water Resource and Protection 6(10), 895-901. http://dx.doi.org/10.4236/jwarp.2014.610084.

Parman S. 2007. Pengaruh pemberian pupuk organik cair terhadap pertumbuhan dan produksi kentang (Solanum tuberosum L.). Buletin Anatomi dan Fisiologi 15(2), 21-31. https://doi.org/10.14710/baf.v15i2.2569.

Priyanka B, Anoob D, Gowsika M, Kavin A, Sri SK, Kumar RVK, Gomathi RS, Sivamonica B, Devi GV, Theradimani M. 2019. Effect of fish amino acid and egg amino acid as foliar application to increase the growth and yield of green gram. The Pharma Innovation Journal 8(6), 684-686.

Raun WR, Olson RA, Sander DH, Westerman RL. 1987. Alternative procedure for total phosphorus determination in plant tissue. Communications in Soil Science and Plant Analysis 18(5), 543–557. https://doi.org/10.1080/00103628709367840.

Regulation of The Minister of Agriculture. 2011. No. 70/Permentan/SR.140/10/2011 Concerning Organic fertilizer, biological fertilizer, and soil repairer No:70/Permentan/SR.140/10/2011.

Saputra RA. 2016. Pengaruh aplikasi abu terbang  batubara  pada  jenis  sawah yang  berbeda  terhadap  perubahan sifat  kimia  tanah,  pertumbuhan,  dan produksi  padi. Tesis, Program Studi Pascasarjana Agronomi Universitas Lambung Mangkurat, Banjarbaru.

Saputra RA, Sari NN. 2021. Ameliorant engineering to elevate soil pH, growth, and productivity of paddy on peat and tidal land. IOP Conference Series: Earth and Environmental Science 648(1), 012183. https://doi.org/10.1088/1755-1315/648/1/012183.

Setyowati M, Irawan J, Marlina L. 2018. Karakter agronomi beberapa padi lokal Aceh. Jurnal Agrotek Lestari 5(1), 36-50. https://doi.org/10.35308/jal.v4i1.632.

Statistics Indonesia. 2019. Luas Panen dan Produksi Padi di Indonesia 2019 [Rice Harvested Area and Production in Indonesia 2019]. https://www.bps.go.id/publication/2020/12/01/21930121d1e4d09459f7e195/luas-panen-dan-produksi-padi-di-indonesia-2019.html#:~:text=Berdasarkan%20hasil%20Survei%20KSA%2C%20pada,54%2C60%20juta%20ton%20GKG.

Subandi. 2013. Peran dan pengelolaan hara kalium untuk produksi pangan di Indonesia. Pengembangan  Inovasi Pertanian 6(1), 1-10.

Suswadi, Suharto I. 2011. Manual pembelajaran penerapan SRI (system of rice intensification) di lahan tadah hujan di Kabupaten Boyolali. Boyolali: LSK Bina Bakat Nusantara Bekerjasama dengan VECO Indonesia. p 1-37.

Uphoff N. 2003. “Higher yields with fewer external inputs? The System of Rice Intensification and potential contributions to agricultural sustainability,” International Journal of Agricultural Sustainability

Uphoff N. 2003. Higher yields with fewer external   inputs? The system of rice intensification and potential contributions to agricultural sustainability. International Journal of Agricultural Sustainability 1(1), 38-50. https://doi.org/10.3763/ijas.2003.0105.

Usman Z, Made U, Adrianton. 2014. Pertumbuhan dan hasil tanaman padi (Oryza sativa L.) pada berbagai umur semai dengan teknik budidaya SRI (System of Rice Intensification). Jurnal Agrotekbis 2(1), 32-37.

Weinert E, Miller JSA, Ikeda DM, Chang KCS, McGinn JM, DuPonte MW. 2014. Natural farming: fish amino acid. College of Tropical Agriculture and Human Resources, University of Hawa’I at Manoa 12, 1-3.

Wijiyanti P, Hastuti ED, Haryanti S. 2019. Pengaruh masa inkubasi pupuk dari air cucian beras terhadap pertumbuhan tanaman sawi hijau (Brassica juncea L.). Buletin Anatomi dan Fisiologi 4(1), 21-28. https://doi.org/10.14710/baf.4.1.2019.21-28.