Pengaruh POC Fermentasi Limbah Cair Tahu, Kipahit (Tithonia diversifolia), Bonggol Pisang Terhadap Pertumbuhan dan Hasil Tanaman Lobak (Raphanus sativus L.)
DOI:
https://doi.org/10.31539/bioedusains.v7i2.11165Abstract
This study aimed to analyze the effect of applying liquid organic fertilizer (POC) derived from a combination of three materials on the growth and yield of radish plants (Raphanus sativus L.). The research utilized a randomized block design (RBD) with five treatment doses, namely TBT0 (control), TBT100 (100 ml/plant), TBT200 (200 ml/plant), TBT300 (300 ml/plant), and TBT400 (400 ml/plant). The results showed that applying POC at a dose of 200 ml/plant (TBT200) produced the highest average number of leaves (29.90 leaves) and the highest radish bulb weight (483.62 grams). However, the application of POC to leaf area, chlorophyll content, and dry leaf weight exhibited a pattern without significant changes among the treatments. Soil nutrient content also decreased as it was utilized by the plants during growth. In conclusion, the application of POC doses made from liquid tofu waste, kipahit (Tithonia diversifolia), and banana stems significantly influenced the number of leaves, fresh leaf weight, and productivity of radish plants. However, POC application did not significantly affect leaf area, chlorophyll content, or dry leaf weight.
Keywords: Banana Stem, Kipahit (Tithonia diversifolia), Liquid Tofu Waste, POC, Radish Plants
References
Barus, W. A., Khair, H., & Pratama, H. P. (2020). Karakter pertumbuhan dan hasil tanaman lobak (Raphanus sativus L.) terhadap aplikasi ampas tahu dan POC daun gamal. Agrium, 22(3), 183–189. https://doi.org/10.30596/agrium.v22i3.4692
Chen, M. (2014). Chlorophyll modifications and their spectral extension in oxygenic photosynthesis. Annual Review of Biochemistry, 83, 317–340. https://doi.org/10.1146/annurev-biochem-072711-162943
Dhami, N., Tissue, D., & Cazonelli, C. (2018). Leaf-age dependent response of carotenoid accumulation to elevated CO2 in Arabidopsis. Archives of Biochemistry and Biophysics, 67–75. https://pubmed.ncbi.nlm.nih.gov/29604257/
Gardner, F., Pearce, B., & Mitchell, R. (1991). Fisiologi tanaman budidaya. Jakarta: UI Press.
Hakim, N., Agustian, & Mala, Y. (2012). Application of organic fertilizer Tithonia Plus to control iron toxicity and reduce commercial fertilizer application on new paddy field. Journal of Tropical Soils, 17(2), 135-142. https://doi.org/10.5400/jts.2012.v17i2.135-142
Hardjadi, S., & Yahya, S. (1996). Fisiologi stress lingkungan. Bogor: PAU Bioteknologi IPB.
Hartatik, W. (2007). Tithonia diversifolia: Sumber pupuk hijau. Warta Penelitian dan Pengembangan Pertanian, 29(5), 3–5.
Haryanto, H. (2006). Kesuburan tanah. Jakarta: Penebar Swadaya.
Hutomo, I. P., Mahfudz, & Laude, S. (2015). Pengaruh pupuk hijau Tithonia diversifolia terhadap pertumbuhan dan hasil tanaman jagung (Zea mays L.). e-Journal Agrotekbis, 3(4), 475–481. http://jurnal.untad.ac.id/jurnal/index.php/Agrotekbis/article/view/5167
Lakitan, B. (1996). Fisiologi pertumbuhan dan perkembangan tanaman. Jakarta: PT Raja Grafindo Persada.
Mutini, R., Rini, S., & Wasi’an, W. (2022). Pertumbuhan dan hasil lobak putih terhadap pemberian kombinasi pupuk NPK dan POC kulit pisang pada tanah aluvial. Jurnal Sains Pertanian Equator, 11(4), 209–215. https://jurnal.untan.ac.id/index.php/jspp/article/download/58422/75676595212
Radian, E., Elvira, F., & Abdurrahman, T. (2023). Pengaruh pemberian biochar tongkol jagung dan pupuk NPK terhadap pertumbuhan dan hasil tanaman lobak (Raphanus sativus L.) pada tanah PMK. Jurnal Sains Pertanian Equator, 2(3), 242–248. https://jurnal.untan.ac.id/index.php/jspp/article/viewFile/71206/75676600314
Sari, R., Santoso, & Purwaningsih. (2023). Pengaruh pupuk hayati dan pupuk NPK terhadap pertumbuhan dan hasil tanaman lobak pada tanah gambut. Jurnal Sains Pertanian Equator, 4(3), 31–38. https://jurnal.untan.ac.id/index.php/jspp/article/download/59526/75676595808
Setiawati, T., Saragih, I. A., Nurzaman, M., & Mutaqin, A. Z. (2016). Analisis kadar klorofil dan luas daun lampeni (Ardisia humilis Thunberg) pada tingkat perkembangan yang berbeda di Cagar Alam Pangandaran. Prosiding Seminar Nasional MIPA, 25(1), 122–126.
Suntoro, S. (2002). Pengaruh penambahan bahan organik, dolomit, dan KCl terhadap kadar klorofil dampaknya pada hasil tanaman kacang tanah (Arachis hypogea L.). Biosmart, 4(2), 36–46. https://doi.org/10.30598/biopendixvol5issue2page130-139
Susanto, E., Nurdin, H., & Suminarti, N. E. (2014). Respon pertumbuhan dan hasil tanaman ubi jalar (Ipomoea batatas L.) pada beberapa macam dan waktu aplikasi bahan organik. Jurnal Produksi Tanaman, 2(5), 412–418. https://doi.org/10.21176/protan.v2i5.125
Syauqi, M., & Tri, H. (2022). Respon pertumbuhan dan hasil tanaman lobak (Raphanus sativus L.) terhadap dosis pupuk nitrogen dan pupuk kalium. Berkala Ilmiah Pertanian, 5(3), 158–162. https://jurnal.unej.ac.id/index.php/BIP/article/view/15645
Triadiawarman, D., Aryanto, D., & Krisbiyantoro, J. (2022). Peran unsur hara makro terhadap pertumbuhan dan hasil bawang merah (Allium cepa L.). Agrifor, 21(1), 27-32. https://doi.org/10.31293/agrifor.v21i1.5795