Aplikasi Media Tanam Campuran Untuk Budidaya Bayam Brazil Secara Vertikultur
DOI:
https://doi.org/10.62671/jp3l.v1i1.6Kata Kunci:
ketahanan pangan, bayam brazil, sayuran sehatAbstrak
Sayuran merupakan kebutuhan dasar harian yang harus dipenuhi untuk hidup sehat dan produktif. Penanaman sayuran dapat dilakukan secara berulang dengan menggunakan media tanam campuran. Campuran media tanam yang terdiri dari tanah, kompos, biochar, sekam padi dengan perbandingan 3:1:1:1 dapat mendukung pertumbuhan dan hasil tanaman yang dilakukan secara berulang-ulang. Penggunaan media tanam yang dapat digunakan secara berulang untuk budidaya sayuran memudahkan masyarakat untuk budidaya sayuran dipekarangan rumah. Penggunaan media campuran untuk budidaya bayam brazil dapat terus digunakan tanpa mengganti media untuk musim tanam dan produksi yang tidak terbatas. Hal ini dapat meningkatkan keinginan masyarakat untuk menghasilkan sayuran di rumah sendiri dan dapat meningkatkan kegiatan keluarga untuk bercocok tanam sayuran. Pada pengabdian yang dilakukan telah memotivasi masyarakat untuk budidaya sayuran bersama keluarga. Budidaya sayuran dikeluarga dapat meningkatkan ketahanan keluarga untuk mendapatkan asupan sayuran yang sehat karena diproduksi secara organik. Budidaya sayuran secara organik dapat dilakukan karena limbah rumah tangga dapat diproduksi menjadi kompos dan biochar serta eco enzyme yang dapat digunakan sebagai pestisida alami yang juga berfungsi sebagai pupuk organik. Budidaya vertikultur juga dapat menunjang produksi sayur yang sehat, karena terjaga dari kontaminasi pathogen yang bisa terjadi pada penanaman di lahan. Budidaya sayuran dengan vertikultur yang menggunakan media campuran juga dapat mempertahankan kesuburan media untuk musim tanam yang tidak terbatas. Penggunaan vertikultur dan media tanam campuran dapat mengatasi masalah terbatasnya lahan perkarangan untuk penanaman sayuran.
Referensi
Aguilar-Felices, E. J., Romero-Viacava, M., Enciso-Roca, E., Herrera-Calderon, O., Común-Ventura, P., Yuli-Posadas, R. Á., Chacaltana-Ramos, L., & Pari-Olarte, B. (2019). Antioxidant Activity Of The Germinated Seed Of Four Varieties Of Amaranthus Caudatus L. From Peru. Polymer Journal. Https://Doi.Org/10.5530/Pj.2019.11.93Alarcón-García, M. A., Pérez-Alvarez, J. A., López-Vargas, J. H., Pagan-Moreno, M. J., & Pagán-Moreno, M. J. (2020). Techno-Functional Properties Of New Andean Ingredients: Maca (Lepidium Meyenii) And Amaranth (Amaranthus Caudatus). Proceedings. Https://Doi.Org/10.3390/Foods_2020-07744Alarefee, H. A., Othman, F., Ishak, C. F., Karam, D. S., & Othman, R. (2021). Efficiency Of Rice Husk Biochar With Poultry Litter Co-Composts In Oxisols For Improving Soil Physico-Chemical Properties And Enhancing Maize Performance. Agronomy. Https://Doi.Org/10.3390/Agronomy11122409Amare, E., Grigoletto, L., Corich, V., Giacomini, A., & Lante, A. (2021). Fatty Acid Profile, Lipid Quality And Squalene Content Of Teff (Eragrostis Teff (Zucc.) Trotter) And Amaranth (Amaranthus Caudatus L.) Varieties From Ethiopia. Applied Sciences. Https://Doi.Org/10.3390/App11083590Balasubramanian, P., Babu, R., Chinnamuthu, C. R., Mahendran, P. P., & Kumutha, K. (2021). Soil Application Of Different Nutrient Levels With Soil Amendment Charred Rice Husk And Seed Treatment Of Arbuscular Mycorrhizae: Effects On Crop Productivity And Nutrient Uptake On Groundnut (Arachis Hypogaea L.). Legume Research. Https://Doi.Org/10.18805/Lr-4727Chen, Ye, Lan, T., Li, J., Yang, G., Zhang, K., & Hu, D. (2021). Effects Of Biochar Produced From Cornstalk, Rice Husk And Bamboo On Degradation Of Flumioxazin In Soil. Soil And Sediment Contamination: An International Journal. Https://Doi.Org/10.1080/15320383.2021.1937936Chen, Yinglong, Li, R., Ge, J., Liu, J., Wang, W., Xu, M., Zhang, R., Hussain, S., Wei, H., & Dai, Q. (2021). Exogenous Melatonin Confers Enhanced Salinity Tolerance In Rice By Blocking The ROS Burst And Improving Na+/K+ Homeostasis. Environmental And Experimental Botany, 189(May), 104530. Https://Doi.Org/10.1016/J.Envexpbot.2021.104530FAO. (2019). Food And Agriculture Organization Of The United Nations. GIEWS-Global Information And Early Warning System Of Food And Agriculture.Guerrero, J. M., Paz, S. M. La, Martínez-López, A., Villanueva-Lazo, A., Pedroche, J., Millán, F., & Millán-Linares, M. Del C. (2021). Identification And Characterization Of Novel Antioxidant Protein Hydrolysates From Kiwicha (Amaranthus Caudatus L.). Antioxidants. Https://Doi.Org/10.3390/Antiox10050645Haque, A. N. A., Uddin, K., Sulaiman, M. F., Amin, A. M., Hossain, M., Aziz, A. A., & Mosharrof, M. (2021). Impact Of Organic Amendment With Alternate Wetting And Drying Irrigation On Rice Yield, Water Use Efficiency And Physicochemical Properties Of Soil. Agronomy. Https://Doi.Org/10.3390/Agronomy11081529Hu, X., Chen Yang, Y., Zhou, K., Tian, G., Liu, B., He, H., Zhang, L., Cao, Y., & Bian, B. (2022). Verification Of Agricultural Cleaner Production Through Rice-Duck Farming System And Two-Stage Aerobic Composting Of Typical Organic Waste. Journal Of Cleaner Production, 337, 130576.Jimoh, M O, & Jimoh, M. O. (2019). MICROMORPHOLOGICAL ASSESSMENT OF LEAVES OF AMARANTHUS CAUDATUS L. CULTIVATED ON FORMULATED SOIL TYPES. Applied Ecology And Environmental Research. Https://Doi.Org/10.15666/Aeer/1706_1359313605Jimoh, Muhali Olaide, Afolayan, A. J., & Lewu, F. B. (2020a). Heavy Metal Uptake And Growth Characteristics Of Amaranthus Caudatus L. Under Five Different Soils In A Controlled Environment. Notulae Botanicae Horti Agrobotanici Cluj-Napoca. Https://Doi.Org/10.15835/Nbha48111656Jimoh, Muhali Olaide, Afolayan, A. J., & Lewu, F. B. (2020b). Toxicity And Antimicrobial Activities Of Amaranthus Caudatus L. (Amaranthaceae) Harvested From Formulated Soils At Different Growth Stages. Journal Of Evidence-Based Integrative Medicine. Https://Doi.Org/10.1177/2515690x20971578Jubaedah, Muhtar, & Nurida, N. L. (2021). Effects Of Residual Biochar Amendment On Soil Chemical Properties, Nutrient Uptake, Crop Yield And N2O Emissions Reduction In Acidic Upland Rice Of East Lampung. IOP Conference Series: Earth And Environment. Https://Doi.Org/10.1088/1755-1315/648/1/012103Karamać, M., Gai, F., Longato, E., Meineri, G., Janiak, M. A., Amarowicz, R., & Peiretti, P. G. (2019). Antioxidant Activity And Phenolic Composition Of Amaranth (Amaranthus Caudatus) During Plant Growth. Antioxidants. Https://Doi.Org/10.3390/Antiox8060173Kim, H. J., Kim, H. W., Kim, S., Lee, J., Kim, M., Kwon, D., & Jung, S. (2022). Pyrolysis Of Rice Husk Using CO2 For Enhanced Energy Production And Soil Amendment. Energy & Environment. Https://Doi.Org/10.1177/0958305x221079422Korabel, I. M., Panchak, L. V, Zyn, A. R., & Antonyuk, V. O. (2022). OBTAINING OF BIOLOGICALLY ACTIVE SUBSTANCES FROM AMARANTHUS CAUDATUS L. SEEDS IN ONE TECHNOLOGICAL CYCLE. Biomedical Chromatography. Https://Doi.Org/10.1002/Bmc.5386Linh, D. T. P., Khoi, C. M., Ritz, K., Sinh, V. N., Phuong, N. T. K., My, H. M. T., Linh, T. B., Minh, D. D., Linh, T., & Toyota, K. (2023). Effects Of Rice Husk Biochar And Compost Amendments On Soil Phosphorus Fractions, Enzyme Activities And Rice Yields In Salt-Affected Acid Soils In The Mekong Delta, Viet Nam. Agronomy. Https://Doi.Org/10.3390/Agronomy13061593López, C. C., Bundó, M., Serrat, X., San Segundo, B., López-Carbonell, M., & Nogués, S. (2021). A Comprehensive Study Of The Proteins Involved In Salinity Stress Response In Roots And Shoots Of The FL478 Genotype Of Rice (Oryza Sativa L. Ssp. Indica). Crop Journal, 9(5), 1154–1168. Https://Doi.Org/10.1016/J.Cj.2020.10.009Lotfi, S., Kordsardouei, H., &Oloumi, H. (2019). Study Of Total Phenolic Content And Antioxidant Capacity Of The Ethanolic Extracts Of Two Medicinal Plants, Hibiscus Sabdariffa L. And Amaranthus Caudatus L. Banat’s Journal Of Biotechnology. Https://Doi.Org/10.7904/2068-4738-X(19)-66Ma, H., Hu, Y., Kobayashi, T., & Xu, K. (2020). The Role Of Rice Husk Biochar Addition In Anaerobic Digestion For Sweet Sorghum Under High Loading Condition. Biotechnology Reports, 27, E00515. Https://Doi.Org/10.1016/J.Btre.2020.E00515Mahmad-Toher, A.-S., Govender, N., Dorairaj, D., Mui-Yun, W., & Wong, M. Y. (2021). Comparative Evaluation On Calcium Silicate And Rice Husk Ash Amendment For Silicon-Based Fertilization Of Malaysian Rice (Oryza Sativa L.) Varieties. Journal Of Plant Nutrition. Https://Doi.Org/10.1080/01904167.2021.2014878Martinez-Lopez, A., Rivero-Pino, F., Villanueva, A., Toscano, R., Grao-Cruces, E., Marquez-ParadasE., Martin, M. E., Paz, S. M. La, & Millan-Linares, M. C. (2022). Kiwicha (Amaranthus Caudatus L.) Protein Hydrolysates Reduce Intestinal Inflammation By Modulating The NLRP3 Inflammasome Pathway. Food & Function. Https://Doi.Org/10.1039/D2fo02177cMbah, C. N., & Njoku, C. (2022). Yields And Heavy Metal Uptake Of Cocoyam (Xanthosoma Sagittifolium) And Effects On Soil Properties Of Different Tillage Practices And Application Of Burnt Rice Husk Dust In Abakaliki, South-East Nigeria. Biological Agriculture & Horticulture. Https://Doi.Org/10.1080/01448765.2022.2116729Mérida-López, J., Pérez, S., Bergenståhl, B., Purhagen, J., & Rojas, C. C. (2023). Nutritional Composition Of Six Amaranth (Amaranthus Caudatus) Andean Varieties. Crops. Https://Doi.Org/10.3390/Crops3010008Moreno, E., Vit, P., Aguilar, I., Barth, O. M., & Rica, C. (2023). Melissopalynology Of Coffea Arabica Honey Produced By The Stingless Bee Tetragonisca Angustula ( Latreille , 1811 ) From Alajuela , Costa Rica. 8(March), 804–831. Https://Doi.Org/10.3934/Agrfood.2023043Nurhidayati, N., Nurhidayati, N., Nurhidayati, N., Nurhidayati, N., & Mariati, M. (2014). Utilization Of Maize Cob Biochar And Rice Husk Charcoal As Soil Amendment For Improving Acid Soil Fertility And Productivity. Journal Of Degraded And Mining Lands Management. Https://Doi.Org/10.15243/Jdmlm.2014.021.223Nwawuike, I. M., & Nkwogu, A. C. (2023). Effects Of Rice Husk Biochar Charred At Different Time On Soil Chemical Properties, Rice Growth And Yield. Journal Of Agriculture And Food Sciences. Https://Doi.Org/10.4314/Jafs.V21i1.5PAN, W. Jing, HAN, X., HUANG, S. Yu, YU, J. Yao, ZHAO, Y., QU, K. Xin, ZHANG, Z. Xin, YIN, Z. Gong, QI, H. Dong, YU, G. Long, ZHANG, Y., XIN, D. Wei, ZHU, R. Sheng, LIU, C. Yan, WU, X. Xia, JIANG, H. Wei, HU, Z. Bang, ZUO, Y. Hu, CHEN, Q. Shan, & QI, Z. Ming. (2022). Identification Of Candidate Genes Related To Soluble Sugar Contents In Soybean Seeds Using Multiple Genetic Analyses. Journal Of Integrative Agriculture, 21(7), 1886–1902. Https://Doi.Org/10.1016/S2095-3119(21)63653-5Persaud, T., Homenauth, O., Fredericks, D., & Hamer, S. (2018). Effect Of Rice Husk Biochar As An Amendment On A Marginal Soil In Guyana. World Environment. Https://Www.Semanticscholar.Org/Paper/5f1b7359d62ee4c718858ccafe88dc8d6d9e739fPhuong, N. T. K., Khoi, C. M., Khoi, C. M., Sinh, N. Van, Chiem, N. H., Toyota, K., & Toyota, K. (2019). Effects Of Rice Husk Biochar And Calcium Amendment On Remediation Of Saline Soil From Rice-Shrimp Cropping System In Vietnamese Mekong Delta. Journal Of Experimental Agriculture International. Https://Doi.Org/10.9734/Jeai/2019/V39i230327Phuong, N. T. K., Khoi, C. M., Ritz, K., Linh, T. B., Minh, D. D., Duc, T. A., Sinh, N., Linh, T., & Toyota, K. (2020). Influence Of Rice Husk Biochar And Compost Amendments On Salt Contents And Hydraulic Properties Of Soil And Rice Yield In Salt-A ffEcted Fields. Https://Www.Semanticscholar.Org/Paper/B569530ee47c03c7547786f572380be004c49016Phuong, N. T. K., Khoi, C. M., Ritz, K., Linh, T. B., Minh, D. D., Duc, T. A., Sinh, N. Van, Linh, T. T., Toyota, K., & Toyota, K. (2020). Influence Of Rice Husk Biochar And Compost Amendments On Salt Contents And Hydraulic Properties Of Soil And Rice Yield In Salt-Affected Fields. Agronomy. Https://Doi.Org/10.3390/Agronomy10081101Rashad, M. M., Rashad, M., Rashad, M., Kenawy, E.-R., Hosny, A., Hafez, M., & Elbana, M. (2020). An Environmental Friendly Superabsorbent Composite Based On Rice Husk As Soil Amendment To Improve Plant Growth And Water Productivity Under Deficit Irrigation Conditions. Journal Of Plant Nutrition. Https://Doi.Org/10.1080/01904167.2020.1849293Roriz, C. L., Roriz, C. L., Xavier, V., Heleno, S. A., Carvalho, A. M., Pinela, J., Dias, M. I., Calhelha, R. C., Morales, P., Ferreira, I. C. F. R., & Barros, L. (2021). Chemical And Bioactive Features Of Amaranthus Caudatus L. Flowers And Optimized Ultrasound-Assisted Extraction Of Betalains. Foods. Https://Doi.Org/10.3390/Foods10040779
Sy, N. T., Van, T. H., Huu, C. N., Van, C. N., & Mitsunori, T. (2022). Rice Husk And Melaleuca Biochar Additions Reduce Soil CH 4 And N 2 O Emissions And Increase Soil Organic Matter And Nutrient Availability. F1000Research. Https://Doi.Org/10.12688/F1000research.74041.1Sy, N., Van, T. H., Huu, C. N., Van, C. N., & Mitsunori, T. (2021). Rice Husk And Melaleuca Biochar Additions Reduce Soil CH4 And N2O Emissions And Increase Soil Organic Matter And Nutrient Availability [Version 1; Peer Review: Awaiting Peer Review]. Https://Www.Semanticscholar.Org/Paper/C67be56c3007e0a5af413a1745ae8cbe80ae49c6Tamfuh, A., Azinwi, P., Tamfuh, Taku, S., Agbor-Ambang, Bitondo, D., Ndzana, G. M., Singwa, A. A., Ngonjang, L. W., Nji, J. T., & Temgoua, E. (2021). Soil Fertility Amendment Using Cocoa Pod Husk And Plantain Peels Powders For Okra ( Abelmoschus Esculentus , Kirikou Variety) Production In Dschang (Cameroon Western Highlands). Https://Www.Semanticscholar.Org/Paper/F114bc14637411edfa7d4115d1017e4190fe9998Vilcacundo, R., Martínez-Villaluenga, C., Miralles, B., & Hernández-Ledesma, B. (2019). Release Of Multifunctional Peptides From Kiwicha (Amaranthus Caudatus) Protein Under In Vitro Gastrointestinal Digestion. Journal Of The Science Of Food And Agriculture. Https://Doi.Org/10.1002/Jsfa.9294Wenjing, L. (2021). Preparation Of Amaranthus Caudatus L. And Punica Granatum Composite Beverage And Its Resisting Exercise Fatigue Effect. Https://Doi.Org/10.13386/J.Issn1002-2020090125Widyantika, S. D., & Prijono, S. (2019). Pengaruh Biochar Sekam Padi Dosis Tinggi Terhadap Sifat Fisik Tanah Dan Pertumbuhan Tanaman Jagung Pada Typic Kanhapludult. Jurnal Tanah Dan Sumberdaya Lahan, 6(1), 1157–1163.Yadav, N., & Ganie, S. A. (2019). Phytochemical Constituents And Ethnopharmacological Properties Of Ageratum Conyzoides L .December 2018, 1–16. Https://Doi.Org/10.1002/Ptr.6405Zhou, H., Wang, P., Chen, D., Shi, G., Cheng, K., Bian, R., Liu, X., Zhang, X., Zheng, J., Crowley, D. E., Van Zwieten, L., Li, L., & Pan, G. (2018). Short-Term Biochar Manipulation Of Microbial Nitrogen Transformation In Wheat Rhizosphere Of A Metal Contaminated Inceptisol From North China Plain. Science Of The Total Environment, 640–641, 1287–1296. Https://Doi.Org/10.1016/J.Scitotenv.2018.06.009
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