Growth and yield of bok choy (Brassica rapa L.) plants in post-rock excavation soils provided with phosphate-solubilizing bacteria and manure
Abstract
Keywords
Full Text:
PDFReferences
Amnah R, Friska M. 2019. The Effect of Activators on the Levels of C, N, P and K Elements Compost of Salak Sidimpuan Leaf Fronds. Jurnal Pertanian Tropik, 6(3), 342–347. https://talenta.usu.ac.id/jpt
Bahri S, Sutejo, Waruwu S. 2020. Response of growth and production of pakchoy mustard plant (Brasiaca rapa L.) to the type of planting medium and the dose of NPK fertilizer. In Jurnal Planta Simbiosa (Vol. 2, Issue 1).
Brucker, E, Kernchen, S, Spohn, M. 2020. Release of phosphorus and silicon from minerals by soil microorganisms depends on the availability of organic carbon. Soil Biology and Biochemistry, 143(January), 107737. https://doi.org/10.1016/j.soilbio.2020.107737
Campos P, Borie F, Cornejo P, López-Ráez JA, López-García Á, Seguel A. 2018. Phosphorus acquisition efficiency related to root traits: Is mycorrhizal symbiosis a key factor to wheat and barley cropping? In Frontiers in Plant Science (Vol. 9). Frontiers Media S.A. https://doi.org/10.3389/fpls.2018.00752
Chairunnisya RA, Hanum H, Hidayat B. 2017. Application of organic matter and biochar to increase C-organic, P and Zn available on paddy fields. Jurnal Agroteknologi FP US, Vol.5.No.3, Agustus(64): 494-499.
Chen G, Yuan J, Chen H, Zhao X, Wang S, Zhu Y, Wang Y. 2022. Animal manures promote soil phosphorus transformation via affecting soil microbial community in paddy soil. Science of The Total Environment 831 (154917). https://doi.org/10.1016/j.scitotenv.2022.154917
Ding Y, Luo WXG. 2006. Characterisation of magnesium nutrition and interaction of magnesium and potassium in rice. Annalas of Applied Biology, 149(2), 111–123.
Fatima I, Kue E, Mutiara C. 2022. Relationship of C-organic soil to physical properties of soil in mustard greens plantation in Wolofeo village, Detusoko district, Ende regency. Agrica, 14(2), 158–165. https://doi.org/10.37478/agr.v14i2.1647
Firmansyah LI, Khaririyatun N, Yufdy. 2015. Growth and yield of shallots with the application of organic fertilizers and biological fertilizers in alluvial soils. Jurnal Hort., 25(2), 133–141.
Fitriatin BN, Yuniarti A, Turmuktini T, Ruswandi K. 2014. The effect of phosphate solubilizing microbe producing growth regulators on soil phosphate, growth and yield of maize and fertilizer efficiency on Ultisol. In Eurasian Journal of Soil Science (Vol. 3).
Garfannsa MP, Sudiarso S, Suminarti NE. 2021. Effect of potassium fertilizer application on the quality of two varieties of sweet potato (Ipomoea batatas L.). Agro Bali : Agricultural Journal, 4(2), 170–176. https://doi.org/10.37637/ab.v4i2.692
Ginting IF, Yusnaini S, Dermiyati D, Rini MV. 2018. Effect of inoculation of arbuscular mycorrhizal fungi and addition of organic matter to soil after excavation C on the growth and nutrient uptake of P maize plants (Zea mays L.). Jurnal Agrotek Tropika, 6(2), 110–118. https://doi.org/10.23960/jat.v6i2.2603
Hidayat C, Supriadin A, Huwaida’a F, Rachmawati YS. 2020. Application of bokashi hyacinth (Eichhornia crassipes) and mycorrhizal arbuscula fungi for the improvement of soil physics properties after excavation C and chili crop yields (Capsicum frustescens L.). AGROSAINSTEK: Jurnal Ilmu Dan Teknologi Pertanian, 4(2), 95–102. https://doi.org/10.33019/agrosainstek.v4i2.124
Hidayat Cecep, Rachmawati YS, Herlina N, Hasani S. 2023. Utilization of Paitan Bokhasi (Tithonia diversifolia) and Phosphate Solvent Bacteria (BPF) in the cultivation of corn plants in the soil after rock mining. AGROSAINSTEK: Jurnal Ilmu Dan Teknologi Pertanian, 7(1), 25–31. https://doi.org/10.33019/agrosainstek.v7i1.383
Kadir PA, Rajamuddin UA. 2016. Changes in soil physical properties due to the application of manure and mulch in purple eggplant plantations (Solanum melongena L). S. Agrotekbis, 4(2), 160–167.
Kementerian Pertanian. 2019. Minimum technical requirements for organic fertilizers, biological fertilizers, and soil amendments. In Pub. L. No. 261/ KPTS/ SR. 310//M/4/2019 (2019). (pp. 1–18).
Kishore N, Pindi PK, Reddy SR. 2015. Phosphate-solubilizing microorganisms: A critical review. In Plant Biology and Biotechnology: Plant Diversity, Organization, Function and Improvement (Vol. 1, pp. 307–333). Springer India. https://doi.org/10.1007/978-81-322-2286-6_12
Kurniawan A, Titik I, Koesriharti. 2017. Effect of N and K fertilizer application on the growth and yield of pakcoy flamingo fl. Jurnal Produksi Tanaman, 5(2), 281–289.
Lei K. Pan H, Lin C. 2016. A landscape approach towards ecological restoration and sustainable development of mining areas. Ecological Engineering, 90, 320–325. https://doi.org/10.1016/j.ecoleng.2016.01.080
Liana R, Jayaputra, Uyek MY. 2023. Growth response and yield of pakcoy plants (Brassica rapa L.) due to the administration of several doses of bokashi fertilizer. Jurnal Ilmiah Mahasiswa Agrokomplek, 2(1), 54–61. https://doi.org/10.29303/jima.v2i1.2110
Lovitna G, Nuraini Y, Istiqomah N. 2021. Effect of application of phosphate solvent bacteria and phosphate inorganic fertilizer on phosphate solvent bacteria population, P-Available, and maize crop yield in Alfisol. Jurnal Tanah Dan Sumberdaya Lahan, 8(2), 437–449. https://doi.org/10.21776/ub.jtsl.2021.008.2.15
Manuhuttu AP, Rehatta H, Kailola JJ. 2018. Effect of bioboost biofertilizer concentration on increasing the production of lettuce (Lactuca sativa. L). Agrologia, 3(1). https://doi.org/10.30598/a.v3i1.256
Mariay IF, Segoro BI, Tuhumena VL. 2023. Stem leaf ratio, leaf weight ratio and root ratio of pagoda mustard plant title (Brassica narinosa L.) as a result of the application of Kascing, Papua Nutrient and MA-11 liquid organic fertilizer. Agrotek, 10(2), 84–91. https://doi.org/10.46549/agrotek.v10i2.287
Muchlis. 2017. Macro and micronutrients that plants need. Dinas Pertanian Kabupaten Luwu Utara.
Octaprama L, Susilowati LE, Suwardji. 2020. Study of the population and activity of soil microorganisms in the root area of porang plants at different ages. Journal Of Soil Quality And Management, 7(1), 1–9.
Pramitasari HE, Wardiyati T, Mochammad D. 2016. Effect of nitrogen fertilizer dosage and plant density level on growth and yield of kailan crops (Brassica oleraceae L.). Jurnal Produksi Tanaman, Volume 4, Nomor 1, hlm. 49 - 56.
Rachmadhani NW, Hariyon D, Santoso M. 2018. Azotobacter sp. in improving the efficiency of urea fertilization in corn plants (Zea mays L.). Buana Sains, 18(1), 1. https://doi.org/10.33366/bs.v18i1.932.
Rahmawati ID, Purwani KI, Muhibuddin A. 2019. Effect of P fertilizer concentration on root height and length of Tagetes erecta L. (Marigold) infected with hydroponic mycorrhiza. Jurnal Sains Dan Seni ITS, 7(2), 4–8. https://doi.org/10.12962/j23373520.v7i2.37048
Ramadhan MF, Hidayat C, Hasani S. 2015. Effect of application of organic matter and FMA on the growth and yield of chili plants (Capsicum annum L.) varietas landung pada tanah pasca galian C. Jurnal Agro 2 (1).
Saravaiya SN, Wakchaure SS, Jadhav PB, Tekale GS, Patil NB, Dekhan SS, Patel D. 2013. Effect of foliar application of macronutrients on growth parameters in tomato (Lycopersicon esculentum). Agriculture and Food Sciences, 1(10), 146–151.
Sariwahyuni. 2012. Rehabilitation of former mining land of PT. Incosorowako with organic matter, phosphate solvent bacteria and nickel-reducing bacteria. Jurnal riset Industri Vol. VI No. 2, Hal 33-39.
Setyanti Y, Anwar S, Slamet W. 2013. Alfalfa (Medicago sativa) at different cutting heights and nitrogen fertilization. Animal Agriculture Journal, 2(1), 86–96.
Sharma SB, Sayyed RZ, Trivedi MH, Gobi TA. 2013. Phosphate solubilizing microbes: Sustainable approach for managing phosphorus deficiency in agricultural soils. SpringerPlus, 2(1), 1–14. https://doi.org/10.1186/2193-1801-2-587
Silahooy C, Silahooy VB, Huwae LMC. 2022. Selectivity of Mg-K ion exchange due to the application of NH3 solution to renzina soil with some incubation time. Biofaal Journal, 3(1), 12–18. https://doi.org/10.30598/biofaal.v3i1pp12-18
Sitompul SM. 2016. Plant Growth Analysis. Tim UBPress.
Sukmasari MD, WaluyoB, Karuniawan A. 2016. Effect of phosphate solvent bacteria on fertilization efficiencyEffect of phosphate solvent bacteria on fertilization efficiency P. Prosiding Seminar Hasil Penelitian Tanaman Aneka Kacang Dan Umbi, 1(1), 567–573.
Suparnorampius SY, Pata’dungan, Rois. 2020. Exploration of phosphate solvent bacteria in various industrial and horticultural crops in the highlands. Jurnal Agrotekbis, 8(1), 25–31.
Uchida R. 2000. Recommended Plant Tissue Nutrient Levels. Plant Nutrient Management in Hawaii’s Soils, Approaches to Tropical and Subtropical Agriculture, 57–65.
Widiyawati I, Junaedi A, Widyastuti R. 2014. The role of nitrogen-fixing bacteria to reduce the dose of inorganic nitrogen fertilizer in paddy fields. J. Agron. Indonesia, 42(2), 96–102.
Wijaya AG, Noertjahyani N, Mulya AS. 2022. Effect of nitrogen and potassium fertilizer doses on the growth and yield of pakcoy plants (Brassica rapa subsp. chinensis) Varietas Nauli F-1. OrchidAgro, 2(1), 6. https://doi.org/10.35138/orchidagro.v2i1.369
Yolanda. 2020. Growth and production of red lettuce (Lettuce lolorosa) due to the combination of goat manure fertilizer and FeSO4. J. Agro Complex, 4(2), 125–131.
DOI: https://doi.org/10.24198/kultivasi.v23i3.58195
Refbacks
- There are currently no refbacks.

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
Jurnal Kultivasi Indexed by:
This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.